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Gene Expression Literature Summary
Symbol
Name
ID
Smo
smoothened, frizzled class receptor
MGI:108075

123 matching records from 123 references.

Summary by Age and Assay: Numbers in the table indicate the number of results matching the search criteria.
Age E1.5 E2 E7 E7.5 E8 E8.5 E9 E9.5 E10 E10.5 E11 E11.5 E12.5 E13 E13.5 E14 E14.5 E15 E15.5 E16 E16.5 E17 E17.5 E18 E18.5 E P
Immunohistochemistry (section) 1 3 5 1 6 11 1 1 5 2 3 1 1 2 1 2 6
In situ RNA (section) 2 1 3 1 1 6 8 1 4 9 1 6 1 4 4 3 1 6
Immunohistochemistry (whole mount) 1 1 1 1
In situ RNA (whole mount) 2 1 1 3 1 2 2 1 1 1 1
Northern blot 1 1 1 1 1 2
Western blot 1 1 2 1 1 1 1 3
RT-PCR 1 1 1 6 3 4 8 7 1 4 7 2 4 1 8 3 12
cDNA clones 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
Smo  smoothened, frizzled class receptor   (Synonyms: E130215L21Rik)
Results  Reference
2*J:54678 Akiyama H, Shigeno C, Iyama K, Ito H, Hiraki Y, Konishi J, Nakamura T, Indian hedgehog in the late-phase differentiation in mouse chondrogenic EC cells, ATDC5: upregulation of type X collagen and osteoprotegerin ligand mRNAs. Biochem Biophys Res Commun. 1999 Apr 21;257(3):814-20
1J:178985 Alvarez JI, Dodelet-Devillers A, Kebir H, Ifergan I, Fabre PJ, Terouz S, Sabbagh M, Wosik K, Bourbonniere L, Bernard M, van Horssen J, de Vries HE, Charron F, Prat A, The Hedgehog pathway promotes blood-brain barrier integrity and CNS immune quiescence. Science. 2011 Dec 23;334(6063):1727-31
2J:158689 Bouldin CM, Gritli-Linde A, Ahn S, Harfe BD, Shh pathway activation is present and required within the vertebrate limb bud apical ectodermal ridge for normal autopod patterning. Proc Natl Acad Sci U S A. 2010 Mar 23;107(12):5489-94
3J:139130 Breunig JJ, Sarkisian MR, Arellano JI, Morozov YM, Ayoub AE, Sojitra S, Wang B, Flavell RA, Rakic P, Town T, Primary cilia regulate hippocampal neurogenesis by mediating sonic hedgehog signaling. Proc Natl Acad Sci U S A. 2008 Sep 2;105(35):13127-32
1J:336100 Brutsch SM, Madzharova E, Pantasis S, Wustemann T, Gurri S, Steenbock H, Gazdhar A, Kuhn G, Angel P, Bellusci S, Brinckmann J, Auf dem Keller U, Werner S, Bordoli MR, Mesenchyme-derived vertebrate lonesome kinase controls lung organogenesis by altering the matrisome. Cell Mol Life Sci. 2023 Mar 15;80(4):89
1J:266003 Caballero IM, Manuel MN, Molinek M, Quintana-Urzainqui I, Mi D, Shimogori T, Price DJ, Cell-autonomous repression of Shh by transcription factor Pax6 regulates diencephalic patterning by controlling the central diencephalic organizer. Cell Rep. 2014 Sep 11;8(5):1405-18
1J:172032 Cain JE, Islam E, Haxho F, Blake J, Rosenblum ND, GLI3 repressor controls functional development of the mouse ureter. J Clin Invest. 2011 Mar 1;121(3):1199-206
1J:154102 Cain JE, Islam E, Haxho F, Chen L, Bridgewater D, Nieuwenhuis E, Hui CC, Rosenblum ND, GLI3 repressor controls nephron number via regulation of Wnt11 and Ret in ureteric tip cells. PLoS One. 2009;4(10):e7313
1J:211665 Chaya T, Omori Y, Kuwahara R, Furukawa T, ICK is essential for cell type-specific ciliogenesis and the regulation of ciliary transport. EMBO J. 2014 Jun 2;33(11):1227-42
4J:223109 Choi JJ, Ting CT, Trogrlic L, Milevski SV, Familari M, Martinez G, de Iongh RU, A role for smoothened during murine lens and cornea development. PLoS One. 2014;9(9):e108037
