Fisher Edward A
The Department of Medicine (Cardiology) and the Marc and Ruti Bell Program in Vascular Biology, New York University School of Medicine, Smilow 7, 522 First Avenue, New York, NY 10016, USA.
Biochim Biophys Acta. 2012 May;1821(5):778-81. doi: 10.1016/j.bbalip.2012.02.001. Epub 2012 Feb 10.
Very low density lipoproteins (VLDL) are a major secretory product of the liver. They serve to transport endogenously synthesized lipids, mainly triglycerides (but also some cholesterol and cholesteryl esters) to peripheral tissues. VLDL is also the precursor of LDL. ApoB100 is absolutely required for VLDL assembly and secretion. The amount of VLDL triglycerides secreted by the liver depends on the amount loaded onto each lipoprotein particle, as well as the number of particles. Each VLDL has one apoB100 molecule, making apoB100 availability a key determinant of the number of VLDL particles, and hence, triglycerides, that can be secreted by hepatic cells. Surprisingly, the pool of apoB100 in the liver is typically regulated not by its level of synthesis, which is relatively constant, but by its level of degradation. It is now recognized that there are multiple opportunities for the hepatic cell to intercept apoB100 molecules and to direct them to distinct degradative processes. This mini-review will summarize progress in understanding these processes, with an emphasis on autophagy, the most recently described pathway of apoB100 degradation, and the one with possibly the most physiologic relevance to common metabolic perturbations affecting VLDL production. This article is part of a Special Issue entitled Triglyceride Metabolism and Disease.
极低密度脂蛋白(VLDL)是肝脏的主要分泌产物。它们负责将内源性合成的脂质,主要是甘油三酯(也包括一些胆固醇和胆固醇酯)转运到外周组织。VLDL也是低密度脂蛋白(LDL)的前体。载脂蛋白B100(ApoB100)对于VLDL的组装和分泌是绝对必需的。肝脏分泌的VLDL甘油三酯的量取决于加载到每个脂蛋白颗粒上的量以及颗粒的数量。每个VLDL有一个ApoB100分子,这使得ApoB100的可用性成为VLDL颗粒数量的关键决定因素,进而也是肝细胞能够分泌的甘油三酯数量的关键决定因素。令人惊讶的是,肝脏中ApoB100的储备通常不是由其相对恒定的合成水平调节,而是由其降解水平调节。现在人们认识到,肝细胞有多种机会拦截ApoB100分子并将它们导向不同的降解过程。这篇小型综述将总结在理解这些过程方面取得的进展,重点是自噬,这是最近描述的ApoB100降解途径,也是与影响VLDL产生的常见代谢紊乱可能最具生理相关性的途径。本文是名为“甘油三酯代谢与疾病”的特刊的一部分。