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新生RNA结构与RNA聚合酶的相互作用是发夹依赖性转录暂停所必需的,但不是转录本释放所必需的。

Interaction of a nascent RNA structure with RNA polymerase is required for hairpin-dependent transcriptional pausing but not for transcript release.

作者信息

Artsimovitch I, Landick R

机构信息

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

出版信息

Genes Dev. 1998 Oct 1;12(19):3110-22. doi: 10.1101/gad.12.19.3110.

Abstract

Nascent RNA structures may regulate RNA chain elongation either directly through interaction with RNA polymerase or indirectly by disrupting nascent RNA contacts with polymerase or DNA. To distinguish these mechanisms we tested whether the effects of the his leader pause RNA hairpin could be mimicked by pairing of antisense DNA or RNA oligonucleotides to the nascent transcript. The his pause hairpin inhibits nucleotide addition when it forms 11 nucleotides from the transcript 3' end. It also can terminate transcription when base changes extend its stem to </=8 nucleotides from the 3' end. All oligonucleotides that disrupted the pause hairpin reduced the dwell time of RNA polymerase at the pause site dramatically, even when they mimicked the 11-nucleotide 3'-proximal RNA spacing or created a suitably positioned RNA loop. Oligonucleotides that paired </=8 nucleotides from the pause RNA 3' end could trigger transcript release, but only when added to an already paused complex. These results argue that direct interaction of a nascent RNA hairpin with RNA polymerase delays escape from a pause, but that indirect effects of a hairpin may trigger transcript release from a paused complex. Resistance of the paused complex to pyrophosphorolysis and its reversal by antisense oligonucleotides further suggest that interaction of the pause hairpin with RNA polymerase disengages the RNA 3' end from the active site.

摘要

新生RNA结构可能通过与RNA聚合酶相互作用直接调节RNA链延伸,或者通过破坏新生RNA与聚合酶或DNA的接触间接调节。为了区分这些机制,我们测试了组氨酸前导序列暂停RNA发夹结构的作用是否可以通过将反义DNA或RNA寡核苷酸与新生转录本配对来模拟。组氨酸暂停发夹结构在距离转录本3'端11个核苷酸处形成时会抑制核苷酸添加。当碱基变化将其茎延伸至距离3'端≤8个核苷酸时,它也可以终止转录。所有破坏暂停发夹结构的寡核苷酸都会显著缩短RNA聚合酶在暂停位点的停留时间,即使它们模拟了11个核苷酸的3'近端RNA间距或形成了位置合适的RNA环。在距离暂停RNA 3'端≤8个核苷酸处配对的寡核苷酸可以触发转录本释放,但仅在添加到已经暂停的复合物时才会发生。这些结果表明,新生RNA发夹结构与RNA聚合酶的直接相互作用会延迟从暂停状态逃逸,但发夹结构的间接作用可能会触发转录本从暂停复合物中释放。暂停复合物对焦磷酸解的抗性以及反义寡核苷酸对其的逆转进一步表明,暂停发夹结构与RNA聚合酶的相互作用使RNA 3'端与活性位点脱离。

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本文引用的文献

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