About   Help   FAQ
Gene Expression Literature Summary
Symbol
Name
ID
Nodal
nodal growth differentiation factor
MGI:97359

262 matching records from 262 references.

Summary by Age and Assay: Numbers in the table indicate the number of results matching the search criteria.
Age E1.5 E2 E2.5 E3 E3.5 E4 E4.5 E5 E5.5 E6 E6.5 E7 E7.5 E8 E8.5 E9 E9.5 E10 E10.5 E11.5 E12 E12.5 E13 E13.5 E14 E14.5 E15 E15.5 E16 E16.5 E17 E17.5 E18.5 E P
Immunohistochemistry (section) 1 2 1
In situ RNA (section) 1 2 1 2 2 2 5 7 6 10 12 9 1 1 2 1 1 2 4
Immunohistochemistry (whole mount) 1
In situ RNA (whole mount) 1 2 17 9 45 24 56 87 43 2 2 1 1 1 16
In situ reporter (knock in) 2 1 4 3 8 3 16 8 13 2 1 6 1
Western blot 1 1 1 1 1 1
RT-PCR 2 1 1 1 1 1 1 1 6 3 13 3 6 1 1 4 1 6 1 8 1 5 1 4 1 2 1 2 1 4
cDNA clones 1 1

Summary by Gene and Reference: Number indicates the number of results matching the search criteria recorded for each reference.
* Indicates detailed expression data entries available
Nodal  nodal growth differentiation factor   (Synonyms: Tg.413d)
Results  Reference
1J:182741 Alten L, Schuster-Gossler K, Beckers A, Groos S, Ulmer B, Hegermann J, Ochs M, Gossler A, Differential regulation of node formation, nodal ciliogenesis and cilia positioning by Noto and Foxj1. Development. 2012 Apr;139(7):1276-84
1J:127541 Andersson O, Bertolino P, Ibanez CF, Distinct and cooperative roles of mammalian Vg1 homologs GDF1 and GDF3 during early embryonic development. Dev Biol. 2007 Nov 15;311(2):500-11
4*J:108723 Andersson O, Reissmann E, Jornvall H, Ibanez CF, Synergistic interaction between Gdf1 and Nodal during anterior axis development. Dev Biol. 2006 May 15;293(2):370-81
1J:220460 Andre P, Song H, Kim W, Kispert A, Yang Y, Wnt5a and Wnt11 regulate mammalian anterior-posterior axis elongation. Development. 2015 Apr 15;142(8):1516-27
1J:324269 Antony D, Gulec Yilmaz E, Gezdirici A, Slagter L, Bakey Z, Bornaun H, Tanidir IC, Van Dinh T, Brunner HG, Walentek P, Arnold SJ, Backofen R, Schmidts M, Spectrum of Genetic Variants in a Cohort of 37 Laterality Defect Cases. Front Genet. 2022;13:861236
1*J:184591 Aoyama M, Sun-Wada GH, Yamamoto A, Yamamoto M, Hamada H, Wada Y, Spatial Restriction of Bone Morphogenetic Protein Signaling in Mouse Gastrula through the mVam2-Dependent Endocytic Pathway. Dev Cell. 2012 Jun 12;22(6):1163-75
4J:131055 Arnold SJ, Hofmann UK, Bikoff EK, Robertson EJ, Pivotal roles for eomesodermin during axis formation, epithelium-to-mesenchyme transition and endoderm specification in the mouse. Development. 2008 Feb;135(3):501-11
1*J:119296 Arnold SJ, Maretto S, Islam A, Bikoff EK, Robertson EJ, Dose-dependent Smad1, Smad5 and Smad8 signaling in the early mouse embryo. Dev Biol. 2006 Aug 1;296(1):104-18
3*J:50876 Arsenian S, Weinhold B, Oelgeschlager M, Ruther U, Nordheim A, Serum response factor is essential for mesoderm formation during mouse embryogenesis. EMBO J. 1998 Nov 2;17(21):6289-99
1J:290418 Ashokkumar D, Zhang Q, Much C, Bledau AS, Naumann R, Alexopoulou D, Dahl A, Goveas N, Fu J, Anastassiadis K, Stewart AF, Kranz A, MLL4 is required after implantation, whereas MLL3 becomes essential during late gestation. Development. 2020 Jun 17;147(12):dev186999
1*J:92872 Bamforth SD, Braganca J, Farthing CR, Schneider JE, Broadbent C, Michell AC, Clarke K, Neubauer S, Norris D, Brown NA, Anderson RH, Bhattacharya S, Cited2 controls left-right patterning and heart development through a Nodal-Pitx2c pathway. Nat Genet. 2004 Dec;36(11):1189-96
1J:175541 Bangs F, Antonio N, Thongnuek P, Welten M, Davey MG, Briscoe J, Tickle C, Generation of mice with functional inactivation of talpid3, a gene first identified in chicken. Development. 2011 Aug;138(15):3261-72
1J:213344 Barratt KS, Glanville-Jones HC, Arkell RM, The Zic2 gene directs the formation and function of node cilia to control cardiac situs. Genesis. 2014 Jun;52(6):626-35
1J:253960 Basilicata MF, Frank M, Solter D, Brabletz T, Stemmler MP, Inappropriate cadherin switching in the mouse epiblast compromises proper signaling between the epiblast and the extraembryonic ectoderm during gastrulation. Sci Rep. 2016 May 24;6:26562
3J:81247 Beck S, Le Good JA, Guzman M, Ben Haim N, Roy K, Beermann F, Constam DB, Extraembryonic proteases regulate Nodal signalling during gastrulation. Nat Cell Biol. 2002 Dec;4(12):981-5
3J:222988 Beckers A, Alten L, Viebahn C, Andre P, Gossler A, The mouse homeobox gene Noto regulates node morphogenesis, notochordal ciliogenesis, and left right patterning. Proc Natl Acad Sci U S A. 2007 Oct 2;104(40):15765-70
3J:112799 Ben-Haim N, Lu C, Guzman-Ayala M, Pescatore L, Mesnard D, Bischofberger M, Naef F, Robertson EJ, Constam DB, The nodal precursor acting via activin receptors induces mesoderm by maintaining a source of its convertases and BMP4. Dev Cell. 2006 Sep;11(3):313-23
2*J:264256 Bernardo AS, Jouneau A, Marks H, Kensche P, Kobolak J, Freude K, Hall V, Feher A, Polgar Z, Sartori C, Bock I, Louet C, Faial T, Kerstens HHD, Bouissou C, Parsonage G, Mashayekhi K, Smith JC, Lazzari G, Hyttel P, Stunnenberg HG, Huynen M, Pedersen RA, Dinnyes A, Mammalian embryo comparison identifies novel pluripotency genes associated with the naive or primed state. Biol Open. 2018 Aug 17;7(8):bio033282
3J:254597 Bhargava S, Cox B, Polydorou C, Gresakova V, Korinek V, Strnad H, Sedlacek R, Epp TA, Chawengsaksophak K, The epigenetic modifier Fam208a is required to maintain epiblast cell fitness. Sci Rep. 2017 Aug 24;7(1):9322
1J:210109 Biris KK, Yamaguchi TP, Two-color in situ hybridization of whole-mount mouse embryos. Methods Mol Biol. 2014;1092:17-30
1J:182770 Bisgrove BW, Makova S, Yost HJ, Brueckner M, RFX2 is essential in the ciliated organ of asymmetry and an RFX2 transgene identifies a population of ciliated cells sufficient for fluid flow. Dev Biol. 2012 Mar 1;363(1):166-78
1*J:141156 Blanchet MH, Le Good JA, Mesnard D, Oorschot V, Baflast S, Minchiotti G, Klumperman J, Constam DB, Cripto recruits Furin and PACE4 and controls Nodal trafficking during proteolytic maturation. EMBO J. 2008 Oct 8;27(19):2580-91
4*J:118367 Blum M, Andre P, Muders K, Schweickert A, Fischer A, Bitzer E, Bogusch S, Beyer T, van Straaten HW, Viebahn C, Ciliation and gene expression distinguish between node and posterior notochord in the mammalian embryo. Differentiation. 2007 Feb;75(2):133-46
1*J:124356 Bondareva AA, Capecchi MR, Iverson SV, Li Y, Lopez NI, Lucas O, Merrill GF, Prigge JR, Siders AM, Wakamiya M, Wallin SL, Schmidt EE, Effects of thioredoxin reductase-1 deletion on embryogenesis and transcriptome. Free Radic Biol Med. 2007 Sep 15;43(6):911-23
1J:89880 Bonnafe E, Touka M, AitLounis A, Baas D, Barras E, Ucla C, Moreau A, Flamant F, Dubruille R, Couble P, Collignon J, Durand B, Reith W, The transcription factor RFX3 directs nodal cilium development and left-right asymmetry specification. Mol Cell Biol. 2004 May;24(10):4417-27
6J:219394 Boroviak T, Loos R, Bertone P, Smith A, Nichols J, The ability of inner-cell-mass cells to self-renew as embryonic stem cells is acquired following epiblast specification. Nat Cell Biol. 2014 Jun;16(6):516-28
1*J:200709 Botilde Y, Yoshiba S, Shinohara K, Hasegawa T, Nishimura H, Shiratori H, Hamada H, Cluap1 localizes preferentially to the base and tip of cilia and is required for ciliogenesis in the mouse embryo. Dev Biol. 2013 Sep 1;381(1):203-12
6J:79098 Brennan J, Norris DP, Robertson EJ, Nodal activity in the node governs left-right asymmetry. Genes Dev. 2002 Sep 15;16(18):2339-44
2J:55991 Brown D, Wagner D, Li X, Richardson JA, Olson EN, Dual role of the basic helix-loop-helix transcription factor scleraxis in mesoderm formation and chondrogenesis during mouse embryogenesis. Development. 1999 Oct;126(19):4317-29
