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猿猴病毒40大T抗原的主要转录反式激活结构域与转录起始前复合物的多个组分非同时结合。

The major transcriptional transactivation domain of simian virus 40 large T antigen associates nonconcurrently with multiple components of the transcriptional preinitiation complex.

作者信息

Johnston S D, Yu X M, Mertz J E

机构信息

McArdle Laboratory for Cancer Research, University of Wisconsin, Medical School, Madison 53706-1599, USA.

出版信息

J Virol. 1996 Feb;70(2):1191-202. doi: 10.1128/JVI.70.2.1191-1202.1996.

Abstract

Simian virus 40 (SV40) large T antigen (Tag) is a promiscuous transcriptional transactivator; however, its mechanism of transactivation remains unknown. Recent studies have suggested the possible involvement of protein-protein interactions with TBP, the TATA box-binding protein of TFIID, and TEF-1, an enhancer-binding factor. We show here that (i) the Tag domain containing amino acids 133 to 249 directly interacts with the general transcription factor TFIIB, the activator protein Sp1, and the 140-kDa subunit of RNA polymerase II, as well as with TBP and TEF-1; (ii) these interactions can also occur when these transcription factors are present in their functional states in cellular extracts; (iii) binding of Tag to TBP is eliminated by preincubation of TBP either at 48 degrees C or with the adenovirus 13S E1a protein; (iv) this domain of Tag cannot bind concurrently to more than one of these transcription factors; and (v) the substitution of Tag amino acid residues 173 and 174 inactivates the ability of this Tag domain both to associate with any of these transcription factors and to transactivate the SV40 late promoter. Thus, we conclude that SV40 Tag probably does not transactivate via the concurrent interaction with multiple components of the preinitiation complex. Rather, we hypothesize that transactivation by Tag may primarily occur by removing or preventing the binding of factors that inhibit the formation of preinitiation complexes.

摘要

猿猴病毒40(SV40)大T抗原(Tag)是一种具有广泛作用的转录反式激活因子;然而,其反式激活机制仍不清楚。最近的研究表明,它可能与TFIID的TATA盒结合蛋白TBP以及增强子结合因子TEF-1存在蛋白质-蛋白质相互作用。我们在此表明:(i)包含氨基酸133至249的Tag结构域直接与通用转录因子TFIIB、激活蛋白Sp1、RNA聚合酶II的140 kDa亚基以及TBP和TEF-1相互作用;(ii)当这些转录因子以其在细胞提取物中的功能状态存在时,这些相互作用也会发生;(iii)通过在48℃下预孵育TBP或与腺病毒13S E1a蛋白预孵育,可消除Tag与TBP的结合;(iv)Tag的这一结构域不能同时与这些转录因子中的多个结合;(v)Tag氨基酸残基173和174的替换使该Tag结构域与任何这些转录因子结合以及反式激活SV40晚期启动子的能力失活。因此,我们得出结论,SV40 Tag可能不会通过与起始前复合物的多个组分同时相互作用来进行反式激活。相反,我们推测Tag的反式激活可能主要通过去除或阻止抑制起始前复合物形成的因子的结合来发生。

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