首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Escherichia coli transcript cleavage factors GreA and GreB stimulate promoter escape and gene expression in vivo and in vitro.
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Escherichia coli transcript cleavage factors GreA and GreB stimulate promoter escape and gene expression in vivo and in vitro.

机译:大肠杆菌转录物切割因子GreA和GreB在体内和体外刺激启动子逃逸和基因表达。

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摘要

The process of RNA chain initiation by RNA polymerases plays a central role in the regulation of transcription. In this complex phase of transcription, short oligomers are synthesized and released from the enzyme-promoter complex in a reaction termed abortive initiation. The polymerase undergoes many cycles of abortive initiation prior to completion of the initiation process, which is signaled by the translocation of the enzyme away from the promoter, release of sigma factor, and formation of an elongation complex in which the RNA is stably bound. We have studied the parameters that affect escape from the promoter by Escherichia coli RNA polymerase for the phage T7 A1 promoter, the phage T5 N25 promoter, and the chimeric promoter T5 N25antiDSR. The latter site contains a synthetic initial transcribed region that reduces its ability to synthesize RNA both in vivo and in vitro. Clearance from T5 N25antiDSR can be stimulated up to 10-fold in vitro by addition of the E. coli transcript cleavage factor GreA or GreB, but these factors have little effect on transcription from the normal T7 A1 or T5 N25 promoters. Using an E. coli strain lacking GreA and GreB, we were also able to show stimulation of transcription by the Gre factors from the T5 N25antiDSR promotor in vivo. The stimulation of RNA chain initiation by Gre factors, together with their known biochemical properties in the transcription elongation reaction, suggests some specific models for steps in the transcription initiation reaction.
机译:RNA聚合酶启动RNA链的过程在转录调控中起着核心作用。在这个复杂的转录阶段,合成了短的寡聚物,并在称为流产起始的反应中从酶促启动子复合物中释放出来。聚合酶在启动过程完成之前经历了许多次中止启动的循环,这是通过酶从启动子处转移,释放sigma因子以及形成稳定结合RNA的延伸复合物来表示的。我们已经研究了影响大肠杆菌RNA聚合酶从噬菌体T7 A1启动子,噬菌体T5 N25启动子和嵌合启动子T5 N25antiDSR逃离启动子的参数。后一个位点包含一个合成的初始转录区域,该区域在体内和体外均降低了其合成RNA的能力。通过添加大肠杆菌转录物切割因子GreA或GreB,可以在体外将T5 N25antiDSR的清除率最多刺激10倍,但是这些因子对正常T7 A1或T5 N25启动子的转录影响很小。使用缺少GreA和GreB的大肠杆菌菌株,我们还能够显示出体内T5 N25antiDSR启动子的Gre因子对转录的刺激。 Gre因子对RNA链起始的刺激,以及它们在转录延伸反应中的已知生化特性,共同为转录起始反应的步骤提供了一些特定的模型。

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