Suppr超能文献

免疫复合物在人补体第一成分激活中的作用。

The role of immune complexes in the activation of the first component of human complement.

作者信息

Ziccardi R J

出版信息

J Immunol. 1984 Jan;132(1):283-8.

PMID:6317744
Abstract

Immune complex-induced C1 activation and fluid phase C1 autoactivation have been compared in order to elucidate the immune complex role in the C1 activation process. Kinetic analyses revealed that immune complex-bound C1 activates seven times faster than fluid phase C1 spontaneously activates. The rate of spontaneous C1 activation increased after decreasing the solution ionic strength. In fact at one-half physiologic ionic strength (i.e., 0.08 M), the kinetics of spontaneous C1 activation were indistinguishable from the kinetics of activation of immune complex-bound C1 at physiologic ionic strength. The enhanced fluid phase C1 activation at low ionic strength resulted neither from C1 nor C1q aggregation, nor from selective effects on the C1r2S2 subunit; however, at the reduced ionic strength, the C1 association constant (defined for C1q + C1r2S2 in equilibrium C1qr2S2) did increase to 2.3 X 10(8) M-1, which is equal to that for C1 bound to an immune complex at physiologic ionic strength. Therefore, C1 can spontaneously activate in the fluid phase as rapidly as C1 on an immune complex when the strength of interaction between C1q and C1r2S2 is the same in both systems. In conclusion, under physiologic conditions, C1q and C1r2S2 are two weakly interacting proteins. Immune complexes provide a site for the assembly of a stable C1 complex, in which C1q and C1r2S2 remain associated long enough for C1q to activate C1r2S2. Thus, immune complexes enhance the intrinsic C1 autoactivation process by strengthening the association of C1q with C1r2S2.

摘要

为了阐明免疫复合物在C1激活过程中的作用,对免疫复合物诱导的C1激活和液相C1自身激活进行了比较。动力学分析表明,与免疫复合物结合的C1的激活速度比液相C1自发激活速度快7倍。降低溶液离子强度后,C1自发激活速率增加。事实上,在生理离子强度的一半(即0.08M)时,C1自发激活的动力学与生理离子强度下与免疫复合物结合的C1激活的动力学无法区分。低离子强度下液相C1激活增强既不是由于C1也不是由于C1q聚集,也不是由于对C1r2S2亚基的选择性作用;然而,在降低的离子强度下,C1缔合常数(定义为平衡C1qr2S2中的C1q + C1r2S2)确实增加到2.3×10(8) M-1,这与生理离子强度下与免疫复合物结合的C1的缔合常数相等。因此,当两个系统中C1q和C1r2S2之间的相互作用强度相同时,C1在液相中可以像免疫复合物上的C1一样快速自发激活。总之,在生理条件下,C1q和C1r2S2是两种弱相互作用的蛋白质。免疫复合物为稳定的C1复合物组装提供了一个位点,其中C1q和C1r2S2保持缔合足够长的时间以使C1q激活C1r2S2。因此,免疫复合物通过加强C1q与C1r2S2的缔合来增强内在的C1自身激活过程。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验