Department of Biochemistry, Ottawa Institute of Systems Biology, University of Ottawa, Canada.
J Lipid Res. 2010 Jun;51(6):1524-34. doi: 10.1194/jlr.M005108. Epub 2010 Jan 23.
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.
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。