Programa Disciplinario de Inmunología, ICBM, Universidad de Chile, Independencia 1027, Santiago, Chile.
Mol Immunol. 2010 Apr;47(7-8):1516-21. doi: 10.1016/j.molimm.2010.01.019. Epub 2010 Feb 13.
Trypanosoma cruzi (T. cruzi), the agent of Chagas' disease, the sixth most important neglected tropical disease worldwide, causes 50,000 deaths per year in Latin America. T. cruzi calreticulin (TcCRT), a highly pleiotropic chaperone molecule, plays important roles in several host/parasite interactions. Among other functions, we have previously shown that TcCRT, translocated from the endoplasmic reticulum to the area of flagellar emergence, binds human C1q and inhibits activation of the classical pathway in vitro. Based on a series of in vitro experiments, we propose here two mechanisms to explain how TcCRT inhibits the classical pathway at the initial stages of C1 (q, r, s) activation. First, TcCRT interacts in vitro with both solid phase bound active C1s and C1, but impairment of C4 activating capacity is evident only when the serine proteases are within the structural context of the macromolecular first component. Although C1s activity, in this context, is inhibited by TcCRT, the serine protease is not displaced from the C1 complex. Second, TcCRT prevents C1 formation, by interfering with the ability of the (C1r-C1s)(2) tetramer to bind C1q. These complement inhibitory effects are better explained by direct interaction of the parasite protein with C1, rather than by the TcCRT capacity to bind calcium, an essential element for the functional integrity of C1.
克氏锥虫(T. cruzi)是恰加斯病的病原体,也是全球第六大被忽视的热带病,每年在拉丁美洲导致 5 万人死亡。克氏锥虫钙网蛋白(TcCRT)是一种高度多功能的伴侣分子,在几种宿主/寄生虫相互作用中发挥重要作用。除其他功能外,我们之前已经表明,TcCRT 从内质网易位到鞭毛伸出区域,与人类 C1q 结合并抑制体外经典途径的激活。基于一系列体外实验,我们在这里提出了两种机制来解释 TcCRT 如何在 C1(q,r,s)激活的初始阶段抑制经典途径。首先,TcCRT 在体外与固相结合的活性 C1s 和 C1 相互作用,但只有当丝氨酸蛋白酶处于大分子第一成分的结构背景中时,才会明显损害 C4 激活能力。尽管在这种情况下 TcCRT 抑制了 C1s 活性,但丝氨酸蛋白酶并未从 C1 复合物中置换出来。其次,TcCRT 通过干扰(C1r-C1s)(2)四聚体与 C1q 结合的能力来阻止 C1 的形成。这些补体抑制作用通过寄生虫蛋白与 C1 的直接相互作用得到了更好的解释,而不是通过 TcCRT 结合钙的能力,钙是 C1 功能完整性所必需的元素。