首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Thrombin generates previously unidentified C5 products that support the terminal complement activation pathway
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Thrombin generates previously unidentified C5 products that support the terminal complement activation pathway

机译:凝血酶产生以前未鉴定的C5产品,这些产品支持末端补体激活途径

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摘要

The coagulation and complement pathways simultaneously promote homeostasis in response to injury but cause tissue damage when unregulated. Mechanisms by which they cooperate are poorly understood. To delineate their interactions, we studied the effects of thrombin and C5 convertase on C5 in purified and plasmabased systems, measuring release of the anaphylatoxin C5a, and generation of C5b, the initial component of the lytic membrane attack complex. Thrombin cleaved C5 poorly at R751, yielding minimal C5a and C5b. However, thrombin efficiently cleaved C5 at a newly identified, highly conserved R947 site, generating previously undescribed intermediates C5 T and C5b T. Tissue factor-induced clotting of plasma led to proteolysis of C5 at a thrombin-sensitive site corresponding to R947 and not R751. Combined treatment of C5 with thrombin and C5 convertase yielded C5a and C5b T, the latter forming a C5b T-9 membrane attack complex with significantly more lytic activity than with C5b-9. Our findings provide a new paradigm for complement activation, in which thrombin and C5 convertase are invariant partners, enhancing the terminal pathway via the generation of newly uncovered C5 intermediates. Delineating the molecular links between coagulation and complement will provide new therapeutic targets for diseases associated with excess fibrin deposition and complement activation.
机译:凝血和补体途径同时响应损伤而促进体内稳态,但是当不受调节时会引起组织损伤。他们合作的机制了解甚少。为了描述它们之间的相互作用,我们研究了凝血酶和C5转化酶对纯化和基于血浆的系统中C5的影响,测量了过敏毒素C5a的释放以及裂解膜攻击复合物的初始成分C5b的产生。凝血酶在R751处裂解C5的能力较弱,产生的C5a和C5b最少。但是,凝血酶在新近鉴定的高度保守的R947位点有效裂解C5,生成先前未描述的中间体C5 T和C5bT。组织因子诱导的血浆凝集导致C5在对应于R947而不是R751的凝血酶敏感位点处发生蛋白水解。 。用凝血酶和C5转化酶联合处理C5产生C5a和C5b T,后者形成具有比C5b-9明显更高的裂解活性的C5b T-9膜攻击复合物。我们的发现为补体激活提供了一个新的范例,其中凝血酶和C5转化酶是不变的伙伴,通过产生新发现的C5中间体增强了末端途径。描绘凝血和补体之间的分子联系将为与过量纤维蛋白沉积和补体激活相关的疾病提供新的治疗靶标。

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