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Enhanced recognition of plasma proteins in a non-native state by complement C3b. A possible clearance mechanism for damaged proteins in blood

机译:补体C3b增强对非天然血浆蛋白的识别。血液中受损蛋白质可能的清除机制

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摘要

Complement C3 is a key fluid-phase protein of the immune system that covalently tags pathogenic cells and molecules for subsequent clearance. Previously, we reported that complement activation results in the formation of multiple C3b:plasma protein complexes in serum. However, it is not known if C3b attaches to any plasma protein in close proximity or preferentially binds damaged proteins. The objective of this study was to determine if C3b couples to plasma proteins in a non-native state and if this could be a potential mechanism to detect and clear damaged proteins from the blood. Using a purified in vitro system with alternative pathway proteins C3, factors B and D it was observed that guanidinium-HCl denaturation of three purified plasma proteins (albumin, alpha-1 proteinase inhibitor, vitamin D binding protein) greatly increased their capacity to form covalent complexes with C3b. However, native vitamin D binding protein, covalently attached to C3b, still retained the ability to bind its natural ligand G-actin, indicating that C3b links to plasma proteins in their native configuration but denaturation substantially increases this interaction. Serum complement activation generated a large number of C3b:plasma protein complexes that bound red blood cell membranes, suggesting a CR1-mediated clearance mechanism. Thermally denatured (60°C) serum activated the alternative pathway when added to fresh serum as evidenced by factor B cleavage and iC3b generation, but this heat-treated serum could not generate the pro-inflammatory peptide C5a. These results show that C3 recognizes and tags damaged plasma proteins for subsequent removal from the blood without triggering proinflammatory functions.
机译:补体C3是免疫系统的关键液相蛋白,可共价标记致病细胞和分子以进行后续清除。以前,我们报道补体激活导致血清中多个C3b:血浆蛋白复合物的形成。但是,尚不知道C3b是紧贴在血浆蛋白上还是优先结合受损的蛋白。这项研究的目的是确定C3b是否以非天然状态与血浆蛋白偶联,这是否可能是从血液中检测和清除受损蛋白的潜在机制。使用具有替代途径蛋白C3,因子B和D的纯化的体外系统,可以观察到三种纯化的血浆蛋白(白蛋白,α-1蛋白酶抑制剂,维生素D结合蛋白)的胍盐酸盐变性大大提高了它们形成共价键的能力与C3b的配合物。但是,与C3b共价结合的天然维生素D结合蛋白仍保留了结合其天然配体G-肌动蛋白的能力,这表明C3b以其天然构型与血浆蛋白连接,但变性会大大增加这种相互作用。血清补体激活产生了大量结合红细胞膜的C3b:血浆蛋白复合物,提示了CR1介导的清除机制。热变性(60°C)血清在添加到新鲜血清中时激活了替代途径,这可以通过因子B裂解和iC3b生成来证明,但是这种经过热处理的血清无法生成促炎肽C5a。这些结果表明,C3识别并标记了受损的血浆蛋白,以便随后从血液中清除而不会触发促炎功能。

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