Teillet Florence, Gaboriaud Christine, Lacroix Monique, Martin Lydie, Arlaud Gérard J, Thielens Nicole M
Laboratoire d'Enzymologie Moléculaire, 38027 Grenoble Cedex 1, France.
Laboratoire de Cristallographie et Cristallogenèse des Protéines, Institut de Biologie Structurale Jean-Pierre Ebel, CNRS-CEA-UJF, UMR 5075, 41 Rue Jules Horowitz, 38027 Grenoble Cedex 1, France.
J Biol Chem. 2008 Sep 12;283(37):25715-25724. doi: 10.1074/jbc.M803551200. Epub 2008 Jul 2.
MASP-1 and MASP-3 are homologous proteases arising from alternative splicing of the MASP1/3 gene. They include an identical CUB(1)-EGF-CUB(2)-CCP(1)-CCP(2) module array prolonged by different serine protease domains at the C-terminal end. The x-ray structure of the CUB(1)-EGF-CUB(2) domain of human MASP-1/3, responsible for interaction of MASP-1 and -3 with their partner proteins mannan-binding lectin (MBL) and ficolins, was solved to a resolution of 2.3A(.) The structure shows a head-to-tail homodimer mainly stabilized by hydrophobic interactions between the CUB(1) module of one monomer and the epidermal growth factor (EGF) module of its counterpart. A Ca(2+) ion bound primarily to both EGF modules stabilizes the intra- and inter-monomer CUB(1)-EGF interfaces. Additional Ca(2+) ions are bound to each CUB(1) and CUB(2) module through six ligands contributed by Glu(49), Asp(57), Asp(102), and Ser(104) (CUB(1)) and their counterparts Glu(216), Asp(226), Asp(263), and Ser(265) (CUB(2)), plus one and two water molecules, respectively. To identify the residues involved in interaction of MASP-1 and -3 with MBL and L- and H-ficolins, 27 point mutants of human MASP-3 were generated, and their binding properties were analyzed using surface plasmon resonance spectroscopy. These mutations map two homologous binding sites contributed by modules CUB(1) and CUB(2), located in close vicinity of their Ca(2+)-binding sites and stabilized by the Ca(2+) ion. This information allows us to propose a model of the MBL-MASP-1/3 interaction, involving a major electrostatic interaction between two acidic Ca(2+) ligands of MASP-1/3 and a conserved lysine of MBL. Based on these and other data, a schematic model of a MBL.MASP complex is proposed.
MASP - 1和MASP - 3是由MASP1/3基因选择性剪接产生的同源蛋白酶。它们包含一个相同的CUB(1)-EGF-CUB(2)-CCP(1)-CCP(2)模块阵列,该阵列在C末端由不同的丝氨酸蛋白酶结构域延长。人MASP - 1/3的CUB(1)-EGF-CUB(2)结构域的X射线结构负责MASP - 1和 - 3与其伴侣蛋白甘露聚糖结合凝集素(MBL)和纤维胶凝蛋白的相互作用,其分辨率达到2.3埃。该结构显示一个头对头的同型二聚体,主要通过一个单体的CUB(1)模块与其对应物的表皮生长因子(EGF)模块之间的疏水相互作用而稳定。一个主要与两个EGF模块结合的Ca(2+)离子稳定了单体内部和单体之间的CUB(1)-EGF界面。额外的Ca(2+)离子通过由Glu(49)、Asp(57)、Asp(102)和Ser(104)(CUB(1))及其对应物Glu(216)、Asp(226)、Asp(263)和Ser(265)(CUB(2))贡献的六个配体分别与每个CUB(1)和CUB(2)模块结合,另外还分别结合一个和两个水分子。为了确定参与MASP - 1和 - 3与MBL以及L - 和H - 纤维胶凝蛋白相互作用的残基,生成了27个人MASP - 3的点突变体,并使用表面等离子体共振光谱分析了它们的结合特性。这些突变定位了由CUB(1)和CUB(2)模块贡献的两个同源结合位点,它们位于其Ca(2+)结合位点附近并由Ca(2+)离子稳定。这些信息使我们能够提出一个MBL - MASP - 1/3相互作用的模型,该模型涉及MASP - 1/3的两个酸性Ca(2+)配体与MBL的一个保守赖氨酸之间的主要静电相互作用。基于这些及其他数据,提出了一个MBL.MASP复合物的示意图模型。