首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Oxidative Stress Sensitizes Retinal Pigmented Epithelial (RPE) Cells to Complement-mediated Injury in a Natural Antibody- Lectin Pathway- and Phospholipid Epitope-dependent Manner
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Oxidative Stress Sensitizes Retinal Pigmented Epithelial (RPE) Cells to Complement-mediated Injury in a Natural Antibody- Lectin Pathway- and Phospholipid Epitope-dependent Manner

机译:氧化应激使视网膜色素上皮(RPE)细胞以天然抗体凝集素途径和磷脂表位依赖的方式补充补体介导的损伤。

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摘要

Uncontrolled activation of the alternative complement pathway (AP) is thought to be associated with age-related macular degeneration. Previously, we have shown that in retinal pigmented epithelial (RPE) monolayers, oxidative stress reduced complement inhibition on the cell surface, resulting in sublytic complement activation and loss of transepithelial resistance (TER), but the potential ligand and pathway involved are unknown. ARPE-19 cells were grown as monolayers on transwell plates, and sublytic complement activation was induced with H2O2 and normal human serum. TER deteriorated rapidly in H2O2-exposed monolayers upon adding normal human serum. Although the effect required AP activation, AP was not sufficient, because elimination of MASP, but not C1q, prevented TER reduction. Reconstitution experiments to unravel essential components of the lectin pathway (LP) showed that both ficolin and mannan-binding lectin can activate the LP through natural IgM antibodies (IgM-C2) that recognize phospholipid cell surface modifications on oxidatively stressed RPE cells. The same epitopes were found on human primary embryonic RPE monolayers. Likewise, mouse laser-induced choroidal neovascularization, an injury that involves LP activation, could be increased in antibody-deficient rag1−/− mice using the phospholipid-specific IgM-C2. In summary, using a combination of depletion and reconstitution strategies, we have shown that the LP is required to initiate the complement cascade following natural antibody recognition of neoepitopes, which is then further amplified by the AP. LP activation is triggered by IgM bound to phospholipids. Taken together, we have defined novel mechanisms of complement activation in oxidatively stressed RPE, linking molecular events involved in age-related macular degeneration, including the presence of natural antibodies and neoepitopes.
机译:替代补体途径(AP)的不受控制的激活被认为与年龄相关的黄斑变性有关。以前,我们已经表明,在视网膜色素上皮(RPE)单层中,氧化应激降低了细胞表面的补体抑制作用,导致分解补体激活和跨上皮抵抗性(TER)丧失,但是涉及的潜在配体和途径尚不清楚。 ARPE-19细胞在单孔板上以单层生长,并用H2O2和正常人血清诱导了补体的激活。加入正常人血清后,暴露于H2O2的单层中TER迅速降解。尽管效果需要激活AP,但AP不够,因为消除MASP而不是C1q阻止了TER的降低。拆解凝集素途径(LP)必需成分的重建实验表明,丝胶蛋白和甘露聚糖结合凝集素均可通过天然IgM抗体(IgM-C2)激活LP,该抗体可识别氧化应激RPE细胞上的磷脂细胞表面修饰。在人类初级胚胎RPE单层上发现了相同的表位。同样,在小鼠体内使用磷脂特异性IgM-C2抗体抗体不足的rag1 -// 小鼠,其激光诱导的脉络膜新生血管形成(一种涉及LP激活的损伤)可能会增加。总之,使用耗竭和重构策略的组合,我们已经表明,LP需要在天然抗体识别新表位后启动补体级联反应,然后再由AP进一步扩增。 LP激活是由与磷脂结合的IgM触发的。两者合计,我们已经定义了氧化应激RPE中补体激活的新机制,将涉及年龄相关性黄斑变性的分子事件联系在一起,包括天然抗体和新表位的存在。

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