Crossref
journal-article
Elsevier BV
Current Opinion in Genetics & Development (78)
References
66
Referenced
72
10.1146/annurev.bi.65.070196.004005
/ Annu Rev Biochem / Biochemistry and structural biology of transcription factor IID (TFIID) by Burley (1996)10.1101/gad.976402
/ Genes Dev / A unified nomenclature for TATA box binding protein (TBP)-associated factors (TAFs) involved in RNA polymerase II transcription by Tora (2002)10.1101/gad.7.7b.1291
/ Genes Dev / TBP, a universal eukaryotic transcription factor? by Hernandez (1993)10.1016/j.molcel.2009.12.011
/ Mol Cell / Shifting players and paradigms in cell-specific transcription by D’Alessio (2009)10.1101/gad.1598007
/ Genes Dev / Transcription strategies in terminally differentiated cells: shaken to the core by Jones (2007)10.1101/gad.1623207
/ Genes Dev / On a roll for new TRF targets by Reina (2007){'key': '10.1016/j.gde.2010.06.004_bib7', 'article-title': 'Regulation of gene expression via the core promoter and the basal transcriptional machinery', 'author': 'Juven-Gershon', 'year': '2009', 'journal-title': 'Dev Biol'}
/ Dev Biol / Regulation of gene expression via the core promoter and the basal transcriptional machinery by Juven-Gershon (2009)10.1242/dev.035493
/ Development / Promoting developmental transcription by Ohler (2010)10.1242/dev.033183
/ Development / The maternal-to-zygotic transition: a play in two acts by Tadros (2009)10.1016/0092-8674(82)90272-0
/ Cell / A major developmental transition in early Xenopus embryos: I. Characterization and timing of cellular changes at the midblastula stage by Newport (1982)10.1128/MCB.19.12.7972
/ Mol Cell Biol / Translation of maternal TATA-binding protein mRNA potentiates basal but not activated transcription in Xenopus embryos at the midblastula transition by Veenstra (1999)10.1038/sj.emboj.7601821
/ EMBO J / The TATA-binding protein regulates maternal mRNA degradation and differential zygotic transcription in zebrafish by Ferg (2007)10.1016/0092-8674(94)90158-9
/ Cell / Competition between chromatin and transcription complex assembly regulates gene expression during early development by Prioleau (1994)10.1126/science.290.5500.2312
/ Science / Distinct roles for TBP and TBP-like factor in early embryonic gene transcription in Xenopus by Veenstra (2000)10.1016/S0960-9822(01)00076-8
/ Curr Biol / TBP is not universally required for zygotic RNA polymerase II transcription in zebrafish by Muller (2001)10.1126/science.1076327
/ Science / RNA polymerase II transcription in murine cells lacking the TATA binding protein by Martianov (2002)10.1242/dev.027714
/ Development / Smicl is required for phosphorylation of RNA polymerase II and affects 3′-end processing of RNA at the midblastula transition in Xenopus by Collart (2009)10.1074/jbc.R700012200
/ J Biol Chem / New problems in RNA polymerase II transcription initiation: Matching the diversity of core promoters with a variety of promoter recognition factors by Muller (2007)10.1016/S0968-0004(99)01436-X
/ Trends Biochem Sci / The TBP-like factor: an alternative transcription factor in metazoa? by Dantonel (1999)10.1093/nar/27.3.750
/ Nucleic Acids Res / Identification of a mouse TBP-like protein (TLP) distantly related to the drosophila TBP-related factor by Ohbayashi (1999)10.1128/MCB.19.11.7610
/ Mol Cell Biol / A human TATA binding protein-related protein with altered DNA binding specificity inhibits transcription from multiple promoters and activators by Moore (1999)10.1073/pnas.96.24.13720
/ Proc Natl Acad Sci U S A / Human TATA-binding protein-related factor-2 (hTRF2) stably associates with hTFIIA in HeLa cells by Teichmann (1999)10.1016/j.cub.2004.03.034
