Mullick Jayati, Bernet John, Panse Yogesh, Hallihosur Sharanabasava, Singh Akhilesh K, Sahu Arvind
National Centre for Cell Science, Pune University Campus, Ganeshkhind, Pune 411007, India.
J Virol. 2005 Oct;79(19):12382-93. doi: 10.1128/JVI.79.19.12382-12393.2005.
Vaccinia virus encodes a homolog of the human complement regulators named vaccinia virus complement control protein (VCP). It is composed of four contiguous complement control protein (CCP) domains. Previously, VCP has been shown to bind to C3b and C4b and to inactivate the classical and alternative pathway C3 convertases by accelerating the decay of the classical pathway C3 convertase and (to a limited extent) the alternative pathway C3 convertase, as well as by supporting the factor I-mediated inactivation of C3b and C4b (the subunits of C3 convertases). In this study, we have mapped the CCP domains of VCP important for its cofactor activities, decay-accelerating activities, and binding to the target proteins by utilizing a series of deletion mutants. Our data indicate the following. (i) CCPs 1 to 3 are essential for cofactor activity for C3b and C4b; however, CCP 4 also contributes to the optimal activity. (ii) CCPs 1 to 2 are enough to mediate the classical pathway decay-accelerating activity but show very minimal activity, and all the four CCPs are necessary for its efficient activity. (iii) CCPs 2 to 4 mediate the alternative pathway decay-accelerating activity. (iv) CCPs 1 to 3 are required for binding to C3b and C4b, but the presence of CCP 4 enhances the affinity for both the target proteins. These results together demonstrate that the entire length of the protein is required for VCP's various functional activities and suggests why the four-domain structure of viral CCP is conserved in poxviruses.
痘苗病毒编码一种名为痘苗病毒补体控制蛋白(VCP)的人类补体调节因子同源物。它由四个连续的补体控制蛋白(CCP)结构域组成。此前已表明,VCP可结合C3b和C4b,并通过加速经典途径C3转化酶的衰变以及(在有限程度上)替代途径C3转化酶的衰变,以及通过支持I因子介导的C3b和C4b(C3转化酶的亚基)失活,来使经典途径和替代途径的C3转化酶失活。在本研究中,我们利用一系列缺失突变体,绘制了VCP对其辅助因子活性、衰变加速活性以及与靶蛋白结合至关重要的CCP结构域。我们的数据表明如下情况。(i)CCP 1至3对于C3b和C4b的辅助因子活性至关重要;然而,CCP 4也有助于实现最佳活性。(ii)CCP 1至2足以介导经典途径的衰变加速活性,但活性非常微弱,而所有四个CCP对于其有效活性都是必需的。(iii)CCP 2至4介导替代途径的衰变加速活性。(iv)CCP 1至3是与C3b和C4b结合所必需的,但CCP 4的存在增强了对两种靶蛋白的亲和力。这些结果共同表明,VCP的各种功能活性需要蛋白质的全长,并解释了为何痘苗病毒中病毒CCP的四结构域结构得以保守。