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首页> 外文期刊>Molecular Immunology >Proteolysis of purified IgGs by human and bacterial enzymes in vitro and the detection of specific proteolytic fragments of endogenous IgG in rheumatoid synovial fluid.
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Proteolysis of purified IgGs by human and bacterial enzymes in vitro and the detection of specific proteolytic fragments of endogenous IgG in rheumatoid synovial fluid.

机译:人和细菌酶在体外对纯化的IgG进行蛋白水解,并检测类风湿滑液中内源性IgG的特异性蛋白水解片段。

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摘要

A comparative in vitro survey of physiologically relevant human and microbial proteinases defined a number of enzymes that induced specific hinge domain cleavage in human IgG1. Several of these proteinases have been associated with tumor growth, inflammation, and infection. A majority of the identified proteinases converted IgG to F(ab')(2), and a consistent feature of their action was a transient accumulation of a single-cleaved intermediate (scIgG). The scIgG resulted from the relatively rapid cleavage of the first hinge domain heavy chain, followed by a slower cleavage of the second chain to separate the Fc domain from F(ab')(2). Major sites of enzymatic cleavage were identified or confirmed from the mass of the F(ab')(2) or Fab fragments and/or the amino-terminal amino acid sequence of the Fc for each enzyme including human matrix metalloproteinases (MMPs) 3 and 12, human cathepsin G, human neutrophil elastase (Fab), staphylococcal glutamyl endopeptidase I and streptococcal immunoglobulin-degradingenzyme (IdeS). The cleavage sites in IgG1 by MMP-3, cathepsin G and IdeS were used to guide the synthesis of peptide analogs containing the corresponding carboxy-termini to be used as immunogens in rabbits. Rabbit antibodies were successfully generated that showed selective binding to different human F(ab')(2)s and other hinge-cleavage fragments, but not to intact IgG. In Western blotting studies of synovial fluids from individuals with rheumatoid arthritis, the rabbit antibodies yielded patterns consistent with the presence of endogenous IgG fragments including F(ab')(2) and the single-cleaved IgG intermediate. The detection in synovial fluid of IgG fragments similar to those observed in the in vitro biochemical studies suggests that proteolysis of IgG may contribute to localized immune dysfunction in inflammatory environments.
机译:对生理相关的人类和微生物蛋白酶的体外比较研究确定了许多可诱导人IgG1特异性铰链结构域裂解的酶。这些蛋白酶中有几种与肿瘤的生长,炎症和感染有关。大多数已鉴定的蛋白酶将IgG转化为F(ab')(2),其作用的一致特征是单裂解中间体(scIgG)的瞬时积累。 scIgG产生于第一条铰链结构域重链的相对较快的切割,随后是第二条链的较慢的切割,以将Fc域与F(ab')(2)分开。对于每种酶,包括人基质金属蛋白酶(MMPs)3和F(ab')(2)或Fab片段的质量和/或Fc的氨基末端氨基酸序列,都确定或确认了酶促裂解的主要位点。参见图12,人组织蛋白酶G,人中性粒细胞弹性蛋白酶(Fab),葡萄球菌谷氨酰内肽酶I和链球菌免疫球蛋白降解酶(IdeS)。 MMP-3,组织蛋白酶G和IdeS在IgG1中的切割位点被用来指导含有相应羧基末端的肽类似物的合成,以用作兔的免疫原。成功产生了兔抗体,该抗体显示出与不同的人F(ab')(2)s和其他铰链切割片段的选择性结合,但没有与完整的IgG结合。在来自类风湿性关节炎患者的滑液的蛋白质印迹研究中,兔抗体产生的模式与内源性IgG片段(包括F(ab')(2)和单裂解的IgG中间体)的存在一致。在滑液中检测到的IgG片段与在体外生化研究中观察到的相似,表明IgG的蛋白水解可能会导致炎症环境中的局部免疫功能障碍。

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