Fredslund Folmer, Jenner Lasse, Husted Lise B, Nyborg Jens, Andersen Gregers Rom, Sottrup-Jensen Lars
Department of Molecular Biology, University of Aarhus, Denmark.
J Mol Biol. 2006 Aug 4;361(1):115-27. doi: 10.1016/j.jmb.2006.06.009. Epub 2006 Jun 21.
The third component of complement (C3) is a 190 kDa glycoprotein essential for eliciting the complement response. The protein consists of two polypeptide chains (alpha and beta) held together with a single disulfide bridge. The beta-chain is composed of six MG domains, one of which is shared with the alpha-chain. The disulfide bridge connecting the chains is positioned in the shared MG domain. The alpha-chain consists of the anaphylatoxin domain, three MG domains, a CUB domain, an alpha(6)/alpha(6)-barrel domain and the C-terminal C345c domain. An internal thioester in the alpha-chain of C3 (present in C4 but not in C5) is cleaved during complement activation. This mediates covalent attachment of the activated C3b to immune complexes and invading microorganisms, thereby opsonizing the target. We present the structure of bovine C3 determined at 3 Angstroms resolution. The structure shows that the ester is buried deeply between the thioester domain and the properdin binding domain, in agreement with the human structure. This domain interface is broken upon activation, allowing nucleophile access. The structure of bovine C3 clearly demonstrates that the main chain around the thioester undergoes a helical transition upon activation. This rearrangement is proposed to be the basis for the high level of reactivity of the thioester group. A strictly conserved glutamate residue is suggested to function catalytically in thioester proteins. Structure-based design of inhibitors of C3 activation may target a conserved pocket between the alpha-chain and the beta-chain of C3, which appears essential for conformational changes in C3.
补体的第三个成分(C3)是一种190 kDa的糖蛋白,对引发补体反应至关重要。该蛋白由两条多肽链(α链和β链)通过一个二硫键连接在一起。β链由六个MG结构域组成,其中一个与α链共享。连接两条链的二硫键位于共享的MG结构域中。α链由过敏毒素结构域、三个MG结构域、一个CUB结构域、一个α(6)/α(6)-桶状结构域和C端C345c结构域组成。C3的α链中的一个内部硫酯键(存在于C4中但不存在于C5中)在补体激活过程中被切割。这介导了活化的C3b与免疫复合物和入侵微生物的共价连接,从而调理靶标。我们展示了以3埃分辨率测定的牛C3的结构。该结构表明,酯深深地埋在硫酯结构域和备解素结合结构域之间,与人类结构一致。该结构域界面在激活时被破坏,使亲核试剂能够接近。牛C3的结构清楚地表明,硫酯周围的主链在激活时经历了螺旋转变。这种重排被认为是硫酯基团高反应性的基础。一个严格保守的谷氨酸残基被认为在硫酯蛋白中起催化作用。基于结构设计的C3激活抑制剂可能靶向C3的α链和β链之间的一个保守口袋,该口袋似乎对C3的构象变化至关重要。