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首页> 外文期刊>Archives of microbiology >Genetic analysis of bacteriophage lambdaN-dependent antitermination suggests a possible role for the RNA polymerase alpha subunit in facilitating specific functions of NusA and NusE.
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Genetic analysis of bacteriophage lambdaN-dependent antitermination suggests a possible role for the RNA polymerase alpha subunit in facilitating specific functions of NusA and NusE.

机译:噬菌体lambdaN依赖性抗终止的遗传分析表明,RNA聚合酶α亚基在促进NusA和NusE的特定功能中可能发挥作用。

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摘要

A role for the Escherichia coli RNA polymerase alpha subunit in transcription antitermination dependent on bacteriophage lambda N protein has been previously inferred from the isolation of rpoA mutants that alter the efficiency of this process. This report describes studies on the efficiency of N-dependent transcription antitermination in a strain containing the rpoA341 mutation, which interferes with this process. The effect of mutations in genes coding for different Nus factors and/or plasmids overexpressing nus genes on bacteriophage lambda development in an E. coli rpoA341 host was examined. In addition, the effect of overproduction of the N protein in these genetic backgrounds was assessed. Analogous bacterial strains were employed to measure the efficiency of the antitermination process using the lacZ reporter gene under control of the lambda p(R) promoter, and containing the phage nutR region and the t( R1) terminator between the promoter and lacZ. The experimental results suggest interactions between components of the N-antitermination complex, which have been established biochemically, as well as additional functional relationships within the complex. Furthermore, the results indicate that amino acid substitution in the alpha subunit C-terminal domain encoded by the rpoA341 mutation may specifically disrupt the function of the NusA and NusE proteins. During this analysis, it was also found that the E. coli nusA1 mutant exhibits a conditional lethal phenotype.
机译:先前已从分离rpoA突变体的方法中推断出了大肠杆菌RNA聚合酶α亚基在依赖噬菌体λN蛋白的转录抗终止中的作用。该报告描述了在含有rpoA341突变的菌株中N依赖性转录抗终止作用的研究,该菌株干扰了该过程。检查了编码不同Nus因子的基因中的突变和/或过表达nus基因的质粒对大肠杆菌rpoA341宿主中噬菌体λ发育的影响。另外,评估了在这些遗传背景中N蛋白过量产生的影响。使用类似的细菌菌株,在lambda p(R)启动子的控制下使用lacZ报告基因,并在启动子和lacZ之间包含噬菌体nutR区和t(R1)终止子,来测量抗终止过程的效率。实验结果表明,已通过生物化学方法确定的N-抗终止复合物各成分之间的相互作用,以及复合物中的其他功能关系。此外,结果表明,由rpoA341突变编码的α亚基C末端结构域中的氨基酸取代可能会特异性破坏NusA和NusE蛋白的功能。在此分析过程中,还发现大肠杆菌nusA1突变体表现出条件致死表型。

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