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An aromatic residue switch in enhancer-dependent bacterial RNA polymerase controls transcription intermediate complex activity

机译:增强子依赖性细菌RNA聚合酶中的芳香族残基开关控制转录中间体复合物的活性

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摘要

The formation of the open promoter complex (RPo) in which the melted DNA containing the transcription start site is located at the RNA polymerase (RNAP) catalytic centre is an obligatory step in the transcription of DNA into RNA catalyzed by RNAP. In the RPo, an extensive network of interactions is established between DNA, RNAP and the Sigma-factor and the formation of functional RPo occurs via a series of transcriptional intermediates (collectively 'RPi'). A single tryptophan is ideally positioned to directly engage with the flipped out base of the non-template strand at the +1 site. Evidence suggests that this tryptophan (i) is involved in either forward translocation or DNA scrunching and (ii) in Sigma(54)-regulated promoters limits the transcription activity of at least one intermediate complex (RPi) before the formation of a fully functional RPo. Limiting RPi activity may be important in preventing the premature synthesis of abortive transcripts, suggesting its involvement in a general mechanism driving the RPi to RPo transition for transcription initiation.
机译:开放的启动子复合体(RPo)的形成是将转录起始位点融化的DNA定位在RNA聚合酶(RNAP)催化中心的过程,这是DNA转录为RNAP催化的RNA的必不可少的步骤。在RPo中,DNA,RNAP和Sigma因子之间建立了广泛的相互作用网络,而功能性RPo的形成则通过一系列转录中间体(统称为“ RPi”)发生。理想情况下,单个色氨酸的位置应与+1位非模板链的翻转碱基直接接合。有证据表明,该色氨酸(i)参与正向转运或DNA分离,并且(ii)在Sigma(54)调控的启动子中限制了至少一个中间复合物(RPi)的转录活性,直至形成功能完整的RPo 。限制RPi活性对于防止流产转录本的过早合成可能很重要,表明其参与了驱动RPi向RPo过渡以启动转录的一般机制。

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