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Structure of Human C8 Protein Provides Mechanistic Insight into Membrane Pore Formation by Complement*

机译:人类C8蛋白的结构通过补体提供了对膜孔形成的机械观察*

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摘要

C8 is one of five complement proteins that assemble on bacterial membranes to form the lethal pore-like “membrane attack complex” (MAC) of complement. The MAC consists of one C5b, C6, C7, and C8 and 12–18 molecules of C9. C8 is composed of three genetically distinct subunits, C8α, C8β, and C8γ. The C6, C7, C8α, C8β, and C9 proteins are homologous and together comprise the MAC family of proteins. All contain N- and C-terminal modules and a central 40-kDa membrane attack complex perforin (MACPF) domain that has a key role in forming the MAC pore. Here, we report the 2.5 Å resolution crystal structure of human C8 purified from blood. This is the first structure of a MAC family member and of a human MACPF-containing protein. The structure shows the modules in C8α and C8β are located on the periphery of C8 and not likely to interact with the target membrane. The C8γ subunit, a member of the lipocalin family of proteins that bind and transport small lipophilic molecules, shows no occupancy of its putative ligand-binding site. C8α and C8β are related by a rotation of ∼22° with only a small translational component along the rotation axis. Evolutionary arguments suggest the geometry of binding between these two subunits is similar to the arrangement of C9 molecules within the MAC pore. This leads to a model of the MAC that explains how C8-C9 and C9-C9 interactions could facilitate refolding and insertion of putative MACPF transmembrane β-hairpins to form a circular pore.
机译:C8是五个补体蛋白之一,它们在细菌膜上组装形成致死性的毛孔状“膜侵袭复合体”(MAC)。 MAC由一个C5b,C6,C7和C8以及12-18个C9分子组成。 C8由三个遗传上不同的亚基C8α,C8β和C8γ组成。 C6,C7,C8α,C8β和C9蛋白是同源的,并且一起组成MAC蛋白家族。全部都包含N和C端模块和一个中央40 kDa膜攻击复合物穿孔素(MACPF)结构域,在形成MAC孔中起关键作用。在这里,我们报告从血液中纯化的人C8的2.5Å分辨率晶体结构。这是MAC家族成员和包含人MACPF的蛋白质的第一个结构。结构显示C8α和C8β中的模块位于C8的外围,不太可能与目标膜相互作用。 C8γ亚基是脂环蛋白家族蛋白的一个成员,可以结合和转运亲脂性小分子,但未显示其假定的配体结合位点。 C8α和C8β与〜22°旋转相关,沿旋转轴只有很小的平移分量。进化论据表明,这两个亚基之间结合的几何形状类似于MAC孔中C9分子的排列。这导致了一个MAC模型,该模型解释了C8-C9和C9-C9相互作用如何促进假定的MACPF跨膜β-发夹的重新折叠和插入,从而形成圆形孔。

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