血清补体因子I降低金黄色葡萄球菌的吞噬作用

Kenji M. Cunnion, E. Stephen Buescher, Pamela S. Hair
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引用次数: 22

摘要

在动物模型中,补体介导的金黄色葡萄球菌的调理是一个关键的宿主防御。具体来说,C3b和CD35在金黄色葡萄球菌的有效调理吞噬作用中起重要作用。我们已经证明,补体控制蛋白因子I介导了与金黄色葡萄球菌表面结合的补体调理蛋白C3b的裂解。在这项研究中,我们通过确定因子i介导的金黄色葡萄球菌结合C3b的裂解是否会减少中性粒细胞对金黄色葡萄球菌的吞噬,来检验这一观察结果的生理学相关性。与对照组相比,抗因子I抗体抑制金黄色葡萄球菌表面c3b的裂解率为83%(以iC3b代计),使金黄色葡萄球菌的吞噬率增加了100%。用因子I处理c3b包被的金黄色葡萄球菌,增加了iC3b的生成(75%),减少了与金黄色葡萄球菌表面结合的c3片段总数(58%),减少了被吞噬的细菌数量(40%)。对金黄色葡萄球菌表面脱落的c3片段进行特异性检测,我们发现因子1增加脱落(43%)。值得注意的是,无论因子H(已知因子I的辅助因子)是否存在,这些因子I介导的影响都具有相同的幅度。这些发现表明,金黄色葡萄球菌受益于并可能操纵C3b的因子I切割的正常宿主保护活性,这导致细菌逃避补体介导的调理吞噬作用。由于逃避调理自噬细胞介导的破坏是细菌生存导致人类疾病的必要机制,因此防止金黄色葡萄球菌表面C3b的裂解,从而增强调理自噬细胞作用,是一个有希望的潜在治疗干预靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Serum complement factor I decreases Staphylococcus aureus phagocytosis

Complement-mediated opsonization of Staphylococcus aureus is a critical host defense in animal models. Specifically, C3b and CD35 play important roles in effective opsonophagocytosis of S. aureus. We have shown that complement control protein factor I mediates cleavage of the complement opsonin C3b bound to the S. aureus surface. In this study, we examined the physiologic relevance of this observation by determining whether factor I-mediated cleavage of S. aureus-bound C3b decreased phagocytosis of S. aureus by neutrophils. Compared with controls, anti-factor I antibody inhibited C3b-cleavage on the S. aureus surface by >83% (as measured by iC3b generation) and increased phagocytosis of S. aureus by >100%. Treatment of C3b-coated S. aureus with factor I increased generation of iC3b (75%), decreased the total amount of C3-fragments bound to the S. aureus surface (58%), and decreased the number of bacteria phagocytosed (40%). Testing specifically for C3-fragments shed from the S. aureus surface, we found that factor I increased shedding (43%). Notably, these factor I-mediated effects were of the same magnitude regardless of whether factor H, a known cofactor for factor I, was present. These findings indicate that S. aureus benefits from, and possibly manipulates, the normally host-protective activity of factor I cleavage of C3b, which results in bacterial escape from complement-mediated opsonophagocytosis. Because escaping opsonophagocytosis-mediated destruction is a necessary mechanism for bacterial survival resulting in human disease, preventing cleavage of C3b on the S. aureus surface, and thereby enhancing opsonophagocytosis, is a promising potential target for therapeutic intervention.

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