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细胞膜和脂质双分子层中的多不饱和现象及其对膜蛋白的影响。

Polyunsaturation in cell membranes and lipid bilayers and its effects on membrane proteins.

作者信息

Slater S J, Kelly M B, Yeager M D, Larkin J, Ho C, Stubbs C D

机构信息

Department of Pathology and Cell Biology, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.

出版信息

Lipids. 1996 Mar;31 Suppl:S189-92. doi: 10.1007/BF02637074.

Abstract

The effect of variation of the degree of cis-unsaturation on cell membrane protein functioning was investigated using a model lipid bilayer system and protein kinase C (PKC). This protein is a key element of signal transduction. Furthermore it is representative of a class of extrinsic membrane proteins that show lipid dependent interactions with cell membranes. To test for dependence of activity on the phospholipid unsaturation, experiments were devised using a vesicle assay system consisting of phosphatidylcholine (PC) and phosphatidylserine (PS) in which the unsaturation was systematically varied. Highly purified PKC alpha and epsilon were obtained using the baculovirus-insect cell expression system. It was shown that increased PC unsaturation elevated the activity of PKC alpha. By contrast, increasing the unsaturation of PS decreased the activity of PKC alpha, and to a lesser extent PKC epsilon. This result immediately rules out any single lipid bilayer physical parameter, such as lipid order, underlying the effect. It is proposed that while PC unsaturation effects are explainable on the basis of a contribution to membrane surface curvature stress, the effects of PS unsaturation may be due to specific protein-lipid interactions. Overall, the results indicate that altered phospholipid unsaturation in cell membranes that occurs in certain disease states such as chronic alcoholism, or by dietary manipulations, are likely to have profound effects on signal transduction pathways involving PKC and similar proteins.

摘要

使用模型脂质双层系统和蛋白激酶C(PKC)研究了顺式不饱和程度的变化对细胞膜蛋白功能的影响。这种蛋白质是信号转导的关键要素。此外,它代表了一类外在膜蛋白,这类蛋白显示出与细胞膜的脂质依赖性相互作用。为了测试活性对磷脂不饱和程度的依赖性,设计了使用由磷脂酰胆碱(PC)和磷脂酰丝氨酸(PS)组成的囊泡测定系统的实验,其中不饱和程度被系统地改变。使用杆状病毒-昆虫细胞表达系统获得了高度纯化的PKCα和ε。结果表明,PC不饱和程度的增加提高了PKCα的活性。相比之下,增加PS的不饱和程度会降低PKCα的活性,并在较小程度上降低PKCε的活性。这一结果立即排除了任何单一脂质双层物理参数,如脂质有序性,作为该效应的基础。有人提出,虽然PC不饱和效应可以基于对膜表面曲率应力的贡献来解释,但PS不饱和效应可能是由于特定的蛋白质-脂质相互作用。总体而言,结果表明,在某些疾病状态如慢性酒精中毒中发生的或通过饮食操作导致的细胞膜中磷脂不饱和程度的改变,可能对涉及PKC和类似蛋白质的信号转导途径产生深远影响。

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