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Gene Expression Literature Summary
Symbol
Name
ID
Cdx2
caudal type homeobox 2
MGI:88361

311 matching records from 311 references.

Summary by Age and Assay: Numbers in the table indicate the number of results matching the search criteria.
Age E0.5 E1 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 E11.5 E12 E12.5 E13 E13.5 E14.5 E15 E15.5 E16 E16.5 E17 E17.5 E18 E18.5 E19 E19.5 E P
Immunohistochemistry (section) 2 1 2 7 2 26 7 14 2 12 2 15 1 7 2 4 1 8 7 4 8 3 7 1 3 1 3 5 12 1 3 21
In situ RNA (section) 1 1 1 1 2 1 1 1 4 3 3 4 3 2 1 3 2 6
Immunohistochemistry (whole mount) 1 1 2 11 19 72 17 22 3 6 1 5 1 3 1 1 1 1
In situ RNA (whole mount) 1 1 1 1 1 2 6 1 8 3 9 6 7 12 6 3 3 3 2 1 2
In situ reporter (knock in) 1 1 1 1 1 1 1 1 1 1 2
Northern blot 1 1 1 3
Western blot 1 3 2 1 1 1 1 1 1 1 2
RT-PCR 1 2 3 4 9 6 23 2 7 1 1 4 2 4 1 2 7 1 7 2 5 4 1 2 5 4 2 1 2 2 2 1 2 1 2 25
cDNA clones 2
RNase protection 2

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
Cdx2  caudal type homeobox 2   (Synonyms: Cdx-2)
Results  Reference
3J:332401 Abuhashem A, Chivu AG, Zhao Y, Rice EJ, Siepel A, Danko CG, Hadjantonakis AK, RNA Pol II pausing facilitates phased pluripotency transitions by buffering transcription. Genes Dev. 2022 Aug 18;36(13-14):770-89
7J:191079 Acampora D, Di Giovannantonio LG, Simeone A, Otx2 is an intrinsic determinant of the embryonic stem cell state and is required for transition to a stable epiblast stem cell condition. Development. 2013 Jan 1;140(1):43-55
5J:238298 Acampora D, Omodei D, Petrosino G, Garofalo A, Savarese M, Nigro V, Di Giovannantonio LG, Mercadante V, Simeone A, Loss of the Otx2-Binding Site in the Nanog Promoter Affects the Integrity of Embryonic Stem Cell Subtypes and Specification of Inner Cell Mass-Derived Epiblast. Cell Rep. 2016 Jun 21;15(12):2651-64
2*J:310134 Adachi K, Nikaido I, Ohta H, Ohtsuka S, Ura H, Kadota M, Wakayama T, Ueda HR, Niwa H, Context-dependent wiring of Sox2 regulatory networks for self-renewal of embryonic and trophoblast stem cells. Mol Cell. 2013 Nov 7;52(3):380-92
6*J:118938 Adachi K, Soeta-Saneyoshi C, Sagara H, Iwakura Y, Crucial role of Bysl in mammalian preimplantation development as an integral factor for 40S ribosome biogenesis. Mol Cell Biol. 2007 Mar;27(6):2202-14
1J:160922 Ahmed K, Dehghani H, Rugg-Gunn P, Fussner E, Rossant J, Bazett-Jones DP, Global chromatin architecture reflects pluripotency and lineage commitment in the early mouse embryo. PLoS One. 2010;5(5):e10531
1*J:272567 Aires R, de Lemos L, Novoa A, Jurberg AD, Mascrez B, Duboule D, Mallo M, Tail Bud Progenitor Activity Relies on a Network Comprising Gdf11, Lin28, and Hox13 Genes. Dev Cell. 2019 Feb 11;48(3):383-395.e8
4J:163855 Alder O, Lavial F, Helness A, Brookes E, Pinho S, Chandrashekran A, Arnaud P, Pombo A, O'Neill L, Azuara V, Ring1B and Suv39h1 delineate distinct chromatin states at bivalent genes during early mouse lineage commitment. Development. 2010 Aug 1;137(15):2483-92
4J:326354 Allegre N, Chauveau S, Dennis C, Renaud Y, Meistermann D, Estrella LV, Pouchin P, Cohen-Tannoudji M, David L, Chazaud C, NANOG initiates epiblast fate through the coordination of pluripotency genes expression. Nat Commun. 2022 Jun 21;13(1):3550
