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Human Apolipoprotein C-III - A New Intrahepatic Protein Factor Promoting Assembly and Secretion of Very Low Density Lipoproteins.

机译:人载脂蛋白C-III-一种新的肝内蛋白因子,可促进极低密度脂蛋白的组装和分泌。

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摘要

Apolipoprotein (apo) C-III is a small protein (79 amino acids) and a component of triacylglycerol (TAG)-rich very low density lipoproteins (VLDL) and high density lipoproteins. We have unraveled a new intracellular role of apoCIII in promoting hepatic VLDL1 (Sf > 100) assembly/secretion under lipid-rich conditions. Feeding apoc3-null mice with a high fat diet for two weeks or palm oil gavage failed to stimulate VLDL1 production in vivo. Reconstitution of apoC-III expression using adenovirus encoding human apoC-III resulted in robust production of VLDL1 containing apoB-100 or apoB-48. The stimulatory effect of human apoC-III on the assembly and secretion of VLDL1 was recapitulated ex vivo in McA-RH7777 cells cultured in lipid-rich media. Metabolic labeling experiments showed that apoC-III plays a central role in (i) the formation of lumenal lipid droplets (LLD) rich in TAG, and (ii) promoting bulk TAG incorporation during VLDL1 assembly. Structure-function analysis of naturally occurring apoC-III variants (Ala23Thr and Lys58Glu) defined two functional domains that play respective roles in LLD formation and VLDL1 assembly. Unraveling the intracellular role of apoC-III in the atherogenic TAG-rich VLDL1 production provides new insights into the strong influence of the APOA5-A4-C3-A1 gene locus on plasma TAG concentrations and premature atherosclerosis.
机译:载脂蛋白(apo)C-III是一种小蛋白(79个氨基酸),是富含三酰甘油(TAG)的极低密度脂蛋白(VLDL)和高密度脂蛋白的组成部分。我们已经阐明了apoCIII在促进富含脂肪的肝VLDL1(Sf> 100)组装/分泌中的新细胞内作用。用高脂饮食喂养apoc3无效的小鼠两周或管饲棕榈油无法在体内刺激VLDL1的产生。使用编码人apoC-III的腺病毒重建apoC-III表达可稳定产生含有apoB-100或apoB-48的VLDL1。在富含脂质的培养基中培养的McA-RH7777细胞中,体外重现了人apoC-III对VLDL1装配和分泌的刺激作用。代谢标记实验显示apoC-III在(i)富含TAG的腔脂质滴(LLD)的形成和(ii)在VLDL1组装过程中促进大量TAG掺入中起着核心作用。天然存在的apoC-III变体(Ala23Thr和Lys58Glu)的结构功能分析定义了两个功能域,它们在LLD形成和VLDL1组装中起各自的作用。阐明apoC-III在致动脉粥样化的富含TAG的VLDL1产生中的细胞内作用,为APOA5-A4-C3-A1基因位点对血浆TAG浓度和过早的动脉粥样硬化的强大影响提供了新的见解。

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