1J:239874 Christ A, Christa A, Klippert J, Eule JC, Bachmann S, Wallace VA, Hammes A, Willnow TE, LRP2 Acts as SHH Clearance Receptor to Protect the Retinal Margin from Mitogenic Stimuli. Dev Cell. 2015 Oct 12;35(1):36-48
1J:181474 Christ A, Christa A, Kur E, Lioubinski O, Bachmann S, Willnow TE, Hammes A, LRP2 Is an Auxiliary SHH Receptor Required to Condition the Forebrain Ventral Midline for Inductive Signals. Dev Cell. 2012 Feb 14;22(2):268-78
1J:291480 Constable S, Long AB, Floyd KA, Schurmans S, Caspary T, The ciliary phosphatidylinositol phosphatase Inpp5e plays positive and negative regulatory roles in Shh signaling. Development. 2020 Feb 3;147(3):dev183301
1J:284605 Coquenlorge S, Yin WC, Yung T, Pan J, Zhang X, Mo R, Belik J, Hui CC, Kim TH, GLI2 Modulated by SUFU and SPOP Induces Intestinal Stem Cell Niche Signals in Development and Tumorigenesis. Cell Rep. 2019 Jun 4;27(10):3006-3018.e4
1J:102118 Corbit KC, Aanstad P, Singla V, Norman AR, Stainier DY, Reiter JF, Vertebrate Smoothened functions at the primary cilium. Nature. 2005 Oct 13;437(7061):1018-21
1J:195725 D'Angelo A, De Angelis A, Avallone B, Piscopo I, Tammaro R, Studer M, Franco B, Ofd1 controls dorso-ventral patterning and axoneme elongation during embryonic brain development. PLoS One. 2012;7(12):e52937
2J:177484 Daane JM, Downs KM, Hedgehog signaling in the posterior region of the mouse gastrula suggests manifold roles in the fetal-umbilical connection and posterior morphogenesis. Dev Dyn. 2011 Sep;240(9):2175-93
1J:212081 Dai ZM, Sun S, Wang C, Huang H, Hu X, Zhang Z, Lu QR, Qiu M, Stage-specific regulation of oligodendrocyte development by Wnt/beta-catenin signaling. J Neurosci. 2014 Jun 18;34(25):8467-73
2J:189258 Dey J, Ditzler S, Knoblaugh SE, Hatton BA, Schelter JM, Cleary MA, Mecham B, Rorke-Adams LB, Olson JM, A distinct Smoothened mutation causes severe cerebellar developmental defects and medulloblastoma in a novel transgenic mouse model. Mol Cell Biol. 2012 Oct;32(20):4104-15
2J:313289 Dias JM, Alekseenko Z, Jeggari A, Boareto M, Vollmer J, Kozhevnikova M, Wang H, Matise MP, Alexeyenko A, Iber D, Ericson J, A Shh/Gli-driven three-node timer motif controls temporal identity and fate of neural stem cells. Sci Adv. 2020 Sep;6(38)
22*J:202662 Du J, Fan Z, Ma X, Wu Y, Liu S, Gao Y, Shen Y, Fan M, Wang S, Expression of smoothened in mouse embryonic maxillofacial development. Biotech Histochem. 2012 Apr;87(3):187-94
1J:200106 Duncan JS, Fritzsch B, Continued expression of GATA3 is necessary for cochlear neurosensory development. PLoS One. 2013;8(4):e62046
1J:68722 Dyer MA, Farrington SM, Mohn D, Munday JR, Baron MH, Indian hedgehog activates hematopoiesis and vasculogenesis and can respecify prospective neurectodermal cell fate in the mouse embryo. Development. 2001 May;128(10):1717-30
1*J:215449 Eguether T, San Agustin JT, Keady BT, Jonassen JA, Liang Y, Francis R, Tobita K, Johnson CA, Abdelhamed ZA, Lo CW, Pazour GJ, IFT27 links the BBSome to IFT for maintenance of the ciliary signaling compartment. Dev Cell. 2014;31:279-290
1*J:259785 Evangelista M, Lim TY, Lee J, Parker L, Ashique A, Peterson AS, Ye W, Davis DP, de Sauvage FJ, Kinome siRNA screen identifies regulators of ciliogenesis and hedgehog signal transduction. Sci Signal. 2008 Sep 30;1(39):ra7
