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Gene Expression Literature Summary
transcription factor AP-2, alpha

203 matching records from 203 references.

Summary by Age and Assay: Numbers in the table indicate the number of results matching the search criteria.
Age E1 E1.5 E2 E2.5 E3 E3.5 E4.5 E8 E8.5 E9 E9.5 E10 E10.5 E11 E11.5 E12 E12.5 E13 E13.5 E14 E14.5 E15 E15.5 E16 E16.5 E17 E17.5 E18.5 E19.5 E P
Immunohistochemistry (section) 1 3 4 34 1 23 1 12 6 1 9 1 8 1 7 4 1 1 6 5 23
In situ RNA (section) 1 2 5 2 9 2 9 2 4 2 8 1 6 2 3 1 7 1 3 2 4 8
Immunohistochemistry (whole mount) 1 1 1 2 1
In situ RNA (whole mount) 3 10 9 26 2 18 2 3 1 2 1 1 2 1 3 1
In situ reporter (knock in) 1 1 1 1 1 1 1 2
Northern blot 2 2 3 2 2 2 2 2
Western blot 1 1 2
RT-PCR 1 1 2 1 2 2 1 3 6 4 5 1 3 1 7 3 1 5 4 1 5 4 2 1 11
cDNA clones 1 2 1
RNase protection 2 2 2 2 2 2 1 3

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
Tfap2a  transcription factor AP-2, alpha   (Synonyms: Ap2, Ap-2 (a), AP2alpha, AP-2 alpha, Ap2tf, Tcfap2a)
Results  Reference
2J:78687 Abu-Issa R, Smyth G, Smoak I, Yamamura K, Meyers EN, Fgf8 is required for pharyngeal arch and cardiovascular development in the mouse. Development. 2002 Oct;129(19):4613-25
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1J:90701 Ahituv N, Erven A, Fuchs H, Guy K, Ashery-Padan R, Williams T, de Angelis MH, Avraham KB, Steel KP, An ENU-induced mutation in AP-2alpha leads to middle ear and ocular defects in Doarad mice. Mamm Genome. 2004 Jun;15(6):424-32
2*J:205268 Ahmad N, Aslam M, Muenster D, Horsch M, Khan MA, Carlsson P, Beckers J, Graw J, Pitx3 directly regulates Foxe3 during early lens development. Int J Dev Biol. 2013;57(9-10):741-51
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1J:119307 Ai D, Liu W, Ma L, Dong F, Lu MF, Wang D, Verzi MP, Cai C, Gage PJ, Evans S, Black BL, Brown NA, Martin JF, Pitx2 regulates cardiac left-right asymmetry by patterning second cardiac lineage-derived myocardium. Dev Biol. 2006 Aug 15;296(2):437-49
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2J:231312 Baardman ME, Zwier MV, Wisse LJ, Gittenberger-de Groot AC, Kerstjens-Frederikse WS, Hofstra RM, Jurdzinski A, Hierck BP, Jongbloed MR, Berger RM, Plosch T, DeRuiter MC, Common arterial trunk and ventricular non-compaction in Lrp2 knockout mice indicate a crucial role of LRP2 in cardiac development. Dis Model Mech. 2016 Apr 1;9(4):413-25
2J:112701 Bailey PJ, Klos JM, Andersson E, Karlen M, Kallstrom M, Ponjavic J, Muhr J, Lenhard B, Sandelin A, Ericson J, A global genomic transcriptional code associated with CNS-expressed genes. Exp Cell Res. 2006 Oct 1;312(16):3108-19
5J:181601 Bassett EA, Korol A, Deschamps PA, Buettner R, Wallace VA, Williams T, West-Mays JA, Overlapping expression patterns and redundant roles for AP-2 transcription factors in the developing mammalian retina. Dev Dyn. 2012 Apr;241(4):814-29
7J:129080 Bassett EA, Pontoriero GF, Feng W, Marquardt T, Fini ME, Williams T, West-Mays JA, Conditional deletion of activating protein 2alpha (AP-2alpha) in the developing retina demonstrates non-cell-autonomous roles for AP-2alpha in optic cup development. Mol Cell Biol. 2007 Nov;27(21):7497-510
