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高密度脂蛋白的中性脂质含量对载脂蛋白A-I结构和颗粒稳定性的影响。

Effects of the neutral lipid content of high density lipoprotein on apolipoprotein A-I structure and particle stability.

作者信息

Sparks D L, Davidson W S, Lund-Katz S, Phillips M C

机构信息

Lipoproteins and Atherosclerosis Group, University of Ottawa Heart Institute, Ontario, Canada.

出版信息

J Biol Chem. 1995 Nov 10;270(45):26910-7. doi: 10.1074/jbc.270.45.26910.

Abstract

Alterations in high density lipoprotein (HDL) composition that occur in dyslipidemic states may modulate a number of events involved in cholesterol homeostasis. To elucidate the details of how HDL-core composition can affect the molecular structure of different kinds of HDL particles, the conformation and stability of apoA-I have been investigated in homogeneous recombinant HDL particles (LpA-I) containing palmitoyloleoyl phosphatidylcholine (POPC), triolein (TG), and/or cholesteryl linoleate (CE). In a discoidal particle containing two molecules of apoA-I and 85 molecules of POPC, apoA-I exhibits an alpha-helix content of 70% and a free energy of stability of its alpha-helical segments (delta G0D) of 2.2 kcal/mol. Inclusion of eight molecules of TG into the complex significantly reduces the alpha-helix content and stability of apoA-I, whereas inclusion of four molecules of CE into the complex has an opposite effect in that the alpha-helix content is significantly reduced and the stability of the remaining alpha-helical structure of apoA-I is increased. Neutral lipids have a different effect on apoA-I conformation in spherical LpA-I particles. In a sonicated-spherical LpA-I particle containing two molecules of apoA-I and 70 molecules of POPC, apoA-I exhibits an alpha-helix content of about 60% and a delta G0D of 1.2 kcal/mol apoA-I. Inclusion of either 10 molecules of TG or six molecules of CE into such a particle increases both the alpha-helix content and stability of apoA-I. Increasing the CE/TG ratio in LpA-I particles that contain both neutral lipids enhances the stability of the alpha-helical segments. ApoA-I molecules tend to dissociate and cause particle instability when delta G0D for the lipid-bound alpha-helices is less than that for helices in the lipid-free state. The stabilities of both discoidal and spherical LpA-I particles are relatively low when the only neutral lipid present is TG but the particle stability is enhanced by the presence of CE molecules. Such dissociation of apoA-I molecules from LpA-I particles that have a low CE/TG ratio would be promoted in the hypertriglyceridemic state in vivo.

摘要

血脂异常状态下发生的高密度脂蛋白(HDL)组成改变可能会调节许多与胆固醇稳态相关的事件。为了阐明HDL核心组成如何影响不同类型HDL颗粒的分子结构,研究了载脂蛋白A-I(apoA-I)在含有棕榈酰油酰磷脂酰胆碱(POPC)、三油精(TG)和/或亚油酸胆固醇酯(CE)的均匀重组HDL颗粒(LpA-I)中的构象和稳定性。在一个含有两个apoA-I分子和85个POPC分子的盘状颗粒中,apoA-I的α-螺旋含量为70%,其α-螺旋片段的稳定自由能(ΔG0D)为2.2千卡/摩尔。向复合物中加入八个TG分子会显著降低apoA-I的α-螺旋含量和稳定性,而向复合物中加入四个CE分子则产生相反的效果,即α-螺旋含量显著降低,apoA-I剩余α-螺旋结构的稳定性增加。中性脂质对球形LpA-I颗粒中apoA-I构象有不同影响。在一个含有两个apoA-I分子和70个POPC分子的超声处理球形LpA-I颗粒中,apoA-I的α-螺旋含量约为60%,apoA-I的ΔG0D为1.2千卡/摩尔。向这样的颗粒中加入10个TG分子或六个CE分子都会增加apoA-I的α-螺旋含量和稳定性。在同时含有中性脂质的LpA-I颗粒中增加CE/TG比值会增强α-螺旋片段的稳定性。当脂质结合的α-螺旋的ΔG0D小于无脂质状态下螺旋的ΔG0D时,apoA-I分子倾向于解离并导致颗粒不稳定。当仅存在的中性脂质为TG时,盘状和球形LpA-I颗粒的稳定性都相对较低,但CE分子的存在会增强颗粒稳定性。在体内高甘油三酯血症状态下,apoA-I分子从CE/TG比值低的LpA-I颗粒中的解离会被促进。

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