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:290862 Fulmer D, Toomer KA, Glover J, Guo L, Moore K, Moore R, Stairley R, Gensemer C, Abrol S, Rumph MK, Emetu F, Lipschutz JH, McDowell C, Bian J, Wang C, Beck T, Wessels A, Renault MA, Norris RA, Desert hedgehog-primary cilia cross talk shapes mitral valve tissue by organizing smooth muscle actin. Dev Biol. 2020 Jul 1;463(1):26-38
1*J:262122 Gigante ED, Long AB, Ben-Ami J, Caspary T, Hypomorphic Smo mutant with inefficient ciliary enrichment disrupts the highest level of vertebrate Hedgehog response. Dev Biol. 2018 May 15;437(2):152-162
1*J:287091 Gigante ED, Taylor MR, Ivanova AA, Kahn RA, Caspary T, ARL13B regulates Sonic hedgehog signaling from outside primary cilia. Elife. 2020 Mar 4;9:e50434
2J:117334 Gritli-Linde A, Hallberg K, Harfe BD, Reyahi A, Kannius-Janson M, Nilsson J, Cobourne MT, Sharpe PT, McMahon AP, Linde A, Abnormal hair development and apparent follicular transformation to mammary gland in the absence of hedgehog signaling. Dev Cell. 2007 Jan;12(1):99-112
3*J:171409 GUDMAP Consortium, GUDMAP: the GenitoUrinary Development Molecular Anatomy Project. www.gudmap.org. 2004;
2*J:136735 Ha HY, Kim JB, Cho IH, Joo HJ, Kim KS, Lee KW, Sunwoo H, Im JY, Lee JK, Hong JH, Han PL, Morphogenetic lung defects of JSAP1-deficient embryos proceeds via the disruptions of the normal expressions of cytoskeletal and chaperone proteins. Proteomics. 2008 Mar;8(5):1071-80
2J:153607 Hammond R, Blaess S, Abeliovich A, Sonic hedgehog is a chemoattractant for midbrain dopaminergic axons. PLoS One. 2009;4(9):e7007
5J:60109 Hardcastle Z, Hui CC, Sharpe PT, The Shh signalling pathway in early tooth development. Cell Mol Biol (Noisy-Le-Grand). 1999 Jul;45(5):567-78
3*J:49252 Hardcastle Z, Mo R, Hui CC, Sharpe PT, The Shh signalling pathway in tooth development: defects in Gli2 and Gli3 mutants. Development. 1998 Aug;125(15):2803-11
1*J:177843 Hillman RT, Feng BY, Ni J, Woo WM, Milenkovic L, Hayden Gephart MG, Teruel MN, Oro AE, Chen JK, Scott MP, Neuropilins are positive regulators of Hedgehog signal transduction. Genes Dev. 2011 Nov 15;25(22):2333-46
2J:331486 Hirose T, Sugitani Y, Kurihara H, Kazama H, Kusaka C, Noda T, Takahashi H, Ohno S, PAR3 restricts the expansion of neural precursor cells by regulating hedgehog signaling. Development. 2022 Nov 1;149(21):dev199931
1J:248771 Hoelzl MA, Heby-Henricson K, Gerling M, Dias JM, Kuiper RV, Trunkle C, Bergstrom A, Ericson J, Toftgard R, Teglund S, Differential requirement of SUFU in tissue development discovered in a hypomorphic mouse model. Dev Biol. 2017 Sep 1;429(1):132-146
1J:233841 Inoue M, Shima Y, Miyabayashi K, Tokunaga K, Sato T, Baba T, Ohkawa Y, Akiyama H, Suyama M, Morohashi K, Isolation and Characterization of Fetal Leydig Progenitor Cells of Male Mice. Endocrinology. 2016 Mar;157(3):1222-33
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
1J:89200 Jaskoll T, Leo T, Witcher D, Ormestad M, Astorga J, Bringas P Jr, Carlsson P, Melnick M, Sonic hedgehog signaling plays an essential role during embryonic salivary gland epithelial branching morphogenesis. Dev Dyn. 2004 Apr;229(4):722-32
