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Structure of the C1r–C1s interaction of the C1 complex of complement activation

机译:补体激活的C1复合体的C1r–C1s相互作用的结构

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摘要

The multiprotein complex C1 initiates the classical pathway of complement activation on binding to antibody–antigen complexes, pathogen surfaces, apoptotic cells, and polyanionic structures. It is formed from the recognition subcomponent C1q and a tetramer of proteases C1r2C1s2 as a Ca2+-dependent complex. Here we have determined the structure of a complex between the CUB1-EGF-CUB2 fragments of C1r and C1s to reveal the C1r–C1s interaction that forms the core of C1. Both fragments are L-shaped and interlock to form a compact antiparallel heterodimer with a Ca2+ from each subcomponent at the interface. Contacts, involving all three domains of each protease, are more extensive than those of C1r or C1s homodimers, explaining why heterocomplexes form preferentially. The available structural and biophysical data support a model of C1r2C1s2 in which two C1r-C1s dimers are linked via the catalytic domains of C1r. They are incompatible with a recent model in which the N-terminal domains of C1r and C1s form a fixed tetramer. On binding to C1q, the proteases become more compact, with the C1r-C1s dimers at the center and the six collagenous stems of C1q arranged around the perimeter. Activation is likely driven by separation of the C1r-C1s dimer pairs when C1q binds to a surface. Considerable flexibility in C1s likely facilitates C1 complex formation, activation of C1s by C1r, and binding and activation of downstream substrates C4 and C4b-bound C2 to initiate the reaction cascade.
机译:多蛋白复合物C1结合抗体-抗原复合物,病原体表面,凋亡细胞和聚阴离子结构,启动了补体激活的经典途径。它由识别亚组分C1q和蛋白酶C1r2C1s2的四聚体形成,为Ca 2 + 依赖复合物。在这里,我们确定了C1r和C1s的CUB1-EGF-CUB2片段之间的复合物结构,以揭示形成C1核心的C1r-C1s相互作用。两个片段均为L形并互锁以形成紧密的反平行异二聚体,其界面处的每个子组件均具有Ca 2 + 。涉及每种蛋白酶的所有三个结构域的接触比C1r或C1s同二聚体的接触更广泛,这解释了为什么异源复合物优先形成。可用的结构和生物物理数据支持C1r2C1s2模型,其中两个C1r-C1s二聚体通过C1r的催化域连接。它们与C1r和C1s的N端结构域形成固定四聚体的最新模型不兼容。与C1q结合后,蛋白酶变得更致密,C1r-C1s二聚体位于中央,C1q的六个胶原茎围绕周围排列。当C1q结合到表面上时,C1r-C1s二聚体对的分离可能会驱动激活。 C1中的相当大的柔韧性可能会促进C1络合物的形成,C1r对C1s的活化以及下游底物C4和与C4b结合的C2的结合和活化,从而引发反应级联。

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