1J:340418 Amadei G, Handford CE, Qiu C, De Jonghe J, Greenfeld H, Tran M, Martin BK, Chen DY, Aguilera-Castrejon A, Hanna JH, Elowitz MB, Hollfelder F, Shendure J, Glover DM, Zernicka-Goetz M, Embryo model completes gastrulation to neurulation and organogenesis. Nature. 2022 Oct;610(7930):143-153
9J:239303 Amin S, Neijts R, Simmini S, van Rooijen C, Tan SC, Kester L, van Oudenaarden A, Creyghton MP, Deschamps J, Cdx and T Brachyury Co-activate Growth Signaling in the Embryonic Axial Progenitor Niche. Cell Rep. 2016 Dec 20;17(12):3165-3177
1J:330642 Andreu MJ, Alvarez-Franco A, Portela M, Gimenez-Llorente D, Cuadrado A, Badia-Careaga C, Tiana M, Losada A, Manzanares M, Establishment of 3D chromatin structure after fertilization and the metabolic switch at the morula-to-blastocyst transition require CTCF. Cell Rep. 2022 Oct 18;41(3):111501
1*J:124707 Asanoma K, Kato H, Yamaguchi S, Shin CH, Liu ZP, Kato K, Inoue T, Miyanari Y, Yoshikawa K, Sonoda K, Fukushima K, Wake N, HOP/NECC1, a novel regulator of mouse trophoblast differentiation. J Biol Chem. 2007 Aug 17;282(33):24065-74
1J:76369 Auman HJ, Nottoli T, Lakiza O, Winger Q, Donaldson S, Williams T, Transcription factor AP-2gamma is essential in the extra-embryonic lineages for early postimplantation development. Development. 2002 Jun;129(11):2733-47
2J:293567 Azami T, Bassalert C, Allegre N, Valverde Estrella L, Pouchin P, Ema M, Chazaud C, Regulation of the ERK signalling pathway in the developing mouse blastocyst. Development. 2019 Jul 25;146(14):dev177139
1J:245724 Azami T, Waku T, Matsumoto K, Jeon H, Muratani M, Kawashima A, Yanagisawa J, Manabe I, Nagai R, Kunath T, Nakamura T, Kurimoto K, Saitou M, Takahashi S, Ema M, Klf5 maintains the balance of primitive endoderm versus epiblast specification during mouse embryonic development by suppression of Fgf4. Development. 2017 Oct 15;144(20):3706-3718
1J:325250 Bai D, Sun J, Chen C, Jia Y, Li Y, Liu K, Zhang Y, Yin J, Liu Y, Han X, Ruan J, Kou X, Zhao Y, Wang H, Wang Z, Chen M, Teng X, Jiang C, Gao S, Liu W, Aberrant H3K4me3 modification of epiblast genes of extraembryonic tissue causes placental defects and implantation failure in mouse IVF embryos. Cell Rep. 2022 May 3;39(5):110784
3J:269312 Balbinot C, Vanier M, Armant O, Nair A, Penichon J, Soret C, Martin E, Saandi T, Reimund JM, Deschamps J, Beck F, Domon-Dell C, Gross I, Duluc I, Freund JN, Fine-tuning and autoregulation of the intestinal determinant and tumor suppressor homeobox gene CDX2 by alternative splicing. Cell Death Differ. 2017 Dec;24(12):2173-2186
1*J:272562 Banerjee KK, Saxena M, Kumar N, Chen L, Cavazza A, Toke NH, O'Neill NK, Madha S, Jadhav U, Verzi MP, Shivdasani RA, Enhancer, transcriptional, and cell fate plasticity precedes intestinal determination during endoderm development. Genes Dev. 2018 Nov 1;32(21-22):1430-1442
11*J:29512 Beck F, Erler T, Russell A, James R, Expression of Cdx-2 in the mouse embryo and placenta: possible role in patterning of the extra-embryonic membranes. Dev Dyn. 1995 Nov;204(3):219-27
1J:183847 Bedzhov I, Liszewska E, Kanzler B, Stemmler MP, Igf1r signaling is indispensable for preimplantation development and is activated via a novel function of E-cadherin. PLoS Genet. 2012 Mar;8(3):e1002609