1*J:225747 Jayewickreme CD, Shivdasani RA, Control of stomach smooth muscle development and intestinal rotation by transcription factor BARX1. Dev Biol. 2015 Sep 1;405(1):21-32
2J:255472 Jimenez-Caliani AJ, Pillich R, Yang W, Diaferia GR, Meda P, Crisa L, Cirulli V, alphaE-Catenin Is a Positive Regulator of Pancreatic Islet Cell Lineage Differentiation. Cell Rep. 2017 Aug 8;20(6):1295-1306
1J:160004 Jokela H, Rantakari P, Lamminen T, Strauss L, Ola R, Mutka AL, Gylling H, Miettinen T, Pakarinen P, Sainio K, Poutanen M, Hydroxysteroid (17beta) dehydrogenase 7 activity is essential for fetal de novo cholesterol synthesis and for neuroectodermal survival and cardiovascular differentiation in early mouse embryos. Endocrinology. 2010 Apr;151(4):1884-92
1J:315774 Junker JP, Peterson KA, Nishi Y, Mao J, McMahon AP, van Oudenaarden A, A predictive model of bifunctional transcription factor signaling during embryonic tissue patterning. Dev Cell. 2014 Nov 24;31(4):448-60
2*J:200761 Kasberg AD, Brunskill EW, Steven Potter S, SP8 regulates signaling centers during craniofacial development. Dev Biol. 2013 Sep 15;381(2):312-23
2J:184749 Keady BT, Samtani R, Tobita K, Tsuchya M, San Agustin JT, Follit JA, Jonassen JA, Subramanian R, Lo CW, Pazour GJ, IFT25 Links the Signal-Dependent Movement of Hedgehog Components to Intraflagellar Transport. Dev Cell. 2012 May 15;22(5):940-51
1J:138572 Komada M, Saitsu H, Kinboshi M, Miura T, Shiota K, Ishibashi M, Hedgehog signaling is involved in development of the neocortex. Development. 2008 Aug;135(16):2717-27
2J:221657 Kong JH, Yang L, Dessaud E, Chuang K, Moore DM, Rohatgi R, Briscoe J, Novitch BG, Notch activity modulates the responsiveness of neural progenitors to sonic hedgehog signaling. Dev Cell. 2015 May 26;33(4):373-87
3*J:311933 Kong JH, Young CB, Pusapati GV, Espinoza FH, Patel CB, Beckert F, Ho S, Patel BB, Gabriel GC, Aravind L, Bazan JF, Gunn TM, Lo CW, Rohatgi R, Gene-teratogen interactions influence the penetrance of birth defects by altering Hedgehog signaling strength. Development. 2021 Oct 1;148(19):dev199867
1J:299749 Kong JH, Young CB, Pusapati GV, Patel CB, Ho S, Krishnan A, Lin JI, Devine W, Moreau de Bellaing A, Athni TS, Aravind L, Gunn TM, Lo CW, Rohatgi R, A Membrane-Tethered Ubiquitination Pathway Regulates Hedgehog Signaling and Heart Development. Dev Cell. 2020 Nov 23;55(4):432-449.e12
2J:133905 Koyama E, Ochiai T, Rountree RB, Kingsley DM, Enomoto-Iwamoto M, Iwamoto M, Pacifici M, Synovial joint formation during mouse limb skeletogenesis: roles of Indian hedgehog signaling. Ann N Y Acad Sci. 2007 Nov;1116:100-12
2J:191495 Kucerova R, Dora N, Mort RL, Wallace K, Leiper LJ, Lowes C, Neves C, Walczysko P, Bruce F, Fowler PA, Rajnicek AM, McCaig CD, Zhao M, West JD, Collinson JM, Interaction between hedgehog signalling and PAX6 dosage mediates maintenance and regeneration of the corneal epithelium. Mol Vis. 2012;18:139-50
1J:220996 La Sala G, Marazziti D, Di Pietro C, Golini E, Matteoni R, Tocchini-Valentini GP, Modulation of Dhh signaling and altered Sertoli cell function in mice lacking the GPR37-prosaposin receptor. FASEB J. 2015 May;29(5):2059-69
1J:210754 Lan Y, He W, Li Z, Wang Y, Wang J, Gao J, Wang W, Cheng T, Liu B, Yang X, Endothelial Smad4 restrains the transition to hematopoietic progenitors via suppression of ERK activation. Blood. 2014 Apr 3;123(14):2161-71
