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Structural basis for the stabilization of the complement alternative pathway C3 convertase by properdin

机译:备解素稳定补体旁路C3转化酶的结构基础

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摘要

Complement is an essential component of innate immunity. Its activation results in the assembly of unstable protease complexes, denominated C3/C5 convertases, leading to inflammation and lysis. Regulatory proteins inactivate C3/C5 convertases on host surfaces to avoid collateral tissue damage. On pathogen surfaces, properdin stabilizes C3/C5 convertases to efficiently fight infection. How properdin performs this function is, however, unclear. Using electron microscopy we show that the N- and C-terminal ends of adjacent monomers in properdin oligomers conform a curly vertex that holds together the AP convertase, interacting with both the C345C and vWA domains of C3b and Bb, respectively. Properdin also promotes a large displacement of the TED (thioester-containing domain) and CUB (complement protein subcomponents C1r/C1s, urchin embryonic growth factor and bone morphogenetic protein 1) domains of C3b, which likely impairs C3-convertase inactivation by regulatory proteins. The combined effect of molecular cross-linking and structural reorganization increases stability of the C3 convertase and facilitates recruitment of fluid-phase C3 convertase to the cell surfaces. Our model explains how properdin mediates the assembly of stabilized C3/C5-convertase clusters, which helps to localize complement amplification to pathogen surfaces.
机译:补体是先天免疫的重要组成部分。它的活化导致不稳定的蛋白酶复合物(称为C3 / C5转化酶)的组装,导致炎症和溶解。调节蛋白可以使宿主表面的C3 / C5转化酶失活,从而避免附带组织损伤。在病原体表面,备解素可以稳定C3 / C5转化酶,从而有效抵抗感染。然而,尚不清楚备解素如何执行此功能。使用电子显微镜,我们显示,备解素低聚物中相邻单体的N和C末端符合卷曲顶点,该顶点将AP转化酶保持在一起,分别与C3b和Bb的C345C和vWA结构域相互作用。备解素还促进C3b的TED(含硫酯的结构域)和CUB(补体蛋白子组件C1r / C1s,海胆胚胎生长因子和骨形态发生蛋白1)结构域的大量置换,这可能会损害调节蛋白对C3转化酶的失活。分子交联和结构重组的共同作用增加了C3转化酶的稳定性,并促进了液相C3转化酶向细胞表面的募集。我们的模型解释了备解素如何介导稳定的C3 / C5-转化酶簇的组装,这有助于将补体扩增定位于病原体表面。

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