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控制关键毒力决定因子的蛋白水解作用决定莱姆病病原体的感染性。

Controlled Proteolysis of an Essential Virulence Determinant Dictates Infectivity of Lyme Disease Pathogens.

机构信息

Department of Veterinary Medicine, University of Maryland, College Parkgrid.164295.d, Maryland, USA.

National Center for Advancing Translational Sciences, National Institutes of Health, Rockville, Maryland, USA.

出版信息

Infect Immun. 2022 May 19;90(5):e0005922. doi: 10.1128/iai.00059-22. Epub 2022 Apr 13.

Abstract

The Borrelia burgdorferi BB0323 protein undergoes a complex yet poorly defined proteolytic maturation event that generates N-terminal and C-terminal proteins with essential functions in cell growth and infection. Here, we report that a borrelial protease, B. burgdorferi high temperature requirement A protease (BbHtrA), cleaves BB0323 between asparagine (N) and leucine (L) at positions 236 and 237, while the replacement of these residues with alanine in the mutant protein prevents its cleavage, despite preserving its normal secondary structure. The N-terminal BB0323 protein binds BbHtrA, but its cleavage site mutant displays deficiency in such interaction. An isogenic borrelial mutant with NL-to-AA substitution in BB0323 (referred to as ) maintains normal growth yet is impaired for infection of mice or transmission from infected ticks. Notably, the BB0323 protein is still processed in , albeit with lower levels of mature N-terminal BB0323 protein and multiple aberrantly processed polypeptides, which could result from nonspecific cleavages at other asparagine and leucine residues in the protein. The lack of infectivity of is likely due to the impaired abundance or stoichiometry of a protein complex involving BB0238, another spirochete protein. Together, these studies highlight that a precise proteolytic event and a particular protein-protein interaction, involving multiple borrelial virulence determinants, are mutually inclusive and interconnected, playing essential roles in the infectivity of Lyme disease pathogens.

摘要

伯氏疏螺旋体 BB0323 蛋白经历了一个复杂但定义不明确的蛋白水解成熟事件,生成具有细胞生长和感染必需功能的 N 端和 C 端蛋白。在这里,我们报告一种螺旋体蛋白酶,伯氏疏螺旋体高温需求 A 蛋白酶(BbHtrA),在位置 236 和 237 处将 BB0323 切割成天冬酰胺(N)和亮氨酸(L)之间的肽键,而突变蛋白中这些残基被丙氨酸取代,尽管其二级结构正常,但阻止了其切割。N 端 BB0323 蛋白与 BbHtrA 结合,但其切割位点突变体在这种相互作用中表现出缺陷。BB0323 中 NL 到 AA 取代的同基因伯氏疏螺旋体突变体(称为 )保持正常生长,但感染小鼠或从感染的蜱传播受损。值得注意的是,尽管成熟 N 端 BB0323 蛋白的水平较低,并且存在多个异常加工的多肽,但在 中仍然可以对 BB0323 蛋白进行加工,这可能是由于该蛋白中其他天冬酰胺和亮氨酸残基的非特异性切割所致。的感染性缺失可能是由于涉及另一种螺旋体蛋白 BB0238 的蛋白复合物的丰度或化学计量受到损害所致。总之,这些研究强调了精确的蛋白水解事件和特定的蛋白-蛋白相互作用,涉及多个螺旋体毒力决定因素,是相互包容和相互关联的,在莱姆病病原体的感染力中起着至关重要的作用。

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