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链球菌蛋白酶IdeS可调节细菌IgG Fc结合,并产生具有启动多形核白细胞能力的1/2Fc片段。

The streptococcal protease IdeS modulates bacterial IgGFc binding and generates 1/2Fc fragments with the ability to prime polymorphonuclear leucocytes.

作者信息

Söderberg Jenny Johansson, von Pawel-Rammingen Ulrich

机构信息

Department of Molecular Biology, Umeå University, 901 87 Umeå, Sweden.

出版信息

Mol Immunol. 2008 Jul;45(12):3347-53. doi: 10.1016/j.molimm.2008.04.013. Epub 2008 Jun 3.

Abstract

The important human bacterial pathogen Streptococcus pyogenes has evolved a variety of mechanisms to evade the actions of the human immune system. M protein and M-like proteins are major virulence factors that bind with high affinity to the Fc-part of IgG. However, the contribution of non-immune binding of IgG to bacterial virulence is not fully established. Importantly, the capacity of S. pyogenes to bind IgG is limited and due to the presence of large amounts of IgG present in vivo, the majority of IgGFc binding sites at the streptococcal surface are likely to be occupied by non-specific IgG. S. pyogenes also secretes a highly effective IgG-endopeptidase, IdeS that inhibits phagocytic killing by cleavage of specific IgG creating F(ab')2 and 1/2Fc fragments. In the present work, IgG and 1/2Fc binding to the streptococcal surface was studied and correlated to IdeS activity. Binding of IgG to the streptococcal surface is shown to be equilibrium and thus not designed to mediate a lasting protection against specific antibodies. However, non-immune binding of IgG to the bacterial surface is followed by the proteolytic cleavage of the antibody by the IgG-endopeptidase IdeS. IdeS generated 1/2Fc fragments do not compete efficiently with intact IgG in binding to the bacterial surface and rapid dissociation of 1/2Fc allows binding of new IgG. Thus, a correlated binding and proteolytic cleavage of IgG also increases the probability that the bacteria can resist specific IgG, despite the presence of a large excess of non-specific IgG in the circulation. As a consequence of IdeS activity, circulating 1/2Fc fragments are generated. These 1/2Fc fragments were shown to be biological active by acting as priming agents for polymorphonuclear leucocytes, suggesting a new mechanism of immune evasion employed by S. pyogenes.

摘要

重要的人类细菌病原体化脓性链球菌已经进化出多种机制来逃避人类免疫系统的作用。M蛋白和类M蛋白是主要的毒力因子,它们与IgG的Fc部分具有高亲和力结合。然而,IgG的非免疫结合对细菌毒力的贡献尚未完全明确。重要的是,化脓性链球菌结合IgG的能力有限,并且由于体内存在大量IgG,链球菌表面的大多数IgG Fc结合位点可能被非特异性IgG占据。化脓性链球菌还分泌一种高效的IgG内切肽酶IdeS,它通过切割特异性IgG产生F(ab')2和1/2Fc片段来抑制吞噬杀伤作用。在本研究中,研究了IgG和1/2Fc与链球菌表面的结合,并将其与IdeS活性相关联。结果表明,IgG与链球菌表面的结合是平衡的,因此并非旨在介导针对特异性抗体的持久保护。然而,IgG与细菌表面的非免疫结合之后是IgG内切肽酶IdeS对抗体的蛋白水解切割。IdeS产生的1/2Fc片段在与细菌表面结合时不能有效地与完整IgG竞争,并且1/2Fc的快速解离允许新的IgG结合。因此,尽管循环中存在大量过量的非特异性IgG,但IgG的相关结合和蛋白水解切割也增加了细菌能够抵抗特异性IgG的可能性。作为IdeS活性的结果,产生了循环的1/2Fc片段。这些1/2Fc片段被证明具有生物活性,可作为多形核白细胞的启动剂,提示化脓性链球菌采用了一种新的免疫逃避机制。

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