Symbol Name ID |
Nodal
nodal growth differentiation factor MGI:97359 |
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 |
Nodal nodal growth differentiation factor (Synonyms: Tg.413d) | |
Results | Reference |
1 | J: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 |
1 | J: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 |
1 | J: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 |
1 | J: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 |
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1 | J: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 |
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1 | J: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 |
1 | J: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 |
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3 | J: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 |
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