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Membrane Pore Formation by Human Complement: Functional Importance of the Transmembrane β-Hairpin (TMH) Segments of C8α and C9

机译:由人类补体形成的膜孔:C8α和C9的跨膜β-发夹(TMH)节的功能重要性。

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摘要

Human C8 and C9 have a key role in forming the pore-like “membrane attack complex” (MAC) of complement on bacterial cells. A possible mechanism for membrane insertion of these proteins was suggested when studies revealed a structural similarity between the MACPF domains of the C8α and C8β subunits and the pore-forming bacterial cholesterol-dependent cytolysins (CDCs). This similarity includes a pair of α-helical bundles that in the CDCs refold during pore formation to produce two transmembrane β-hairpins (TMH1 and TMH2). C9 is the major pore-forming component of the MAC and is also likely to contain two TMH segments because of its homology to C8α and C8β. To determine their potential for membrane insertion, the TMH sequences in C8α and those predicted to be in C9 were substituted for the TMH sequences in perfringolysin O (PFO), a well-characterized CDC. Only chimeric proteins containing TMH2 from C8α (PFO/αT2) or C9 (PFO/C9T2) could be expressed in soluble, active form. The PFO/αT2 and PFO/C9T2 chimeras retained significant hemolytic activity, formed pore-like structures on membranes, and could combine with PFO to form hemolytically active mixed complexes that were functionally similar to PFO alone. These results provide experimental evidence in support of the hypothesis that TMH segments in C8α and those predicted to be in C9 have a direct role in MAC membrane penetration and pore formation.
机译:人C8和C9在细菌细胞上形成补体的孔状“膜攻击复合物”(MAC)具有关键作用。当研究发现C8α和C8β亚基的MACPF结构域与成孔细菌的胆固醇依赖性细胞溶素(CDC)之间存在结构相似性时,表明了这些蛋白质膜插入的可能机制。这种相似性包括一对α-螺旋束,它们在CDC中在孔形成过程中重折叠以产生两个跨膜β-发夹结构(TMH1和TMH2)。 C9是MAC的主要成孔成分,由于与C8α和C8β具有同源性,因此C9也可能包含两个TMH段。为了确定其插入膜的潜力,将C8α中的TMH序列和预计在C9中的TMH序列替换为特征充分的CDC穿孔球菌溶血素O(PFO)中的TMH序列。只有包含来自C8α(PFO /αT2)或C9(PFO / C9T2)的TMH2的嵌合蛋白才能以可溶性,活性形式表达。 PFO /αT2和PFO / C9T2嵌合体保留了明显的溶血活性,在膜上形成了孔状结构,并且可以与PFO结合形成功能上与单独的PFO类似的溶血活性混合复合物。这些结果提供了实验证据,支持了以下假设:C8α中的TMH片段以及预计在C9中的TMH片段在MAC膜渗透和孔形成中具有直接作用。

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