Horstmann R D, Sievertsen H J, Knobloch J, Fischetti V A
Bernhard-Nocht-Institut, Hamburg, Federal Republic of Germany.
Proc Natl Acad Sci U S A. 1988 Mar;85(5):1657-61. doi: 10.1073/pnas.85.5.1657.
Isolated complement components were used to study the regulation of the alternative complement pathway C3 convertase (EC 3.4.21.47), also called C3b,Bb, on M protein-carrying (M+) and M protein-lacking (M-) streptococci. Neither M- nor M+ streptococci directly affected the formation or dissociation of the surface-bound C3b,Bb or the inactivation of surface-bound C3b by factor I. However, the activity of the serum control protein of the alternative complement pathway, factor H, in controlling streptococcus-bound C3b and C3b,Bb was 6-8 times stronger on M+ organisms than on M- organisms. Furthermore, M+ streptococci of different serotypes and purified streptococcal M6 protein were shown to selectively bind factor H, the dissociation constants ranging from 4.5 X 10(-6) M to 6 X 10(-7) M. We conclude that the antiphagocytic activity of streptococcal M protein may be due to complement inhibition mediated by the binding of factor H. Binding of a regulatory protein appears to be a previously unrecognized route by which a pathogen is able to evade alternative pathway activation.
使用分离的补体成分来研究替代补体途径C3转化酶(EC 3.4.21.47,也称为C3b,Bb)在携带M蛋白(M+)和缺乏M蛋白(M-)的链球菌上的调节作用。M-和M+链球菌均未直接影响表面结合的C3b,Bb的形成或解离,也未影响I因子对表面结合的C3b的灭活。然而,替代补体途径的血清对照蛋白H因子在控制与链球菌结合的C3b和C3b,Bb方面,对M+菌的活性比对M-菌强6至8倍。此外,不同血清型的M+链球菌和纯化的链球菌M6蛋白显示出选择性结合H因子,解离常数范围为4.5×10^(-6) M至6×10^(-7) M。我们得出结论,链球菌M蛋白的抗吞噬活性可能归因于H因子结合介导的补体抑制作用。调节蛋白的结合似乎是病原体逃避替代途径激活的一种先前未被认识的途径。