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σ⁵⁴区域I的反式作用功能及其对转录激活的影响

Functions of the sigma(54) region I in trans and implications for transcription activation.

作者信息

Gallegos M T, Cannon W V, Buck M

机构信息

Department of Biology, Imperial College of Science Technology and Medicine, Sir Alexander Fleming Building, Imperial College Road, London SW7 2AZ, United Kingdom.

出版信息

J Biol Chem. 1999 Sep 3;274(36):25285-90. doi: 10.1074/jbc.274.36.25285.

Abstract

Control of transcription frequently involves the direct interaction of activators with RNA polymerase. In bacteria, the formation of stable open promoter complexes by the sigma(54) RNA polymerase is critically dependent on sigma(54) amino Region I sequences. Their presence correlates with activator dependence, and removal allows the holoenzyme to engage productively with melted DNA independently of the activator. Using purified Region I sequences and holoenzymes containing full-length or Region I-deleted sigma(54), we have explored the involvement of Region I in transcription activation. Results show that Region I in trans inhibits a reversible conformational change in the holoenzyme believed to be polymerase isomerization. Evidence is presented indicating that the holoenzyme (and not the promoter DNA per se) is one interacting target used by Region I in preventing polymerase isomerization. Activator overcomes this inhibition in a reaction requiring nucleotide hydrolysis. Region I in trans is able to inhibit activated transcription by the holoenzyme containing full-length sigma(54). Inhibition appeared to be noncompetitive with respect to the activator, suggesting that a direct activator interaction occurs with parts of the holoenzyme outside Region I. Stabilization of isomerized holoenzyme bound to melted DNA by Region I in trans occurs largely independently of the initiating nucleotide, suggesting a role for Region I in maintaining the open complex.

摘要

转录调控通常涉及激活因子与RNA聚合酶的直接相互作用。在细菌中,σ⁵⁴RNA聚合酶形成稳定的开放启动子复合物严重依赖于σ⁵⁴的氨基区域I序列。它们的存在与激活因子依赖性相关,去除该区域可使全酶独立于激活因子与解链的DNA有效结合。利用纯化的区域I序列以及含有全长或缺失区域I的σ⁵⁴的全酶,我们探究了区域I在转录激活中的作用。结果表明,反式的区域I抑制了全酶中一种被认为是聚合酶异构化的可逆构象变化。有证据表明,全酶(而非启动子DNA本身)是区域I在阻止聚合酶异构化过程中使用的一个相互作用靶点。激活因子在需要核苷酸水解的反应中克服了这种抑制作用。反式的区域I能够抑制含有全长σ⁵⁴的全酶的激活转录。这种抑制作用似乎对激活因子不具有竞争性,这表明激活因子与区域I之外的全酶部分发生了直接相互作用。反式的区域I对结合到解链DNA上的异构化全酶的稳定作用在很大程度上独立于起始核苷酸,这表明区域I在维持开放复合物中发挥作用。

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