Thematic Review Series: High Density Lipoprotein Structure, Function, and Metabolism New insights into the determination of HDL structure by apolipoproteins

被引:141
作者
Phillips, Michael C. [1 ]
机构
[1] Univ Penn, Childrens Hosp Philadelphia, Perelman Sch Med, Div Gastroenterol Hepatol & Nutr,Lipid Res Grp, Philadelphia, PA 19104 USA
基金
美国国家卫生研究院;
关键词
ATP binding cassette transporter A1; amphipathic alpha-helix; apoA-I; apoE; cholesterol; helix bundle; lipoprotein; membrane solubilization; phospholipid; N-TERMINAL DOMAIN; APO-A-I; PARAMAGNETIC-RESONANCE SPECTROSCOPY; COMPUTATIONAL-EXPERIMENTAL-APPROACH; INDUCED CONFORMATIONAL-CHANGE; SURFACE-PLASMON RESONANCE; CASSETTE TRANSPORTER A1; CELLULAR LIPID EFFLUX; PRE-BETA-HDL; MASS-SPECTROMETRY;
D O I
10.1194/jlr.R034025
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Apolipoprotein (apo)A-I is the principal protein component of HDL, and because of its conformational adaptability, it can stabilize all HDL subclasses. The amphipathic alpha-helix is the structural motif that enables apoA-I to achieve this functionality. In the lipid-free state, the helical segments unfold and refold in seconds and are located in the N-terminal two thirds of the molecule where they are loosely packed as a dynamic, four-helix bundle. The C-terminal third of the protein forms an intrinsically disordered domain that mediates initial binding to phospholipid surfaces, which occurs with coupled alpha-helix formation. The lipid affinity of apoA-I confers detergent-like properties; it can solubilize vesicular phospholipids to create discoidal HDL particles with diameters of approximately 10 nm. Such particles contain a segment of phospholipid bilayer and are stabilized by two apoA-I molecules that are arranged in an anti-parallel, double-belt conformation around the edge of the disc, shielding the hydrophobic phospholipid acyl chains from exposure to water. The apoA-I molecules are in a highly dynamic state, and they stabilize discoidal particles of different sizes by certain segments forming loops that detach reversibly from the particle surface. The flexible apoA-I molecule adapts to the surface of spherical HDL particles by bending and forming a stabilizing trefoil scaffold structure. The above characteristics of apoA-I enable it to partner with ABCA1 in mediating efflux of cellular phospholipid and cholesterol and formation of a heterogeneous population of nascent HDL particles. Novel insights into the structure-function relationships of apoA-I should help reveal mechanisms by which HDL subclass distribution can be manipulated.
引用
收藏
页码:2034 / 2048
页数:15
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