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Genetic Analysis of Spirochete Flagellin Proteins and Their Involvement in Motility Filament Assembly and Flagellar Morphology

机译:Spirochete鞭毛蛋白的遗传分析及其与运动性细丝组装和鞭毛形态的关系

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摘要

The filaments of spirochete periplasmic flagella (PFs) have a unique structure and protein composition. In most spirochetes, the PFs consist of a core of at least three related proteins (FlaB1, FlaB2, and FlaB3) and a sheath of FlaA protein. The functions of these filament proteins remain unknown. In this study, we used a multidisciplinary approach to examine the role of these proteins in determining the composition, shape, and stiffness of the PFs and how these proteins impact motility by using the spirochete Brachyspira (formerly Treponema, Serpulina) hyodysenteriae as a genetic model. A series of double mutants lacking combinations of these PF proteins was constructed and analyzed. The results show the following. First, the diameters of PFs are primarily determined by the sheath protein FlaA, and that FlaA can form a sheath in the absence of an intact PF core. Although the sheath is important to the PF structure and motility, it is not essential. Second, the three core proteins play unequal roles in determining PF structure and swimming speed. The functions of the core proteins FlaB1 and FlaB2 overlap such that either one of these proteins is essential for the spirochete to maintain the intact PF structure and for cell motility. Finally, linear elasticity theory indicates that flagellar stiffness directly affects the spirochete's swimming speed.
机译:螺旋体周质鞭毛(PFs)的细丝具有独特的结构和蛋白质组成。在大多数螺旋体中,PF由至少三种相关蛋白(FlaB1,FlaB2和FlaB3)的核心和FlaA蛋白的鞘组成。这些细丝蛋白的功能仍然未知。在这项研究中,我们使用多学科方法研究了这些蛋白质在确定PF的组成,形状和刚度中的作用,以及通过使用螺旋体Brachyspira(以前称为Treponema,Serpulina)猪痢疾短螺旋体作为遗传模型来确定这些蛋白质如何影响运动性。 。构建和分析了一系列缺少这些PF蛋白组合的双重突变体。结果显示如下。首先,PF的直径主要由鞘蛋白FlaA决定,在没有完整的PF核心的情况下,FlaA可以形成鞘。尽管鞘对PF的结构和运动很重要,但不是必需的。第二,这三种核心蛋白在决定PF结构和游泳速度方面起着不平等的作用。核心蛋白FlaB1和FlaB2的功能重叠,因此这些蛋白中的任何一个对于螺旋体维持完整的PF结构和细胞运动都是必不可少的。最后,线性弹性理论表明鞭毛刚度直接影响螺旋体的游泳速度。

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