1*J:302463 Buers I, Pennekamp P, Nitschke Y, Lowe C, Skryabin BV, Rutsch F, Lmbrd1 expression is essential for the initiation of gastrulation. J Cell Mol Med. 2016 Aug;20(8):1523-33
1J:110605 Camus A, Perea-Gomez A, Moreau A, Collignon J, Absence of Nodal signaling promotes precocious neural differentiation in the mouse embryo. Dev Biol. 2006 Jul 15;295(2):743-55
3*J:60975 Chang H, Zwijsen A, Vogel H, Huylebroeck D, Matzuk MM, Smad5 is essential for left-right asymmetry in mice. Dev Biol. 2000 Mar 1;219(1):71-8
1J:112232 Chazaud C, Rossant J, Disruption of early proximodistal patterning and AVE formation in Apc mutants. Development. 2006 Sep;133(17):3379-87
6J:104371 Chen C, Ware SM, Sato A, Houston-Hawkins DE, Habas R, Matzuk MM, Shen MM, Brown CW, The Vg1-related protein Gdf3 acts in a Nodal signaling pathway in the pre-gastrulation mouse embryo. Development. 2006 Jan;133(2):319-29
1J:354455 Chen X, Su Q, Ling X, Yang Y, Liu Y, Zhu X, He A, Wu H, Qi Y, SENP3-regulated Nodal signaling plays a potential role in cardiac left-right asymmetry development. Int J Biol Macromol. 2024 Aug;274(Pt 2):133294
1J:92066 Chu GC, Dunn NR, Anderson DC, Oxburgh L, Robertson EJ, Differential requirements for Smad4 in TGFbeta-dependent patterning of the early mouse embryo. Development. 2004 Aug;131(15):3501-12
3J:67377 Chung AC, Katz D, Pereira FA, Jackson KJ, DeMayo FJ, Cooney AJ, O'Malley BW, Loss of orphan receptor germ cell nuclear factor function results in ectopic development of the tail bud and a novel posterior truncation. Mol Cell Biol. 2001 Jan;21(2):663-77
4*J:32935 Collignon J, Varlet I, Robertson EJ, Relationship between asymmetric nodal expression and the direction of embryonic turning. Nature. 1996 May 9;381(6578):155-8
1*J:213591 Concepcion D, Papaioannou VE, Nature and extent of left/right axis defects in T(Wis) /T(Wis) mutant mouse embryos. Dev Dyn. 2014 Aug;243(8):1046-53
7*J:19211 Conlon FL, Lyons KM, Takaesu N, Barth KS, Kispert A, Herrmann B, Robertson EJ, A primary requirement for nodal in the formation and maintenance of the primitive streak in the mouse. Development. 1994 Jul;120(7):1919-28
1J:62181 Constam DB, Robertson EJ, SPC4/PACE4 regulates a TGFbeta signaling network during axis formation. Genes Dev. 2000 May 1;14(9):1146-55
1J:101731 Cooper AF, Yu KP, Brueckner M, Brailey LL, Johnson L, McGrath JM, Bale AE, Cardiac and CNS defects in a mouse with targeted disruption of suppressor of fused. Development. 2005 Oct;132(19):4407-17
1*J:226614 Costello I, Nowotschin S, Sun X, Mould AW, Hadjantonakis AK, Bikoff EK, Robertson EJ, Lhx1 functions together with Otx2, Foxa2, and Ldb1 to govern anterior mesendoderm, node, and midline development. Genes Dev. 2015 Oct 15;29(20):2108-22
2*J:116645 Cota CD, Bagher P, Pelc P, Smith CO, Bodner CR, Gunn TM, Mice with mutations in Mahogunin ring finger-1 (Mgrn1) exhibit abnormal patterning of the left-right axis. Dev Dyn. 2006 Dec;235(12):3438-47
2J:186907 D'Andrea D, Liguori GL, Le Good JA, Lonardo E, Andersson O, Constam DB, Persico MG, Minchiotti G, Cripto promotes A-P axis specification independently of its stimulatory effect on Nodal autoinduction. J Cell Biol. 2008 Feb 11;180(3):597-605
6J:239417 Dai HQ, Wang BA, Yang L, Chen JJ, Zhu GC, Sun ML, Ge H, Wang R, Chapman DL, Tang F, Sun X, Xu GL, TET-mediated DNA demethylation controls gastrulation by regulating Lefty-Nodal signalling. Nature. 2016 Oct 27;538(7626):528-532
1J:124681 Di-Gregorio A, Sancho M, Stuckey DW, Crompton LA, Godwin J, Mishina Y, Rodriguez TA, BMP signalling inhibits premature neural differentiation in the mouse embryo. Development. 2007 Sep;134(18):3359-69
7*J:82773 Dichmann DS, Miller CP, Jensen J, Scott Heller R, Serup P, Expression and misexpression of members of the FGF and TGFbeta families of growth factors in the developing mouse pancreas. Dev Dyn. 2003 Apr;226(4):663-74
3J:98382 Donnison M, Beaton A, Davey HW, Broadhurst R, L'huillier P, Pfeffer PL, Loss of the extraembryonic ectoderm in Elf5 mutants leads to defects in embryonic patterning. Development. 2005 May;132(10):2299-308
3*J:165751 Du J, Takeuchi H, Leonhard-Melief C, Shroyer KR, Dlugosz M, Haltiwanger RS, Holdener BC, O-fucosylation of thrombospondin type 1 repeats restricts epithelial to mesenchymal transition (EMT) and maintains epiblast pluripotency during mouse gastrulation. Dev Biol. 2010 Oct 1;346(1):25-38
2*J:268103 Dykes IM, Szumska D, Kuncheria L, Puliyadi R, Chen CM, Papanayotou C, Lockstone H, Dubourg C, David V, Schneider JE, Keane TM, Adams DJ, Brown SDM, Mercier S, Odent S, Collignon J, Bhattacharya S, A Requirement for Zic2 in the Regulation of Nodal Expression Underlies the Establishment of Left-Sided Identity. Sci Rep. 2018 Jul 11;8(1):10439
2J:142039 Egea J, Erlacher C, Montanez E, Burtscher I, Yamagishi S, Hess M, Hampel F, Sanchez R, Rodriguez-Manzaneque MT, Bosl MR, Fassler R, Lickert H, Klein R, Genetic ablation of FLRT3 reveals a novel morphogenetic function for the anterior visceral endoderm in suppressing mesoderm differentiation. Genes Dev. 2008 Dec 1;22(23):3349-3362
1*J:76233 Faisst AM, Alvarez-Bolado G, Treichel D, Gruss P, Rotatin is a novel gene required for axial rotation and left-right specification in mouse embryos. Mech Dev. 2002 Apr;113(1):15-28
2J:154368 Farkas DR, Chapman DL, Kinked tail mutation results in notochord defects in heterozygotes and distal visceral endoderm defects in homozygotes. Dev Dyn. 2009 Oct 29;238(12):3237-3247
3*J:23134 Faust C, Schumacher A, Holdener B, Magnuson T, The eed mutation disrupts anterior mesoderm production in mice. Development. 1995 Feb;121(2):273-85
1J:165811 Fernandez-Diaz LC, Laurent A, Girasoli S, Turco M, Longobardi E, Iotti G, Jenkins NA, Fiorenza MT, Copeland NG, Blasi F, The absence of Prep1 causes p53-dependent apoptosis of mouse pluripotent epiblast cells. Development. 2010 Oct;137(20):3393-403
1J:106035 Ferrante MI, Zullo A, Barra A, Bimonte S, Messaddeq N, Studer M, Dolle P, Franco B, Oral-facial-digital type I protein is required for primary cilia formation and left-right axis specification. Nat Genet. 2006 Jan;38(1):112-7
1J:170490 Field S, Riley KL, Grimes DT, Hilton H, Simon M, Powles-Glover N, Siggers P, Bogani D, Greenfield A, Norris DP, Pkd1l1 establishes left-right asymmetry and physically interacts with Pkd2. Development. 2011 Mar;138(6):1131-42
1J:226733 Franco I, Gulluni F, Campa CC, Costa C, Margaria JP, Ciraolo E, Martini M, Monteyne D, De Luca E, Germena G, Posor Y, Maffucci T, Marengo S, Haucke V, Falasca M, Perez-Morga D, Boletta A, Merlo GR, Hirsch E, PI3K class II alpha controls spatially restricted endosomal PtdIns3P and Rab11 activation to promote primary cilium function. Dev Cell. 2014 Mar 31;28(6):647-58
2*J:79391 Fujiwara T, Dehart DB, Sulik KK, Hogan BL, Distinct requirements for extra-embryonic and embryonic bone morphogenetic protein 4 in the formation of the node and primitive streak and coordination of left-right asymmetry in the mouse. Development. 2002 Oct;129(20):4685-96
3J:214665 Fuller K, O'Connell JT, Gordon J, Mauti O, Eggenschwiler J, Rab23 regulates Nodal signaling in vertebrate left-right patterning independently of the Hedgehog pathway. Dev Biol. 2014 Jul 15;391(2):182-95
2J:140928 Furtado MB, Solloway MJ, Jones VJ, Costa MW, Biben C, Wolstein O, Preis JI, Sparrow DB, Saga Y, Dunwoodie SL, Robertson EJ, Tam PP, Harvey RP, BMP/SMAD1 signaling sets a threshold for the left/right pathway in lateral plate mesoderm and limits availability of SMAD4. Genes Dev. 2008 Nov 1;22(21):3037-49
