Institut Pasteur, Group Biology and Genetics of the Bacterial Cell Wall, Paris, F-75015, France.
Mol Microbiol. 2012 Nov;86(4):845-56. doi: 10.1111/mmi.12019. Epub 2012 Sep 21.
The flagellar machinery is a highly complex organelle composed of a free rotating flagellum and a fixed stator that converts energy into movement. The assembly of the flagella and the stator requires interactions with the peptidoglycan layer through which the organelle has to pass for externalization. Lytic transglycosylases are peptidoglycan degrading enzymes that cleave the sugar backbone of peptidoglycan layer. We show that an endogenous lytic transglycosylase is required for full motility of Helicobacter pylori and colonization of the gastric mucosa. Deficiency of motility resulted from a paralysed phenotype implying an altered ability to generate flagellar rotation. Similarly, another Gram-negative pathogen Salmonella typhimurium and the Gram-positive pathogen Listeria monocytogenes required the activity of lytic transglycosylases, Slt or MltC, and a glucosaminidase (Auto), respectively, for full motility. Furthermore, we show that in absence of the appropriate lytic transglycosylase, the flagellar motor protein MotB from H. pylori does not localize properly to the bacterial pole. We present a new model involving the maturation of the surrounding peptidoglycan for the proper anchoring and functionality of the flagellar motor.
鞭毛器是一种高度复杂的细胞器,由一个自由旋转的鞭毛和一个固定的定子组成,它将能量转化为运动。鞭毛和定子的组装需要与肽聚糖层相互作用,细胞器必须通过肽聚糖层才能进行外化。溶菌糖苷酶是一种肽聚糖降解酶,可切断肽聚糖层的糖主链。我们表明,内源性溶菌糖苷酶对于幽门螺杆菌的完全运动和胃黏膜的定植是必需的。运动能力的缺乏源于瘫痪表型,这意味着产生鞭毛旋转的能力发生了改变。同样,另一种革兰氏阴性病原体鼠伤寒沙门氏菌和革兰氏阳性病原体李斯特菌需要溶菌糖苷酶、Slt 或 MltC 和糖苷酶(Auto)的活性才能实现完全运动。此外,我们还表明,在缺乏适当的溶菌糖苷酶的情况下,来自幽门螺杆菌的鞭毛马达蛋白 MotB 不能正确定位于细菌极。我们提出了一个新的模型,涉及周围肽聚糖的成熟,以实现鞭毛马达的正确锚定和功能。