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补体蛋白的共价结合与溶血活性

Covalent binding and hemolytic activity of complement proteins.

作者信息

Law S K, Lichtenberg N A, Levine R P

出版信息

Proc Natl Acad Sci U S A. 1980 Dec;77(12):7194-8. doi: 10.1073/pnas.77.12.7194.

Abstract

We report the inactivation of the third component of complement (C3) by hydroxylamine. C3 hemolytic and covalent binding activities decline with identical kinetics, demonstrating a direct correlation between the two activities. We conclude that covalent, surface-bound C3b is hemolytically active. The inactivation of C3 is first order with respect to hydroxylamine. We also studied C3 inactivation with [14C]methylamine. The inactivation corresponds quantitatively with the labeling of C3 in the C3d domain. The data obtained support the following hypothesis: there is an internal thioester within C3 which becomes highly reactive on activation to C3b, and C3b binds to receptive surfaces by transfer of the acyl function of the thioester to a hydroxyl group on the receptive surface. This proposed model for the reaction of C3 with receptive surfaces also applies to C4, which binds to membrane surfaces covalently and is able to be inactivated by hydroxylamine and methylamine. C5, on the other hand, is not inactivated by treatment with the amines.

摘要

我们报道了用羟胺使补体第三成分(C3)失活的情况。C3的溶血活性和共价结合活性以相同的动力学下降,表明这两种活性之间存在直接相关性。我们得出结论,共价结合在表面的C3b具有溶血活性。C3的失活对羟胺而言是一级反应。我们还用[14C]甲胺研究了C3的失活。失活与C3d结构域中C3的标记在数量上相对应。所获得的数据支持以下假说:C3内存在一个内部硫酯,其在激活为C3b时变得具有高反应性,并且C3b通过将硫酯的酰基功能转移到接受表面上的羟基而与接受表面结合。这个提出的C3与接受表面反应的模型也适用于C4,C4共价结合到膜表面并且能够被羟胺和甲胺失活。另一方面,C5用胺处理不会失活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74ba/350468/876dd410e142/pnas00499-0257-a.jpg

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