1*J:329966 Bell CJ, Gupta N, Tremblay KD, Mager J, Borcs6 is required for endo-lysosomal degradation during early development. Mol Reprod Dev. 2022 Aug;89(8):337-350
3J:194289 Bell SM, Zhang L, Xu Y, Besnard V, Wert SE, Shroyer N, Whitsett JA, Kruppel-like factor 5 controls villus formation and initiation of cytodifferentiation in the embryonic intestinal epithelium. Dev Biol. 2013 Mar 15;375(2):128-39
1J:201097 Beraldo FH, Soares IN, Goncalves DF, Fan J, Thomas AA, Santos TG, Mohammad AH, Roffe M, Calder MD, Nikolova S, Hajj GN, Guimaraes AL, Massensini AR, Welch I, Betts DH, Gros R, Drangova M, Watson AJ, Bartha R, Prado VF, Martins VR, Prado MA, Stress-inducible phosphoprotein 1 has unique cochaperone activity during development and regulates cellular response to ischemia via the prion protein. FASEB J. 2013 Sep;27(9):3594-607
2*J:217512 Bessonnard S, De Mot L, Gonze D, Barriol M, Dennis C, Goldbeter A, Dupont G, Chazaud C, Gata6, Nanog and Erk signaling control cell fate in the inner cell mass through a tristable regulatory network. Development. 2014 Oct;141(19):3637-48
2J:227651 Bessonnard S, Mesnard D, Constam DB, PC7 and the related proteases Furin and Pace4 regulate E-cadherin function during blastocyst formation. J Cell Biol. 2015 Sep 28;210(7):1185-97
1J: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:293009 Bhattacharya B, Home P, Ganguly A, Ray S, Ghosh A, Islam MR, French V, Marsh C, Gunewardena S, Okae H, Arima T, Paul S, Atypical protein kinase C iota (PKClambda/iota) ensures mammalian development by establishing the maternal-fetal exchange interface. Proc Natl Acad Sci U S A. 2020 Jun 23;117(25):14280-14291
1J:165819 Bialecka M, Wilson V, Deschamps J, Cdx mutant axial progenitor cells are rescued by grafting to a wild type environment. Dev Biol. 2010 Nov 1;347(1):228-34
2*J:190539 Bialecka M, Young T, Chuva de Sousa Lopes S, ten Berge D, Sanders A, Beck F, Deschamps J, Cdx2 contributes to the expansion of the early primordial germ cell population in the mouse. Dev Biol. 2012 Nov 15;371(2):227-34
2*J:189005 Blij S, Frum T, Akyol A, Fearon E, Ralston A, Maternal Cdx2 is dispensable for mouse development. Development. 2012 Nov;139(21):3969-72
1J:228228 Bonnavion R, Teinturier R, Jaafar R, Ripoche D, Leteurtre E, Chen YJ, Rehfeld JF, Lepinasse F, Hervieu V, Pattou F, Vantyghem MC, Scoazec JY, Bertolino P, Zhang CX, Islet Cells Serve as Cells of Origin of Pancreatic Gastrin-Positive Endocrine Tumors. Mol Cell Biol. 2015 Oct;35(19):3274-83
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
1J:122635 Bosse T, Fialkovich JJ, Piaseckyj CM, Beuling E, Broekman H, Grand RJ, Montgomery RK, Krasinski SD, Gata4 and Hnf1alpha are partially required for the expression of specific intestinal genes during development. Am J Physiol Gastrointest Liver Physiol. 2007 May;292(5):G1302-14
3J:229091 Branco MR, King M, Perez-Garcia V, Bogutz AB, Caley M, Fineberg E, Lefebvre L, Cook SJ, Dean W, Hemberger M, Reik W, Maternal DNA Methylation Regulates Early Trophoblast Development. Dev Cell. 2016 Jan 25;36(2):152-63
1*J:226497 Brewer JR, Molotkov A, Mazot P, Hoch RV, Soriano P, Fgfr1 regulates development through the combinatorial use of signaling proteins. Genes Dev. 2015 Sep 1;29(17):1863-74