5J:158712 Bassett EA, Williams T, Zacharias AL, Gage PJ, Fuhrmann S, West-Mays JA, AP-2alpha knockout mice exhibit optic cup patterning defects and failure of optic stalk morphogenesis. Hum Mol Genet. 2010 May 1;19(9):1791-804
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3J:88826 Brewer S, Feng W, Huang J, Sullivan S, Williams T, Wnt1-Cre-mediated deletion of AP-2alpha causes multiple neural crest-related defects. Dev Biol. 2004 Mar 1;267(1):135-52
4J:88783 Brewer S, Williams T, Loss of AP-2alpha impacts multiple aspects of ventral body wall development and closure. Dev Biol. 2004 Mar 15;267(2):399-417
1*J:142800 Brunskill EW, Aronow BJ, Georgas K, Rumballe B, Valerius MT, Aronow J, Kaimal V, Jegga AG, Yu J, Grimmond S, McMahon AP, Patterson LT, Little MH, Potter SS, Atlas of gene expression in the developing kidney at microanatomic resolution. (Erratum: Dev Cell 2009; 16:482). Dev Cell. 2008 Nov;15(5):781-91
1J:204690 Brzezinski JA 4th, Uoon Park K, Reh TA, Blimp1 (Prdm1) prevents re-specification of photoreceptors into retinal bipolar cells by restricting competence. Dev Biol. 2013 Dec 15;384(2):194-204
2J:100584 Byrd NA, Meyers EN, Loss of Gbx2 results in neural crest cell patterning and pharyngeal arch artery defects in the mouse embryo. Dev Biol. 2005 Aug 1;284(1):233-45
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1J:227058 Chen D, Wang X, Liang D, Gordon J, Mittal A, Manley N, Degenhardt K, Astrof S, Fibronectin signals through integrin alpha5beta1 to regulate cardiovascular development in a cell type-specific manner. Dev Biol. 2015 Nov 15;407(2):195-210
1*J:154546 Chen L, Sham CW, Chan AM, Francisco LM, Wu Y, Mareninov S, Sharpe AH, Freeman GJ, Yang XJ, Braun J, Gordon LK, Role of the immune modulator programmed cell death-1 during development and apoptosis of mouse retinal ganglion cells. Invest Ophthalmol Vis Sci. 2009 Oct;50(10):4941-8
1J:139006 Chen Y, Doughman YQ, Gu S, Jarrell A, Aota S, Cvekl A, Watanabe M, Dunwoodie SL, Johnson RS, van Heyningen V, Kleinjan DA, Beebe DC, Yang YC, Cited2 is required for the proper formation of the hyaloid vasculature and for lens morphogenesis. Development. 2008 Sep;135(17):2939-48
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2J:124187 Correia AC, Costa M, Moraes F, Bom J, Novoa A, Mallo M, Bmp2 is required for migration but not for induction of neural crest cells in the mouse. Dev Dyn. 2007 Sep;236(9):2493-501
1J:180843 Davis N, Mor E, Ashery-Padan R, Roles for Dicer1 in the patterning and differentiation of the optic cup neuroepithelium. Development. 2011 Jan;138(1):127-38
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1J:207523 Edlund RK, Ohyama T, Kantarci H, Riley BB, Groves AK, Foxi transcription factors promote pharyngeal arch development by regulating formation of FGF signaling centers. Dev Biol. 2014 Jun 1;390(1):1-13
1J:86841 Elms P, Siggers P, Napper D, Greenfield A, Arkell R, Zic2 is required for neural crest formation and hindbrain patterning during mouse development. Dev Biol. 2003 Dec 15;264(2):391-406
1J:229008 Escot S, Blavet C, Faure E, Zaffran S, Duband JL, Fournier-Thibault C, Disruption of CXCR4 signaling in pharyngeal neural crest cells causes DiGeorge syndrome-like malformations. Development. 2016 Feb 15;143(4):582-8
