首页> 外文期刊>Analytical chemistry >Glycosaminoglycans as Naturally Occurring Combinatorial Libraries: Developing a Mass Spectrometry-Based Strategy for Characterization of Anti-Thrombin Interaction with Low Molecular Weight Heparin and Heparin Oligomers
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Glycosaminoglycans as Naturally Occurring Combinatorial Libraries: Developing a Mass Spectrometry-Based Strategy for Characterization of Anti-Thrombin Interaction with Low Molecular Weight Heparin and Heparin Oligomers

机译:糖胺聚糖作为天然存在的组合图书馆:开发基于质谱的表征与低分子量肝素和肝素低聚物的抗凝血酶相互作用的策略。

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Heparin is a densely charged polysaccharide, which isbest known for its anticoagulant activity, although it also modulates a plethora of other biological processes. Unlike biopolymers whose synthesis is strictly controlled by a unique genetic template, heparin molecules exhibit a remarkable degree of structural heterogeneity, which poses a serious challenge for studies of heparin-protein interactions. This analytical challenge is often dealt with by reducing the enormous structural repertoire of heparin to a model small molecule. In this paper, we describe a different approach inspired by the experimental methodologies from the arsenal of combinatorial chemistry. Interaction of anti-thrombin III (AT) with heparinoids is studied using a mixture of oligoheparin molecules of fixed degree of polymerization, but varying chemical composition (heparin hexasaccharides obtained by size exclusion chromatography of an enzymatic digest of porcine intestinal heparin with bacterial heparinase), as well as a heparin-derived pharmaceutical preparation Tinzaparin (heparin oligosaccharides up to a 22-mer). AT binders are identified based on the results of ESI MS measurements of complexes formed by protein-oligoheparin association. Additionally, differential depletion of free heparin oligomers in solution in the presence of AT is used to verify the binding preferences. ESI MS characterization of oligoheparin-AT interaction under partially denaturing conditions allowed the conformer specificity of the protein-polyanion binding to be monitored. A model emerging from these studies invokes the notion of a well-defined binding site on AT, to which a flexible partner (heparin) adapts to maximize favorable intermolecular electrostatic interactions. This study demonstrates the enormous potential of ESI MS as an analytical tool to study the interactions of highly heterogeneous glycosaminoglycans with their cognate proteins outside of the commonly accepted reductionist paradigm, which reduces the intrinsic complexity of heparin by using structurally defined homogeneous low molecular weight mimetics.
机译:肝素是一种电荷密集的多糖,尽管它还可以调节许多其他生物学过程,但它以其抗凝活性而闻名。与生物合成严格受独特遗传模板控制的生物聚合物不同,肝素分子显示出显着程度的结构异质性,这对肝素-蛋白质相互作用的研究提出了严峻挑战。通常通过将肝素的巨大结构组成减少为模型小分子来应对这一分析挑战。在本文中,我们描述了一种从组合化学武器库中汲取实验方法启发的不同方法。使用固定聚合度但化学成分不同的低聚肝素分子混合物研究了抗凝血酶III(AT)与类肝素的相互作用(通过猪肠肝素与细菌肝素酶的酶消化物的大小排阻色谱法获得的肝素六糖),以及肝素衍生的药物制剂Tinzaparin(肝素寡糖(最多22个单体))。基于ESI MS对蛋白质-寡肝素缔合形成的复合物的测量结果,确定了AT结合物。另外,在AT存在下溶液中游离肝素低聚物的差异消耗被用于验证结合偏好。在部分变性条件下寡肝素-AT相互作用的ESI MS表征可以监测蛋白质-聚阴离子结合的构象异构体特异性。从这些研究中得出的模型援引了AT上定义明确的结合位点的概念,灵活的伴侣(肝素)可以适应该结合位点,以最大化有利的分子间静电相互作用。这项研究证明了ESI MS作为分析工具的巨大潜力,可以用来研究高度异质的糖胺聚糖与其公认的还原论范式之外的同源蛋白质之间的相互作用,通过使用结构明确的均质低分子量模拟物降低了肝素的内在复杂性。

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