首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A distinct segment of the sigma 32 polypeptide is involved in DnaK-mediated negative control of the heat shock response in Escherichia coli.
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A distinct segment of the sigma 32 polypeptide is involved in DnaK-mediated negative control of the heat shock response in Escherichia coli.

机译:σ32多肽的一个独特部分参与了DnaK介导的大肠杆菌热休克反应的负控制。

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摘要

Induction of heat shock proteins in Escherichia coli is caused by a transient increase in the cellular level of sigma 32 (the rpoH gene product), a protein required for transcription of heat shock genes. Both increased synthesis and stabilization of sigma 32 contribute to the increase in sigma 32. We previously showed that heat-induced translation of sigma 32-beta-galactosidase fusion protein encoded by an rpoH-lacZ gene fusion was mediated by an mRNA secondary structure formed between two 5'-proximal segments (A and B) of rpoH coding sequence spanning some 200 nt. We now report that a portion of the sigma 32 polypeptide that corresponds to further downstream (designated region C) is involved in the DnaK-mediated negative control resulting in the shutoff of heat-induced synthesis and degradation of fusion protein. Gene fusions carrying the 5' half (433 nt) or more of the rpoH coding sequence exhibited normal shutoff of synthesis, and the fusion proteins produced were very unstable, like authentic sigma 32; both the shutoff of synthesis and the instability of protein were markedly affected by the dnaK and dnaJ mutations. In contrast, gene fusions carrying < or = 364 nt (lacking region C) and a fusion carrying most of the rpoH sequence but with a frameshift mutation specifically affecting region C exhibited little or no shutoff and produced stable proteins. These results indicate that a distinct segment of sigma 32 plays a critical role in the negative feedback control of sigma 32. The control may be exerted during or after completion of sigma 32 synthesis mediated by interaction between nascent or mature sigma 32 and DnaK/DnaJ proteins.
机译:大肠杆菌中热休克蛋白的诱导是由sigma 32(rpoH基因产物)的细胞水平的瞬时升高引起的,sigma 32是热休克基因转录所需的蛋白。 sigma 32的合成增加和稳定都有助于sigma 32的增加。我们先前显示,rpoH-lacZ基因融合体编码的sigma32-β-半乳糖苷酶融合蛋白的热诱导翻译是通过在两者之间形成的mRNA二级结构介导的。 rpoH编码序列的两个5'-近端区段(A和B),跨度约为200 nt。我们现在报道,对应于进一步下游(指定区域C)的一部分sigma 32多肽参与了DnaK介导的阴性对照,导致热诱导的合成的关闭和融合蛋白的降解。携带rpoH编码序列的5'一半(433 nt)或更多的基因融合体显示正常合成关闭,并且产生的融合蛋白非常不稳定,如真实的sigma 32; dnaK和dnaJ突变都显着影响了合成的关闭和蛋白质的不稳定性。相反,携带≤或= 364 nt的基因融合体(缺少C区)和携带大部分rpoH序列但特异影响C区的移码突变的融合体显示出很少或没有关闭,并产生稳定的蛋白质。这些结果表明,sigma 32的不同片段在sigma 32的负反馈控制中起着关键作用。该控制可以在sigma 32合成完成期间或之后进行,该过程由新生或成熟的sigma 32与DnaK / DnaJ蛋白之间的相互作用介导。

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