1J:183346 Futterer A, Raya A, Llorente M, Izpisua-Belmonte JC, de la Pompa JL, Klatt P, Martinez-A C, Ablation of Dido3 compromises lineage commitment of stem cells in vitro and during early embryonic development. Cell Death Differ. 2012 Jan;19(1):132-43
1J:58530 Gaio U, Schweickert A, Fischer A, Garratt AN, Muller T, Ozcelik C, Lankes W, Strehle M, Britsch S, Blum M, Birchmeier C, A role of the cryptic gene in the correct establishment of the left-right axis. Curr Biol. 1999 Nov 18;9(22):1339-42
1J:139139 Garcia-Garcia MJ, Shibata M, Anderson KV, Chato, a KRAB zinc-finger protein, regulates convergent extension in the mouse embryo. Development. 2008 Sep;135(18):3053-62
1J:176174 Garcia-Gonzalo FR, Corbit KC, Sirerol-Piquer MS, Ramaswami G, Otto EA, Noriega TR, Seol AD, Robinson JF, Bennett CL, Josifova DJ, Garcia-Verdugo JM, Katsanis N, Hildebrandt F, Reiter JF, A transition zone complex regulates mammalian ciliogenesis and ciliary membrane composition. Nat Genet. 2011 Aug;43(8):776-84
1J:106548 Georgiades P, Rossant J, Ets2 is necessary in trophoblast for normal embryonic anteroposterior axis development. Development. 2006 Mar;133(6):1059-68
2J:143572 Gorivodsky M, Mukhopadhyay M, Wilsch-Braeuninger M, Phillips M, Teufel A, Kim C, Malik N, Huttner W, Westphal H, Intraflagellar transport protein 172 is essential for primary cilia formation and plays a vital role in patterning the mammalian brain. Dev Biol. 2009 Jan 1;325(1):24-32
1J:98883 Gotoh N, Manova K, Tanaka S, Murohashi M, Hadari Y, Lee A, Hamada Y, Hiroe T, Ito M, Kurihara T, Nakazato H, Shibuya M, Lax I, Lacy E, Schlessinger J, The docking protein FRS2alpha is an essential component of multiple fibroblast growth factor responses during early mouse development. Mol Cell Biol. 2005 May;25(10):4105-16
9*J:168030 Granier C, Gurchenkov V, Perea-Gomez A, Camus A, Ott S, Papanayotou C, Iranzo J, Moreau A, Reid J, Koentges G, Saberan-Djoneidi D, Collignon J, Nodal cis-regulatory elements reveal epiblast and primitive endoderm heterogeneity in the peri-implantation mouse embryo. Dev Biol. 2011 Jan 15;349(2):350-62
2J:233311 Grimes DT, Keynton JL, Buenavista MT, Jin X, Patel SH, Kyosuke S, Vibert J, Williams DJ, Hamada H, Hussain R, Nauli SM, Norris DP, Genetic Analysis Reveals a Hierarchy of Interactions between Polycystin-Encoding Genes and Genes Controlling Cilia Function during Left-Right Determination. PLoS Genet. 2016 Jun;12(6):e1006070
1*J:171409 GUDMAP Consortium, GUDMAP: the GenitoUrinary Development Molecular Anatomy Project. www.gudmap.org. 2004;
1J:135128 Guo Q, Li JY, Distinct functions of the major Fgf8 spliceform, Fgf8b, before and during mouse gastrulation. Development. 2007 Jun;134(12):2251-60
1*J:217689 Guzman-Ayala M, Sachs M, Koh FM, Onodera C, Bulut-Karslioglu A, Lin CJ, Wong P, Nitta R, Song JS, Ramalho-Santos M, Chd1 is essential for the high transcriptional output and rapid growth of the mouse epiblast. Development. 2015 Jan 1;142(1):118-27
1J:317602 Haaning AM, Quinn ME, Ware SM, Heterotaxy-spectrum heart defects in Zic3 hypomorphic mice. Pediatr Res. 2013 Nov;74(5):494-502
2*J:217681 Halstead AM, Wright CV, Disrupting Foxh1-Groucho interaction reveals robustness of nodal-based embryonic patterning. Mech Dev. 2015 May;136:155-65
1J:79491 Hanna LA, Foreman RK, Tarasenko IA, Kessler DS, Labosky PA, Requirement for Foxd3 in maintaining pluripotent cells of the early mouse embryo. Genes Dev. 2002 Oct 15;16(20):2650-61
1*J:158268 Hassan AS, Hou J, Wei W, Hoodless PA, Expression of two novel transcripts in the mouse definitive endoderm. Gene Expr Patterns. 2010 Feb 12;10(2-3):127-34
1J:142596 Hirano M, Hashimoto S, Yonemura S, Sabe H, Aizawa S, EPB41L5 functions to post-transcriptionally regulate cadherin and integrin during epithelial-mesenchymal transition. J Cell Biol. 2008 Sep 22;182(6):1217-30
1J:69594 Hoodless PA, Pye M, Chazaud C, Labbe E, Attisano L, Rossant J, Wrana JL, FoxH1 (Fast) functions to specify the anterior primitive streak in the mouse. Genes Dev. 2001 May 15;15(10):1257-71
1J:142506 Hoover AN, Wynkoop A, Zeng H, Jia J, Niswander LA, Liu A, C2cd3 is required for cilia formation and Hedgehog signaling in mouse. Development. 2008 Dec;135(24):4049-58
1*J:119664 Houde C, Dickinson RJ, Houtzager VM, Cullum R, Montpetit R, Metzler M, Simpson EM, Roy S, Hayden MR, Hoodless PA, Nicholson DW, Hippi is essential for node cilia assembly and Sonic hedgehog signaling. Dev Biol. 2006 Dec 15;300(2):523-33
1*J:238567 Houtmeyers R, Tchouate Gainkam O, Glanville-Jones HA, Van den Bosch B, Chappell A, Barratt KS, Souopgui J, Tejpar S, Arkell RM, Zic2 mutation causes holoprosencephaly via disruption of NODAL signalling. Hum Mol Genet. 2016 Sep 15;25(18):3946-3959
3J:186161 Hu B, Castillo E, Harewood L, Ostano P, Reymond A, Dummer R, Raffoul W, Hoetzenecker W, Hofbauer GF, Dotto GP, Multifocal epithelial tumors and field cancerization from loss of mesenchymal CSL signaling. Cell. 2012 Jun 8;149(6):1207-20
4J:254969 Huang X, Balmer S, Yang F, Fidalgo M, Li D, Guallar D, Hadjantonakis AK, Wang J, Zfp281 is essential for mouse epiblast maturation through transcriptional and epigenetic control of Nodal signaling. Elife. 2017 Nov 23;6:e33333
1J:100466 Huangfu D, Anderson KV, Cilia and Hedgehog responsiveness in the mouse. Proc Natl Acad Sci U S A. 2005 Aug 9;102(32):11325-30
1J:86437 Huangfu D, Liu A, Rakeman AS, Murcia NS, Niswander L, Anderson KV, Hedgehog signalling in the mouse requires intraflagellar transport proteins. Nature. 2003 Nov 6;426(6962):83-7
1J:258369 Inaba Y, Shinohara K, Botilde Y, Nabeshima R, Takaoka K, Ajima R, Lamri L, Takeda H, Saga Y, Nakamura T, Hamada H, Transport of the outer dynein arm complex to cilia requires a cytoplasmic protein Lrrc6. Genes Cells. 2016 Jul;21(7):728-39
1J:199895 Inacio JM, Marques S, Nakamura T, Shinohara K, Meno C, Hamada H, Belo JA, The dynamic right-to-left translocation of Cerl2 is involved in the regulation and termination of Nodal activity in the mouse node. PLoS One. 2013;8(3):e60406
5J:80667 Iratni R, Yan YT, Chen C, Ding J, Zhang Y, Price SM, Reinberg D, Shen MM, Inhibition of excess nodal signaling during mouse gastrulation by the transcriptional corepressor DRAP1. Science. 2002 Dec 6;298(5600):1996-9
1*J:81402 Ishikawa TO, Tamai Y, Li Q, Oshima M, Taketo MM, Requirement for tumor suppressor Apc in the morphogenesis of anterior and ventral mouse embryo. Dev Biol. 2003 Jan 15;253(2):230-46
2*J:142123 Ishimura A, Chida S, Osada S, Man1, an inner nuclear membrane protein, regulates left-right axis formation by controlling nodal signaling in a node-independent manner. Dev Dyn. 2008 Dec;237(12):3565-76
2J:119566 Ishimura A, Ng JK, Taira M, Young SG, Osada S, Man1, an inner nuclear membrane protein, regulates vascular remodeling by modulating transforming growth factor beta signaling. Development. 2006 Oct;133(19):3919-28
1J:55887 Izraeli S, Lowe LA, Bertness VL, Good DJ, Dorward DW, Kirsch IR, Kuehn MR, The SIL gene is required for mouse embryonic axial development and left-right specification. Nature. 1999 Jun 17;399(6737):691-4
2*J:160012 Jerome-Majewska LA, Achkar T, Luo L, Lupu F, Lacy E, The trafficking protein Tmed2/p24beta(1) is required for morphogenesis of the mouse embryo and placenta. Dev Biol. 2010 May 1;341(1):154-66
1J:103305 Karcher C, Fischer A, Schweickert A, Bitzer E, Horie S, Witzgall R, Blum M, Lack of a laterality phenotype in Pkd1 knock-out embryos correlates with absence of polycystin-1 in nodal cilia. Differentiation. 2005 Oct;73(8):425-32
