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首页> 外文期刊>Journal of Molecular Biology >Roles of multiple flagellins in flagellar formation and flagellar growth post bdelloplast lysis in Bdellovibrio bacteriovorus.
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Roles of multiple flagellins in flagellar formation and flagellar growth post bdelloplast lysis in Bdellovibrio bacteriovorus.

机译:Bdelelloibrio细菌细菌中bdelloplast裂解后多种鞭毛蛋白在鞭毛形成和鞭毛生长中的作用。

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Bdellovibrio bacteriovorus cells have a single polar flagellum whose helical pitch and diameter characteristically change near the midpoint, resulting in a tapered wave. There are six flagellin genes in the genome: fliC1 to fliC6. Accordingly, the flagellar filament is composed of several similar flagellin species. We have used knockout mutants of each gene and analyzed the mutational effects on the filament length and on the composition and localization of each flagellin species in the filament by electron microscopy and one- and two-dimensional polyacrylamide gel electrophoresis. The location and amounts of flagellins in a filament were determined to be as follows: a small amount of FliC3 at the proximal end, followed by a large amount of FliC5, a large amount of FliC1, a small amount of FliC2 in this order, and a large amount of FliC6 at the distal end. FliC4 was present at a low level, but the location was not determined. Filament lengths of newly born progeny cells increased during prolonged incubation in nutrient-deficient buffer. The newly formed part of the elongated filament was composed of mainly FliC6. Reverse transcription PCR analysis of flagellar gene expression over 5 days in buffer showed that fliC gene expression tailed off over 5 days in the wild-type cells, but in the fliC5 mutant, expression of the fliC2, fliC4, and fliC6 genes was elevated on day 5, suggesting that they may be expressed to compensate for the absence of a major component, FliC5.
机译:Bdellovibrio细菌细菌细胞具有单个极性鞭毛,其螺旋螺距和直径在中点附近发生特征性变化,从而产生锥形波。基因组中有六个鞭毛蛋白基因:fliC1至fliC6。因此,鞭毛丝由几种相似的鞭毛蛋白组成。我们已经使用了每个基因的敲除突变体,并通过电子显微镜和一维和二维聚丙烯酰胺凝胶电泳分析了突变对长丝长度以及长丝中每种鞭毛蛋白种类的组成和定位的影响。确定细丝中鞭毛蛋白的位置和量如下:在近端使用少量FliC3,然后依次使用大量FliC5,大量FliC1和少量FliC2,以及远端有大量的FliC6。 FliC4含量较低,但位置尚未确定。在营养不足的缓冲液中长时间孵育期间,新生后代细胞的长丝长度增加。细长丝的新形成部分主要由FliC6组成。缓冲液中5天鞭毛基因表达的反转录PCR分析表明,野生型细胞中fliC基因表达在5天后逐渐消失,但在fliC5突变体中,fliC2,fliC4和fliC6基因的表达在一天中升高了。 5,表明它们可能被表达为补偿主要成分FliC5的缺失。

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