2J:164411 Lau J, Hebrok M, Hedgehog signaling in pancreas epithelium regulates embryonic organ formation and adult beta-cell function. Diabetes. 2010 May;59(5):1211-21
2*J:226028 Lewandowski JP, Du F, Zhang S, Powell MB, Falkenstein KN, Ji H, Vokes SA, Spatiotemporal regulation of GLI target genes in the mammalian limb bud. Dev Biol. 2015 Oct 1;406(1):92-103
1J:332136 Li X, Gordon PJ, Gaynes JA, Fuller AW, Ringuette R, Santiago CP, Wallace V, Blackshaw S, Li P, Levine EM, Lhx2 is a progenitor-intrinsic modulator of Sonic Hedgehog signaling during early retinal neurogenesis. Elife. 2022 Dec 2;11
1J:190509 Li Y, Hibbs MA, Gard AL, Shylo NA, Yun K, Genome-wide analysis of N1ICD/RBPJ targets in vivo reveals direct transcriptional regulation of Wnt, SHH, and hippo pathway effectors by Notch1. Stem Cells. 2012 Apr;30(4):741-52
2J:106707 Lien WH, Klezovitch O, Fernandez TE, Delrow J, Vasioukhin V, alphaE-catenin controls cerebral cortical size by regulating the hedgehog signaling pathway. Science. 2006 Mar 17;311(5767):1609-12
3*J:162220 Magdaleno S, Jensen P, Brumwell CL, Seal A, Lehman K, Asbury A, Cheung T, Cornelius T, Batten DM, Eden C, Norland SM, Rice DS, Dosooye N, Shakya S, Mehta P, Curran T, BGEM: an in situ hybridization database of gene expression in the embryonic and adult mouse nervous system. PLoS Biol. 2006 Apr;4(4):e86
1J:228335 Makino S, Zhulyn O, Mo R, Puviindran V, Zhang X, Murata T, Fukumura R, Ishitsuka Y, Kotaki H, Matsumaru D, Ishii S, Hui CC, Gondo Y, T396I mutation of mouse Sufu reduces the stability and activity of Gli3 repressor. PLoS One. 2015;10(3):e0119455
1J:156171 Manuel M, Martynoga B, Yu T, West JD, Mason JO, Price DJ, The transcription factor Foxg1 regulates the competence of telencephalic cells to adopt subpallial fates in mice. Development. 2010 Feb;137(3):487-97
1J:315671 Mayerl S, Chen J, Salveridou E, Boelen A, Darras VM, Heuer H, Thyroid Hormone Transporter Deficiency in Mice Impacts Multiple Stages of GABAergic Interneuron Development. Cereb Cortex. 2021 Jul 31;
2J:192712 Meadows SM, Fletcher PJ, Moran C, Xu K, Neufeld G, Chauvet S, Mann F, Krieg PA, Cleaver O, Integration of repulsive guidance cues generates avascular zones that shape mammalian blood vessels. Circ Res. 2012 Jan 6;110(1):34-46
1*J:257654 Memic F, Knoflach V, Morarach K, Sadler R, Laranjeira C, Hjerling-Leffler J, Sundstrom E, Pachnis V, Marklund U, Transcription and Signaling Regulators in Developing Neuronal Subtypes of Mouse and Human Enteric Nervous System. Gastroenterology. 2018 Feb;154(3):624-636
1J:88344 Miao D, Liu H, Plut P, Niu M, Huo R, Goltzman D, Henderson JE, Impaired endochondral bone development and osteopenia in Gli2-deficient mice. Exp Cell Res. 2004 Mar 10;294(1):210-22
1J:100340 Mori T, Yuxing Z, Takaki H, Takeuchi M, Iseki K, Hagino S, Kitanaka J, Takemura M, Misawa H, Ikawa M, Okabe M, Wanaka A, The LIM homeobox gene, L3/Lhx8, is necessary for proper development of basal forebrain cholinergic neurons. Eur J Neurosci. 2004 Jun;19(12):3129-41
2*J:88577 Mu X, Beremand PD, Zhao S, Pershad R, Sun H, Scarpa A, Liang S, Thomas TL, Klein WH, Discrete gene sets depend on POU domain transcription factor Brn3b/Brn-3.2/POU4f2 for their expression in the mouse embryonic retina. Development. 2004 Mar;131(6):1197-210
