Symbol Name ID |
Taf13
TATA-box binding protein associated factor 13 MGI:1913500 |
Age | E3.5 | E6.5 | E9.5 | E10.5 | E11.5 | E14.5 | E15.5 | E16.5 | P |
In situ RNA (section) | 1 | ||||||||
In situ RNA (whole mount) | 1 | 1 | 1 | ||||||
Western blot | 1 | ||||||||
RT-PCR | 1 | 2 | 1 | 1 | 2 |
Taf13 TATA-box binding protein associated factor 13 (Synonyms: 1810004N01Rik, 2010309N11Rik) | |
Results | Reference |
1 | J:228779 Alpern D, Langer D, Ballester B, Le Gras S, Romier C, Mengus G, Davidson I, TAF4, a subunit of transcription factor II D, directs promoter occupancy of nuclear receptor HNF4A during post-natal hepatocyte differentiation. Elife. 2014;3:e03613 |
1* | J:153498 Diez-Roux G, Banfi S, Sultan M, Geffers L, Anand S, Rozado D, Magen A, Canidio E, Pagani M, Peluso I, Lin-Marq N, Koch M, Bilio M, Cantiello I, Verde R, De Masi C, Bianchi SA, Cicchini J, Perroud E, Mehmeti S, Dagand E, Schrinner S, Nurnberger A, SchmidtK, Metz K, Zwingmann C, Brieske N, Springer C, Hernandez AM, Herzog S, Grabbe F, Sieverding C, Fischer B, Schrader K, Brockmeyer M, Dettmer S, Helbig C, Alunni V, Battaini MA, Mura C, Henrichsen CN, Garcia-Lopez R, Echevarria D, Puelles E, et al., A high-resolution anatomical atlas of the transcriptome in the mouse embryo. PLoS Biol. 2011;9(1):e1000582 |
1 | J:337771 El-Saafin F, Bergamasco MI, Chen Y, May RE, Esakky P, Hediyeh-Zadeh S, Dixon M, Wilcox S, Davis MJ, Strasser A, Smyth GK, Thomas T, Voss AK, Loss of TAF8 causes TFIID dysfunction and p53-mediated apoptotic neuronal cell death. Cell Death Differ. 2022 May;29(5):1013-1027 |
1* | J:171409 GUDMAP Consortium, GUDMAP: the GenitoUrinary Development Molecular Anatomy Project. www.gudmap.org. 2004; |
2* | J:348275 He XD, Phillips S, Hioki K, Majhi PD, Babbitt C, Tremblay KD, Pobezinsky LA, Mager J, TATA-binding associated factors have distinct roles during early mammalian development. Dev Biol. 2024 Jul;511:53-62 |
1 | J:181994 Kamileri I, Karakasilioti I, Sideri A, Kosteas T, Tatarakis A, Talianidis I, Garinis GA, Defective transcription initiation causes postnatal growth failure in a mouse model of nucleotide excision repair (NER) progeria. Proc Natl Acad Sci U S A. 2012 Feb 21;109(8):2995-3000 |
1 | J:236825 Langer D, Martianov I, Alpern D, Rhinn M, Keime C, Dolle P, Mengus G, Davidson I, Essential role of the TFIID subunit TAF4 in murine embryogenesis and embryonic stem cell differentiation. Nat Commun. 2016 Mar 30;7:11063 |
1* | J:279207 Mager J, A Catalog of Early Lethal KOMP Phenotypes. MGI Direct Data Submission. 2019-2024; |
1 | J:138818 Tatarakis A, Margaritis T, Martinez-Jimenez CP, Kouskouti A, Mohan WS 2nd, Haroniti A, Kafetzopoulos D, Tora L, Talianidis I, Dominant and redundant functions of TFIID involved in the regulation of hepatic genes. Mol Cell. 2008 Aug 22;31(4):531-43 |
2* | J:156017 Yokoyama S, Ito Y, Ueno-Kudoh H, Shimizu H, Uchibe K, Albini S, Mitsuoka K, Miyaki S, Kiso M, Nagai A, Hikata T, Osada T, Fukuda N, Yamashita S, Harada D, Mezzano V, Kasai M, Puri PL, Hayashizaki Y, Okado H, Hashimoto M, Asahara H, A systems approach reveals that the myogenesis genome network is regulated by the transcriptional repressor RP58. Dev Cell. 2009 Dec;17(6):836-48 |
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 12/17/2024 MGI 6.24 |
|
|