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Solution structure of CCP modules 10-12 illuminates functional architecture of the complement regulator, factor H

机译:CCP模块10-12的解决方案结构阐明了补充调节器H的功能架构

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摘要

The 155-kDa plasma glycoprotein factor H (FH), which consists of 20 complement control protein (CCP) modules, protects self-tissue but not foreign organisms from damage by the complement cascade. Protection is achieved by selective engagement of FH, via CCPs 1-4, CCPs 6-8 and CCPs 19-20, with polyanion-rich host surfaces that bear covalently attached, activation-specific, fragments of complement component C3. The role of intervening CCPs 9-18 in this process is obscured by lack of structural knowledge. We have concatenated new high-resolution solution structures of overlapping recombinant CCP pairs, 10-11 and 11-12, to form a three-dimensional structure of CCPs 10-12 and validated it by small-angle X-ray scattering of the recombinant triple-module fragment. Superimposing CCP 12 of this 10-12 structure with CCP 12 from the previously solved CCP 12-13 structure yielded an S-shaped structure for CCPs 10-13 in which modules are tilted by 80-110° with respect to immediate neighbors, but the bend between CCPs 10 and 11 is counter to the arc traced by CCPs 11-13. Including this four-CCP structure in interpretation of scattering data for the longer recombinant segments, CCPs 10-15 and 8-15, implied flexible attachment of CCPs 8 and 9 to CCP 10 but compact and intimate arrangements of CCP 14 with CCPs 12, 13 and 15. Taken together with difficulties in recombinant production of module pairs 13-14 and 14-15, the aberrant structure of CCP 13 and the variability of 13-14 linker sequences among orthologues, a structural dependency of CCP 14 on its neighbors is suggested; this has implications for the FH mechanism.
机译:155 kDa血浆糖蛋白因子H(FH)由20个补体控制蛋白(CCP)模块组成,可以保护自身组织,但不能保护外来生物免受补体级联的损害。通过FH通过CCP 1-4,CCP 6-8和CCP 19-20与富含聚阴离子的宿主表面的选择性结合来实现保护,该宿主表面带有共价连接的补体组分C3的活化特异性片段。缺乏结构性知识掩盖了CCP 9-18在此过程中的作用。我们串联了重叠的重组CCP对10-11和11-12的新高分辨率解决方案结构,以形成CCP 10-12的三维结构,并通过重组三联体的小角度X射线散射对其进行了验证-模块片段。将这种10-12结构的CCP 12与先前解决的CCP 12-13结构中的CCP 12重叠,可得到用于CCP 10-13的S形结构,其中模块相对于直接邻居倾斜80-110°,但是CCP 10和11之间的弯曲与CCP 11-13跟踪的电弧相反。在较长的重组片段CCP 10-15和8-15的散射数据的解释中包括此四CCP结构,意味着CCP 8和9可以灵活地连接到CCP 10,但CCP 14与CCP 12、13的紧凑紧密排列15.与模块对13-14和14-15的重组生产中的困难,CCP 13的异常结构以及直向同源物之间13-14接头序列的可变性一起,提出了CCP 14对其邻居的结构依赖性。 ;这对跳频机制有影响。

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