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未超声处理的鸡蛋磷脂酰胆碱中弱极性脂质的增溶与定位:一项13C 固体高分辨核磁共振研究

Solubilization and localization of weakly polar lipids in unsonicated egg phosphatidylcholine: A 13C MAS NMR study.

作者信息

Hamilton J A, Fujito D T, Hammer C F

机构信息

Department of Chemistry, Georgetown University, Washington, D.C.

出版信息

Biochemistry. 1991 Mar 19;30(11):2894-902. doi: 10.1021/bi00225a024.

Abstract

The weakly polar lipids cholesteryl ester, triacylglycerol, and diacylglycerol incorporate to a limited extent into the lamellar structure of small unilamellar vesicles. The localization of the carbonyl group(s) at the aqueous interface was detected by [13C]carbonyl chemical shift changes relative to the neat unhydrated lipid [Hamilton, J.A., & Small, D.M. (1981) Proc. Natl. Acad. Sci. U.S.A. 78, 6878-6882; Hamilton, J.A., & Small, D.M. (1982) J. Biol. Chem. 257, 7318-7321; Hamilton, J.A., Bhamidipati, S.B., Kodali, D.R., & Small, D.M. (1991) J. Biol. Chem. 266, 1177-1186]. This study uses 13C NMR to investigate the interactions of these lipids with unsonicated (multilamellar) phosphatidylcholine, a model system for cellular membranes and surfaces of emulsion particles with low curvature. Magic angle spinning reduced the broad lines of the unsonicated dispersions to narrow lines comparable to those from sonicated dispersions. [13C]Carbonyl chemical shifts revealed incorporation of the three lipids into the lamellar structure of the unsonicated phospholipids and a partial hydration of the carbonyl groups similar to that observed in small vesicles. Other properties of interfacial weakly polar lipids in multilayers were similar to those in small unilamellar bilayers. There is thus a general tendency of weakly polar lipids to incorporate at least to a small extent into the lamellar structure of phospholipids and take on interfacial properties that are distinct from their bulk-phase properties. This pool of surface-located lipid is likely to be directly involved in enzymatic transformations and protein-mediated transport. The 13C magic angle spinning NMR method may be generally useful for determining the orientation of molecules in model membranes.

摘要

弱极性脂质胆固醇酯、三酰甘油和二酰甘油在一定程度上会掺入小单层囊泡的层状结构中。通过相对于纯无水脂质的[¹³C]羰基化学位移变化,检测羰基在水界面的定位[汉密尔顿,J.A.,& 斯莫尔,D.M.(1981年)《美国国家科学院院刊》78,6878 - 6882;汉密尔顿,J.A.,& 斯莫尔,D.M.(1982年)《生物化学杂志》257,7318 - 7321;汉密尔顿,J.A.,巴米迪帕蒂,S.B.,科达利,D.R.,& 斯莫尔,D.M.(1991年)《生物化学杂志》266,1177 - 1186]。本研究使用¹³C NMR来研究这些脂质与未超声处理(多层)磷脂酰胆碱的相互作用,未超声处理的磷脂酰胆碱是具有低曲率的细胞膜和乳液颗粒表面的模型系统。魔角旋转将未超声处理的分散体的宽线谱转变为与超声处理的分散体相当的窄线谱。[¹³C]羰基化学位移揭示了这三种脂质掺入未超声处理的磷脂的层状结构中,并且羰基部分水合,这与在小囊泡中观察到的情况相似。多层中界面弱极性脂质的其他性质与小单层双层中的相似。因此,弱极性脂质普遍倾向于至少在一定程度上掺入磷脂的层状结构中,并呈现出与其本体相性质不同的界面性质。这一位于表面的脂质库可能直接参与酶促转化和蛋白质介导的转运。¹³C魔角旋转NMR方法可能普遍有助于确定模型膜中分子的取向。

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