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重金属与肝素二糖的结合。II. 锌螯合的首个证据。

Heavy metal binding to heparin disaccharides. II. First evidence for zinc chelation.

作者信息

Whitfield D M, Sarkar B

机构信息

Research Institute, Hospital for Sick Children, Toronto, Ontario, Canada.

出版信息

Biopolymers. 1992 Jun;32(6):597-619. doi: 10.1002/bip.360320604.

Abstract

To map out the heavy metal binding sites of iduronic acid containing oligosaccharides isolated from human kidneys, we studied Zn(II) binding by nuclear magnetic resonance (NMR) and molecular modeling to two disaccharides isolated after nitrous acid depolymerization of heparin and two synthetic disaccharides representative of the heparin structure, namely, IdopA2S (alpha 1,4)AnManOH, 1 alpha, IdopA2S (alpha 1,4)AnManOH6S, 1b, IdopA2S-(alpha 1,4)GlcNS alpha Me, 2a, and IdopA2S (alpha 1,4)GlcNS6S alpha Me, 2b (see previous article in this series). A conformational analysis of the metal free and metal bound solutions was made by comparing calculated [(NOE)]s, [T1]s, and [J]s to experimental values. The 1C4, 4C1, and 2S0 conformations of the L-idopyranosiduronate ring and the 4E and 4T3 of the anhydro-D-mannitol ring are evaluated as are rotations about the C5-C6 hydroxymethylene of the AnManOH(6S) or GlcNS (6S) residues. The NOE between IdopA2S H1 and H3 and the known NOE between H2 and H5, as well as the T1 of IdopA2S H3, are introduced as NMR observables sensitive to the IdopA2S ring conformation. Similarly, a NOE between IdopA2S H5 and AnManOH(6S) or GlcNS(6S) H3 was observed that directly restricts the allowed interglycosidic conformational space. For all disaccharides, the Zn(II) bound spectral data are consistent with models in which these motions are partially "frozen" such that the 1C4 conformation of the IdopA2S is stabilized along with the 4T3 conformation of the AnManOH(6S) ring. The interglycosidic conformation is also stabilized in one of two minima. Electrostatic potential energy calculations gave the best overall agreement with experiment and suggest metal binding conformations with the carboxylate and ring oxygen of the IdopA2S residues (1C4 conformation) and either O3 of the GlcNS(6S) residues or the sulfate oxygens of the 6-sulphate for 2b providing additional chelating sites. These chelation models concur with the observation of marked 13C and 1H NMR chemical shifts for the IdopA2S resonances and of GlcNS H3 for 2 alpha and GlcNS6S C6 for 2b. This study of model compounds implicates the IdopA2S(alpha 1,4)GlcNS6S group as part of the heavy metal binding site in biologically important acidic oligosaccharides such as heparin.

摘要

为了确定从人肾中分离出的含艾杜糖醛酸的寡糖的重金属结合位点,我们通过核磁共振(NMR)和分子模拟研究了锌(II)与两种在亚硝酸解聚肝素后分离得到的二糖以及两种代表肝素结构的合成二糖的结合情况,这两种合成二糖分别是艾杜糖醛酸 - 2 - 硫酸酯(α1,4)脱水 - D - 甘露糖醇(IdopA2S (α 1,4)AnManOH),1α;艾杜糖醛酸 - 2 - 硫酸酯(α1,4)脱水 - D - 甘露糖醇 - 6 - 硫酸酯(IdopA2S (α 1,4)AnManOH6S),1b;艾杜糖醛酸 - 2 - 硫酸酯 - (α 1,4) - N - 乙酰氨基葡萄糖 - α - 甲基(IdopA2S-(α 1,4)GlcNSαMe),2a;以及艾杜糖醛酸 - 2 - 硫酸酯(α1,4) - N - 乙酰氨基葡萄糖 - 6 - 硫酸酯 - α - 甲基(IdopA2S (α 1,4)GlcNS6SαMe),2b(见本系列之前的文章)。通过将计算得到的核Overhauser效应([(NOE)]s)、纵向弛豫时间([T1]s)和耦合常数([J]s)与实验值进行比较,对无金属和金属结合的溶液进行了构象分析。评估了L - 艾杜糖醛酸吡喃糖醛酸环的1C4、4C1和2S0构象以及脱水 - D - 甘露糖醇环的4E和4T3构象,以及围绕AnManOH(6S)或GlcNS (6S)残基的C5 - C6羟亚甲基的旋转情况。将IdopA2S H1和H3之间的NOE以及已知的H2和H5之间的NOE,连同IdopA2S H3的T1,作为对IdopA2S环构象敏感的NMR观测值引入。同样,观察到IdopA2S H5与AnManOH(6S)或GlcNS(6S) H3之间的NOE,这直接限制了允许的糖苷键间构象空间。对于所有二糖,锌(II)结合的光谱数据与模型一致,在这些模型中,这些运动部分“冻结”,使得IdopA2S的1C4构象与AnManOH(6S)环的4T3构象一起稳定下来。糖苷键间构象也在两个极小值之一中稳定下来。静电势能计算与实验结果总体上最吻合,并表明金属结合构象中,IdopA2S残基(1C4构象)的羧酸盐和环氧以及2b中GlcNS(6S)残基的O3或6 - 硫酸酯的硫酸氧提供了额外的螯合位点。这些螯合模型与IdopA2S共振以及2α中GlcNS H3和2b中GlcNS6S C6的显著13C和1H NMR化学位移的观测结果一致。对模型化合物的这项研究表明,IdopA2S(α 1,4)GlcNS6S基团是肝素等具有生物学重要性的酸性寡糖中重金属结合位点的一部分。

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