2J:239299 Brooke-Bisschop T, Savory JG, Foley T, Ringuette R, Lohnes D, Essential roles for Cdx in murine primitive hematopoiesis. Dev Biol. 2017 Feb 15;422(2):115-124
7J:203762 Burton A, Muller J, Tu S, Padilla-Longoria P, Guccione E, Torres-Padilla ME, Single-cell profiling of epigenetic modifiers identifies PRDM14 as an inducer of cell fate in the mammalian embryo. Cell Rep. 2013 Nov 14;5(3):687-701
7J:124082 Cambray N, Wilson V, Two distinct sources for a population of maturing axial progenitors. Development. 2007 Aug;134(15):2829-40
8J:145166 Cervantes S, Yamaguchi TP, Hebrok M, Wnt5a is essential for intestinal elongation in mice. Dev Biol. 2009 Feb 15;326(2):285-94
1J:139339 Chawengsaksophak K, de Graaff W, Rossant J, Deschamps J, Beck F, Cdx2 is essential for axial elongation in mouse development. Proc Natl Acad Sci U S A. 2004 May 18;101(20):7641-5
1J:108748 Chazaud C, Yamanaka Y, Pawson T, Rossant J, Early lineage segregation between epiblast and primitive endoderm in mouse blastocysts through the Grb2-MAPK pathway. Dev Cell. 2006 May;10(5):615-24
2J:231798 Chen CY, Chan CH, Chen CM, Tsai YS, Tsai TY, Wu Lee YH, You LR, Targeted inactivation of murine Ddx3x: essential roles of Ddx3x in placentation and embryogenesis. Hum Mol Genet. 2016 July 15;25(14):2905-2922
2J:277240 Chen CY, Yu IS, Pai CH, Lin CY, Lin SR, Chen YT, Lin SW, Embryonic Cul4b is important for epiblast growth and location of primitive streak layer cells. PLoS One. 2019;14(7):e0219221
1*J:316935 Chen Z, Xie Z, Zhang Y, DPPA2 and DPPA4 are dispensable for mouse zygotic genome activation and pre-implantation development. Development. 2021 Dec 15;148(24):dev200178
2J:144707 Chiu SY, Asai N, Costantini F, Hsu W, SUMO-specific protease 2 is essential for modulating p53-Mdm2 in development of trophoblast stem cell niches and lineages. PLoS Biol. 2008 Dec 16;6(12):e310
5*J:119560 Choi MY, Romer AI, Hu M, Lepourcelet M, Mechoor A, Yesilaltay A, Krieger M, Gray PA, Shivdasani RA, A dynamic expression survey identifies transcription factors relevant in mouse digestive tract development. Development. 2006 Oct;133(20):4119-29
2*J:275147 Chou AM, Sem KP, Lam WJ, Ahmed S, Lim CY, Redundant functions of I-BAR family members, IRSp53 and IRTKS, are essential for embryonic development. Sci Rep. 2017 Jan 9;7:40485
1*J:331055 Chousal JN, Sohni A, Vitting-Seerup K, Cho K, Kim M, Tan K, Porse B, Wilkinson MF, Cook-Andersen H, Progression of the pluripotent epiblast depends upon the NMD factor UPF2. Development. 2022 Nov 1;149(21):dev200764
1J:160475 Chu J, Shen MM, Functional redundancy of EGF-CFC genes in epiblast and extraembryonic patterning during early mouse embryogenesis. Dev Biol. 2010 Jun 1;342(1):63-73
1J:310853 Clemons NJ, Wang DH, Croagh D, Tikoo A, Fennell CM, Murone C, Scott AM, Watkins DN, Phillips WA, Sox9 drives columnar differentiation of esophageal squamous epithelium: a possible role in the pathogenesis of Barrett's esophagus. Am J Physiol Gastrointest Liver Physiol. 2012 Dec 15;303(12):G1335-46
1J:199463 Cockburn K, Biechele S, Garner J, Rossant J, The hippo pathway member nf2 is required for inner cell mass specification. Curr Biol. 2013 Jul 8;23(13):1195-201
