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Transcription termination by RNA polymerase III: uncoupling of polymerase release from termination signal recognition.

机译:RNA聚合酶III终止转录:终止信号识别使聚合酶释放解偶联。

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Xenopus RNA polymerase III specifically initiates transcription on poly(dC)-tailed DNA templates in the absence of other class III transcription factors normally required for transcription initiation. In experimental analyses of transcription termination using DNA fragments with a 5S rRNA gene positioned downstream of the tailed end, only 40% of the transcribing polymerase molecules terminate at the normally efficient Xenopus borealis somatic-type 5S rRNA terminators; the remaining 60% read through these signals and give rise to runoff transcripts. We find that the nascent RNA strand is inefficiently displaced from the DNA template during transcription elongation. Interestingly, only polymerases synthesizing a displaced RNA terminate at the 5S rRNA gene terminators; when the nascent RNA is not displaced from the template, read-through transcripts are synthesized. RNAs with 3' ends at the 5S rRNA gene terminators are judged to result from authentic termination events on the basis of multiple criteria, including kinetic properties, the precise 3' ends generated, release of transcripts from the template, and recycling of the polymerase. Even though only 40% of the polymerase molecules ultimately terminate at either of the tandem 5S rRNA gene terminators, virtually all polymerases pause there, demonstrating that termination signal recognition can be experimentally uncoupled from polymerase release. Thus, termination is dependent on RNA strand displacement during transcription elongation, whereas termination signal recognition is not. We interpret our results in terms of a two-step model for transcription termination in which polymerase release is dependent on the fate of the nascent RNA strand during transcription elongation.
机译:非洲爪蟾RNA聚合酶III在缺乏通常需要转录起始的其他III类转录因子的情况下,特异性地在聚(dC)尾巴DNA模板上起始转录。在使用具有位于尾端下游的5S rRNA基因的DNA片段进行转录终止的实验分析中,只有40%的转录聚合酶分子终止于通常有效的北方爪蟾体细胞型5S rRNA终止子。其余的60%会通读这些信号并产生径流记录。我们发现,新生的RNA链在转录延伸过程中不能有效地从DNA模板中移出。有趣的是,只有合成置换的RNA的聚合酶才在5S rRNA基因终止子处终止。当新生RNA没有从模板上移出时,将合成通读转录本。在多个标准的基础上,判断5S rRNA基因终止子具有3'末端的RNA是由真实的终止事件导致的,包括动力学特性,精确的3'末端生成,转录本从模板的释放以及聚合酶的回收利用。即使只有40%的聚合酶分子最终终止于任何一个串联5S rRNA基因终止子,实际上所有聚合酶都在此处终止,这表明终止信号识别可以从实验上与聚合酶释放脱钩。因此,终止取决于转录延伸期间的RNA链位移,而终止信号识别则不依赖于RNA链的位移。我们用转录终止的两步模型来解释我们的结果,其中聚合酶的释放取决于转录延伸过程中新生RNA链的命运。

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