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Identification of promoter mutants defective in growth-rate-dependent regulation of rRNA transcription in Escherichia coli.

机译:鉴定在大肠杆菌中rRNA转录的生长速率依赖性调节中有缺陷的启动子突变体。

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摘要

We measured the activities of 50 operon fusions from a collection of mutant and wild-type rrnB P1 (rrnB1p in the nomenclature of B. J. Bachmann and K. B. Low [Microbiol. Rev. 44:1-56, 1980]) promoters under different nutritional conditions in order to analyze the DNA sequence determinants of growth rate-dependent regulation of rRNA transcription in Escherichia coli. Mutants which deviated from the wild-type -10 or -35 hexamers or from the wild-type 16-base-pair spacer length between the hexamers were unregulated, regardless of whether the mutations brought the promoters closer to the E. coli promoter consensus sequence and increased activity or whether the changes took the promoters further away from the consensus and reduced activity. These data suggest that rRNA promoters have evolved to maintain their regulatory abilities rather than to maximize promoter strength. Some double substitutions outside the consensus hexamers were almost completely unregulated, while single substitutions at several positions outside the -10 and -35 consensus hexamers exerted smaller but significant effects on regulation. These studies suggest roles for specific promoter sequences and/or structures in interactions with regulatory molecules and suggest experimental tests for models of rRNA regulation.
机译:我们在不同的营养条件下,测量了来自突变型和野生型rrnB P1(BJ Bachmann和KB Low的命名法中的rrnB1p)启动子的50个操纵子融合体的活性。为了分析大肠杆菌中rRNA转录的生长速率依赖性调节的DNA序列决定因素。偏离野生型-10或-35六聚体或六聚体之间的野生型16碱基对间隔区长度的突变体不受调控,无论突变是否使启动子更接近大肠杆菌启动子共有序列以及增加的活性,或者这些变化是否使启动子远离共识并降低了活性。这些数据表明,rRNA启动子已经进化为维持其调节能力,而不是最大化启动子强度。共有六聚体以外的一些双取代几乎完全不受调节,而位于-10和-35共有六聚体以外的多个位置的单取代对调节的作用较小,但影响显着。这些研究提示了特定启动子序列和/或结构在与调节分子相互作用中的作用,并建议对rRNA调节模型进行实验测试。

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