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首页> 外文期刊>Nature immunology >Structural and functional implications of the alternative complement pathway C3 convertase stabilized by a staphylococcal inhibitor.
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Structural and functional implications of the alternative complement pathway C3 convertase stabilized by a staphylococcal inhibitor.

机译:由葡萄球菌抑制剂稳定的替代补体途径C3转化酶的结构和功能含义。

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摘要

Activation of the complement system generates potent chemoattractants and leads to the opsonization of cells for immune clearance. Short-lived protease complexes cleave complement component C3 into anaphylatoxin C3a and opsonin C3b. Here we report the crystal structure of the C3 convertase formed by C3b and the protease fragment Bb, which was stabilized by the bacterial immune-evasion protein SCIN. The data suggest that the proteolytic specificity and activity depend on the formation of dimers of C3 with C3b of the convertase. SCIN blocked the formation of a productive enzyme-substrate complex. Irreversible dissociation of the complex of C3b and Bb is crucial to complement regulation and was determined by slow binding kinetics of the Mg(2+)-adhesion site in Bb. Understanding the mechanistic basis of the central complement-activation step and microbial immune evasion strategies targeting this step will aid in the development of complement therapeutics.
机译:补体系统的激活产生有效的化学引诱剂,并导致细胞调理以清除免疫。短暂的蛋白酶复合物将补体成分C3裂解为过敏毒素C3a和调理素C3b。在这里,我们报告由C3b和蛋白酶片段Bb形成的C3转化酶的晶体结构,该结构由细菌免疫逃避蛋白SCIN稳定。数据表明蛋白水解特异性和活性取决于转化酶的C3b和C3b的二聚体的形成。 SCIN阻止了生产性酶-底物复合物的形成。 C3b和Bb的复合物不可逆解离对补体调节至关重要,并由Bb中Mg(2 +)-粘附位点的缓慢结合动力学决定。了解中央补体激活步骤的机制基础和针对该步骤的微生物免疫逃逸策略将有助于补体疗法的发展。

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