1J:187732 Kawamura N, Sun-Wada GH, Aoyama M, Harada A, Takasuga S, Sasaki T, Wada Y, Delivery of endosomes to lysosomes via microautophagy in the visceral endoderm of mouse embryos. Nat Commun. 2012 Sep 18;3:1071
1*J:295945 Kawamura N, Takaoka K, Hamada H, Hadjantonakis AK, Sun-Wada GH, Wada Y, Rab7-Mediated Endocytosis Establishes Patterning of Wnt Activity through Inactivation of Dkk Antagonism. Cell Rep. 2020 Jun 9;31(10):107733
2J:173964 Kawasumi A, Nakamura T, Iwai N, Yashiro K, Saijoh Y, Belo JA, Shiratori H, Hamada H, Left-right asymmetry in the level of active Nodal protein produced in the node is translated into left-right asymmetry in the lateral plate of mouse embryos. Dev Biol. 2011 May 15;353(2):321-30
2J:91055 Kelly OG, Pinson KI, Skarnes WC, The Wnt co-receptors Lrp5 and Lrp6 are essential for gastrulation in mice. Development. 2004 Jun;131(12):2803-15
1J:94395 Kemler R, Hierholzer A, Kanzler B, Kuppig S, Hansen K, Taketo MM, de Vries WN, Knowles BB, Solter D, Stabilization of {beta}-catenin in the mouse zygote leads to premature epithelial-mesenchymal transition in the epiblast. Development. 2004 Dec;131(23):5817-5824
3J:329565 Kim J, Muraoka M, Okada H, Toyoda A, Ajima R, Saga Y, The RNA helicase DDX6 controls early mouse embryogenesis by repressing aberrant inhibition of BMP signaling through miRNA-mediated gene silencing. PLoS Genet. 2022 Oct;18(10):e1009967
1J:283312 Kim YY, Moon JS, Kwon MC, Shin J, Im SK, Kim HA, Han JK, Kong YY, Meteorin regulates mesendoderm development by enhancing nodal expression. PLoS One. 2014;9(2):e88811
1J:103272 Kimura-Yoshida C, Nakano H, Okamura D, Nakao K, Yonemura S, Belo JA, Aizawa S, Matsui Y, Matsuo I, Canonical Wnt signaling and its antagonist regulate anterior-posterior axis polarization by guiding cell migration in mouse visceral endoderm. Dev Cell. 2005 Nov;9(5):639-50
2J:120359 Kimura-Yoshida C, Tian E, Nakano H, Amazaki S, Shimokawa K, Rossant J, Aizawa S, Matsuo I, Crucial roles of Foxa2 in mouse anterior-posterior axis polarization via regulation of anterior visceral endoderm-specific genes. Proc Natl Acad Sci U S A. 2007 Apr 3;104(14):5919-24
1*J:52218 King T, Beddington RS, Brown NA, The role of the brachyury gene in heart development and left-right specification in the mouse. Mech Dev. 1998 Dec;79(1-2):29-37
2*J:162627 Kinzel D, Boldt K, Davis EE, Burtscher I, Trumbach D, Diplas B, Attie-Bitach T, Wurst W, Katsanis N, Ueffing M, Lickert H, Pitchfork regulates primary cilia disassembly and left-right asymmetry. Dev Cell. 2010 Jul 20;19(1):66-77
2*J:199577 Kitajima K, Oki S, Ohkawa Y, Sumi T, Meno C, Wnt signaling regulates left-right axis formation in the node of mouse embryos. Dev Biol. 2013 Aug 15;380(2):222-32
2J:62984 Kitajima S, Takagi A, Inoue T, Saga Y, MesP1 and MesP2 are essential for the development of cardiac mesoderm. Development. 2000 Aug;127(15):3215-26
2J:59069 Klingensmith J, Ang SL, Bachiller D, Rossant J, Neural induction and patterning in the mouse in the absence of the node and its derivatives. Dev Biol. 1999 Dec 15;216(2):535-49
1J:175828 Komatsu Y, Kaartinen V, Mishina Y, Cell cycle arrest in node cells governs ciliogenesis at the node to break left-right symmetry. Development. 2011 Sep;138(18):3915-20
1*J:228563 Koscielny G, Yaikhom G, Iyer V, Meehan TF, Morgan H, Atienza-Herrero J, Blake A, Chen CK, Easty R, Di Fenza A, Fiegel T, Grifiths M, Horne A, Karp NA, Kurbatova N, Mason JC, Matthews P, Oakley DJ, Qazi A, Regnart J, Retha A, Santos LA, Sneddon DJ, Warren J, Westerberg H, Wilson RJ, Melvin DG, Smedley D, Brown SD, Flicek P, Skarnes WC, Mallon AM, Parkinson H, The International Mouse Phenotyping Consortium Web Portal, a unified point of access for knockout mice and related phenotyping data. Nucleic Acids Res. 2014 Jan;42(Database issue):D802-9
1J:184521 Koss M, Bolze A, Brendolan A, Saggese M, Capellini TD, Bojilova E, Boisson B, Prall OW, Elliott DA, Solloway M, Lenti E, Hidaka C, Chang CP, Mahlaoui N, Harvey RP, Casanova JL, Selleri L, Congenital Asplenia in Mice and Humans with Mutations in a Pbx/Nkx2-5/p15 Module. Dev Cell. 2012 May 15;22(5):913-26
1J:75520 Kovacs CS, Chafe LL, Woodland ML, McDonald KR, Fudge NJ, Wookey PJ, Calcitropic gene expression suggests a role for the intraplacental yolk sac in maternal-fetal calcium exchange. Am J Physiol Endocrinol Metab. 2002 Mar;282(3):E721-32
2J:83358 Krebs LT, Iwai N, Nonaka S, Welsh IC, Lan Y, Jiang R, Saijoh Y, O'Brien TP, Hamada H, Gridley T, Notch signaling regulates left-right asymmetry determination by inducing Nodal expression. Genes Dev. 2003 May 15;17(10):1207-12
1J:196366 Krentz AD, Murphy MW, Zhang T, Sarver AL, Jain S, Griswold MD, Bardwell VJ, Zarkower D, Interaction between DMRT1 function and genetic background modulates signaling and pluripotency to control tumor susceptibility in the fetal germ line. Dev Biol. 2013 May 1;377(1):67-78
6J:142430 Kumar A, Lualdi M, Lewandoski M, Kuehn MR, Broad mesodermal and endodermal deletion of Nodal at postgastrulation stages results solely in left/right axial defects. Dev Dyn. 2008 Dec;237(12):3591-601
2J:221169 Kumar A, Lualdi M, Lyozin GT, Sharma P, Loncarek J, Fu XY, Kuehn MR, Nodal signaling from the visceral endoderm is required to maintain Nodal gene expression in the epiblast and drive DVE/AVE migration. Dev Biol. 2015 Apr 1;400(1):1-9
1J:294100 Kyprianou C, Christodoulou N, Hamilton RS, Nahaboo W, Boomgaard DS, Amadei G, Migeotte I, Zernicka-Goetz M, Basement membrane remodelling regulates mouse embryogenesis. Nature. 2020 Jun;582(7811):253-258
1J:116646 Labelle-Dumais C, Jacob-Wagner M, Pare JF, Belanger L, Dufort D, Nuclear receptor NR5A2 is required for proper primitive streak morphogenesis. Dev Dyn. 2006 Dec;235(12):3359-69
3J:147414 Landry J, Sharov AA, Piao Y, Sharova LV, Xiao H, Southon E, Matta J, Tessarollo L, Zhang YE, Ko MS, Kuehn MR, Yamaguchi TP, Wu C, Essential role of chromatin remodeling protein Bptf in early mouse embryos and embryonic stem cells. PLoS Genet. 2008 Oct;4(10):e1000241
2J:244157 Lange L, Marks M, Liu J, Wittler L, Bauer H, Piehl S, Blass G, Timmermann B, Herrmann BG, Patterning and gastrulation defects caused by the tw18 lethal are due to loss of Ppp2r1a. Biol Open. 2017 Jun 15;6(6):752-764
4*J:185804 Larkins CE, Long AB, Caspary T, Defective Nodal and Cerl2 expression in the Arl13b(hnn) mutant node underlie its heterotaxia. Dev Biol. 2012 Jul 1;367(1):15-24
2J:165744 Lee JD, Migeotte I, Anderson KV, Left-right patterning in the mouse requires Epb4.1l5-dependent morphogenesis of the node and midline. Dev Biol. 2010 Oct 15;346(2):237-46
1J:163739 Leung AW, Wong SY, Chan D, Tam PP, Cheah KS, Loss of procollagen IIA from the anterior mesendoderm disrupts the development of mouse embryonic forebrain. Dev Dyn. 2010 Sep;239(9):2319-29
1J:239071 Li X, Yue X, Pastor WA, Lin L, Georges R, Chavez L, Evans SM, Rao A, Tet proteins influence the balance between neuroectodermal and mesodermal fate choice by inhibiting Wnt signaling. Proc Natl Acad Sci U S A. 2016 Dec 20;113(51):E8267-E8276
2J:132584 Liguori GL, Borges AC, D'Andrea D, Liguoro A, Goncalves L, Salgueiro AM, Persico MG, Belo JA, Cripto-independent Nodal signaling promotes positioning of the A-P axis in the early mouse embryo. Dev Biol. 2008 Mar 15;315(2):280-9
1J:293699 Lin JI, Feinstein TN, Jha A, McCleary JT, Xu J, Arrigo AB, Rong G, Maclay LM, Ridge T, Xu X, Lo CW, Mutation of LRP1 in cardiac neural crest cells causes congenital heart defects by perturbing outflow lengthening. Commun Biol. 2020 Jun 16;3(1):312
1J:270950 Lin K, Zhang S, Shi Q, Zhu M, Gao L, Xia W, Geng B, Zheng Z, Xu EY, Essential requirement of mammalian Pumilio family in embryonic development. Mol Biol Cell. 2018 Nov 26;29(24):2922-2932
