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载脂蛋白 A5 基因突变在严重高甘油三酯血症患者中的结构与功能分析。

Structural and functional analysis of APOA5 mutations identified in patients with severe hypertriglyceridemia.

机构信息

Institute for Biomedical Research (IIB) Sant Pau, 08025 Barcelona, Spain.

Institute for Biomedical Research (IIB) Sant Pau, 08025 Barcelona, Spain; CIBER de Diabetes y Enfermedades Metabólicas Asociadas, 08017 Barcelona, Spain.

出版信息

J Lipid Res. 2013 Mar;54(3):649-661. doi: 10.1194/jlr.M031195. Epub 2013 Jan 10.

DOI:10.1194/jlr.M031195
PMID:23307945
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3617940/
Abstract

During the diagnosis of three unrelated patients with severe hypertriglyceridemia, three APOA5 mutations [p.(Ser232_Leu235)del, p.Leu253Pro, and p.Asp332ValfsX4] were found without evidence of concomitant LPL, APOC2, or GPIHBP1 mutations. The molecular mechanisms by which APOA5 mutations result in severe hypertriglyceridemia remain poorly understood, and the functional impairment/s induced by these specific mutations was not obvious. Therefore, we performed a thorough structural and functional analysis that included follow-up of patients and their closest relatives, measurement of apoA-V serum concentrations, and sequencing of the APOA5 gene in 200 nonhyperlipidemic controls. Further, we cloned, overexpressed, and purified both wild-type and mutant apoA-V variants and characterized their capacity to activate LPL. The interactions of recombinant wild-type and mutated apoA-V variants with liposomes of different composition, heparin, LRP1, sortilin, and SorLA/LR11 were also analyzed. Finally, to explore the possible structural consequences of these mutations, we developed a three-dimensional model of full-length, lipid-free human apoA-V. A complex, wide array of impairments was found in each of the three mutants, suggesting that the specific residues affected are critical structural determinants for apoA-V function in lipoprotein metabolism and, therefore, that these APOA5 mutations are a direct cause of hypertriglyceridemia.

摘要

在诊断三名无关联的严重高甘油三酯血症患者时,发现了三个 APOA5 突变(p.(Ser232_Leu235)del、p.Leu253Pro 和 p.Asp332ValfsX4),但没有 LPL、APOC2 或 GPIHBP1 突变的证据。APOA5 突变导致严重高甘油三酯血症的分子机制仍知之甚少,这些特定突变引起的功能障碍也不明显。因此,我们进行了全面的结构和功能分析,包括对患者及其近亲进行随访、测量载脂蛋白 A-V 血清浓度,并对 200 名非高脂血症对照者的 APOA5 基因进行测序。此外,我们克隆、过表达和纯化了野生型和突变型 apoA-V 变体,并研究了它们激活 LPL 的能力。还分析了重组野生型和突变型 apoA-V 变体与不同组成的脂蛋白、肝素、LRP1、sortilin 和 SorLA/LR11 的相互作用。最后,为了探索这些突变可能的结构后果,我们开发了全长、无脂人 apoA-V 的三维模型。在每个突变体中都发现了复杂的、广泛的功能障碍,这表明受影响的特定残基是 apoA-V 在脂蛋白代谢中功能的关键结构决定因素,因此这些 APOA5 突变是高甘油三酯血症的直接原因。

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