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A Novel Gene Inactivation System Reveals Altered Periplasmic Flagellar Orientation in a Borrelia burgdorferi fliL Mutant

机译:一个新型的基因灭活系统揭示了疏螺旋体伯氏疏螺旋体filL突变体中的周质鞭毛方向。

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摘要

Motility and chemotaxis are essential components of pathogenesis for many infectious bacteria, including Borrelia burgdorferi, the causative agent of Lyme disease. Motility and chemotaxis genes comprise 5 to 6% of the genome of B. burgdorferi, yet the functions of most of those genes remain uncharacterized, mainly due to the paucity of a nonpolar gene inactivation system. In this communication, we describe the development of a novel gene inactivation methodology to target B. burgdorferi fliL, a putative periplasmic flagellar gene located in a large motility operon and transcribed by RNA polymerase containing σ70. Although the morphology of nonpolar fliL mutant cells was indistinguishable from that of wild-type cells, the mutant exhibited a defective-motility phenotype. Cryo-electron tomography (cryo-ET) of intact organisms revealed that the periplasmic flagella in the fliL mutant were frequently tilted toward the cell pole instead of their normal orientation toward the cell body. These defects were corrected when the mutant was complemented in cis. Moreover, a comparative analysis of flagellar motors from the wild type and the mutant provides the first structural evidence that FliL is localized between the stator and rotor. Our results suggest that FliL is likely involved in coordinating or regulating the orientation of periplasmic flagella in B. burgdorferi.
机译:运动性和趋化性是许多传染性细菌(包括莱姆病的病原体伯氏疏螺旋体)发病机理的重要组成部分。运动性和趋化性基因构成了伯氏疏螺旋体基因组的5%至6%,但是大多数这些基因的功能仍未表征,这主要是由于非极性基因失活系统的缺乏所致。在本次交流中,我们描述了针对新的基因灭活方法的开发,该方法以B. burgdorferi fliL为靶标,B。burgdorferi fliL是一种位于大动力操纵子中并被包含σ 70 的RNA聚合酶转录的推定周质鞭毛基因。虽然非极性fliL突变细胞的形态与野生型细胞没有区别,但该突变体表现出运动力缺陷型。完整生物的低温电子断层扫描(cryo-ET)显示,fliL突变体中的周质鞭毛经常朝着细胞极倾斜,而不是朝着细胞体的正常方向倾斜。当突变体在顺式中互补时,这些缺陷被纠正。此外,对野生型和突变型鞭毛马达的比较分析提供了第一个结构证据,表明FliL位于定子和转子之间。我们的结果表明,FliL可能参与协调或调节伯氏疏螺旋体中周质鞭毛的方向。

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