1J:56511 Liu P, Wakamiya M, Shea MJ, Albrecht U, Behringer RR, Bradley A, Requirement for Wnt3 in vertebrate axis formation. Nat Genet. 1999 Aug;22(4):361-5
1*J:168841 Lopes Floro K, Artap ST, Preis JI, Fatkin D, Chapman G, Furtado MB, Harvey RP, Hamada H, Sparrow DB, Dunwoodie SL, Loss of Cited2 causes congenital heart disease by perturbing left-right patterning of the body axis. Hum Mol Genet. 2011 Mar 15;20(6):1097-110
1*J:168337 Lourenco R, Lopes SS, Saude L, Left-right function of dmrt2 genes is not conserved between zebrafish and mouse. PLoS One. 2010;5(12):e14438
4*J:32936 Lowe LA, Supp DM, Sampath K, Yokoyama T, Wright CV, Potter SS, Overbeek P, Kuehn MR, Conserved left-right asymmetry of nodal expression and alterations in murine situs inversus [see comments]. Nature. 1996 May 9;381(6578):158-61
2*J:73506 Lowe LA, Yamada S, Kuehn MR, Genetic dissection of nodal function in patterning the mouse embryo. Development. 2001 May;128(10):1831-43
2*J:93140 Lu CC, Robertson EJ, Multiple roles for Nodal in the epiblast of the mouse embryo in the establishment of anterior-posterior patterning. Dev Biol. 2004 Sep 1;273(1):149-59
2J:70738 Ma GT, Soloveva V, Tzeng SJ, Lowe LA, Pfendler KC, Iannaccone PM, Kuehn MR, Linzer DI, Nodal regulates trophoblast differentiation and placental development. Dev Biol. 2001 Aug 1;236(1):124-35
1J:79457 Ma Y, Erkner A, Gong R, Yao S, Taipale J, Basler K, Beachy P, Hedgehog-Mediated Patterning of the Mammalian Embryo Requires Transporter-like Function of Dispatched. Cell. 2002 Oct 4;111(1):63
1J:152173 Maisonneuve C, Guilleret I, Vick P, Weber T, Andre P, Beyer T, Blum M, Constam DB, Bicaudal C, a novel regulator of Dvl signaling abutting RNA-processing bodies, controls cilia orientation and leftward flow. Development. 2009 Sep;136(17):3019-30
1J:175781 Makki N, Capecchi MR, Identification of novel Hoxa1 downstream targets regulating hindbrain, neural crest and inner ear development. Dev Biol. 2011 Sep 15;357(2):295-304
2*J:199559 Manning DK, Sergeev M, van Heesbeen RG, Wong MD, Oh JH, Liu Y, Henkelman RM, Drummond I, Shah JV, Beier DR, Loss of the ciliary kinase Nek8 causes left-right asymmetry defects. J Am Soc Nephrol. 2013 Jan;24(1):100-12
1*J:93051 Marques S, Borges AC, Silva AC, Freitas S, Cordenonsi M, Belo JA, The activity of the Nodal antagonist Cerl-2 in the mouse node is required for correct L/R body axis. Genes Dev. 2004 Oct 1;18(19):2342-7
2J:122005 Mavrakis KJ, Andrew RL, Lee KL, Petropoulou C, Dixon JE, Navaratnam N, Norris DP, Episkopou V, Arkadia Enhances Nodal/TGF-beta Signaling by Coupling Phospho-Smad2/3 Activity and Turnover. PLoS Biol. 2007 Mar 6;5(3):e67
1*J:45709 Melloy PG, Ewart JL, Cohen MF, Desmond ME, Kuehn MR, Lo CW, No turning, a mouse mutation causing left-right and axial patterning defects. Dev Biol. 1998 Jan 1;193(1):77-89
7J:57907 Meno C, Gritsman K, Ohishi S, Ohfuji Y, Heckscher E, Mochida K, Shimono A, Kondoh H, Talbot WS, Robertson EJ, Schier AF, Hamada H, Mouse Lefty2 and zebrafish antivin are feedback inhibitors of nodal signaling during vertebrate gastrulation. Mol Cell. 1999 Sep;4(3):287-98
1J:49052 Meno C, Shimono A, Saijoh Y, Yashiro K, Mochida K, Ohishi S , Noji S , Kondoh H , Hamada H, lefty-1 is required for left-right determination as a regulator of lefty-2 and nodal. Cell. 1998 Aug 7;94(3):287-97
2J:70483 Meno C, Takeuchi J, Sakuma R, Koshiba-Takeuchi K, Ohishi S, Saijoh Y, Miyazaki J, ten Dijke P, Ogura T, Hamada H, Diffusion of nodal signaling activity in the absence of the feedback inhibitor Lefty2. Dev Cell. 2001 Jul;1(1):127-138
2J:165252 Mesnard D, Constam DB, Imaging proprotein convertase activities and their regulation in the implanting mouse blastocyst. J Cell Biol. 2010 Oct 4;191(1):129-39
1J:176435 Mesnard D, Donnison M, Fuerer C, Pfeffer PL, Constam DB, The microenvironment patterns the pluripotent mouse epiblast through paracrine Furin and Pace4 proteolytic activities. Genes Dev. 2011 Sep 1;25(17):1871-80
4J:289378 Mesnard D, Guzman-Ayala M, Constam DB, Nodal specifies embryonic visceral endoderm and sustains pluripotent cells in the epiblast before overt axial patterning. Development. 2006 Jul;133(13):2497-505
1J:173526 Migeotte I, Grego-Bessa J, Anderson KV, Rac1 mediates morphogenetic responses to intercellular signals in the gastrulating mouse embryo. Development. 2011 Jul;138(14):3011-20
1J:166095 Migeotte I, Omelchenko T, Hall A, Anderson KV, Rac1-dependent collective cell migration is required for specification of the anterior-posterior body axis of the mouse. PLoS Biol. 2010;8(8):e1000442
4J:195695 Miles DC, Wakeling SI, Stringer JM, van den Bergen JA, Wilhelm D, Sinclair AH, Western PS, Signaling through the TGF beta-activin receptors ALK4/5/7 regulates testis formation and male germ cell development. PLoS One. 2013;8(1):e54606
3J:137629 Mine N, Anderson RM, Klingensmith J, BMP antagonism is required in both the node and lateral plate mesoderm for mammalian left-right axis establishment. Development. 2008 Jul;135(14):2425-34
1*J:236404 Minocha S, Bessonnard S, Sung TL, Moret C, Constam DB, Herr W, Epiblast-specific loss of HCF-1 leads to failure in anterior-posterior axis specification. Dev Biol. 2016 Oct 1;418(1):75-88
1J:177114 Miura S, Mishina Y, Hepatocyte growth factor-regulated tyrosine kinase substrate (Hgs) is involved in BMP signaling through phosphorylation of smads and TAK1 in early mouse embryo. Dev Dyn. 2011 Nov;240(11):2474-81
1J:313293 Mizuno K, Shiozawa K, Katoh TA, Minegishi K, Ide T, Ikawa Y, Nishimura H, Takaoka K, Itabashi T, Iwane AH, Nakai J, Shiratori H, Hamada H, Role of Ca(2+) transients at the node of the mouse embryo in breaking of left-right symmetry. Sci Adv. 2020 Jul;6(30):eaba1195
2J:214809 Moniot B, Ujjan S, Champagne J, Hirai H, Aritake K, Nagata K, Dubois E, Nidelet S, Nakamura M, Urade Y, Poulat F, Boizet-Bonhoure B, Prostaglandin D2 acts through the Dp2 receptor to influence male germ cell differentiation in the foetal mouse testis. Development. 2014 Sep;141(18):3561-71
1*J:87222 Morkel M, Huelsken J, Wakamiya M, Ding J, van de Wetering M, Clevers H, Taketo MM, Behringer RR, Shen MM, Birchmeier W, Beta-catenin regulates Cripto- and Wnt3-dependent gene expression programs in mouse axis and mesoderm formation. Development. 2003 Dec;130(25):6283-94
1J:75911 Morris SM, Tallquist MD, Rock CO, Cooper JA, Dual roles for the Dab2 adaptor protein in embryonic development and kidney transport. EMBO J. 2002 Apr 2;21(7):1555-64
2J:163858 Morsut L, Yan KP, Enzo E, Aragona M, Soligo SM, Wendling O, Mark M, Khetchoumian K, Bressan G, Chambon P, Dupont S, Losson R, Piccolo S, Negative control of Smad activity by ectodermin/Tif1gamma patterns the mammalian embryo. Development. 2010 Aug 1;137(15):2571-8
2*J:62025 Murcia NS, Richards WG, Yoder BK, Mucenski ML, Dunlap JR, Woychik RP, The Oak Ridge Polycystic Kidney (orpk) disease gene is required for left-right axis determination. Development. 2000 Jun;127(11):2347-55
2J:111702 Murray SA, Gridley T, Snail family genes are required for left-right asymmetry determination, but not neural crest formation, in mice. Proc Natl Acad Sci U S A. 2006 Jul 5;103(27):10300-4
1J:193411 Nakamura T, Saito D, Kawasumi A, Shinohara K, Asai Y, Takaoka K, Dong F, Takamatsu A, Belo JA, Mochizuki A, Hamada H, Fluid flow and interlinked feedback loops establish left-right asymmetric decay of Cerl2 mRNA. Nat Commun. 2012;3:1322
4J:104377 Nakaya MA, Biris K, Tsukiyama T, Jaime S, Rawls JA, Yamaguchi TP, Wnt3alinks left-right determination with segmentation and anteroposterior axis elongation. Development. 2005 Dec;132(24):5425-36
