Zvintzou Evangelia, Lhomme Marie, Chasapi Stella, Filou Serafoula, Theodoropoulos Vassilis, Xapapadaki Eva, Kontush Anatol, Spyroulias George, Tellis Constantinos C, Tselepis Alexandros D, Constantinou Caterina, Kypreos Kyriakos E
Pharmacology Department, University of Patras Medical School, Rio Achaias TK 26500, Greece.
ICANalytics and INSERM UMR_S 1166, ICAN, 75013 Paris, France.
J Lipid Res. 2017 Sep;58(9):1869-1883. doi: 10.1194/jlr.M077925. Epub 2017 Jul 12.
APOC3 is produced mainly by the liver and intestine and approximately half of plasma APOC3 associates with HDL. Though it was believed that APOC3 associates with HDL by simple binding to preexisting particles, recent data support that biogenesis of APOC3-containing HDL (APOC3-HDL) requires Abca1. Moreover, APOC3-HDL contributes to plasma triglyceride homeostasis by preventing APOC3 association with triglyceride-rich lipoproteins. Interestingly, APOC3-HDL also shows positive correlation with the morbidly obese phenotype. However, the roles of APOC3 in HDL functionality and adipose tissue metabolic activity remain unknown. Therefore, here we investigated the direct effects of APOC3 expression on HDL structure and function, as well as white adipose tissue (WAT) and brown adipose tissue (BAT) metabolic activity. C57BL/6 mice were infected with an adenovirus expressing human APOC3 or a recombinant attenuated control adenovirus expressing green fluorescent protein and blood and tissue samples were collected at 5 days postinfection. HDL was then analyzed for its apolipoprotein and lipid composition and particle functionality. Additionally, purified mitochondria from BAT and WAT were analyzed for uncoupling protein 1, cytochrome c (Cytc), and Cytc oxidase subunit 4 protein levels as an indirect measure of their metabolic activity. Serum metabolomic analysis was performed by NMR. Combined, our data show that APOC3 modulates HDL structure and function, while it selectively promotes BAT metabolic activation.
载脂蛋白C3(APOC3)主要由肝脏和肠道产生,约一半的血浆APOC3与高密度脂蛋白(HDL)结合。尽管过去认为APOC3通过简单地与已存在的颗粒结合而与HDL相关联,但最近的数据支持含APOC3的HDL(APOC3-HDL)的生物合成需要三磷酸腺苷结合盒转运体A1(Abca1)。此外,APOC3-HDL通过阻止APOC3与富含甘油三酯的脂蛋白结合,有助于维持血浆甘油三酯的稳态。有趣的是,APOC3-HDL也与病态肥胖表型呈正相关。然而,APOC3在HDL功能和脂肪组织代谢活性中的作用仍不清楚。因此,我们在此研究了APOC3表达对HDL结构和功能以及白色脂肪组织(WAT)和棕色脂肪组织(BAT)代谢活性的直接影响。将C57BL/6小鼠感染表达人APOC3的腺病毒或表达绿色荧光蛋白的重组减毒对照腺病毒,并在感染后5天收集血液和组织样本。然后分析HDL的载脂蛋白和脂质组成以及颗粒功能。此外,分析从BAT和WAT中纯化的线粒体中解偶联蛋白1、细胞色素c(Cytc)和Cytc氧化酶亚基4的蛋白水平,作为其代谢活性的间接指标。通过核磁共振进行血清代谢组学分析。综合来看,我们的数据表明APOC3调节HDL的结构和功能,同时选择性地促进BAT的代谢激活。