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TFIIIC1通过一个下游区域发挥作用,以稳定TFIIIC2与RNA聚合酶III启动子的结合。

TFIIIC1 acts through a downstream region to stabilize TFIIIC2 binding to RNA polymerase III promoters.

作者信息

Wang Z, Roeder R G

机构信息

The Rockefeller University, New York, New York 10021, USA.

出版信息

Mol Cell Biol. 1996 Dec;16(12):6841-50. doi: 10.1128/MCB.16.12.6841.

Abstract

An in vitro system reconstituted with highly purified RNA polymerase III, TFIIIC2, and TFIIIB has been used to identify two chromatographically distinct human RNA polymerase III transcription factors, TFIIIC1 and TFIIIC1', which are functionally equivalent to the previously defined TFIIIC1 (S. T. Yoshinaga, P. A. Boulanger, and A. J. Berk, Proc. Natl. Acad. Sci. USA 84:3585-3589, 1987). Interactions between TFIIIC2, TFIIIC1 (or TFIIIC1'), and the VA1 and tRNA1(Met) templates have been investigated by DNase I footprint analysis. Homogeneous TFIIIC2 alone shows only a weak footprint over the B-box region of the VA1 and tRNA1(Met) templates, whereas TFIIIC1 (or TFIIIC1') alone shows both a strong interaction over the downstream termination region and a very weak interaction near the A-box region. Importantly, when both factors are present simultaneously, TFIIIC1 (or TFIIIC1') dramatically enhances the level of TFIIIC2 binding and extends the footprint to a region that includes the A box. The downstream termination region is essential for this cooperative interaction between TFIIIC2 and TFIIIC1 (or TFIIIC1') on the VA1 and tRNA1(Met) templates and plays a role in the overall accuracy and efficiency of RNA polymerase III transcription.

摘要

一种用高度纯化的RNA聚合酶III、TFIIIC2和TFIIIB重构的体外系统已被用于鉴定两种色谱性质不同的人类RNA聚合酶III转录因子,TFIIIC1和TFIIIC1',它们在功能上等同于先前定义的TFIIIC1(S.T.吉永、P.A.布朗热和A.J.伯克,《美国国家科学院院刊》84:3585 - 3589,1987)。通过DNase I足迹分析研究了TFIIIC2、TFIIIC1(或TFIIIC1')与VA1和tRNA1(Met)模板之间的相互作用。单独的均一TFIIIC2在VA1和tRNA1(Met)模板的B盒区域仅显示出微弱的足迹,而单独的TFIIIC1(或TFIIIC1')在下游终止区域显示出强烈的相互作用,在A盒区域附近显示出非常微弱的相互作用。重要的是,当两种因子同时存在时,TFIIIC1(或TFIIIC1')显著提高了TFIIIC2的结合水平,并将足迹扩展到包括A盒的区域。下游终止区域对于TFIIIC2和TFIIIC1(或TFIIIC1')在VA1和tRNA1(Met)模板上的这种协同相互作用至关重要,并在RNA聚合酶III转录的整体准确性和效率中发挥作用。

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