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小分子热休克蛋白调节膜脂多态性。

Small heat-shock proteins regulate membrane lipid polymorphism.

作者信息

Tsvetkova Nelly M, Horváth Ibolya, Török Zsolt, Wolkers Willem F, Balogi Zsolt, Shigapova Natalia, Crowe Lois M, Tablin Fern, Vierling Elizabeth, Crowe John H, Vigh László

机构信息

Section of Molecular and Cellular Biology, Department of Anatomy, Physiology, and Cell Biology, University of California, Davis, CA 95616, USA.

出版信息

Proc Natl Acad Sci U S A. 2002 Oct 15;99(21):13504-9. doi: 10.1073/pnas.192468399. Epub 2002 Oct 4.

Abstract

Thermal stress in living cells produces multiple changes that ultimately affect membrane structure and function. We report that two members of the family of small heat-shock proteins (sHsp) (alpha-crystallin and Synechocystis HSP17) have stabilizing effects on model membranes formed of synthetic and cyanobacterial lipids. In anionic membranes of dimyristoylphosphatidylglycerol and dimyristoylphosphatidylserine, both HSP17 and alpha-crystallin strongly stabilize the liquid-crystalline state. Evidence from infrared spectroscopy indicates that lipid/sHsp interactions are mediated by the polar headgroup region and that the proteins strongly affect the hydrophobic core. In membranes composed of the nonbilayer lipid dielaidoylphosphatidylethanolamine, both HSP17 and alpha-crystallin inhibit the formation of inverted hexagonal structure and stabilize the bilayer liquid-crystalline state, suggesting that sHsps can modulate membrane lipid polymorphism. In membranes composed of monogalactosyldiacylglycerol and phosphatidylglycerol (both enriched with unsaturated fatty acids) isolated from Synechocystis thylakoids, HSP17 and alpha-crystallin increase the molecular order in the fluid-like state. The data show that the nature of sHsp/membrane interactions depends on the lipid composition and extent of lipid unsaturation, and that sHsps can regulate membrane fluidity. We infer from these results that the association between sHsps and membranes may constitute a general mechanism that preserves membrane integrity during thermal fluctuations.

摘要

活细胞中的热应激会产生多种变化,最终影响膜的结构和功能。我们报告称,小热休克蛋白(sHsp)家族的两个成员(α-晶状体蛋白和集胞藻HSP17)对由合成脂质和蓝细菌脂质形成的模型膜具有稳定作用。在二肉豆蔻酰磷脂酰甘油和二肉豆蔻酰磷脂酰丝氨酸的阴离子膜中,HSP17和α-晶状体蛋白都能强烈稳定液晶态。红外光谱的证据表明,脂质/sHsp相互作用是由极性头部区域介导的,并且这些蛋白质对疏水核心有强烈影响。在由非双层脂质二油酰磷脂酰乙醇胺组成的膜中,HSP17和α-晶状体蛋白都能抑制反相六角形结构的形成并稳定双层液晶态,这表明sHsp可以调节膜脂质多态性。在从集胞藻类囊体中分离出的单半乳糖基二酰基甘油和磷脂酰甘油(两者都富含不饱和脂肪酸)组成的膜中,HSP17和α-晶状体蛋白增加了类流体状态下的分子有序性。数据表明,sHsp/膜相互作用的性质取决于脂质组成和脂质不饱和程度,并且sHsp可以调节膜流动性。我们从这些结果推断,sHsp与膜之间的关联可能构成一种在热波动期间保持膜完整性的普遍机制。

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