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Analysis of a Coxiella burnetti gene product that activates capsule synthesis in Escherichia coli: requirement for the heat shock chaperone DnaK and the two-component regulator RcsC.

机译:激活大肠杆菌中的胶囊合成的Coxiella burnetti基因产物的分析:对热激分子伴侣DnaK和两组分调节剂RcsC的要求。

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摘要

A 1.2-kb EcoRI genomic DNA fragment of Coxiella burnetti, when cloned onto a multicopy plasmid, was found to induce capsule synthesis (mucoidy) in Escherichia coli. Nucleotide sequence analysis revealed the presence of an open reading frame that could encode a protein of 270 amino acids. Insertion of a tet cassette into a unique NruI restriction site resulted in the loss of induction of mucoidy. Because of its ability to induce mucoidy, we designated this gene mucZ. Computer search for homologies to mucZ revealed 42% identity to an open reading frame located at 1 min of the E. coli chromosome. Interestingly, the C-terminal amino acid residues of MucZ share significant homology with the J domain of the DnaJ protein and its homologs, suggesting potential interactions between MucZ and components of the DnaK-chaperone machinery. Results presented in this paper suggest that E. coli requires DnaK-chaperone machinery for Lon-RcsA-mediated induction of capsule synthesis, as noticed first by S. Gottesman (personal communication). The induction caused by MucZ is independent of Lon-RcsA and is mediated through the two-component regulators RcsC and RcsB. DnaK and GrpE but not DnaJ are also required for the RcsB-mediated MucZ induction, and we propose that MucZ is a DnaJ-like chaperone protein that might be required for the formation of an active RcsA-RcsB complex and for the RcsC-dependent phosphorylation of RcsB. Discussions are presented that suggest three different roles for alternative forms of the DnaK-chaperone machinery in capsule production.
机译:当克隆到多拷贝质粒上时,发现了Coxiella burnetti的1.2 kb EcoRI基因组DNA片段,可在大肠杆菌中诱导胶囊合成(粘液状)。核苷酸序列分析揭示了一个开放阅读框的存在,该阅读框可以编码270个氨基酸的蛋白质。将tet盒插入唯一的NruI限制性位点导致失去对粘液的诱导。由于其具有诱导粘液样的能力,我们将该基因命名为mucZ。在计算机上搜索与mucZ的同源性时,发现与位于大肠杆菌染色体1分钟处的开放阅读框有42%的同一性。有趣的是,MucZ的C末端氨基酸残基与DnaJ蛋白的J结构域及其同源物具有显着的同源性,表明MucZ与DnaK-伴侣分子组件之间存在潜在的相互作用。本文介绍的结果表明,大肠杆菌首先需要S. Gottesman(个人交流)注意到,DonK-伴侣分子机器需要Lon-RcsA介导的胶囊合成诱导。 MucZ引起的感应独立于Lon-RcsA,并通过两组分调节剂RcsC和RcsB介导。 RcsB介导的MucZ诱导也需要DnaK和GrpE,但不是DnaJ,我们建议MucZ是DnaJ样的伴侣蛋白,可能需要形成活性RcsA-RcsB复合物和依赖RcsC的磷酸化RcsB。提出的讨论提出了在胶囊生产中DnaK-伴侣蛋白机器的替代形式的三种不同作用。

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