/ Curr Biol / TBP2, a vertebrate-specific member of the TBP family, is required in embryonic development of zebrafish by Bartfai (2004)10.1016/j.molcel.2008.09.009
/ Mol Cell / MyoD targets TAF3/TRF3 to activate myogenin transcription by Deato (2008)10.1073/pnas.0405536101
/ Proc Natl Acad Sci U S A / Specialized and redundant roles of TBP and a vertebrate-specific TBP paralog in embryonic gene regulation in Xenopus by Jallow (2004)10.1038/nature06349
/ Nature / Initiation of zebrafish haematopoiesis by the TATA-box-binding protein-related factor Trf3 by Hart (2007)10.1186/1741-7007-7-45
/ BMC Biol / TBP2 is a substitute for TBP in Xenopus oocyte transcription by Akhtar (2009)10.1016/S1097-2765(01)00198-8
/ Mol Cell / Late arrest of spermiogenesis and germ cell apoptosis in mice lacking the TBP-like TLF/TRF2 gene by Martianov (2001)10.1016/S0925-4773(01)00439-7
/ Mech Dev / Cell- and stage-specific high-level expression of TBP-related factor 2 (TRF2) during mouse spermatogenesis by Zhang (2001)10.1530/REP-06-0337
/ Reproduction / Analysis of TATA-binding protein 2 (TBP2) and TBP expression suggests different roles for the two proteins in regulation of gene expression during oogenesis and early mouse development by Gazdag (2007)10.1101/gad.535209
/ Genes Dev / TBP2 is essential for germ cell development by regulating transcription and chromatin condensation in the oocyte by Gazdag (2009)10.1016/j.cell.2008.07.040
/ Cell / Global transcriptional repression in C. elegans germline precursors by regulated sequestration of TAF-4 by Guven-Ozkan (2008)10.1242/dev.127.24.5449
/ Development / Taube nuss is a novel gene essential for the survival of pluripotent cells of early mouse embryos by Voss (2000)10.1128/MCB.23.12.4307-4318.2003
/ Mol Cell Biol / TAF10 (TAF(II)30) is necessary for TFIID stability and early embryogenesis in mice by Mohan (2003)10.1101/gad.3.10.1493
/ Genes Dev / The need for enhancers in gene expression first appears during mouse development with formation of the zygotic nucleus by Martinez-Salas (1989)10.1128/MCB.21.16.5531-5540.2001
/ Mol Cell Biol / Reconstitution of enhancer function in paternal pronuclei of one-cell mouse embryos by Rastelli (2001)10.1038/sj.emboj.7601822
/ EMBO J / TBP paralogs accommodate metazoan- and vertebrate-specific developmental gene regulation by Jacobi (2007)10.1002/dvdy.22083
/ Dev Dyn / Selective interaction between Trf3 and Taf3 required for early development and hematopoiesis by Hart (2009)10.1242/dev.018028
/ Development / The YPWM motif links Antennapedia to the basal transcriptional machinery by Prince (2008)10.1073/pnas.0811914106
/ Proc Natl Acad Sci U S A / Wnt signaling targets ETO coactivation domain of TAF4/TFIID in vivo by Wright (2009)10.1073/pnas.0608570104
/ Proc Natl Acad Sci U S A / Conserved region I of human coactivator TAF4 binds to a short hydrophobic motif present in transcriptional regulators by Wang (2007)10.1126/science.1097937
/ Science / E protein silencing by the leukemogenic AML1-ETO fusion protein by Zhang (2004)10.1038/sj.onc.1210657
/ Oncogene / Retinoic acid induces TGFbeta-dependent autocrine fibroblast growth by Fadloun (2008)10.1016/j.ydbio.2005.05.043
/ Dev Biol / TAF10 is required for the establishment of skin barrier function in foetal, but not in adult mouse epidermis by Indra (2005)10.1016/S1097-2765(03)00396-4
/ Mol Cell / The TBN protein, which is essential for early embryonic mouse development, is an inducible TAFII implicated in adipogenesis by Guermah (2003)10.1007/s00018-009-0009-3
/ Cell Mol Life Sci / Recent advances in understanding the structure and function of general transcription factor TFIID by Cler (2009)10.1073/pnas.0605499103
