首页> 外文期刊>Journal of bacteriology >Characterization of strains containing mutations in the contiguous flaF, flbT, or flbA-flaG transcription unit and identification of a novel fla phenotype in Caulobacter crescentus.
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Characterization of strains containing mutations in the contiguous flaF, flbT, or flbA-flaG transcription unit and identification of a novel fla phenotype in Caulobacter crescentus.

机译:在连续的flaF,flbT或flbA-flaG转录单位中包含突变的菌株的表征,以及新月形杆菌中新的fla表型的鉴定。

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During the Caulobacter crescentus cell cycle, flagellin synthesis and filament assembly are temporally controlled events which require the products encoded by the contiguous flaF, flbT, and flbA-flaG transcription units (P.V. Schoenlein, L.S. Gallman, and B. Ely, J. Bacteriol. 171:000-000, 1989). To better define the functions of these genes, immunoprecipitation studies, Western blot (immunoblot) analyses, and electron microscopic analyses characterized flagellin synthesis and assembly in mutant and merodiploid strains. Mutations in the flaF or flbA-flaG transcription unit resulted in reduced synthesis of the 25- and 27-kilodalton (kDa) flagellins. In contrast, mutations in flbT resulted in overproduction of these flagellins. The FlbT phenotype is unique, since all other identified C. crescentus fla mutations cause a reduction in the levels of the 25- and 27-kDa flagellins. Furthermore, the flbT mutant showed a chemotaxis deficiency even though it was motile. Thus, the flbT gene product appears to be involved in the regulation of both flagellin synthesis and chemotactic function. Mutations in the flbT and flbA-flaG transcription units also resulted in the production of a 22-kDa flagellin species that is not normally detected in wild-type cells. This flagellin species was not detected in the flbT filaments. Furthermore, the 22-kDa flagellin was no longer detected in flbA pseudorevertants that assembled functional filaments. Thus, the 22-kDa flagellin does not appear to be assembled into filaments. Since many of the flbT filaments are shorter than wild-type filaments, we discuss the possibility that the 22-kDa flagellin species may adversely affect flagellin assembly in this mutant.
机译:在新月形杆菌细胞周期中,鞭毛蛋白的合成和细丝的组装是时间控制的事件,需要由连续的flaF,flbT和flbA-flaG转录单位编码的产物(PV Schoenlein,LS Gallman和B.Ely,J.Bacteriol。 171:000-000,1989)。为了更好地定义这些基因的功能,进行了免疫沉淀研究,Western印迹(免疫印迹)分析和电子显微镜分析,以表征鞭毛蛋白在突变体和类金属倍体菌株中的合成和装配。 flaF或flbA-flaG转录单位的突变导致25-和27-千达尔顿(kDa)鞭毛蛋白的合成减少。相反,flbT中的突变导致这些鞭毛蛋白的过量生产。 FlbT表型是独特的,因为所有其他已鉴定的新月形梭菌fla突变会导致25 kDa和27 kDa鞭毛蛋白水平降低。此外,flbT突变体即使具有运动能力也显示出趋化性缺乏。因此,flbT基因产物似乎参与鞭毛蛋白合成和趋化功能的调节。 flbT和flbA-flaG转录单位中的突变还导致产生22kDa鞭毛蛋白,通常在野生型细胞中未检测到。在flbT细丝中未检测到鞭毛蛋白。此外,在组装功能性丝的flbA假回复物中不再检测到22kDa鞭毛蛋白。因此,22 kDa鞭毛蛋白似乎没有被组装成细丝。由于许多flbT丝比野生型丝短,因此我们讨论了22 kDa鞭毛蛋白物种可能对该突变体中鞭毛蛋白装配产生不利影响的可能性。

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