3J:247259 Naruse C, Shibata S, Tamura M, Kawaguchi T, Abe K, Sugihara K, Kato T, Nishiuchi T, Wakana S, Ikawa M, Asano M, New insights into the role of Jmjd3 and Utx in axial skeletal formation in mice. FASEB J. 2017 Jun;31(6):2252-2266
7J:154471 Natale DR, Hemberger M, Hughes M, Cross JC, Activin promotes differentiation of cultured mouse trophoblast stem cells towards a labyrinth cell fate. Dev Biol. 2009 Nov 1;335(1):120-31
1*J:67816 Niederreither K, Vermot J, Messaddeq N, Schuhbaur B, Chambon P, Dolle P, Embryonic retinoic acid synthesis is essential for heart morphogenesis in the mouse. Development. 2001 Apr;128(7):1019-31
2J:48467 Nomura M, Li E, Smad2 role in mesoderm formation, left-right patterning and craniofacial development [see comments]. Nature. 1998 Jun 25;393(6687):786-90
5*J:77125 Norris DP, Brennan J, Bikoff EK, Robertson EJ, The Foxh1-dependent autoregulatory enhancer controls the level of Nodal signals in the mouse embryo. Development. 2002 Jul;129(14):3455-68
3J:198687 Nowotschin S, Costello I, Piliszek A, Kwon GS, Mao CA, Klein WH, Robertson EJ, Hadjantonakis AK, The T-box transcription factor Eomesodermin is essential for AVE induction in the mouse embryo. Genes Dev. 2013 May 1;27(9):997-1002
2J:126337 Oki S, Hashimoto R, Okui Y, Shen MM, Mekada E, Otani H, Saijoh Y, Hamada H, Sulfated glycosaminoglycans are necessary for Nodal signal transmission from the node to the left lateral plate in the mouse embryo. Development. 2007 Nov;134(21):3893-904
3J:154981 Oki S, Kitajima K, Marques S, Belo JA, Yokoyama T, Hamada H, Meno C, Reversal of left-right asymmetry induced by aberrant Nodal signaling in the node of mouse embryos. Development. 2009 Dec;136(23):3917-25
2*J:108109 Oxburgh L, Chu GC, Michael SK, Robertson EJ, TGFbeta superfamily signals are required for morphogenesis of the kidney mesenchyme progenitor population. Development. 2004 Sep;131(18):4593-605
2J:185829 Park CB, DeMayo FJ, Lydon JP, Dufort D, NODAL in the uterus is necessary for proper placental development and maintenance of pregnancy. Biol Reprod. 2012 Jun;86(6):194
2*J:163834 Paudyal A, Damrau C, Patterson VL, Ermakov A, Formstone C, Lalanne Z, Wells S, Lu X, Norris DP, Dean CH, Henderson DJ, Murdoch JN, The novel mouse mutant, chuzhoi, has disruption of Ptk7 protein and exhibits defects in neural tube, heart and lung development and abnormal planar cell polarity in the ear. BMC Dev Biol. 2010;10:87
1J:283645 Peng G, Suo S, Cui G, Yu F, Wang R, Chen J, Chen S, Liu Z, Chen G, Qian Y, Tam PPL, Han JJ, Jing N, Molecular architecture of lineage allocation and tissue organization in early mouse embryo. Nature. 2019 Aug;572(7770):528-532
1*J:77401 Pennekamp P, Karcher C, Fischer A, Schweickert A, Skryabin B, Horst J, Blum M, Dworniczak B, The ion channel polycystin-2 is required for left-right axis determination in mice. Curr Biol. 2002 Jun 4;12(11):938-43
2J:88053 Perea-Gomez A, Camus A, Moreau A, Grieve K, Moneron G, Dubois A, Cibert C, Collignon J, Initiation of gastrulation in the mouse embryo is preceded by an apparent shift in the orientation of the anterior-posterior axis. Curr Biol. 2004 Feb 3;14(3):197-207
5J:286691 Perea-Gomez A, Cases O, Lelievre V, Pulina MV, Collignon J, Hadjantonakis AK, Kozyraki R, Loss of Cubilin, the intrinsic factor-vitamin B12 receptor, impairs visceral endoderm endocytosis and endodermal patterning in the mouse. Sci Rep. 2019 Jul 15;9(1):10168
1*J:67152 Perea-Gomez A, Lawson KA, Rhinn M, Zakin L, Brulet P, Mazan S, Ang SL, Otx2 is required for visceral endoderm movement and for the restriction of posterior signals in the epiblast of the mouse embryo. Development. 2001 Mar;128(5):753-65
1J:81339 Perea-Gomez A, Vella FD, Shawlot W, Oulad-Abdelghani M, Chazaud C, Meno C, Pfister V, Chen L, Robertson E, Hamada H, Behringer RR, Ang SL, Nodal antagonists in the anterior visceral endoderm prevent the formation of multiple primitive streaks. Dev Cell. 2002 Nov;3(5):745-56
6J:187710 Pereira PN, Dobreva MP, Maas E, Cornelis FM, Moya IM, Umans L, Verfaillie CM, Camus A, de Sousa Lopes SM, Huylebroeck D, Zwijsen A, Antagonism of Nodal signaling by BMP/Smad5 prevents ectopic primitive streak formation in the mouse amnion. Development. 2012 Sep;139(18):3343-54
5J:205747 Polydorou C, Georgiades P, Ets2-dependent trophoblast signalling is required for gastrulation progression after primitive streak initiation. Nat Commun. 2013;4:1658
2J:157256 Powers SE, Taniguchi K, Yen W, Melhuish TA, Shen J, Walsh CA, Sutherland AE, Wotton D, Tgif1 and Tgif2 regulate Nodal signaling and are required for gastrulation. Development. 2010 Jan;137(2):249-59
2*J:80018 Przemeck GK, Heinzmann U, Beckers J, Hrabe De Angelis M, Node and midline defects are associated with left-right development in Delta1 mutant embryos. Development. 2003 Jan;130(1):3-13
4J:173656 Pulina MV, Hou SY, Mittal A, Julich D, Whittaker CA, Holley SA, Hynes RO, Astrof S, Essential roles of fibronectin in the development of the left-right embryonic body plan. Dev Biol. 2011 Jun 15;354(2):208-20
1*J:75951 Purandare SM, Ware SM, Kwan KM, Gebbia M, Bassi MT, Deng JM, Vogel H, Behringer RR, Belmont JW, Casey B, A complex syndrome of left-right axis, central nervous system and axial skeleton defects in Zic3 mutant mice. Development. 2002 May;129(9):2293-302
1J:168317 Qin J, Lin Y, Norman RX, Ko HW, Eggenschwiler JT, Intraflagellar transport protein 122 antagonizes Sonic Hedgehog signaling and controls ciliary localization of pathway components. Proc Natl Acad Sci U S A. 2011 Jan 25;108(4):1456-61
1*J:229516 Qiu Z, Elsayed Z, Peterkin V, Alkatib S, Bennett D, Landry JW, Ino80 is essential for proximal-distal axis asymmetry in part by regulating Bmp4 expression. BMC Biol. 2016;14(1):18
1J:227336 Ramkumar N, Harvey BM, Lee JD, Alcorn HL, Silva-Gagliardi NF, McGlade CJ, Bestor TH, Wijnholds J, Haltiwanger RS, Anderson KV, Protein O-Glucosyltransferase 1 (POGLUT1) Promotes Mouse Gastrulation through Modification of the Apical Polarity Protein CRUMBS2. PLoS Genet. 2015 Oct;11(10):e1005551
2J:93573 Rana AA, Barbera JP, Rodriguez TA, Lynch D, Hirst E, Smith JC, Beddington RS, Targeted deletion of the novel cytoplasmic dynein mD2LIC disrupts the embryonic organiser, formation of the body axes and specification of ventral cell fates. Development. 2004 Oct;131(20):4999-5007
2J:60755 Rankin CT, Bunton T, Lawler AM, Lee SJ, Regulation of left-right patterning in mice by growth/differentiation factor-1. Nat Genet. 2000 Mar;24(3):262-5
3J:83387 Raya A, Kawakami Y, Rodriguez-Esteban C, Buscher D, Koth CM, Itoh T, Morita M, Raya RM, Dubova I, Bessa JG, de la Pompa JL, Belmonte JC, Notch activity induces Nodal expression and mediates the establishment of left-right asymmetry in vertebrate embryos. Genes Dev. 2003 May 15;17(10):1213-8
2J:85863 Robertson EJ, Norris DP, Brennan J, Bikoff EK, Control of early anterior-posterior patterning in the mouse embryo by TGF-beta signalling. Philos Trans R Soc Lond B Biol Sci. 2003 Aug 29;358(1436):1351-7; discussion 1357
1*J:340774 Rothe B, Ikawa Y, Zhang Z, Katoh TA, Kajikawa E, Minegishi K, Xiaorei S, Fortier S, Dal Peraro M, Hamada H, Constam DB, Bicc1 ribonucleoprotein complexes specifying organ laterality are licensed by ANKS6-induced structural remodeling of associated ANKS3. PLoS Biol. 2023 Sep;21(9):e3002302
2*J:209131 Saba R, Wu Q, Saga Y, CYP26B1 promotes male germ cell differentiation by suppressing STRA8-dependent meiotic and STRA8-independent mitotic pathways. Dev Biol. 2014 May 15;389(2):173-81
