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回归热疏螺旋体利用一种具有抗补体、抗调理素和侵袭潜能的新型多功能表面蛋白来逃避固有免疫。

Borrelia recurrentis employs a novel multifunctional surface protein with anti-complement, anti-opsonic and invasive potential to escape innate immunity.

作者信息

Grosskinsky Sonja, Schott Melanie, Brenner Christiane, Cutler Sally J, Kraiczy Peter, Zipfel Peter F, Simon Markus M, Wallich Reinhard

机构信息

Infectious Immunology, Institute for Immunology, University of Heidelberg, Heidelberg, Germany.

出版信息

PLoS One. 2009;4(3):e4858. doi: 10.1371/journal.pone.0004858. Epub 2009 Mar 24.

Abstract

Borrelia recurrentis, the etiologic agent of louse-borne relapsing fever in humans, has evolved strategies, including antigenic variation, to evade immune defence, thereby causing severe diseases with high mortality rates. Here we identify for the first time a multifunctional surface lipoprotein of B. recurrentis, termed HcpA, and demonstrate that it binds human complement regulators, Factor H, CFHR-1, and simultaneously, the host protease plasminogen. Cell surface bound factor H was found to retain its activity and to confer resistance to complement attack. Moreover, ectopic expression of HcpA in a B. burgdorferi B313 strain, deficient in Factor H binding proteins, protected the transformed spirochetes from complement-mediated killing. Furthermore, HcpA-bound plasminogen/plasmin endows B. recurrentis with the potential to resist opsonization and to degrade extracellular matrix components. Together, the present study underscores the high virulence potential of B. recurrentis. The elucidation of the molecular basis underlying the versatile strategies of B. recurrentis to escape innate immunity and to persist in human tissues, including the brain, may help to understand the pathological processes underlying louse-borne relapsing fever.

摘要

回归热疏螺旋体是人类虱传回归热的病原体,它已经进化出包括抗原变异在内的多种策略来逃避免疫防御,从而导致高死亡率的严重疾病。在此,我们首次鉴定出回归热疏螺旋体的一种多功能表面脂蛋白,命名为HcpA,并证明它能结合人类补体调节蛋白H因子、CFHR - 1,同时还能结合宿主蛋白酶纤溶酶原。发现细胞表面结合的H因子保持其活性并赋予对补体攻击的抗性。此外,在缺乏H因子结合蛋白的伯氏疏螺旋体B313菌株中异位表达HcpA,可保护转化的螺旋体免受补体介导的杀伤。此外,与HcpA结合的纤溶酶原/纤溶酶赋予回归热疏螺旋体抵抗调理作用和降解细胞外基质成分的潜力。总之,本研究强调了回归热疏螺旋体的高毒力潜力。阐明回归热疏螺旋体逃避先天免疫并在包括大脑在内 的人体组织中持续存在的多种策略的分子基础,可能有助于理解虱传回归热的病理过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1bb/2654920/baf857f8936f/pone.0004858.g001.jpg

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