首页> 外文OA文献 >In Vivo Expression from the RpoS-Dependent P1 Promoter of the Osmotically Regulated proU Operon in Escherichia coli and Salmonella enterica Serovar Typhimurium: Activation by rho and hns Mutations and by Cold Stress
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In Vivo Expression from the RpoS-Dependent P1 Promoter of the Osmotically Regulated proU Operon in Escherichia coli and Salmonella enterica Serovar Typhimurium: Activation by rho and hns Mutations and by Cold Stress

机译:渗透调节的proU操纵子的RpoS依赖P1启动子在大肠杆菌和肠炎沙门氏菌鼠伤寒鼠体内的体内表达:由rho和hns突变和冷胁迫激活

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摘要

Unlike the ς70-controlled P2 promoter for the osmotically regulated proU operon of Escherichia coli and Salmonella enterica serovar Typhimurium, the ςs-controlled P1 promoter situated further upstream appears not to contribute to expression of the proU structural genes under ordinary growth conditions. For S. enterica proU P1, there is evidence that promoter crypticity is the result of a transcription attenuation phenomenon which is relieved by the deletion of a 22-base C-rich segment in the transcript. In this study, we have sought to identify growth conditions and trans-acting mutations which activate in vivo expression from proU P1. The cryptic S. enterica proU P1 promoter was activated, individually and additively, in a rho mutant (which is defective in the transcription termination factor Rho) as well as by growth at 10°C. The E. coli proU P1 promoter was also cryptic in constructs that carried 1.2 kb of downstream proU sequence, and in these cases activation of in vivo expression was achieved either by a rho mutation during growth at 10°C or by an hns null mutation (affecting the nucleoid protein H-NS) at 30°C. The rho mutation had no effect at either 10 or 30°C on in vivo expression from two other ςs-controlled promoters tested, those for osmY and csiD. In cells lacking the RNA-binding regulator protein Hfq, induction of E. coli proU P1 at 10°C and by hns mutation at 30°C was still observed, although the hfq mutation was associated with a reduction in the absolute levels of P1 expression. Our results suggest that expression from proU P1 is modulated both by nucleoid structure and by Rho-mediated transcription attenuation and that this promoter may be physiologically important for proU operon expression during low-temperature growth.
机译:与大肠杆菌和肠炎沙门氏菌鼠伤寒沙门氏菌的渗透调节性proU操纵子的ς70控制的P2启动子不同,位于上游的ςs控制的P1启动子在正常生长条件下似乎无助于proU结构基因的表达。对于肠炎链球菌proU P1,有证据表明启动子的隐秘性是转录衰减现象的结果,该现象可通过删除转录本中富含22个碱基的富含C的片段来缓解。在这项研究中,我们试图确定生长条件和激活proU P1体内表达的反式突变。隐秘的肠炎链球菌proU P1启动子在rho突变体(转录终止因子Rho中有缺陷)中以及在10°C下的生长中被单独和累加激活。大肠杆菌proU P1启动子在携带1.2 kb下游proU序列的构建体中也是隐秘的,在这些情况下,体内表达的激活是通过在10°C的生长过程中的rho突变或hns无效突变来实现的(在30°C时会影响类核蛋白H-NS)。 rho突变在10或30°C时对来自其他两个受ςs控制的启动子osmY和csiD的体内表达没有影响。在缺少RNA结合调节蛋白Hfq的细胞中,尽管hfq突变与P1表达的绝对水平降低有关,但仍观察到在10°C和30s的hns突变诱导大肠杆菌proU P1。 。我们的结果表明,proU P1的表达受核苷结构和Rho介导的转录衰减的调节,并且该启动子在低温生长过程中可能对proU操纵子的表达具有重要的生理意义。

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