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噬菌体λQ抗终止蛋白作为转录延伸复合物的稳定组分调节晚期基因表达。

The bacteriophage lambdaQ anti-terminator protein regulates late gene expression as a stable component of the transcription elongation complex.

作者信息

Deighan Padraig, Hochschild Ann

机构信息

Department of Microbiology and Molecular Genetics, Harvard Medical School, 200 Longwood Ave., Boston, MA 02115, USA.

出版信息

Mol Microbiol. 2007 Feb;63(3):911-20. doi: 10.1111/j.1365-2958.2006.05563.x.

Abstract

The Q protein of bacteriophage lambda (lambdaQ) is a transcription anti-terminator required for the expression of the phage's late genes under the control of promoter P(R'). To effect terminator read-through, lambdaQ must gain access to RNA polymerase (RNAP) via a promoter-restricted pathway. In particular, lambdaQ modifies RNAP by binding a specific DNA site embedded in P(R') and interacting with RNAP in the context of a specific paused early elongation complex. The resultant lambdaQ-modified transcription elongation complex is competent to read through downstream termination signals. Here we use a chromatin-immunoprecipitation assay to test the hypothesis that lambdaQ functions as a stable component of the transcription elongation complex. Our results indicate that, in vivo, the lambdaQ-modified transcription elongation complex contains Q as a stably associated subunit. Furthermore, we find that in the physiologically relevant context of an induced lambda lysogen, Q remains stably associated with RNAP as it transcribes at least 22 kb of the phage late operon. Thus, our findings suggest that the promoter-specific pathway leading to lambdaQ-mediated terminator read-through results in the formation of a highly stable lambdaQ-containing transcription elongation complex capable of traversing the entire late operon.

摘要

噬菌体λ的Q蛋白(λQ)是一种转录抗终止因子,在启动子P(R')的控制下,它是噬菌体晚期基因表达所必需的。为了实现终止子通读,λQ必须通过一条启动子限制途径与RNA聚合酶(RNAP)结合。具体而言,λQ通过结合嵌入在P(R')中的特定DNA位点,并在特定的早期延伸暂停复合物的背景下与RNAP相互作用,从而修饰RNAP。由此产生的λQ修饰的转录延伸复合物能够通读下游的终止信号。在这里,我们使用染色质免疫沉淀试验来检验λQ作为转录延伸复合物的稳定成分发挥作用这一假设。我们的结果表明,在体内,λQ修饰的转录延伸复合物包含作为稳定结合亚基的Q。此外,我们发现,在诱导型λ溶原菌的生理相关环境中,当Q转录噬菌体晚期操纵子的至少22 kb时,它仍与RNAP稳定结合。因此,我们的研究结果表明,导致λQ介导的终止子通读的启动子特异性途径会形成一种高度稳定的、含有λQ的转录延伸复合物,该复合物能够转录整个晚期操纵子。

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