2J:221018 Farhy C, Elgart M, Shapira Z, Oron-Karni V, Yaron O, Menuchin Y, Rechavi G, Ashery-Padan R, Pax6 is required for normal cell-cycle exit and the differentiation kinetics of retinal progenitor cells. PLoS One. 2013;8(9):e76489
3*J:128903 Feng W, Huang J, Zhang J, Williams T, Identification and analysis of a conserved Tcfap2a intronic enhancer element required for expression in facial and limb bud mesenchyme. Mol Cell Biol. 2008 Jan;28(1):315-25
3J:155956 Feng W, Leach SM, Tipney H, Phang T, Geraci M, Spritz RA, Hunter LE, Williams T, Spatial and temporal analysis of gene expression during growth and fusion of the mouse facial prominences. PLoS One. 2009;4(12):e8066
2J:86250 Feng W, Williams T, Cloning and characterization of the mouse AP-2epsilon gene: a novel family member expressed in the developing olfactory bulb. Mol Cell Neurosci. 2003 Oct;24(2):460-75
1J:178316 Ferretti E, Li B, Zewdu R, Wells V, Hebert JM, Karner C, Anderson MJ, Williams T, Dixon J, Dixon MJ, Depew MJ, Selleri L, A conserved Pbx-Wnt-p63-Irf6 regulatory module controls face morphogenesis by promoting epithelial apoptosis. Dev Cell. 2011 Oct 18;21(4):627-41
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2J:214344 Kerr CL, Zaveri MA, Robinson ML, Williams T, West-Mays JA, AP-2alpha is required after lens vesicle formation to maintain lens integrity. Dev Dyn. 2014 Oct;243(10):1298-309
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1J:225578 Krishnaswamy A, Yamagata M, Duan X, Hong YK, Sanes JR, Sidekick 2 directs formation of a retinal circuit that detects differential motion. Nature. 2015 Aug 27;524(7566):466-70
3J:209623 Kurosaka H, Iulianella A, Williams T, Trainor PA, Disrupting hedgehog and WNT signaling interactions promotes cleft lip pathogenesis. J Clin Invest. 2014 Apr 1;124(4):1660-71
1J:181272 Le TT, Conley KW, Mead TJ, Rowan S, Yutzey KE, Brown NL, Requirements for Jag1-Rbpj mediated Notch signaling during early mouse lens development. Dev Dyn. 2012 Mar;241(3):493-504
1J:206320 Lee RT, Nagai H, Nakaya Y, Sheng G, Trainor PA, Weston JA, Thiery JP, Cell delamination in the mesencephalic neural fold and its implication for the origin of ectomesenchyme. Development. 2013 Dec;140(24):4890-902
1J:102949 Li C, Xu X, Nelson DK, Williams T, Kuehn MR, Deng CX, FGFR1 function at the earliest stages of mouse limb development plays an indispensable role in subsequent autopod morphogenesis. Development. 2005 Nov;132(21):4755-64
1J:216613 Liang D, Wang X, Mittal A, Dhiman S, Hou SY, Degenhardt K, Astrof S, Mesodermal expression of integrin alpha5beta1 regulates neural crest development and cardiovascular morphogenesis. Dev Biol. 2014 Nov 15;395(2):232-44
1J:132940 Lin W, Zhang Z, Srajer G, Chen YC, Huang M, Phan HM, Dent SY, Proper expression of the Gcn5 histone acetyltransferase is required for neural tube closure in mouse embryos. Dev Dyn. 2008 Apr;237(4):928-40
1J:89237 Liu W, Selever J, Wang D, Lu MF, Moses KA, Schwartz RJ, Martin JF, Bmp4 signaling is required for outflow-tract septation and branchial-arch artery remodeling. Proc Natl Acad Sci U S A. 2004 Mar 30;101(13):4489-94
2J:229604 Machon O, Masek J, Machonova O, Krauss S, Kozmik Z, Meis2 is essential for cranial and cardiac neural crest development. BMC Dev Biol. 2015;15:40
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