2*J:60152 Saijoh Y, Adachi H, Sakuma R, Yeo CY, Yashiro K, Watanabe M, Hashiguchi H, Mochida K, Ohishi S, Kawabata M, Miyazono K, Whitman M, Hamada H, Left-right asymmetric expression of lefty2 and nodal is induced by a signaling pathway that includes the transcription factor FAST2. Mol Cell. 2000 Jan;5(1):35-47
3J:82703 Saijoh Y, Oki S, Ohishi S, Hamada H, Left-right patterning of the mouse lateral plate requires nodal produced in the node. Dev Biol. 2003 Apr 1;256(1):160-72
1J:97079 Saijoh Y, Oki S, Tanaka C, Nakamura T, Adachi H, Yan YT, Shen MM, Hamada H, Two nodal-responsive enhancers control left-right asymmetric expression of Nodal. Dev Dyn. 2005 Apr;232(4):1031-6
1*J:118119 Sakaki-Yumoto M, Kobayashi C, Sato A, Fujimura S, Matsumoto Y, Takasato M, Kodama T, Aburatani H, Asashima M, Yoshida N, Nishinakamura R, The murine homolog of SALL4, a causative gene in Okihiro syndrome, is essential for embryonic stem cell proliferation, and cooperates with Sall1 in anorectal, heart, brain and kidney development. Development. 2006 Aug;133(15):3005-13
1J:278278 Sasaki K, Shiba K, Nakamura A, Kawano N, Satouh Y, Yamaguchi H, Morikawa M, Shibata D, Yanase R, Jokura K, Nomura M, Miyado M, Takada S, Ueno H, Nonaka S, Baba T, Ikawa M, Kikkawa M, Miyado K, Inaba K, Calaxin is required for cilia-driven determination of vertebrate laterality. Commun Biol. 2019;2:226
3J:185535 Saund RS, Kanai-Azuma M, Kanai Y, Kim I, Lucero MT, Saijoh Y, Gut endoderm is involved in the transfer of left-right asymmetry from the node to the lateral plate mesoderm in the mouse embryo. Development. 2012 Jul;139(13):2426-35
1J:230819 Schuster-Gossler K, Cordes R, Muller J, Geffers I, Delany-Heiken P, Taft M, Preller M, Gossler A, Context-Dependent Sensitivity to Mutations Disrupting the Structural Integrity of Individual EGF Repeats in the Mouse Notch Ligand DLL1. Genetics. 2016 Mar;202(3):1119-33
2J:145608 Schuster-Gossler K, Harris B, Johnson KR, Serth J, Gossler A, Notch signalling in the paraxial mesoderm is most sensitive to reduced Pofut1 levels during early mouse development. BMC Dev Biol. 2009;9:6
1J:165572 Sebastiano V, Dalvai M, Gentile L, Schubart K, Sutter J, Wu GM, Tapia N, Esch D, Ju JY, Hubner K, Bravo MJ, Scholer HR, Cavaleri F, Matthias P, Oct1 regulates trophoblast development during early mouse embryogenesis. Development. 2010 Nov;137(21):3551-60
1J:326954 Seong J, Frias-Aldeguer J, Holzmann V, Kagawa H, Sestini G, Heidari Khoei H, Scholte Op Reimer Y, Kip M, Pradhan SJ, Verwegen L, Vivie J, Li L, Alemany A, Korving J, Darmis F, van Oudenaarden A, Ten Berge D, Geijsen N, Rivron NC, Epiblast inducers capture mouse trophectoderm stem cells in vitro and pattern blastoids for implantation in utero. Cell Stem Cell. 2022 Jul 7;29(7):1102-1118.e8
1*J:24115 Shawlot W, Behringer RR, Requirement for Lim1 in head-organizer function [see comments]. Nature. 1995 Mar 30;374(6521):425-30
2J:109483 Shiratori H, Hamada H, The left-right axis in the mouse: from origin to morphology. Development. 2006 Jun;133(11):2095-104
1*J:286656 Shylo NA, Emmanouil E, Ramrattan D, Weatherbee SD, Loss of ciliary transition zone protein TMEM107 leads to heterotaxy in mice. Dev Biol. 2020 Apr 15;460(2):187-199
2J:162640 Song H, Hu J, Chen W, Elliott G, Andre P, Gao B, Yang Y, Planar cell polarity breaks bilateral symmetry by controlling ciliary positioning. Nature. 2010 Jul 15;466(7304):378-82
1*J:57262 Song J, Oh SP, Schrewe H, Nomura M, Lei H, Okano M, Gridley T, Li E, The type II activin receptors are essential for egg cylinder growth, gastrulation, and rostral head development in mice. Dev Biol. 1999 Sep 1;213(1):157-69
4J:239945 Souilhol C, Perea-Gomez A, Camus A, Beck-Cormier S, Vandormael-Pournin S, Escande M, Collignon J, Cohen-Tannoudji M, NOTCH activation interferes with cell fate specification in the gastrulating mouse embryo. Development. 2015 Nov 01;142(21):3649-60
5*J:320172 Souquet B, Tourpin S, Messiaen S, Moison D, Habert R, Livera G, Nodal signaling regulates the entry into meiosis in fetal germ cells. Endocrinology. 2012 May;153(5):2466-73
9*J:189072 Spiller CM, Feng CW, Jackson A, Gillis AJ, Rolland AD, Looijenga LH, Koopman P, Bowles J, Endogenous Nodal signaling regulates germ cell potency during mammalian testis development. Development. 2012 Nov;139(22):4123-32
2J:163670 Spruce T, Pernaute B, Di-Gregorio A, Cobb BS, Merkenschlager M, Manzanares M, Rodriguez TA, An early developmental role for miRNAs in the maintenance of extraembryonic stem cells in the mouse embryo. Dev Cell. 2010 Aug 17;19(2):207-19
2J:171680 Stuckey DW, Di Gregorio A, Clements M, Rodriguez TA, Correct patterning of the primitive streak requires the anterior visceral endoderm. PLoS One. 2011;6(3):e17620
1J:144999 Su H, Trombly MI, Chen J, Wang X, Essential and overlapping functions for mammalian Argonautes in microRNA silencing. Genes Dev. 2009 Feb 1;23(3):304-17
2J:245906 Sugrue KF, Zohn IE, Mechanism for generation of left isomerism in Ccdc40 mutant embryos. PLoS One. 2017;12(2):e0171180
1*J:252050 Sung YH, Baek IJ, Kim YH, Gho YS, Oh SP, Lee YJ, Lee HW, PIERCE1 is critical for specification of left-right asymmetry in mice. Sci Rep. 2016 Jun 16;6:27932
3*J:107214 Takaoka K, Yamamoto M, Shiratori H, Meno C, Rossant J, Saijoh Y, Hamada H, The mouse embryo autonomously acquires anterior-posterior polarity at implantation. Dev Cell. 2006 Apr;10(4):451-9
2J:248235 Takeuchi JK, Lickert H, Bisgrove BW, Sun X, Yamamoto M, Chawengsaksophak K, Hamada H, Yost HJ, Rossant J, Bruneau BG, Baf60c is a nuclear Notch signaling component required for the establishment of left-right asymmetry. Proc Natl Acad Sci U S A. 2007 Jan 16;104(3):846-51
2J:128601 Tanaka C, Sakuma R, Nakamura T, Hamada H, Saijoh Y, Long-range action of Nodal requires interaction with GDF1. Genes Dev. 2007 Dec 15;21(24):3272-82
1J:339246 Tanaka Y, Morozumi A, Hirokawa N, Nodal flow transfers polycystin to determine mouse left-right asymmetry. Dev Cell. 2023 Aug 21;58(16):1447-1461.e6
2*J:174767 Tang F, Barbacioru C, Nordman E, Bao S, Lee C, Wang X, Tuch BB, Heard E, Lao K, Surani MA, Deterministic and stochastic allele specific gene expression in single mouse blastomeres. PLoS One. 2011;6(6):e21208
5*J:215487 Thompson CL, Ng L, Menon V, Martinez S, Lee CK, Glattfelder K, Sunkin SM, Henry A, Lau C, Dang C, Garcia-Lopez R, Martinez-Ferre A, Pombero A, Rubenstein JL, Wakeman WB, Hohmann J, Dee N, Sodt AJ, Young R, Smith K, Nguyen TN, Kidney J, Kuan L, Jeromin A,Kaykas A, Miller J, Page D, Orta G, Bernard A, Riley Z, Smith S, Wohnoutka P, Hawrylycz MJ, Puelles L, Jones AR, A high-resolution spatiotemporal atlas of gene expression of the developing mouse brain. Neuron. 2014 Jul 16;83(2):309-23
3J:51542 Tomihara-Newberger C, Haub O, Lee HG, Soares V, Manova K, Lacy E, The amn gene product is required in extraembryonic tissues for the generation of middle primitive streak derivatives. Dev Biol. 1998 Dec 1;204(1):34-54
2*J:166847 Tonissoo T, Lulla S, Meier R, Saare M, Ruisu K, Pooga M, Karis A, Nucleotide exchange factor RIC-8 is indispensable in mammalian early development. Dev Dyn. 2010 Dec;239(12):3404-15
3*J:186556 Trask MC, Tremblay KD, Mager J, Yin-Yang1 is required for epithelial-to-mesenchymal transition and regulation of Nodal signaling during mammalian gastrulation. Dev Biol. 2012 Aug 15;368(2):273-82
4J:155112 Tsiairis CD, McMahon AP, An Hh-dependent pathway in lateral plate mesoderm enables the generation of left/right asymmetry. Curr Biol. 2009 Dec 1;19(22):1912-7
