丙泊酚
补体系统
溶血
补语(音乐)
替代补体途径
C3转化酶
化学
过敏毒素
经典补体途径
补体膜攻击复合物
生物化学
CD59型
补体成分5
细胞生物学
溶解
生物
免疫学
抗体
作者
Marloes A. H. M. Michels,Rianne J. F. Maas,Thea J A M van der Velden,Nicole C. A. J. van de Kar,Lambertus P. van den Heuvel,Elena B. Volokhina
出处
期刊:Journal of Immunology
[The American Association of Immunologists]
日期:2021-10-11
卷期号:207 (10): 2465-2472
被引量:3
标识
DOI:10.4049/jimmunol.2100238
摘要
The complement system is an important part of innate immunity. Complement activation leads to formation of convertase enzymes, switch of their specificity from C3 to C5 cleavage, and generation of lytic membrane attack complexes (C5b-9) on surfaces of pathogens. Most C5 cleavage occurs via the complement alternative pathway (AP). The regulator properdin promotes generation and stabilization of AP convertases. However, its role in C5 activation is not yet understood. In this work, we showed that serum properdin is essential for LPS- and zymosan-induced C5b-9 generation and C5b-9–mediated lysis of rabbit erythrocytes. Furthermore, we demonstrated its essential role in C5 cleavage by AP convertases. To this end, we developed a hemolytic assay in which AP convertases were generated on rabbit erythrocytes by using properdin-depleted serum in the presence of C5 inhibitor (step 1), followed by washing and addition of purified C5–C9 components to allow C5b-9 formation (step 2). In this assay, addition of purified properdin to properdin-depleted serum during convertase formation (step 1) was required to restore C5 cleavage and C5b-9–mediated hemolysis. Importantly, C5 convertase activity was also fully restored when properdin was added together with C5b-9 components (step 2), thus after convertase formation. Moreover, with C3-depleted serum, not capable of forming new convertases but containing properdin, in step 2 of the assay, again full C5b-9 formation was observed and blocked by addition of properdin inhibitor Salp20. Thus, properdin is essential for the convertase specificity switch toward C5, and this function is independent of properdin’s role in new convertase formation.
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