1*J:285737 Cui W, Cheong A, Wang Y, Tsuchida Y, Liu Y, Tremblay KD, Mager J, MCRS1 is essential for epiblast development during early mouse embryogenesis. Reproduction. 2020 Jan;159(1):1-13
2J:344642 de la Rosa S, Del Mar Rigual M, Vargiu P, Ortega S, Djouder N, Endogenous retroviruses shape pluripotency specification in mouse embryos. Sci Adv. 2024 Jan 26;10(4):eadk9394
1J:313347 DeLaForest A, Kohlnhofer BM, Franklin OD, Stavniichuk R, Thompson CA, Pulakanti K, Rao S, Battle MA, GATA4 Controls Epithelial Morphogenesis in the Developing Stomach to Promote Establishment of Glandular Columnar Epithelium. Cell Mol Gastroenterol Hepatol. 2021;12(4):1391-1413
2J:98805 Deschamps J, van Nes J, Developmental regulation of the Hox genes during axial morphogenesis in the mouse. Development. 2005 Jul;132(13):2931-42
1J:294824 Dias A, Lozovska A, Wymeersch FJ, Novoa A, Binagui-Casas A, Sobral D, Martins GG, Wilson V, Mallo M, A Tgfbr1/Snai1-dependent developmental module at the core of vertebrate axial elongation. Elife. 2020 Jun 29;9:e56615
3*J:224530 Dietrich JE, Panavaite L, Gunther S, Wennekamp S, Groner AC, Pigge A, Salvenmoser S, Trono D, Hufnagel L, Hiiragi T, Venus trap in the mouse embryo reveals distinct molecular dynamics underlying specification of first embryonic lineages. EMBO Rep. 2015 Aug;16(8):1005-21
3J:199467 Do DV, Ueda J, Messerschmidt DM, Lorthongpanich C, Zhou Y, Feng B, Guo G, Lin PJ, Hossain MZ, Zhang W, Moh A, Wu Q, Robson P, Ng HH, Poellinger L, Knowles BB, Solter D, Fu XY, A genetic and developmental pathway from STAT3 to the OCT4-NANOG circuit is essential for maintenance of ICM lineages in vivo. Genes Dev. 2013 Jun 15;27(12):1378-90
4J: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
3J:218169 Donnison M, Broadhurst R, Pfeffer PL, Elf5 and Ets2 maintain the mouse extraembryonic ectoderm in a dosage dependent synergistic manner. Dev Biol. 2015 Jan 1;397(1):77-88
1*J:314694 Douchi D, Yamamura A, Matsuo J, Melissa Lim YH, Nuttonmanit N, Shimura M, Suda K, Chen S, Pang S, Kohu K, Abe T, Shioi G, Kim G, Shabbir A, Srivastava S, Unno M, Bok-Yan So J, Teh M, Yeoh KG, Huey Chuang LS, Ito Y, Induction of Gastric Cancer by Successive Oncogenic Activation in the Corpus. Gastroenterology. 2021 Dec;161(6):1907-1923.e26
2J:320718 Duethorn B, Groll F, Rieger B, Drexler HCA, Brinkmann H, Kremer L, Stehling M, Borowski MT, Mildner K, Zeuschner D, Zernicka-Goetz M, Stemmler MP, Busch KB, Vaquerizas JM, Bedzhov I, Lima1 mediates the pluripotency control of membrane dynamics and cellular metabolism. Nat Commun. 2022 Feb 1;13(1):610
1*J:321237 Edwards NA, Watson AJ, Betts DH, P66Shc, a key regulator of metabolism and mitochondrial ROS production, is dysregulated by mouse embryo culture. Mol Hum Reprod. 2016 Sep;22(9):634-47
2J:115635 Elling U, Klasen C, Eisenberger T, Anlag K, Treier M, Murine inner cell mass-derived lineages depend on Sall4 function. Proc Natl Acad Sci U S A. 2006 Oct 31;103(44):16319-24
1*J:149868 Ema M, Mori D, Niwa H, Hasegawa Y, Yamanaka Y, Hitoshi S, Mimura J, Kawabe Y, Hosoya T, Morita M, Shimosato D, Uchida K, Suzuki N, Yanagisawa J, Sogawa K, Rossant J, Yamamoto M, Takahashi S, Fujii-Kuriyama Y, Kruppel-like factor 5 is essential for blastocyst development and the normal self-renewal of mouse ESCs. Cell Stem Cell. 2008 Nov 6;3(5):555-67