2*J:281425 Nakaniwa M, Kawasaki M, Kawasaki K, Yamada A, Meguro F, Takeyasu M, Ohazama A, Primary cilia in murine palatal rugae development. Gene Expr Patterns. 2019 Jun 19;34:119062
1J:273907 Nandadasa S, Kraft CM, Wang LW, O'Donnell A, Patel R, Gee HY, Grobe K, Cox TC, Hildebrandt F, Apte SS, Secreted metalloproteases ADAMTS9 and ADAMTS20 have a non-canonical role in ciliary vesicle growth during ciliogenesis. Nat Commun. 2019 Feb 27;10(1):953
1J:302292 Nasr T, Holderbaum AM, Chaturvedi P, Agarwal K, Kinney JL, Daniels K, Trisno SL, Ustiyan V, Shannon JM, Wells JM, Sinner D, Kalinichenko VV, Zorn AM, Disruption of a hedgehog-foxf1-rspo2 signaling axis leads to tracheomalacia and a loss of sox9+ tracheal chondrocytes. Dis Model Mech. 2020 Dec 16;:dmm.046573
2J:220963 Nosavanh L, Yu DH, Jaehnig EJ, Tong Q, Shen L, Chen MH, Cell-autonomous activation of Hedgehog signaling inhibits brown adipose tissue development. Proc Natl Acad Sci U S A. 2015 Apr 21;112(16):5069-74
1J:188764 Ocbina PJ, Eggenschwiler JT, Moskowitz I, Anderson KV, Complex interactions between genes controlling trafficking in primary cilia. Nat Genet. 2011 Jun;43(6):547-53
2J:144348 Ohazama A, Johnson EB, Ota MS, Choi HJ, Porntaveetus T, Oommen S, Itoh N, Eto K, Gritli-Linde A, Herz J, Sharpe PT, Lrp4 modulates extracellular integration of cell signaling pathways in development. PLoS One. 2008;3(12):e4092
3*J:64180 Outram SV, Varas A, Pepicelli CV, Crompton T, Hedgehog signaling regulates differentiation from double-negative to double-positive thymocyte. Immunity. 2000 Aug;13(2):187-97
3J:57341 Parmantier E, Lynn B, Lawson D, Turmaine M, Namini SS, Chakrabarti L, McMahon AP, Jessen KR, Mirsky R, Schwann cell-derived Desert hedgehog controls the development of peripheral nerve sheaths. Neuron. 1999 Aug;23(4):713-24
1J:156777 Parra LM, Zou Y, Sonic hedgehog induces response of commissural axons to Semaphorin repulsion during midline crossing. Nat Neurosci. 2010 Jan;13(1):29-35
2J:291752 Portal C, Rompolas P, Lwigale P, Iomini C, Primary cilia deficiency in neural crest cells models anterior segment dysgenesis in mouse. Elife. 2019 Dec 17;8:e52423
1*J:153743 Purcell P, Joo BW, Hu JK, Tran PV, Calicchio ML, O'Connell DJ, Maas RL, Tabin CJ, Temporomandibular joint formation requires two distinct hedgehog-dependent steps. Proc Natl Acad Sci U S A. 2009 Oct 27;106(43):18297-302
2J:238372 Rankin SA, Han L, McCracken KW, Kenny AP, Anglin CT, Grigg EA, Crawford CM, Wells JM, Shannon JM, Zorn AM, A Retinoic Acid-Hedgehog Cascade Coordinates Mesoderm-Inducing Signals and Endoderm Competence during Lung Specification. Cell Rep. 2016 Jun 28;16(1):66-78
2J:185828 Ren Y, Cowan RG, Migone FF, Quirk SM, Overactivation of hedgehog signaling alters development of the ovarian vasculature in mice. Biol Reprod. 2012 Jun;86(6):174
2*J:104154 Rice R, Connor E, Rice DP, Expression patterns of Hedgehog signalling pathway members during mouse palate development. Gene Expr Patterns. 2006 Jan;6(2):206-12
1J:90909 Rice R, Spencer-Dene B, Connor EC, Gritli-Linde A, McMahon AP, Dickson C, Thesleff I, Rice DP, Disruption of Fgf10/Fgfr2b-coordinated epithelial-mesenchymal interactions causes cleft palate. J Clin Invest. 2004 Jun;113(12):1692-700
