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载脂蛋白 C3 突变 Ala23Thr 与人类低甘油三酯血症相关的功能分析。

Functional analysis of the missense APOC3 mutation Ala23Thr associated with human hypotriglyceridemia.

机构信息

Department of Biochemistry, Ottawa Institute of Systems Biology, University of Ottawa, Canada.

出版信息

J Lipid Res. 2010 Jun;51(6):1524-34. doi: 10.1194/jlr.M005108. Epub 2010 Jan 23.

Abstract

We have shown that expression of apolipoprotein (apo) C-III promotes VLDL secretion from transfected McA-RH7777 cells under lipid-rich conditions. To determine structural elements within apoC-III that confer to this function, we contrasted wild-type apoC-III with a mutant Ala23Thr originally identified in hypotriglyceridemia subjects. Although synthesis of [(3)H]glycerol-labeled TAG was comparable between cells expressing wild-type apoC-III (C3wt cells) or Ala23Thr mutant (C3AT cells), secretion of [(3)H]TAG from C3AT cells was markedly decreased. The lowered [(3)H]TAG secretion was associated with an inability of C3AT cells to assemble VLDL(1). Moreover, [(3)H]TAG within the microsomal lumen in C3AT cells was 60% higher than that in C3wt cells, yet the activity of microsomal triglyceride-transfer protein in C3AT cells was not elevated. The accumulated [(3)H]TAG in C3AT microsomal lumen was mainly associated with lumenal IDL/LDL-like lipoproteins. Phenotypically, this [(3)H]TAG fractionation profiling resembled what was observed in cells treated with brefeldin A, which at low dose specifically blocked the second-step VLDL(1) maturation. Furthermore, lumenal [(35)S]Ala23Thr protein accumulated in IDL/LDL fractions and was absent in VLDL fractions in C3AT cells. These results suggest that the presence of Ala23Thr protein in lumenal IDL/LDL particles might prevent effective fusion between lipid droplets and VLDL precursors. Thus, the current study reveals an important structural element residing within the N-terminal region of apoC-III that governs the second step VLDL(1) maturation.

摘要

我们已经表明,载脂蛋白 (apo) C-III 的表达在富含脂质的条件下促进了转染的 McA-RH7777 细胞中 VLDL 的分泌。为了确定赋予 apoC-III 此功能的结构元件,我们将野生型 apoC-III 与最初在低甘油三酯血症患者中发现的突变 Ala23Thr 进行了对比。尽管表达野生型 apoC-III(C3wt 细胞)或 Ala23Thr 突变体(C3AT 细胞)的细胞中 [(3)H]甘油三酯标记的 TAG 合成相当,但 C3AT 细胞中 [(3)H]TAG 的分泌明显减少。降低的 [(3)H]TAG 分泌与 C3AT 细胞不能组装 VLDL(1)有关。此外,C3AT 细胞中微粒体腔中的 [(3)H]TAG 比 C3wt 细胞高 60%,但 C3AT 细胞中的微粒体甘油三酯转移蛋白活性没有升高。C3AT 微粒体腔中积累的 [(3)H]TAG 主要与腔内腔内 IDL/LDL 样脂蛋白有关。表型上,这种 [(3)H]TAG 馏分分析类似于用布雷非德菌素 A 处理细胞时观察到的情况,布雷非德菌素 A 低剂量特异性阻断了第二步 VLDL(1)成熟。此外,C3AT 细胞中腔内腔内 [(35)S]Ala23Thr 蛋白在 IDL/LDL 部分积累,而在 VLDL 部分不存在。这些结果表明,Ala23Thr 蛋白在腔内腔内 IDL/LDL 颗粒中的存在可能阻止了脂质滴与 VLDL 前体之间的有效融合。因此,本研究揭示了 apoC-III 的 N 端区域内存在一个重要的结构元件,它控制着第二步 VLDL(1)成熟。

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