/ Proc Natl Acad Sci U S A / TAF4 nucleates a core subcomplex of TFIID and mediates activated transcription from a TATA-less promoter by Wright (2006)10.1038/sj.emboj.7600111
/ EMBO J / Mapping key functional sites within yeast TFIID by Leurent (2004)10.1371/journal.pone.0000316
/ PLoS ONE / Identification of a small TAF complex and its role in the assembly of TAF-containing complexes by Demeny (2007)10.1101/gr.093047.109
/ Genome Res / Elucidation of the ELK1 target gene network reveals a role in the coordinate regulation of core components of the gene regulation machinery by Boros (2009)10.1016/j.molcel.2008.07.013
/ Mol Cell / Dominant and redundant functions of TFIID involved in the regulation of hepatic genes by Tatarakis (2008)10.1101/gad.1583407
/ Genes Dev / Switching of the core transcription machinery during myogenesis by Deato (2007)10.1074/jbc.M109.017954
/ J Biol Chem / Proteomics reveals a physical and functional link between hepatocyte nuclear factor 4alpha and transcription factor IID by Takahashi (2009)10.1093/hmg/11.19.2341
/ Hum Mol Genet / Functional substitution for TAF(II)250 by a retroposed homolog that is expressed in human spermatogenesis by Wang (2002)10.1242/jcs.00391
/ J Cell Sci / The intracellular localisation of TAF7L, a paralogue of transcription factor TFIID subunit TAF7, is developmentally regulated during male germ-cell differentiation by Pointud (2003)10.1371/journal.pone.0006664
/ PLoS ONE / Regulation of ALF promoter activity in Xenopus oocytes by Li (2009)10.1016/j.bbaexp.2007.04.008
/ Biochim Biophys Acta / A facelift for the general transcription factor TFIIA by Hoiby (2007)10.2164/jandrol.109.008193
/ J Androl / Regulation of male fertility by X-linked genes by Zheng (2010)10.1126/science.288.5470.1422
/ Science / Structure and function of a human TAFII250 double bromodomain module [see comments] by Jacobson (2000)10.1016/j.cell.2007.08.016
/ Cell / Selective anchoring of TFIID to nucleosomes by trimethylation of histone H3 lysine 4 by Vermeulen (2007)10.1016/j.molcel.2009.01.015
/ Mol Cell / TAF12 recruits Gadd45a and the nucleotide excision repair complex to the promoter of rRNA genes leading to active DNA demethylation by Schmitz (2009)10.1038/nature03877
/ Nature / A high-resolution map of active promoters in the human genome by Kim (2005)10.1016/j.devcel.2009.08.005
/ Dev Cell / A hierarchy of H3K4me3 and H3K27me3 acquisition in spatial gene regulation in Xenopus embryos by Akkers (2009)10.1038/nature08162
/ Nature / Distinctive chromatin in human sperm packages genes for embryo development by Hammoud (2009)10.1038/nature08866
/ Nature / Chromatin signature of embryonic pluripotency is established during genome activation by Vastenhouw (2010)10.1146/annurev.biophys.050708.133728
/ Annu Rev Biophys / Imaging transcription in living cells by Darzacq (2009)
Dates
Type | When |
---|---|
Created | 15 years, 2 months ago (July 3, 2010, 4:23 a.m.) |
Deposited | 3 years, 10 months ago (Oct. 30, 2021, 1:58 p.m.) |
Indexed | 1 year, 1 month ago (Aug. 4, 2024, 6:36 a.m.) |
Issued | 14 years, 11 months ago (Oct. 1, 2010) |
Published | 14 years, 11 months ago (Oct. 1, 2010) |
Published Print | 14 years, 11 months ago (Oct. 1, 2010) |
@article{M_ller_2010, title={Developmental regulation of transcription initiation: more than just changing the actors}, volume={20}, ISSN={0959-437X}, url={http://dx.doi.org/10.1016/j.gde.2010.06.004}, DOI={10.1016/j.gde.2010.06.004}, number={5}, journal={Current Opinion in Genetics & Development}, publisher={Elsevier BV}, author={Müller, Ferenc and Zaucker, Andreas and Tora, Làszlò}, year={2010}, month=oct, pages={533–540} }