2*J:57950 Tsukui T, Capdevila J, Tamura K, Ruiz-Lozano P, Rodriguez-Esteban C, Yonei-Tamura S, Magallon J, Chandraratna RA, Chien K, Blumberg B, Evans RM, Belmonte JC, Multiple left-right asymmetry defects in Shh(-/-) mutant mice unveil a convergence of the shh and retinoic acid pathways in the control of Lefty-1. Proc Natl Acad Sci U S A. 1999 Sep 28;96(20):11376-81
1J:150707 Uehara M, Yashiro K, Takaoka K, Yamamoto M, Hamada H, Removal of maternal retinoic acid by embryonic CYP26 is required for correct Nodal expression during early embryonic patterning. Genes Dev. 2009 Jul 15;23(14):1689-98
3*J:138922 Uez N, Lickert H, Kohlhase J, de Angelis MH, Kuhn R, Wurst W, Floss T, Sall4 isoforms act during proximal-distal and anterior-posterior axis formation in the mouse embryo. Genesis. 2008 Sep 9;46(9):463-477
1J:217603 Vanhoutteghem A, Messiaen S, Herve F, Delhomme B, Moison D, Petit JM, Rouiller-Fabre V, Livera G, Djian P, The zinc-finger protein basonuclin 2 is required for proper mitotic arrest, prevention of premature meiotic initiation and meiotic progression in mouse male germ cells. Development. 2014 Nov;141(22):4298-310
8*J:47841 Varlet I, Collignon J, Norris DP, Robertson EJ, Nodal signaling and axis formation in the mouse. Cold Spring Harb Symp Quant Biol. 1997;62:105-13
5*J:39203 Varlet I, Collignon J, Robertson EJ, nodal expression in the primitive endoderm is required for specification of the anterior axis during mouse gastrulation. Development. 1997 Mar;124(5):1033-44
1J:97659 Vermot J, Llamas JG, Fraulob V, Niederreither K, Chambon P, Dolle P, Retinoic acid controls the bilateral symmetry of somite formation in the mouse embryo. Science. 2005 Apr 22;308(5721):563-6
3J:84300 Vincent SD, Dunn NR, Hayashi S, Norris DP, Robertson EJ, Cell fate decisions within the mouse organizer are governed by graded Nodal signals. Genes Dev. 2003 Jul 1;17(13):1646-62
3*J:94418 Vincent SD, Norris DP, Le Good JA, Constam DB, Robertson EJ, Asymmetric Nodal expression in the mouse is governed by the combinatorial activities of two distinct regulatory elements. Mech Dev. 2004 Nov;121(11):1403-15
4J:184721 Viotti M, Niu L, Shi SH, Hadjantonakis AK, Role of the gut endoderm in relaying left-right patterning in mice. PLoS Biol. 2012 Mar;10(3):e1001276
3J:340402 Wang R, Yang X, Chen J, Zhang L, Griffiths JA, Cui G, Chen Y, Qian Y, Peng G, Li J, Wang L, Marioni JC, Tam PPL, Jing N, Time space and single-cell resolved tissue lineage trajectories and laterality of body plan at gastrulation. Nat Commun. 2023 Sep 14;14(1):5675
1*J:58413 Wasiak S, Lohnes D, Retinoic acid affects left-right patterning. Dev Biol. 1999 Nov 15;215(2):332-42
1J:354668 Watanabe K, Kamiya D, Nishiyama A, Katayama T, Nozaki S, Kawasaki H, Watanabe Y, Mizuseki K, Sasai Y, Directed differentiation of telencephalic precursors from embryonic stem cells. Nat Neurosci. 2005 Mar;8(3):288-96
2*J:64329 Welsh IC, O'Brien TP, Loss of late primitive streak mesoderm and interruption of left-right morphogenesis in the Ednrb(s-1Acrg) mutant mouse. Dev Biol. 2000 Sep 1;225(1):151-68
1*J:97216 Weninger WJ, Floro KL, Bennett MB, Withington SL, Preis JI, Barbera JP, Mohun TJ, Dunwoodie SL, Cited2 is required both for heart morphogenesis and establishment of the left-right axis in mouse development. Development. 2005 Mar;132(6):1337-48
1J:103454 Woda JM, Calzonetti T, Hilditch-Maguire P, Duyao MP, Conlon RA, MacDonald ME, Inactivation of the Huntington's disease gene (Hdh) impairs anterior streak formation and early patterning of the mouse embryo. BMC Dev Biol. 2005 Aug 18;5:17
4J:191052 Wu Q, Kanata K, Saba R, Deng CX, Hamada H, Saga Y, Nodal/activin signaling promotes male germ cell fate and suppresses female programming in somatic cells. Development. 2013 Jan;140(2):291-300
2*J:86912 Xiao C, Shim JH, Kluppel M, Zhang SS, Dong C, Flavell RA, Fu XY, Wrana JL, Hogan BL, Ghosh S, Ecsit is required for Bmp signaling and mesoderm formation during mouse embryogenesis. Genes Dev. 2003 Dec 1;17(23):2933-49
1J:146156 Yamamoto M, Beppu H, Takaoka K, Meno C, Li E, Miyazono K, Hamada H, Antagonism between Smad1 and Smad2 signaling determines the site of distal visceral endoderm formation in the mouse embryo. J Cell Biol. 2009 Jan 26;184(2):323-34
1J:69593 Yamamoto M, Meno C, Sakai Y, Shiratori H, Mochida K, Ikawa Y, Saijoh Y, Hamada H, The transcription factor FoxH1 (FAST) mediates Nodal signaling during anterior-posterior patterning and node formation in the mouse. Genes Dev. 2001 May 15;15(10):1242-56
1*J:82311 Yamamoto M, Mine N, Mochida K, Sakai Y, Saijoh Y, Meno C, Hamada H, Nodal signaling induces the midline barrier by activating Nodal expression in the lateral plate. Development. 2003 May;130(9):1795-804
2J:90040 Yamamoto M, Saijoh Y, Perea-Gomez A, Shawlot W, Behringer RR, Ang SL, Hamada H, Meno C, Nodal antagonists regulate formation of the anteroposterior axis of the mouse embryo. Nature. 2004 Mar 25;428(6981):387-92
1J:130469 Yamanaka Y, Tamplin OJ, Beckers A, Gossler A, Rossant J, Live imaging and genetic analysis of mouse notochord formation reveals regional morphogenetic mechanisms. Dev Cell. 2007 Dec;13(6):884-96
1*J:145581 Yamazaki S, Iwama A, Takayanagi S, Eto K, Ema H, Nakauchi H, TGF-beta as a candidate bone marrow niche signal to induce hematopoietic stem cell hibernation. Blood. 2009 Feb 5;113(6):1250-6
2J:58104 Yan YT, Gritsman K, Ding J, Burdine RD, Corrales JD, Price SM, Talbot WS, Schier AF, Shen MM, Conserved requirement for EGF-CFC genes in vertebrate left-right axis formation. Genes Dev. 1999 Oct 1;13(19):2527-37
1J:161524 Yang YP, Anderson RM, Klingensmith J, BMP antagonism protects Nodal signaling in the gastrula to promote the tissue interactions underlying mammalian forebrain and craniofacial patterning. Hum Mol Genet. 2010 Aug 1;19(15):3030-42
1J:86402 Yao Y, Li W, Wu J, Germann UA, Su MS, Kuida K, Boucher DM, Extracellular signal-regulated kinase 2 is necessary for mesoderm differentiation. Proc Natl Acad Sci U S A. 2003 Oct 28;100(22):12759-64
1*J:187958 Yoshiba S, Shiratori H, Kuo IY, Kawasumi A, Shinohara K, Nonaka S, Asai Y, Sasaki G, Belo JA, Sasaki H, Nakai J, Dworniczak B, Ehrlich BE, Pennekamp P, Hamada H, Cilia at the node of mouse embryos sense fluid flow for left-right determination via Pkd2. Science. 2012 Oct 12;338(6104):226-31
1*J:113766 Zhang M, Bolfing MF, Knowles HJ, Karnes H, Hackett BP, Foxj1 regulates asymmetric gene expression during left-right axis patterning in mice. Biochem Biophys Res Commun. 2004 Nov 26;324(4):1413-20
1J:175111 Zhang XM, Ramalho-Santos M, McMahon AP, Smoothened mutants reveal redundant roles for Shh and Ihh signaling including regulation of L/R symmetry by the mouse node. Cell. 2001 Jul 27;106(2):781-92
1*J:240405 Zhao L, Arsenault M, Ng ET, Longmuss E, Chau TC, Hartwig S, Koopman P, SOX4 regulates gonad morphogenesis and promotes male germ cell differentiation in mice. Dev Biol. 2017 Mar 01;423(1):46-56
3J:218057 Zheng HJ, Tsukahara M, Liu E, Ye L, Xiong H, Noguchi S, Suzuki K, Ji ZS, The Novel Helicase helG (DHX30) Is Expressed During Gastrulation in Mice and Has a Structure Similar to a Human DExH Box Helicase. Stem Cells Dev. 2015 Feb 1;24(3):372-83
8*J:3969 Zhou X, Sasaki H, Lowe L, Hogan BL, Kuehn MR, Nodal is a novel TGF-beta-like gene expressed in the mouse node during gastrulation. Nature. 1993 Feb 11;361(6412):543-7

Contributing Projects:
Mouse Genome Database (MGD), Gene Expression Database (GXD), Mouse Models of Human Cancer database (MMHCdb) (formerly Mouse Tumor Biology (MTB)), Gene Ontology (GO)
Citing These Resources
Funding Information
Warranty Disclaimer, Privacy Notice, Licensing, & Copyright
Send questions and comments to User Support.
last database update
12/10/2024
MGI 6.24
The Jackson Laboratory