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人类TATA结合多肽相关因子TAFII31和TAFII80的进化保守性以及TAFII80与其他TAF和通用转录因子的相互作用。

Evolutionary conservation of human TATA-binding-polypeptide-associated factors TAFII31 and TAFII80 and interactions of TAFII80 with other TAFs and with general transcription factors.

作者信息

Hisatake K, Ohta T, Takada R, Guermah M, Horikoshi M, Nakatani Y, Roeder R G

机构信息

Laboratory of Biochemistry and Molecular Biology, Rockefeller University, New York, NY 10021, USA.

出版信息

Proc Natl Acad Sci U S A. 1995 Aug 29;92(18):8195-9. doi: 10.1073/pnas.92.18.8195.

Abstract

Human transcription initiation factor TFIID is composed of the TATA-binding polypeptide (TBP) and at least 13 TBP-associated factors (TAFs) that collectively or individually are involved in activator-dependent transcription. To investigate protein-protein interactions involved in TFIID assembly and in TAF-mediated activator functions, we have cloned and expressed cDNAs encoding human TAFII80 and TAFII31. Coimmunoprecipitation assays showed that TAFII80 interacted with TAFII250, TAFII31, TAFII20, and TBP, but not with TAFII55. Similar assays showed that TAFII80 interacted with TFIIE alpha and with TFIIF alpha (RAP74) but not with TFIIB, TFIIE beta, or TFIIF beta (RAP30). Further studies with TAFII80 mutations revealed three distinct interaction domains which fall within regions conserved in human TAFII80, Drosophila TAFII60, and yeast TAFII60. The N terminus of TAFII80 (residues 1-100) interacts with both TAFII31 and TAFII20, while two C-terminal regions are involved, respectively, in interactions with TAFII250 and TFIIF alpha (RAP74) (residues 203-276) and with TBP and TFIIE alpha (residues 377-505). The interactions between TAFII80 and general factors TFIIE alpha and TFIIF alpha (RAP74) could be important for recruitment of GTFs during activator-dependent transcription. Because TAFs 80, 31, and 20 show sequence similarities to histones H4, H3, and H2B, as well as some parallel interactions, this subset of TAFs may form a related core structure within TFIID.

摘要

人类转录起始因子TFIID由TATA结合多肽(TBP)和至少13种TBP相关因子(TAFs)组成,这些因子共同或分别参与依赖激活因子的转录过程。为了研究参与TFIID组装和TAF介导的激活因子功能的蛋白质-蛋白质相互作用,我们克隆并表达了编码人TAFII80和TAFII31的cDNA。免疫共沉淀分析表明,TAFII80与TAFII250、TAFII31、TAFII20和TBP相互作用,但不与TAFII55相互作用。类似的分析表明,TAFII80与TFIIEα和TFIIFα(RAP74)相互作用,但不与TFIIB、TFIIEβ或TFIIFβ(RAP30)相互作用。对TAFII80突变体的进一步研究揭示了三个不同的相互作用结构域,它们位于人TAFII80、果蝇TAFII60和酵母TAFII60中保守的区域内。TAFII80的N末端(第1-100位氨基酸残基)与TAFII31和TAFII20都相互作用,而两个C末端区域分别参与与TAFII250和TFIIFα(RAP74)(第203-276位氨基酸残基)以及与TBP和TFIIEα(第377-505位氨基酸残基)的相互作用。TAFII80与通用因子TFIIEα和TFIIFα(RAP74)之间的相互作用可能在依赖激活因子的转录过程中对通用转录因子(GTFs)的募集很重要。由于TAFs 80、31和20与组蛋白H4、H3和H2B具有序列相似性,以及一些平行的相互作用,这一TAF亚集可能在TFIID中形成一个相关的核心结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af28/41123/dca6b5d9bb5f/pnas01496-0116-a.jpg

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