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首页> 外文期刊>Acta Biochimica Polonica >Interactions of sialic acid with phosphatidylcholine liposomes studied by 2D NMR spectroscopy
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Interactions of sialic acid with phosphatidylcholine liposomes studied by 2D NMR spectroscopy

机译:通过2D NMR光谱研究唾液酸与磷脂酰胆碱脂质体的相互作用

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摘要

Biological membranes are complex systems which have attracted scientific interest for a long time and for various reasons. The sialic acid–liposome interactions at the molecular level depend on their hydro-lipophilic characteristics. The aim of the present study was to investigate the changes of conformation of the phospholipid (1,2-Diacyl-sn-glycero-3-phosphocholine) and sialic acid (2,8-(N-acetylneuraminic acid)) molecules and the type of interactions induced by the sialic acid molecules on membrane-like systems (liposomes) by 2D NMR (TOCSY, HETCOR, ROESY). The nature of the interaction of sialic acid with the model membrane depends on the structure of the phospholipid headgroups and the hydration of membrane. In ROESY spectra was observed the absence of dipole-dipole couplings within the choline head, between headgroups and glycerol, and between glycerol and fatty acid chains. It indicates an increase of the membrane dynamics in the presence of sialic acid. Moreover, the conformation of sialic acid molecule is changed in the presence of liposomes, which depends on stereochemistry of the chemical groups of the carbon atoms C7 and C8, and oxygen O8. The observed differences between the ROESY spectra of free and liposome bound sialic acid may be a consequence of a changed orientation of the pyranose ring from trans to gauche in the presence of liposomes. The sialic acid penetrate into the phospholipid bilayer to a sufficient depth to allow the dipole interaction. The present result that the correlation signal was found only between the methyl protons from the acetyl group of sialic acid and the methylene tail of phospholipid molecule in the ROESY spectrum indicates that the opposite end of the sialic acid molecule stays in the aqueous phase without interacting with membrane molecules.
机译:生物膜是复杂的系统,长期以来由于各种原因引起了科学兴趣。唾液酸-脂质体在分子水平上的相互作用取决于它们的亲脂性。本研究的目的是研究磷脂(1,2-二酰基-sn-甘油-3-磷酸胆碱)和唾液酸(2,8-(N-乙酰神经氨酸))分子构型的变化及其类型2D NMR(TOCSY,HETCOR,ROESY)分析唾液酸分子在膜样系统(脂质体)上诱导的相互作用。唾液酸与模型膜相互作用的性质取决于磷脂头基的结构和膜的水合作用。在ROESY光谱中,观察到胆碱头内,头基与甘油之间以及甘油与脂肪酸链之间不存在偶极-偶极偶合。这表明在唾液酸存在下膜动力学的增加。而且,唾液酸分子的构象在脂质体存在下改变,这取决于碳原子C7和C8以及氧O8的化学基团的立体化学。游离的和脂质体结合的唾液酸的ROESY光谱之间观察到的差异可能是由于在存在脂质体的情况下吡喃糖环的方向从反式变为薄纱状的结果。唾液酸渗透到磷脂双层中的深度足以允许偶极相互作用。目前的结果是,仅在唾液酸的乙酰基的甲基质子与磷脂分子的ROESY光谱的亚甲基尾之间发现了相关信号,表明唾液酸分子的另一端停留在水相中而不与膜分子。

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