1J:123161 Rohatgi R, Milenkovic L, Scott MP, Patched1 regulates hedgehog signaling at the primary cilium. Science. 2007 Jul 20;317(5836):372-6
1J:171486 Rutter M, Wang J, Huang Z, Kuliszewski M, Post M, Gli2 influences proliferation in the developing lung through regulation of cyclin expression. Am J Respir Cell Mol Biol. 2010 May;42(5):615-25
1J:149518 Sakagami K, Gan L, Yang XJ, Distinct effects of Hedgehog signaling on neuronal fate specification and cell cycle progression in the embryonic mouse retina. J Neurosci. 2009 May 27;29(21):6932-44
3J:205383 Salti A, Nat R, Neto S, Puschban Z, Wenning G, Dechant G, Expression of early developmental markers predicts the efficiency of embryonic stem cell differentiation into midbrain dopaminergic neurons. Stem Cells Dev. 2013 Feb 1;22(3):397-411
1J:86350 Schwab K, Patterson LT, Aronow BJ, Luckas R, Liang HC, Potter SS, A catalogue of gene expression in the developing kidney. Kidney Int. 2003 Nov;64(5):1588-604
1*J:117221 Shibukawa Y, Young B, Wu C, Yamada S, Long F, Pacifici M, Koyama E, Temporomandibular joint formation and condyle growth require Indian hedgehog signaling. Dev Dyn. 2007 Feb;236(2):426-34
1*J:135151 Sigulinsky CL, Green ES, Clark AM, Levine EM, Vsx2/Chx10 ensures the correct timing and magnitude of Hedgehog signaling in the mouse retina. Dev Biol. 2008 May 15;317(2):560-75
2J:316104 Song L, Liu Y, Yu Y, Duan X, Qi S, Liu Y, Shh signaling guides spatial pathfinding of raphespinal tract axons by multidirectional repulsion. Cell Res. 2012 Apr;22(4):697-716
2J:50050 St-Jacques B, Dassule HR, Karavanova I, Botchkarev VA, Li J, Danielian PS, McMahon JA, Lewis PM, Paus R, McMahon AP, Sonic hedgehog signaling is essential for hair development. Curr Biol. 1998 Sep 24;8(19):1058-68
4*J:36573 Stone DM, Hynes M, Armanini M, Swanson TA, Gu Q, Johnson RL, Scott MP, Pennica D, Goddard A, Phillips H, Noll M, Hooper JE, de Sauvage F, Rosenthal A, The tumour-suppressor gene patched encodes a candidate receptor for Sonic hedgehog [see comments]. Nature. 1996 Nov 14;384(6605):129-34
3*J:113421 Szczepny A, Hime GR, Loveland KL, Expression of hedgehog signalling components in adult mouse testis. Dev Dyn. 2006 Nov;235(11):3063-70
1J:270543 Tanahashi H, Suzuki T, Deletion of Lrp4 increases the incidence of microphthalmia. Biochem Biophys Res Commun. 2018 Nov 30;506(3):478-484
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
4J:199133 Tang M, Luo SX, Tang V, Huang EJ, Temporal and spatial requirements of Smoothened in ventral midbrain neuronal development. Neural Dev. 2013;8:8
3J:282363 Tessier S, Madhu V, Johnson ZI, Shapiro IM, Risbud MV, NFAT5/TonEBP controls early acquisition of notochord phenotypic markers, collagen composition, and sonic hedgehog signaling during mouse intervertebral disc embryogenesis. Dev Biol. 2019 Nov 15;455(2):369-381
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
2J:309653 Tong Y, Park SH, Wu D, Xu W, Guillot SJ, Jin L, Li X, Wang Y, Lin CS, Fu Z, An essential role of intestinal cell kinase in lung development is linked to the perinatal lethality of human ECO syndrome. FEBS Lett. 2017 May;591(9):1247-1257
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