Laboratoire de Chimie et Biologie des Membranes et des Nano-Objets, UMR CBMN, CNRS-Université Bordeaux ENITAB, IECB, Pessac, France.
Eur Biophys J. 2011 May;40(5):641-9. doi: 10.1007/s00249-010-0665-0. Epub 2011 Jan 25.
Annexin A5 (AnxA5) binds to negatively charged phospholipid membranes in a Ca(2+) dependent manner. Several studies already demonstrate that Mg(2+) ions cannot induce the binding. In this paper, quartz crystal microbalance with dissipation monitoring (QCM-D), Brewster angle microscopy (BAM), polarization modulation infrared reflection absorption spectroscopy (PMIRRAS) and molecular dynamics (MD) were performed to elucidate the high specificity of Ca(2+) versus Mg(2+) on AnxA5 binding to membrane models. In the presence of Ca(2+), AnxA5 showed a strong interaction with lipids, the protein is adsorbed mainly in α-helix under the DMPS monolayer, with an orientation of the α-helices axes slightly tilted with respect to the normal of the phospholipid monolayer as revealed by PMIRRAS. The Ca(2+) ions interact strongly with the phosphate group of the phospholipid monolayer. In the presence of Mg(2+), instead of Ca(2+), no interaction of AnxA5 with lipids was detected. Molecular dynamics simulations allow us to explain the high specificity of calcium. Ca(2+) ions are well exposed and surrounded by labile water molecules at the surface of the protein, which then favour their binding to the phosphate group of the membrane, explaining their specificity. To the contrary, Mg(2+) ions are embedded in the protein structure, with a smaller number of water molecules strongly bound. We conclude that the embedded Mg(2+) ions inside the AnxA5 structure are not able to link the protein to the phosphate group of the phospholipids for this reason.
膜联蛋白 A5(AnxA5)以 Ca2+依赖的方式与带负电荷的磷脂膜结合。已有多项研究表明,Mg2+离子不能诱导其结合。在本文中,采用石英晶体微天平耗散监测(QCM-D)、布鲁斯特角显微镜(BAM)、偏振调制红外反射吸收光谱(PMIRRAS)和分子动力学(MD)研究了 Ca2+与 Mg2+对膜模型上 AnxA5 结合的高特异性。在 Ca2+存在下,AnxA5 与脂质表现出强烈的相互作用,该蛋白在 DMPS 单层下主要以 α-螺旋形式吸附,PMIRRAS 显示 α-螺旋轴相对于磷脂单层法线的方向略有倾斜。Ca2+离子与磷脂单层的磷酸基团强烈相互作用。在 Mg2+存在下,而不是 Ca2+,未检测到 AnxA5 与脂质的相互作用。分子动力学模拟允许我们解释钙的高特异性。Ca2+离子在蛋白质表面很好地暴露并被不稳定的水分子包围,这有利于它们与膜的磷酸基团结合,解释了其特异性。相反,Mg2+离子嵌入在蛋白质结构中,与数量较少的强结合水分子结合。我们得出结论,由于这个原因,嵌入在 AnxA5 结构内的镁离子不能将蛋白质与磷脂的磷酸基团连接起来。