首页> 外文期刊>Biochemistry >Crystal structure of cardiotoxin V from Taiwan cobra venom: pH-dependent conformational change and a novel membrane-binding motif identified in the three-finger loops of P-type cardiotoxin.
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Crystal structure of cardiotoxin V from Taiwan cobra venom: pH-dependent conformational change and a novel membrane-binding motif identified in the three-finger loops of P-type cardiotoxin.

机译:台湾眼镜蛇毒的心脏毒素V的晶体结构:pH依赖的构象变化和P型心脏毒素的三指环中确定的新型膜结合基序。

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The crystal structure of cardiotoxin V from Taiwan cobra venom (CTX A5) has been solved at pH 8.5 and refined to an R-factor of 20.7% for 7013 reflections [>2sigma(F)] between 8- and 2.19-A resolution. The refined model shows that CTX A5 exists as a dimer. The assembly consists of 974 non-hydrogen atoms from 124 residues and 73 water molecules. The global monomeric structure is similar to that determined by NMR at pH 3.7, characterized by a core formed by two beta-sheets connected with three-finger loops. However, local conformational differences are detected in two functionally important regions, loops I and II. A disparity between the NMR and X-ray structure of CTX A5 is detected near the tip of loop I and can be attributed to the difference in the protonation state of His4 at different pH, resulting in a reorientation of the His4 imidazole ring. A concerted motion of amino acid side chains located near His4 is detected and possibly contributes to the pH-dependent binding ability of CTX A5 to phospholipid model membranes. The second difference, detected at the tip of loop II, is due to the hydrophobic contact between CTX dimers in the crystal packing and the interaction of water molecules with amino acid residues in the loop II region of the CTX containing Pro31 (P-type CTX). This interaction forces loop II into a more rigid omega shape bridging the main chain at positions 27 and 34, contradictory to the flexible, tapering shape detected by NMR. Thus, a novel continuous hydrophobic column capable of binding to and possibly penetrating the membrane lipid bilayer is formed by the tips of the three-finger loops. In this respect, the X-ray crystal structure of CTX A5 may represent the CTX structure in the membrane-binding mode.
机译:来自台湾眼镜蛇毒(CTX A5)的心脏毒素V的晶体结构已在pH 8.5时进行了解析,并针对8-13和2.19-A分辨率之间的7013次反射[> 2sigma(F)]精炼到20.7%的R因子。精炼模型显示CTX A5以二聚体形式存在。该组件由来自124个残基和73个水分子的974个非氢原子组成。整体单体结构类似于在pH 3.7下通过NMR测定的结构,其特征在于核心是由两个与三指环相连的β-折叠形成的。但是,在两个重要的功能区域(回路I和II)中检测到局部构象差异。在环I末端附近检测到CTX A5的NMR与X射线结构之间的差异,这可以归因于在不同pH下His4的质子化状态不同,从而导致His4咪唑环重新取向。检测到位于His4附近的氨基酸侧链的协同运动,这可能有助于CTX A5与磷脂模型膜的pH依赖性结合能力。在环II末端检测到的第二个差异是由于晶体包装中CTX二聚体之间的疏水性接触以及水分子与含有Pro31(P型CTX)的CTX环II区域中氨基酸残基的相互作用)。这种相互作用迫使环II变成更刚性的欧米茄形状,在位置27和34上桥接主链,这与通过NMR检测到的柔性,渐缩形状相反。因此,通过三指环的末端形成了能够结合并可能穿透膜脂质双层的新颖的连续疏水柱。在这方面,CTX A5的X射线晶体结构可以代表膜结合模式下的CTX结构。

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