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多态性对人载脂蛋白E脂质相互作用的影响。

Effects of polymorphism on the lipid interaction of human apolipoprotein E.

作者信息

Saito Hiroyuki, Dhanasekaran Padmaja, Baldwin Faye, Weisgraber Karl H, Phillips Michael C, Lund-Katz Sissel

机构信息

National Institute of Health Sciences, Osaka Branch, Osaka 540-0006, Japan.

出版信息

J Biol Chem. 2003 Oct 17;278(42):40723-9. doi: 10.1074/jbc.M304814200. Epub 2003 Aug 12.

DOI:10.1074/jbc.M304814200
PMID:12917433
Abstract

ApoE exists as three common isoforms, apoE2, apoE3, and apoE4; apoE2 and apoE3 preferentially bind to high density lipoproteins, whereas apoE4 prefers very low density lipoproteins (VLDL). To understand the molecular basis for the different lipoprotein distributions of these isoforms in human plasma, we examined the lipid-binding properties of the apoE isoforms and some mutants using lipid emulsions. With both large (120 nm) and small (35 nm) emulsion particles, the binding affinity of apoE4 was much higher than that of apoE2 and apoE3, whereas the maximal binding capacities were similar among the three isoforms. The 22-kDa N-terminal fragment of apoE4 displayed a much higher binding capacity than did apoE2 and apoE3. The apoE4(E255A) mutant, which has no electrostatic interaction between Arg61 and Glu255, showed binding behavior similar to that of apoE3, indicating that N- and C-terminal domain interaction in apoE4 is responsible for its high affinity for lipid. In addition, the apoE3(P267A) mutant, which is postulated to contain a long alpha-helix in the C-terminal domain, had significantly decreased binding capacities for both sizes of emulsion particle, suggesting that the apoE4 preference for VLDL is not due to a stabilized long alpha-helical structure. Isothermal titration calorimetry measurements showed that there is no significant difference in thermodynamic parameters for emulsion binding among the apoE isoforms. However, fluorescence measurements of 8-anilino-1-naphthalenesulfonic acid binding to apoE indicated that apoE4 has more exposed hydrophobic surface compared with apoE3 mainly due to the different tertiary organization of the C-terminal domain. The less organized structure in the C-terminal domain of apoE4 leads to the higher affinity for lipid, contributing to its preferential association with VLDL. In fact, we found that apoE4 binds to VLDL with higher affinity compared with apoE3.

摘要

载脂蛋白E(ApoE)以三种常见的异构体形式存在,即载脂蛋白E2(apoE2)、载脂蛋白E3(apoE3)和载脂蛋白E4(apoE4);apoE2和apoE3优先结合高密度脂蛋白,而apoE4则优先结合极低密度脂蛋白(VLDL)。为了了解这些异构体在人血浆中脂蛋白分布不同的分子基础,我们使用脂质乳剂研究了apoE异构体和一些突变体的脂质结合特性。对于大(120纳米)小(35纳米)两种乳剂颗粒,apoE4的结合亲和力远高于apoE2和apoE3,而三种异构体的最大结合容量相似。apoE4的22千道尔顿N端片段显示出比apoE2和apoE3更高的结合容量。apoE4(E255A)突变体在精氨酸61和谷氨酸255之间没有静电相互作用,其结合行为与apoE3相似,这表明apoE4中N端和C端结构域的相互作用是其对脂质具有高亲和力的原因。此外,推测在C端结构域含有长α螺旋的apoE3(P267A)突变体,对两种大小乳剂颗粒的结合容量均显著降低,这表明apoE4对VLDL的偏好并非由于稳定的长α螺旋结构。等温滴定量热法测量表明,apoE异构体之间在乳剂结合的热力学参数上没有显著差异。然而,8-苯胺基-1-萘磺酸与apoE结合的荧光测量表明,与apoE3相比,apoE4有更多暴露的疏水表面,这主要是由于C端结构域不同的三级结构。apoE4 C端结构域中较无序的结构导致其对脂质有更高的亲和力,使其更倾向于与VLDL结合。事实上,我们发现apoE4与VLDL的结合亲和力高于apoE3。

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