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盖子元件在大肠杆菌RNA聚合酶转录过程中的作用。

The role of the lid element in transcription by E. coli RNA polymerase.

作者信息

Toulokhonov Innokenti, Landick Robert

机构信息

Department of Bacteriology, University of Wisconsin-Madison, Madison, WI 53706, USA.

出版信息

J Mol Biol. 2006 Aug 25;361(4):644-58. doi: 10.1016/j.jmb.2006.06.071. Epub 2006 Jul 27.

Abstract

The recently described crystal structures of multi-subunit RNA polymerases (RNAPs) reveal a conserved loop-like feature called the lid. The lid projects from the clamp domain and contacts the flap, thereby enclosing the RNA transcript in RNAP's RNA-exit channel and forming the junction between the exit channel and the main channel, which holds the RNA:DNA hybrid. In the initiating form of bacterial RNAP (holoenzyme containing sigma), the lid interacts with sigma region 3 and encloses an extended linker between sigma region 3 and sigma region 4 in place of the RNA in the exit channel. During initiation, the lid may be important for holding open the transcription bubble and may help displace the RNA from the template DNA strand. To test these ideas, we constructed and characterized a mutant RNAP from which the lid element was deleted. Deltalid RNAP exhibited dramatically reduced activity during initiation from -35-dependent and -35-independent promoters, verifying that the lid is important for stabilizing the open promoter complex during initiation. However, transcript elongation, RNA displacement, and, surprisingly, transcriptional termination all occurred normally in Deltalid RNAP. Importantly, Deltalid RNAP behaved differently from wild-type RNAP when transcribing single-stranded DNA templates where it synthesized long, persistent RNA:DNA hybrids, in contrast to efficient transcriptional arrest by wild-type RNAP.

摘要

最近描述的多亚基RNA聚合酶(RNAPs)的晶体结构揭示了一种名为盖子的保守环状特征。盖子从钳结构域突出并与翼片接触,从而将RNA转录本封闭在RNAP的RNA出口通道中,并形成出口通道与容纳RNA:DNA杂交体的主通道之间的连接点。在细菌RNAP的起始形式(含σ因子的全酶)中,盖子与σ因子区域3相互作用,并在出口通道中取代RNA,将σ因子区域3和σ因子区域4之间的延伸连接子封闭起来。在起始过程中,盖子对于维持转录泡的开放可能很重要,并且可能有助于将RNA从模板DNA链上置换下来。为了验证这些想法,我们构建并表征了一种缺失盖子元件的突变RNAP。缺失盖子的RNAP在依赖-35和不依赖-35的启动子起始过程中表现出显著降低的活性,证实了盖子在起始过程中对于稳定开放启动子复合物很重要。然而,转录延伸、RNA置换以及令人惊讶的是转录终止在缺失盖子的RNAP中均正常发生。重要的是,当转录单链DNA模板时,缺失盖子的RNAP表现与野生型RNAP不同,它能合成长的、持久的RNA:DNA杂交体,而野生型RNAP则会有效转录停滞。

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