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RNA聚合酶III通用转录因子BRF的保守功能结构域。

Conserved functional domains of the RNA polymerase III general transcription factor BRF.

作者信息

Khoo B, Brophy B, Jackson S P

机构信息

Wellcome/CRC Institute, Cambridge University, UK.

出版信息

Genes Dev. 1994 Dec 1;8(23):2879-90. doi: 10.1101/gad.8.23.2879.

Abstract

In Saccharomyces cerevisiae, two components of the RNA polymerase III (Pol III) general transcription factor TFIIIB are the TATA-binding protein (TBP) and the B-related factor (BRF), so called because its amino-terminal half is homologous to the Pol II transcription factor IIB (TFIIB). We have cloned BRF genes from the yeasts Kluyveromyces lactis and Candida albicans. Despite the large evolutionary distance between these species and S. cerevisiae, the BRF proteins are conserved highly. Although the homology is most pronounced in the amino-terminal half, conserved regions also exist in the carboxy-terminal half that is unique to BRF. By assaying for interactions between BRF and other Pol III transcription factors, we show that it is able to bind to the 135-kD subunit of TFIIIC and also to TBP. Surprisingly, in addition to binding the TFIIB-homologous amino-terminal portion of BRF, TBP also interacts strongly with the carboxy-terminal half. Deleting two conserved regions in the BRF carboxy-terminal region abrogates this interaction. Furthermore, TBP mutations that selectively inhibit Pol III transcription in vivo impair interactions between TBP and the BRF carboxy-terminal domain. Finally, we demonstrate that BRF but not TFIIB binds the Pol III subunit C34 and we define a region of C34 necessary for this interaction. These observations provide insights into the roles performed by BRF in Pol III transcription complex assembly.

摘要

在酿酒酵母中,RNA聚合酶III(Pol III)通用转录因子TFIIIB的两个组分是TATA结合蛋白(TBP)和B相关因子(BRF),之所以这样称呼是因为其氨基末端的一半与Pol II转录因子IIB(TFIIB)同源。我们已经从乳酸克鲁维酵母和白色念珠菌中克隆了BRF基因。尽管这些物种与酿酒酵母之间存在很大的进化距离,但BRF蛋白却高度保守。虽然同源性在氨基末端的一半最为明显,但在BRF特有的羧基末端的一半也存在保守区域。通过检测BRF与其他Pol III转录因子之间的相互作用,我们发现它能够与TFIIIC的135-kD亚基结合,也能与TBP结合。令人惊讶的是,除了结合BRF的TFIIB同源氨基末端部分外,TBP还与羧基末端的一半强烈相互作用。删除BRF羧基末端区域中的两个保守区域会消除这种相互作用。此外,在体内选择性抑制Pol III转录的TBP突变会损害TBP与BRF羧基末端结构域之间的相互作用。最后,我们证明BRF而非TFIIB结合Pol III亚基C34,并且我们确定了这种相互作用所需的C34区域。这些观察结果为BRF在Pol III转录复合物组装中所起的作用提供了见解。

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