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人类通用转录因子TFIIA:编码小亚基的cDNA的特性以及基础转录和激活转录的需求

Human general transcription factor TFIIA: characterization of a cDNA encoding the small subunit and requirement for basal and activated transcription.

作者信息

DeJong J, Bernstein R, Roeder R G

机构信息

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

出版信息

Proc Natl Acad Sci U S A. 1995 Apr 11;92(8):3313-7. doi: 10.1073/pnas.92.8.3313.

Abstract

The human general transcription factor TFIIA is one of several factors involved in specific transcription by RNA polymerase II, possibly by regulating the activity of the TATA-binding subunit (TBP) of TFIID. TFIIA purified from HeLa extracts consists of 35-, 19-, and 12-kDa subunits. Here we describe the isolation of a cDNA clone (hTFIIA gamma) encoding the 12-kDa subunit. Using expression constructs derived from hTFIIA gamma and TFIIA alpha/beta (which encodes a 55-kDa precursor to the alpha and beta subunits of natural TFIIA), we have constructed a synthetic TFIIA with a polypeptide composition similar to that of natural TFIIA. The recombinant complex supports the formation of a DNA-TBP-TFIIA complex and mediates both basal and Gal4-VP16-activated transcription by RNA polymerase II in TFIIA-depleted nuclear extracts. In contrast, TFIIA has no effect on tRNA and 5S RNA transcription by RNA polymerase III in this system. We also present evidence that both the p55 and p12 recombinant subunits interact with TBP and that the basic region of TBP is critical for the TFIIA-dependent function of TBP in nuclear extracts.

摘要

人类通用转录因子TFIIA是参与RNA聚合酶II特异性转录的几种因子之一,可能是通过调节TFIID的TATA结合亚基(TBP)的活性来实现的。从HeLa细胞提取物中纯化得到的TFIIA由35 kDa、19 kDa和12 kDa的亚基组成。在此,我们描述了编码12 kDa亚基的cDNA克隆(hTFIIAγ)的分离过程。利用源自hTFIIAγ和TFIIAα/β(其编码天然TFIIA的α和β亚基的55 kDa前体)的表达构建体,我们构建了一种多肽组成与天然TFIIA相似的合成TFIIA。该重组复合物支持DNA-TBP-TFIIA复合物的形成,并在TFIIA缺失的核提取物中介导RNA聚合酶II的基础转录和Gal4-VP16激活的转录。相比之下,在该系统中TFIIA对RNA聚合酶III转录tRNA和5S RNA没有影响。我们还提供了证据表明p55和p12重组亚基均与TBP相互作用,并且TBP的碱性区域对于核提取物中TBP依赖于TFIIA的功能至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e801/42156/5f8215130bfa/pnas01492-0247-a.jpg

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