1J:267596 Escot S, Willnow D, Naumann H, Di Francescantonio S, Spagnoli FM, Robo signalling controls pancreatic progenitor identity by regulating Tead transcription factors. Nat Commun. 2018 Nov 30;9(1):5082
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:242105 Fiorenzano A, Pascale E, D'Aniello C, Acampora D, Bassalert C, Russo F, Andolfi G, Biffoni M, Francescangeli F, Zeuner A, Angelini C, Chazaud C, Patriarca EJ, Fico A, Minchiotti G, Cripto is essential to capture mouse epiblast stem cell and human embryonic stem cell pluripotency. Nat Commun. 2016 Sep 02;7:12589
1J:275052 Foley TE, Hess B, Savory JGA, Ringuette R, Lohnes D, Role of Cdx factors in early mesodermal fate decisions. Development. 2019 Apr 1;146(7):dev170498
3*J:46439 Freeman TC, Dixon AK, Campbell EA, Tait TM, Richardson PJ, Rice KM, Maslen GL, Metcalfe AD, Streuli CH, Bentley DR, Expression Mapping of Mouse Genes. MGI Direct Data Submission. 1998;
1J:198640 Frum T, Halbisen MA, Wang C, Amiri H, Robson P, Ralston A, Oct4 cell-autonomously promotes primitive endoderm development in the mouse blastocyst. Dev Cell. 2013 Jun 24;25(6):610-22
1J:267922 Frum T, Murphy TM, Ralston A, HIPPO signaling resolves embryonic cell fate conflicts during establishment of pluripotency in vivo. Elife. 2018 Dec 11;7:e42298
1J:141897 Fukuda A, Kawaguchi Y, Furuyama K, Kodama S, Horiguchi M, Kuhara T, Kawaguchi M, Terao M, Doi R, Wright CV, Hoshino M, Chiba T, Uemoto S, Reduction of Ptf1a gene dosage causes pancreatic hypoplasia and diabetes in mice. Diabetes. 2008 Sep;57(9):2421-31
1J:337428 Funaya S, Wang Y, Suzuki MG, Ikawa M, Aoki F, Involvement of linker histone variant H1a in the regulation of early preimplantation development in mice. J Reprod Dev. 2023 Jun 6;69(3):178-182
3J:161201 Gao N, Kaestner KH, Cdx2 regulates endo-lysosomal function and epithelial cell polarity. Genes Dev. 2010 Jun 15;24(12):1295-305
1*J:134633 Gao X, Tate P, Hu P, Tjian R, Skarnes WC, Wang Z, ES cell pluripotency and germ-layer formation require the SWI/SNF chromatin remodeling component BAF250a. Proc Natl Acad Sci U S A. 2008 May 6;105(18):6656-61
1*J:193806 Garcia-Tunon I, Guallar D, Alonso-Martin S, Benito AA, Benitez-Lazaro A, Perez-Palacios R, Muniesa P, Climent M, Sanchez M, Vidal M, Schoorlemmer J, Association of Rex-1 to target genes supports its interaction with Polycomb function. Stem Cell Res. 2011 Jul;7(1):1-16
2J:291490 Garriock RJ, Chalamalasetty RB, Zhu J, Kennedy MW, Kumar A, Mackem S, Yamaguchi TP, A dorsal-ventral gradient of Wnt3a/beta-catenin signals controls mouse hindgut extension and colon formation. Development. 2020 Apr 12;147(8):dev185108
2J:103327 Gaunt SJ, Drage D, Trubshaw RC, cdx4/lacZ and cdx2/lacZ protein gradients formed by decay during gastrulation in the mouse. Int J Dev Biol. 2005;49(8):901-8
5J:139149 Gaunt SJ, Drage D, Trubshaw RC, Increased Cdx protein dose effects upon axial patterning in transgenic lines of mice. Development. 2008 Aug;135(15):2511-20
3J:106548 Georgiades P, Rossant J, Ets2 is necessary in trophoblast for normal embryonic anteroposterior axis development. Development. 2006 Mar;133(6):1059-68
