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Transcription termination at intrinsic terminators: the role of the RNA hairpin.

机译:固有终止子的转录终止:RNA发夹的作用。

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摘要

Intrinsic termination of transcription in Escherichia coli involves the formation of an RNA hairpin in the nascent RNA. This hairpin plays a central role in the release of the transcript and polymerase at intrinsic termination sites on the DNA template. We have created variants of the lambda tR2 terminator hairpin and examined the relationship between the structure and stability of this hairpin and the template positions and efficiencies of termination. The results were used to test the simple nucleic acid destabilization model of Yager and von Hippel and showed that this model must be modified to provide a distinct role for the rU-rich sequence in the nascent RNA, since a perfect palindromic sequence that is sufficiently long to form an RNA hairpin that could destabilize the entire putative 12-bp RNA-DNA hybrid does not trigger termination at the expected positions. Rather, our results show that both a stable terminator hairpin and the run of 6-8 rU residues that immediately follows are required for effective intrinsic termination and that termination occurs at specific and invariant template positions relative to these two components. Possible structural or kinetic modifications of the simple model are proposed in the light of these findings and of recent results implicating "inchworming" and possible conformational heterogeneity of transcription complexes in intrinsic termination. Thus, these findings argue that the structure and dimensions of the hairpin are important determinants of the termination-elongation decision and suggest that a complete mechanism is likely to involve specific interactions of the polymerase, the RNA terminator hairpin, and, perhaps, the dT-rich template sequence that codes for the run of rU residues at the 3' end of the nascent transcript.
机译:大肠杆菌内在的转录终止涉及在新生的RNA中形成RNA发夹。该发夹在DNA模板内在终止位点的转录物和聚合酶的释放中起关键作用。我们创建了λtR2终止子发夹的变体,并研究了该发夹的结构和稳定性与模板位置和终止效率之间的关系。结果被用于测试Yager和von Hippel的简单核酸去稳定模型,并表明必须修改此模型以为新生RNA中的rU-rich序列提供独特的作用,因为完美的回文序列足够长形成可能使整个推定的12 bp RNA-DNA杂合物不稳定的RNA发夹不会触发预期位置的终止。相反,我们的结果表明,有效的内在终止需要稳定的终止子发夹和紧随其后的6-8个rU残基,并且终止发生在相对于这两个组件的特定且不变的模板位置。根据这些发现和最近的结果,提出了对简单模型的可能的结构或动力学修饰,这些结果暗示了“ worm虫”和内在终止中转录复合物的构象异质性。因此,这些发现认为发夹的结构和尺寸是终止-延伸决定的重要决定因素,并暗示完整的机制很可能涉及聚合酶,RNA终止子发夹以及dT-丰富的模板序列,可编码新生转录本3'末端的rU残基序列。

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