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Staphylococcus aureus SdrE captures complement factor Hs C-terminus via a novel ‘close dock lock and latch mechanism for complement evasion

机译:金黄色葡萄球菌SdrE通过新颖的关闭固定锁定和闩锁机制捕获补体因子H的C末端

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摘要

Complement factor H (CFH) is a soluble complement regulatory protein essential for the down-regulation of the alternative pathway on interaction with specific markers on the host cell surface. It recognizes the complement component 3b (C3b) and 3d (C3d) fragments in addition to self cell markers (i.e. glycosaminoglycans, sialic acid) to distinguish host cells that deserve protection from pathogens that should be eliminated. The Staphylococcus aureus surface protein serine–aspartate repeat protein E (SdrE) was previously reported to bind human CFH as an immune-evasion tactic. However, the molecular mechanism underlying SdrE–CFH-mediated immune evasion remains unknown. In the present study, we identified a novel region at CFH's C-terminus (CFH1206–1226), which binds SdrE N2 and N3 domains (SdrEN2N3) with high affinity, and determined the crystal structures of apo-SdrEN2N3 and the SdrEN2N3–CFH1206–1226 complex. Comparison of the structure of the CFH–SdrE complex with other CFH structures reveals that CFH's C-terminal tail flips from the main body to insert into the ligand-binding groove of SdrE. In addition, SdrEN2N3 adopts a ‘close’ state in the absence of CFH, which undergoes a large conformational change on CFH binding, suggesting a novel ‘close, dock, lock and latch' (CDLL) mechanism for SdrE to recognize its ligand. Our findings imply that SdrE functions as a ‘clamp' to capture CFH's C-terminal tail via a unique CDLL mechanism and sequesters CFH on the surface of S. aureus for complement evasion.
机译:补体因子H(CFH)是可溶性补体调节蛋白,对于下调与宿主细胞表面特定标记相互作用的替代途径至关重要。它除了识别自身细胞标记(即糖胺聚糖,唾液酸)外,还识别补体成分3b(C3b)和3d(C3d)片段,以区分值得保护的宿主细胞免受应消除的病原体的侵害。以前有报道说,金黄色葡萄球菌表面蛋白丝氨酸-天冬氨酸重复蛋白E(SdrE)结合人CFH是一种逃避免疫的策略。然而,SdrE–CFH介导的免疫逃逸的分子机制仍然未知。在本研究中,我们在CFH的C末端发现了一个新区域(CFH 1206–1226 ),该区域以高亲和力结合SdrE N2和N3域(SdrEN2N3),并确定了载脂蛋白的晶体结构-SdrEN2N3和SdrEN2N3-CFH 1206-1226 复合体。 CFH-SdrE配合物与其他CFH结构的结构比较表明,CFH的C末端尾巴从主体翻转而插入SdrE的配体结合槽中。此外,在没有CFH的情况下,SdrEN2N3处于“关闭”状态,CFH结合发生了巨大的构象变化,这表明SdrE可以识别其配体的新型“关闭,停靠,锁定和闩锁”(CDLL)机制。我们的发现暗示,SdrE通过独特的CDLL机制充当捕获CFH C末端尾巴的“钳位”,并将CFH隔离在金黄色葡萄球菌表面以逃避补体。

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