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The Crystal Structure of Calcium-bound Annexin Gh1 from Gossypium hirsutum and Its Implications for Membrane Binding Mechanisms of Plant Annexins

机译:陆地棉钙结合膜联蛋白Gh1的晶体结构及其对植物膜联蛋白膜结合机制的启示。

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摘要

Plant annexins show distinct differences in comparison with their animal orthologues. In particular, the endonexin sequence, which is responsible for coordination of calcium ions in type II binding sites, is only partially conserved in plant annexins. The crystal structure of calcium-bound cotton annexin Gh1 was solved at 2.5Šresolution and shows three metal ions coordinated in the first and fourth repeat in types II and III binding sites. Although the protein has no detectable affinity for calcium in solution, in the presence of phospholipid vesicles, we determined a stoichiometry of four calcium ions per protein molecule using isothermal titration calorimetry. Further analysis of the crystal structure showed that binding of a fourth calcium ion is structurally possible in the DE loop of the first repeat. Data from this study are in agreement with the canonical membrane binding of annexins, which is facilitated by the convex surface associating with the phospholipid bilayer by a calcium bridging mechanism. In annexin Gh1, this membrane-binding state is characterized by four calcium bridges in the I/IV module of the protein and by direct interactions of several surface-exposed basic and hydrophobic residues with the phospholipid membrane. Analysis of the protein fold stability revealed that the presence of calcium lowers the thermal stability of plant annexins. Furthermore, an additional unfolding step was detected at lower temperatures, which can be explained by the anchoring of the N-terminal domain to the C-terminal core by two conserved hydrogen bonds.
机译:植物膜联蛋白与其动物直系同源物相比显示出明显的差异。特别地,负责II型结合位点中钙离子配位的内毒素序列仅在植物膜联蛋白中部分保守。钙结合的棉花膜联蛋白Gh1的晶体结构以2.5Å分辨率解析,并显示在II型和III型结合位点的第一个和第四个重复序列中配位的三个金属离子。尽管该蛋白质对溶液中的钙没有可检测的亲和力,但是在磷脂囊泡存在的情况下,我们使用等温滴定量热法确定了每个蛋白质分子四个钙离子的化学计量。晶体结构的进一步分析表明,在第一重复序列的DE环中,第四钙离子的结合在结构上是可能的。这项研究的数据与膜联蛋白的典型膜结合是一致的,而膜联蛋白的凸膜表面通过钙桥联机制与磷脂双层结合而促进了膜联蛋白的典型膜结合。在膜联蛋白Gh1中,这种膜结合状态的特征是蛋白质的I / IV模块中有四个钙桥,并且一些表面暴露的碱性和疏水残基与磷脂膜直接相互作用。蛋白质折叠稳定性的分析表明,钙的存在会降低植物膜联蛋白的热稳定性。此外,在较低温度下检测到额外的展开步骤,这可以通过两个保守的氢键将N末端结构域锚定到C末端核心来解释。

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