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首页> 外文期刊>Journal of bacteriology >Transcriptional regulation of the heat shock regulatory gene rpoH in Escherichia coli: involvement of a novel catabolite-sensitive promoter.
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Transcriptional regulation of the heat shock regulatory gene rpoH in Escherichia coli: involvement of a novel catabolite-sensitive promoter.

机译:大肠杆菌中热休克调节基因rpoH的转录调控:新型分解代谢物敏感启动子的参与。

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A catabolite-sensitive promoter was found to be involved in transcription of the heat shock regulatory gene rpoH encoding the sigma 32 protein. Expression of lacZ from the operon fusion, rpoHp-lacZ, was partially inhibited by glucose added to the broth medium. Dissection of the rpoH promoter region allowed us to localize the glucose-sensitive promoter to the 110-base-pair (bp) segment directly upstream of the rpoH coding region. Experiments on lacZ expression from the set of fusions in cya (adenylate cyclase) and crp (cyclic AMP [cAMP] receptor protein) mutants also supported the involvement of a catabolite-sensitive promoter. Analysis of rpoH mRNAs by S1 nuclease protection experiments led us to identify a novel promoter, designated P5, that is regulated by cAMP and the cAMP receptor protein. Studies of rpoH transcription in vitro demonstrated that RNA polymerase-sigma 70 can transcribe from the P5 promoter only in the presence of cAMP and its receptor protein. The 5' ends of P5 transcripts obtained in vivo and in vitro were found to be at 61 to 62 bp upstream of the initiation codon, and a putative binding sequence for the cAMP receptor protein was found at 38 to 39 bp further upstream. Transcription from the P5 promoter is increased by the addition of ethanol to the growth medium; however, the increase is greater in the presence of glucose than in its absence. These results add a new dimension to the transcriptional control of rpoH and to the regulation of the heat shock response in Escherichia coli.
机译:发现分解代谢物敏感的启动子参与编码sigma 32蛋白的热激调节基因rpoH的转录。添加到肉汤培养基中的葡萄糖可部分抑制操纵子融合蛋白rpoHp-lacZ的lacZ表达。 rpoH启动子区域的解剖使我们能够将葡萄糖敏感的启动子定位在rpoH编码区域上游的110个碱基对(bp)片段。从cya(腺苷酸环化酶)和crp(环状AMP [cAMP]受体蛋白)突变体的融合物中进行lacZ表达的实验也支持了分解代谢物敏感启动子的参与。通过S1核酸酶保护实验对rpoH mRNA的分析使我们确定了一个新的启动子,命名为P5,该启动子受cAMP和cAMP受体蛋白调节。体外rpoH转录的研究表明,只有在cAMP及其受体蛋白存在的情况下,RNA聚合酶sigma 70才能从P5启动子转录。发现在体内和体外获得的P5转录物的5'末端在起始密码子上游61至62bp处,并且在上游38至39bp处发现了cAMP受体蛋白的推定结合序列。通过向生长培养基中添加乙醇来增加P5启动子的转录;但是,葡萄糖存在下的增加比不存在葡萄糖下的增加更大。这些结果为rpoH的转录控制和热休克反应在大肠杆菌中的调控增加了新的维度。

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