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How Dextran Sulfate Affects C1-inhibitor Activity: A Model for Polysaccharide Potentiation

机译:硫酸葡聚糖如何影响C1抑制剂活性:多糖增强模型。

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C1-inhibitor is a key inhibitor of the complement and contact activation systems, and mutations in the protein can cause hereditary angioedema. Through an unknown mechanism, polysaccharides can increase C1-inhibitor activity against some of its target proteases. Here we present the crystal structures of the serine protease inhibitor (serpin) domain of active C1-inhibitor by itself and in complex with dextran sulfate. Unlike previously described interactions of serpins with polysaccharides, the structures and isothermal titration calorimetry experiments together reveal that dextran sulfate binds to C1-inhibitor's F1 helix with low affinity and does not invoke an allosteric change. Furthermore, one dextran sulfate molecule can bind multiple C1-inhibitor molecules. We propose that in a C1-inhibitor/protease/polysaccharide ternary complex, negatively charged polysaccharides link C1-inhibitor's positively charged F1 helix to positively charged autolysis loops of proteases. The proposed mechanism elegantly explains previous experiments showing that polysaccharide potentiation is increased against proteases with a greater positive charge in their autolysis loop.
机译:C1抑制剂是补体和接触激活系统的关键抑制剂,蛋白质中的突变可导致遗传性血管性水肿。通过未知的机制,多糖可以提高针对其某些目标蛋白酶的C1抑制剂活性。在这里,我们介绍了活性C1抑制剂自身的丝氨酸蛋白酶抑制剂(丝氨酸蛋白酶抑制剂)域的晶体结构,并与硫酸葡聚糖复合。与先前描述的丝氨酸蛋白酶抑制剂与多糖的相互作用不同,结构和等温滴定热分析实验共同表明,硫酸葡聚糖以低亲和力与C1抑制剂的F1螺旋结合,并且不会引起变构变化。此外,一个硫酸葡聚糖分子可以结合多个C1抑制剂分子。我们建议在C1抑制剂/蛋白酶/多糖三元复合物中,带负电荷的多糖将C1抑制剂带正电荷的F1螺旋连接到蛋白酶带正电荷的自溶环。拟议的机制优雅地解释了以前的实验,这些实验表明,针对蛋白酶的多糖在其自溶环中的增强作用增强了。

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