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大肠杆菌rho因子ATP结合结构域中的突变影响体内转录终止。

Mutations in the ATP-binding domain of Escherichia coli rho factor affect transcription termination in vivo.

作者信息

Dombroski A J, Platt T

机构信息

Department of Biochemistry, University of Rochester Medical Center, New York 14642.

出版信息

J Bacteriol. 1990 May;172(5):2477-84. doi: 10.1128/jb.172.5.2477-2484.1990.

Abstract

Five mutant rho proteins, representing alterations at three different locations in the Escherichia coli rho gene that affect ATP hydrolytic activity but not RNA binding, were examined in vivo for function at the rho-dependent IS2 and bacteriophage lambda tR1 terminators. The altered amino acids in rho are located at highly conserved residues near the beta 1 and beta 4 strands of the hydrophobic ATP-binding pocket that is structurally similar to the F1-type ATPases and adenylate kinase. The RNA-dependent ATPase activities of the mutant rho proteins were previously shown to range from undetectable to a twofold increase over wild-type rho in vitro. Analysis of these proteins within the environment of the cell confirmed that transcription termination in vivo is indeed related to the ability of rho factor to properly hydrolyze nucleoside triphosphates, as would be predicted from results in vitro. The relative efficiency of termination at lambda tR1, as judged by lambda N= plating efficiency and by suppression of polarity of IS2 upstream of galK, was closely linked to the level of RNA-dependent ATPase activity observed in vitro for each protein. Moreover, the termination efficiency of four of the altered rho proteins at IS2 and lambda tR1 in vivo corresponded directly to the effect of these mutations on rho function at the E. coli trp t' terminator in vitro. We conclude that determinations of rho function in vitro accurately reflect its behavior in intracellular termination events.

摘要

研究了五种突变的rho蛋白,它们代表大肠杆菌rho基因中三个不同位置的改变,这些改变影响ATP水解活性但不影响RNA结合,在体内检测它们在rho依赖的IS2和噬菌体λ tR1终止子处的功能。rho中改变的氨基酸位于疏水ATP结合口袋的β1和β4链附近的高度保守残基处,该口袋在结构上类似于F1型ATP酶和腺苷酸激酶。先前已表明,突变rho蛋白的RNA依赖性ATP酶活性在体外从不可检测到比野生型rho增加两倍不等。在细胞环境中对这些蛋白质的分析证实,体内转录终止确实与rho因子正确水解核苷三磷酸的能力有关,这正如体外实验结果所预测的那样。通过λ N =平板效率和通过抑制galK上游IS2的极性来判断,在λ tR1处的终止相对效率与体外观察到的每种蛋白质的RNA依赖性ATP酶活性水平密切相关。此外,四种改变的rho蛋白在体内IS2和λ tR1处的终止效率直接对应于这些突变对体外大肠杆菌trp t'终止子处rho功能的影响。我们得出结论,体外rho功能的测定准确反映了其在细胞内终止事件中的行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e00/208886/71edeaee271f/jbacter00119-0295-a.jpg

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