1J:219587 Geula S, Moshitch-Moshkovitz S, Dominissini D, Mansour AA, Kol N, Salmon-Divon M, Hershkovitz V, Peer E, Mor N, Manor YS, Ben-Haim MS, Eyal E, Yunger S, Pinto Y, Jaitin DA, Viukov S, Rais Y, Krupalnik V, Chomsky E, Zerbib M, Maza I, Rechavi Y, Massarwa R, Hanna S, Amit I, Levanon EY, Amariglio N, Stern-Ginossar N, Novershtern N, Rechavi G, Hanna JH, Stem cells. m6A mRNA methylation facilitates resolution of naive pluripotency toward differentiation. Science. 2015 Feb 27;347(6225):1002-6
1*J:237226 Ghule PN, Xie RL, Colby JL, Rivera-Perez JA, Jones SN, Lian JB, Stein JL, van Wijnen AJ, Stein GS, Maternal expression and early induction of histone gene transcription factor Hinfp sustains development in pre-implantation embryos. Dev Biol. 2016 Nov 15;419(2):311-320
1J:307272 Godin P, Tsoi M, Paquet M, Boerboom D, YAP and TAZ are required for the postnatal development and the maintenance of the structural integrity of the oviduct. Reproduction. 2020 Aug;160(2):307-318
3*J:83729 Goldin SN, Papaioannou VE, Paracrine action of FGF4 during periimplantation development maintains trophectoderm and primitive endoderm. Genesis. 2003 May;36(1):40-7
1*J:195793 Goller T, Seibold UK, Kremmer E, Voos W, Kolanus W, Atad3 function is essential for early post-implantation development in the mouse. PLoS One. 2013;8(1):e54799
1J:142592 Goller T, Vauti F, Ramasamy S, Arnold HH, Transcriptional regulator BPTF/FAC1 is essential for trophoblast differentiation during early mouse development. Mol Cell Biol. 2008 Nov;28(22):6819-27
1J:267576 Gontan C, Mira-Bontenbal H, Magaraki A, Dupont C, Barakat TS, Rentmeester E, Demmers J, Gribnau J, REX1 is the critical target of RNF12 in imprinted X chromosome inactivation in mice. Nat Commun. 2018 Nov 12;9(1):4752
1*J:110696 Gonzalez MA, Tachibana KE, Adams DJ, van der Weyden L, Hemberger M, Coleman N, Bradley A, Laskey RA, Geminin is essential to prevent endoreduplication and to form pluripotent cells during mammalian development. Genes Dev. 2006 Jul 15;20(14):1880-4
1J:240535 Goolam M, Zernicka-Goetz M, The chromatin modifier Satb1 regulates cell fate through Fgf signalling in the early mouse embryo. Development. 2017 Apr 15;144(8):1450-1461
2J:157954 Grainger S, Savory JG, Lohnes D, Cdx2 regulates patterning of the intestinal epithelium. Dev Biol. 2010 Mar 1;339(1):155-65
1J:90119 Gregorieff A, Grosschedl R, Clevers H, Hindgut defects and transformation of the gastro-intestinal tract in Tcf4(-/-)/Tcf1(-/-) embryos. EMBO J. 2004 Apr 21;23(8):1825-33
1J:242967 Gu B, Lambert JP, Cockburn K, Gingras AC, Rossant J, AIRE is a critical spindle-associated protein in embryonic stem cells. Elife. 2017 Jul 25;6:e28131
1*J:171409 GUDMAP Consortium, GUDMAP: the GenitoUrinary Development Molecular Anatomy Project. www.gudmap.org. 2004;
2*J:194075 Guenatri M, Duffie R, Iranzo J, Fauque P, Bourc'his D, Plasticity in Dnmt3L-dependent and -independent modes of de novo methylation in the developing mouse embryo. Development. 2013 Feb 1;140(3):562-72
8*J:140465 Guo G, Huss M, Tong GQ, Wang C, Li Sun L, Clarke ND, Robson P, Resolution of cell fate decisions revealed by single-cell gene expression analysis from zygote to blastocyst. Dev Cell. 2010 Apr 20;18(4):675-85
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