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NusB和NusG通过抗终止子对转录延伸速率进行调控。

Antiterminator-dependent modulation of transcription elongation rates by NusB and NusG.

作者信息

Zellars M, Squires C L

机构信息

Department of Molecular Biology and Microbiology, Tufts University School of Medicine, 136 Harrison Avenue, Boston, MA 02111, USA.

出版信息

Mol Microbiol. 1999 Jun;32(6):1296-304. doi: 10.1046/j.1365-2958.1999.01442.x.

Abstract

Ribosomal RNA is transcribed about twice as fast as messenger RNA in vivo, and this increased transcription rate requires the rrn boxA antitermination system. Because several Nus factors have been implicated in rrn antitermination, we have examined the role of NusB, NusE and NusG in controlling the rate of rrn boxA-mediated transcript elongation. In vivo RNA polymerase transcription rates were determined by measuring the rate of appearance of lacZ transcript using a plasmid that contained an inducible T7 promoter fused to the rrn boxA sequence followed by the lacZ gene. This plasmid was introduced into Escherichia coli mutant strains that can be conditionally depleted of NusG, or that carry a deficient nusB gene or a nusE mutation. We found that, in addition to the rrn boxA antiterminator sequence, both NusG and NusB were required to maintain the high transcription rate. The nusE mutation used in this study may be specific for lambda antitermination, as it did not influence the boxA-mediated increase in transcription rate.

摘要

在体内,核糖体RNA的转录速度大约是信使RNA的两倍,而这种转录速度的提高需要rrn boxA抗终止系统。由于几种Nus因子与rrn抗终止有关,我们研究了NusB、NusE和NusG在控制rrn boxA介导的转录延伸速率中的作用。通过使用一个质粒来测定体内RNA聚合酶的转录速率,该质粒含有一个与rrn boxA序列融合的可诱导T7启动子,随后是lacZ基因,通过测量lacZ转录本出现的速率来确定。将该质粒导入大肠杆菌突变菌株中,这些菌株可以有条件地耗尽NusG,或者携带缺陷的nusB基因或nusE突变。我们发现,除了rrn boxA抗终止序列外,NusG和NusB都需要维持高转录速率。本研究中使用的nusE突变可能对λ抗终止具有特异性,因为它不影响boxA介导的转录速率增加。

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