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Termination Factor Rho and Its Cofactors NusA and NusG Silence Foreign DNA in E. coli

机译:终止因子Rho及其辅因子NusA和NusG沉默大肠杆菌中的外源DNA

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Transcription of the bacterial genome by the RNA polymerase must terminate at specific points. Transcription can be terminated by Rho factor, an essential protein in enterobacteria. We used the antibiotic bicyclomycin, which inhibits Rho, to assess its role on a genome-wide scale. Rho is revealed as a global regulator of gene expression that matches Escherichia coli transcription to translational needs. We also found that genes in E coli that are most repressed by Rho are prophages and other horizontally acquired portions of the genome. Elimination of these foreign DNA elements increases resistance to bicyclomycin. Although rho remains essential, such reduced-genome bacteria no longer require Rho cofactors NusA and NusG. Deletion of the cryptic rac prophage in wild-type E coli increases bicyclomycin resistance and permits deletion of nusG. Thus, Rho termination, supported by NusA and NusG, is required to suppress the toxic activity of foreign genes.
机译:RNA聚合酶对细菌基因组的转录必须在特定点终止。转录可以通过Rho因子终止,Rho因子是肠杆菌中的必需蛋白。我们使用了抑制Rho的抗生素双环霉素来评估其在全基因组范围内的作用。 Rho被揭示为基因表达的全球调节者,可将大肠杆菌转录与翻译需求相匹配。我们还发现,Rho最受大肠杆菌抑制的基因是噬菌体和基因组的其他水平获得部分。消除这些外源DNA元素会增加对双环霉素的抗性。尽管rho仍然必不可少,但这种基因组减少的细菌不再需要Rho辅助因子NusA和NusG。野生型大肠杆菌中隐性rac噬菌体的删除增加了双环霉素抗性,并允许删除nusG。因此,需要由NusA和NusG支持的Rho终止来抑制外源基因的毒性。

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