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首页> 外文期刊>Journal of bacteriology >The Caulobacter crescentus flaFG region regulates synthesis and assembly of flagellin proteins encoded by two genetically unlinked gene clusters.
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The Caulobacter crescentus flaFG region regulates synthesis and assembly of flagellin proteins encoded by two genetically unlinked gene clusters.

机译:新月形Caulobacter flaFG区域调节由两个遗传上不相关的基因簇编码的鞭毛蛋白的合成和装配。

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摘要

At a specific time in the Caulobacter crescentus cell cycle, a single flagellar filament and multiple receptor sites for the swarmer-specific phage phi Cbk are assembled at one pole of the predivisional cell. One cluster of genes required for this morphogenesis, the flaYG region, includes the flgJKL genes, which encode structural proteins of the flagellar filament. These flagellin genes are flanked by genes required for filament assembly, the flaYE genes at one end and the flaF-flbT-flbA-flaG genes at the other. In this study, we characterized mutants carrying large chromosomal deletions within this region. Several of these strains are phi CbK resistant and produce a novel 22-kDa flagellin that is not assembled into flagella. Merodiploid strains containing either the entire flaFG region or individual fla transcription units from this region were constructed. These strains were used to correlate the presence or absence of specific gene products to changes in flagellin synthesis, filament assembly, or phage sensitivity. As a result of these studies, we were able to conclude that (i) the production of the 22-kDa flagellin results from the absence of the flbA and flaG gene products, which appear to be components of a flagellin-processing pathway common to the 25-, 27-, and 29-kDa flagellins; (ii) flbT negatively modulates the synthesis of the 27- and 25-kDa flagellins from two genetically unlinked gene clusters; (iii) flgL is the only flagellin gene able to encode the 27-kDa flagellin, and this flagellin appears to be required for the efficient assembly of the 25-kDa flagellins; (iv) flaF is required for filament assembly; and (v) phi CbK resistance results from the deletion of at least two genes in the flaFG region.
机译:在新月形梭菌细胞周期的特定时间,单个鞭毛丝和群群特异的噬菌体phi Cbk的多个受体位点被组装在前细胞的一个极点上。这种形态发生所需的一个基因簇flaYG区包括flgJKL基因,该基因编码鞭毛丝的结构蛋白。这些鞭毛蛋白基因的两侧是细丝组装所需的基因,一端为flaYE基因,另一端为flaF-flbT-flbA-flaG基因。在这项研究中,我们表征了该区域内携带大染色体缺失的突变体。这些菌株中的几种对phi CbK具有抗性,并产生未组装到鞭毛中的新型22 kDa鞭毛蛋白。构建了包含整个flaFG区域或来自该区域的单个fla转录单位的非二倍体菌株。这些菌株用于将特定基因产物的存在与否与鞭毛蛋白合成,细丝装配或噬菌体敏感性的变化相关联。这些研究的结果是,我们能够得出以下结论:(i)22kDa鞭毛蛋白的产生是由于缺少flbA和flaG基因产物而引起的,而flbA和flaG基因产物似乎是常见的鞭毛蛋白加工途径的组成部分。 25、27和29 kDa鞭毛蛋白; (ii)flbT负调节两个遗传上未连锁的基因簇中27-和25-kDa鞭毛蛋白的合成; (iii)flgL是唯一能够编码27 kDa鞭毛蛋白的鞭毛蛋白基因,这种鞭毛蛋白似乎是25 kDa鞭毛蛋白有效组装所必需的; (iv)灯丝组装需要flaF; (v)phi CbK抗性是由flaFG区域中至少两个基因的缺失引起的。

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