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补体成分C3的共价结合反应

The covalent-binding reaction of complement component C3.

作者信息

Sim R B, Twose T M, Paterson D S, Sim E

出版信息

Biochem J. 1981 Jan 1;193(1):115-27. doi: 10.1042/bj1930115.

Abstract

The complement protein C3, when activated by limited proteolysis, forms a short-lived reactive intermediate fragment, 'nascent' C3b, which is known to bind covalently to certain surfaces. The characteristics of the covalent binding reaction have been studied by using Sepharose-trypsin as a combined proteolytic activator and binding surface for C3. Binding of C3 to Sepharose-trypsin is saturable, with a maximum of 25-26 molecules of C3b bound per molecule of trypsin. A minimum life-time of about 60 microseconds for the reactive intermediate has been calculated from binding of C3 at saturation. Initial binding efficiencies of over 30% can be obtained at physiological pH and ionic strength. The efficiency of C3 binding to Sepharose-trypsin decreases as pH increases and also shows a slight decline at high ionic strength. The covalent binding of C3 to Sepharose-trypsin can be inhibited by a range of oxygen and nitrogen nucleophiles. Activation of C3 in the presence of radioactive forms of four such nucleophiles, phenylhydrazine, methylamine, glycerol and glucosamine results in apparent covalent incorporation of the nucleophile into the C3d fragment of C3. The quantity of radioactive nucleophile bound can be predicted from the observed potency of the nucleophile as an inhibitor of the binding of C3 to Sepharose-trypsin. The radioactive nucleophiles may be considered as 'active-site' labels for C3.

摘要

补体蛋白C3经有限的蛋白水解激活后,会形成一种寿命短暂的反应性中间片段,即“新生”C3b,已知其能与某些表面共价结合。通过使用琼脂糖 - 胰蛋白酶作为C3的蛋白水解激活剂和结合表面,对共价结合反应的特性进行了研究。C3与琼脂糖 - 胰蛋白酶的结合是可饱和的,每分子胰蛋白酶最多可结合25 - 26个C3b分子。根据饱和状态下C3的结合情况计算出反应性中间产物的最短寿命约为60微秒。在生理pH和离子强度下,初始结合效率可超过30%。随着pH升高,C3与琼脂糖 - 胰蛋白酶的结合效率降低,在高离子强度下也略有下降。C3与琼脂糖 - 胰蛋白酶的共价结合可被一系列氧和氮亲核试剂抑制。在四种此类亲核试剂(苯肼、甲胺、甘油和氨基葡萄糖)的放射性形式存在下激活C3,会导致亲核试剂明显共价掺入C3的C3d片段中。结合的放射性亲核试剂的量可根据观察到的亲核试剂作为C3与琼脂糖 - 胰蛋白酶结合抑制剂的效力来预测。放射性亲核试剂可被视为C3的“活性位点”标记物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c67f/1162583/c1181565a4f1/biochemj00408-0125-a.jpg

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