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A Revised Mechanism for the Activation of Complement C3 to C3b

机译:补体C3向C3b激活的修订机制

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摘要

The solution structure of complement C3b is crucial for the understanding of complement activation and regulation. C3b is generated by the removal of C3a from C3. Hydrolysis of the C3 thioester produces C3u, an analog of C3b. C3b cleavage results in C3c and C3d (thioester-containing domain; TED). To resolve functional questions in relation to C3b and C3u, analytical ultracentrifugation and x-ray and neutron scattering studies were used with C3, C3b, C3u, C3c, and C3d, using the wild-type allotype with Arg102. In 50 mm NaCl buffer, atomistic scattering modeling showed that both C3b and C3u adopted a compact structure, similar to the C3b crystal structure in which its TED and macroglobulin 1 (MG1) domains were connected through the Arg102–Glu1032 salt bridge. In physiological 137 mm NaCl, scattering modeling showed that C3b and C3u were both extended in structure, with the TED and MG1 domains now separated by up to 6 nm. The importance of the Arg102–Glu1032 salt bridge was determined using surface plasmon resonance to monitor the binding of wild-type C3d(E1032) and mutant C3d(A1032) to immobilized C3c. The mutant did not bind, whereas the wild-type form did. The high conformational variability of TED in C3b in physiological buffer showed that C3b is more reactive than previously thought. Because the Arg102-Glu1032 salt bridge is essential for the C3b-Factor H complex during the regulatory control of C3b, the known clinical associations of the major C3S (Arg102) and disease-linked C3F (Gly102) allotypes of C3b were experimentally explained for the first time.
机译:补体C3b的溶液结构对于理解补体激活和调节至关重要。通过从C3中除去C3a生成C3b。 C3硫代酯的水解产生C3u,C3b的类似物。 C3b裂解导致C3c和C3d(含硫酯的域; TED)。为了解决与C3b和C3u有关的功能性问题,对C3,C3b,C3u,C3c和C3d进行了分析超速离心以及X射线和中子散射研究,并使用了野生型同型Arg 102 。在50 mm NaCl缓冲液中,原子散射模型表明C3b和C3u均采用致密结构,类似于其TED和大球蛋白1(MG1)域通过Arg 102 连接的C3b晶体结构。 –Glu 1032 盐桥。在生理学的137 mm NaCl中,散射模型表明C3b和C3u都在结构上扩展,现在TED和MG1结构域之间的间隔最大为6 nm。使用表面等离振子共振监测野生型C3d(E1032)和突变体C3d(A1032)与Arg 102 –Glu 1032 盐桥的重要性来确定固定化的C3c。突变体不结合,而野生型结合。 TED在生理缓冲液中C3b中的高构象变异性表明C3b比以前认为的更具反应性。由于Arg 102 -Glu 1032 盐桥对于C3b-因子H复合物在C3b的调控控制中必不可少,因此主要C3S的已知临床关联(Arg <首次通过实验解释了C3b的同种异型(sup> 102 )和疾病相关的C3F(Gly 102 )同种型。

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