Schatz-Jakobsen Janus Asbjørn, Yatime Laure, Larsen Casper, Petersen Steen Vang, Klos Andreas, Andersen Gregers Rom
Department of Molecular Biology and Genetics, Aarhus University, Gustav Wieds Vej 10C, DK-8000 Aarhus, Denmark.
Department of Biomedicine, Aarhus University, Bartholin Building, Wilhelm Meyers Allé 4, DK-8000 Aarhus, Denmark.
Acta Crystallogr D Biol Crystallogr. 2014 Jun;70(Pt 6):1704-17. doi: 10.1107/S139900471400844X. Epub 2014 May 30.
Complement is an ancient part of the innate immune system that plays a pivotal role in protection against invading pathogens and helps to clear apoptotic and necrotic cells. Upon complement activation, a cascade of proteolytic events generates the complement effectors, including the anaphylatoxins C3a and C5a. Signalling through their cognate G-protein coupled receptors, C3aR and C5aR, leads to a wide range of biological events promoting inflammation at the site of complement activation. The function of anaphylatoxins is regulated by circulating carboxypeptidases that remove their C-terminal arginine residue, yielding C3a-desArg and C5a-desArg. Whereas human C3a and C3a-desArg adopt a canonical four-helix bundle fold, the conformation of human C5a-desArg has recently been described as a three-helix bundle. Here, the crystal structures of an antagonist version of human C5a, A8(Δ71-73), and of murine C5a and C5a-desArg are reported. Whereas A8(Δ71-73) adopts a three-helix bundle conformation similar to human C5a-desArg, the two murine proteins form a four-helix bundle. A cell-based functional assay reveals that murine C5a-desArg, in contrast to its human counterpart, exerts the same level of activition as murine C5a on its cognate receptor. The role of the different C5a conformations is discussed in relation to the differential activation of C5a receptors across species.
补体是先天性免疫系统的一个古老组成部分,在抵御入侵病原体方面发挥着关键作用,并有助于清除凋亡和坏死细胞。补体激活后,一系列蛋白水解事件会产生补体效应分子,包括过敏毒素C3a和C5a。通过其同源G蛋白偶联受体C3aR和C5aR发出信号,会引发一系列生物学事件,促进补体激活部位的炎症反应。过敏毒素的功能受循环羧肽酶调节,这些酶会去除其C末端精氨酸残基,产生C3a-desArg和C5a-desArg。虽然人C3a和C3a-desArg采用典型的四螺旋束折叠结构,但人C5a-desArg的构象最近被描述为三螺旋束结构。在此,报道了人C5a拮抗剂版本A8(Δ71-73)以及小鼠C5a和C5a-desArg的晶体结构。虽然A8(Δ71-73)采用与人C5a-desArg相似的三螺旋束构象,但两种小鼠蛋白形成四螺旋束。基于细胞的功能测定表明,与人类对应物不同,小鼠C5a-desArg在其同源受体上的激活水平与小鼠C5a相同。文中讨论了不同C5a构象在跨物种C5a受体差异激活方面的作用。