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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Interaction of vaccinia virus complement control protein with human complement proteins: factor I-mediated degradation of C3b to iC3b1 inactivates the alternative complement pathway.
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Interaction of vaccinia virus complement control protein with human complement proteins: factor I-mediated degradation of C3b to iC3b1 inactivates the alternative complement pathway.

机译:牛痘病毒补体控制蛋白与人补体蛋白的相互作用:因子I介导的C3b降解为iC3b1使其他补体途径失活。

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摘要

Vaccinia virus complement control protein (VCP) is a virulence determinant of vaccinia virus that helps protect the virus from the complement attack of the host. To characterize the interaction of VCP with C3 and C4 and understand the mechanism by which VCP inactivates complement, we have expressed VCP in a yeast expression system and compared the biologic activity of the purified protein to that of human factor H and complement receptor 1 (CR1). Recombinant VCP bound to C3 and the proteolytically cleaved form of C3 (C3b), but not to the 135,300-m.w. fragment of C3 generated using elastase (C3c) and the 35,000-m.w. fragment of C3 generated using elastase (C3d) and inhibited both the classical and alternative pathways of complement activation. Although rVCP was less effective at inhibiting the alternative pathway than factor H or CR1, it was more effective than factor H at inhibiting the classical pathway. Unlike factor H, rVCP was unable discriminate between alternative pathway-mediated lysis of rabbit and sheep E. A comparison of the cofactor activity in factor I-mediated cleavage of C3b suggested that in contrast to factor H and CR1, which displayed cofactor activity for the three sites, rVCP displayed cofactor activity primarily for the first site, leading to generation of C3b cleaved by factor I between Arg1281-Ser1282 (iC3b1). Its cofactor activity for C4b cleavages was similar to that of soluble complement receptor type 1. Purification and functional analysis of iC3b1 showed that it was unable to interact with factor B to form the alternative pathway C3 convertase, C3b,Bb. These results suggest that the interaction of VCP with C3 is different from that of factor H and CR1 and that VCP-supported first cleavage of C3b by factor I is sufficient to render C3b nonfunctional.
机译:牛痘病毒补体控制蛋白(VCP)是牛痘病毒的毒力决定因素,可帮助保护该病毒免受宿主的补体攻击。为了表征VCP与C3和C4的相互作用并了解VCP失活补体的机制,我们在酵母表达系统中表达了VCP,并将纯化的蛋白质与人因子H和补体受体1(CR1 )。重组VCP结合到C3和C3的蛋白水解切割形式(C3b),但不结合到135,300-m.w。使用弹性蛋白酶(C3c)和35,000-m.w产生的C3片段使用弹性蛋白酶(C3d)生成的C3片段,并抑制补体激活的经典途径和替代途径。尽管rVCP在抑制替代途径方面不如因子H或CR1有效,但在抑制经典途径方面比因子H更有效。与因子H不同,rVCP无法区分兔和绵羊E的替代途径介导的裂解。辅助因子活性在因子I介导的C3b裂解中的比较表明,与因子H和CR1相反,后者显示了对因子3的辅助因子活性。在三个位点,rVCP主要在第一个位点显示出辅助因子的活性,导致C3b的生成被Arg1281-Ser1282(iC3b1)之间的因子I切割。它对C4b裂解的辅因子活性类似于1型可溶性补体受体。对iC3b1的纯化和功能分析表明,它无法与因子B相互作用形成旁路途径C3转化酶C3b,Bb。这些结果表明,VCP与C3的相互作用不同于因子H和CR1的相互作用,并且因子I的VCP支持的C3b首次裂解足以使C3b失去功能。

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