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自噬:在脂质稳态和代谢控制中的新作用。

Autophagy: Emerging roles in lipid homeostasis and metabolic control.

作者信息

Christian Patricia, Sacco Jennifer, Adeli Khosrow

机构信息

Molecular Structure and Function, Research Institute, The Hospital for Sick Children, University of Toronto, 555 University Avenue, Toronto, Ontario, Canada M5G 1X8.

出版信息

Biochim Biophys Acta. 2013 Apr;1831(4):819-24. doi: 10.1016/j.bbalip.2012.12.009. Epub 2012 Dec 26.

Abstract

Current evidence implicates autophagy in the regulation of lipid stores within the two main organs involved in maintaining lipid homeostasis, the liver and adipose tissue. Critical to this role in hepatocytes is the breakdown of cytoplasmic lipid droplets, a process referred to as lipophagy. Conversely, autophagy is required for adipocyte differentiation and the concurrent accumulation of lipid droplets. Autophagy also affects lipid metabolism through contributions to lipoprotein assembly. A number of reports have now implicated autophagy in the degradation of apolipoprotein B, the main structural protein of very-low-density-lipoprotein. Aberrant autophagy may also be involved in conditions of deregulated lipid homeostasis in metabolic disorders such as the metabolic syndrome. First, insulin signalling and autophagy activity appear to diverge in a mechanism of reciprocal regulation, suggesting a role for autophagy in insulin resistance. Secondly, upregulation of autophagy may lead to conversion of white adipose tissue into brown adipose tissue, thus regulating energy expenditure and obesity. Thirdly, upregulation of autophagy in hepatocytes could increase breakdown of lipid stores controlling triglyceride homeostasis and fatty liver. Taken together, autophagy appears to play a very complex role in lipid homeostasis, affecting lipid stores differently depending on the tissue, as well as contributing to pathways of lipoprotein metabolism.

摘要

目前的证据表明,自噬参与了维持脂质稳态的两个主要器官——肝脏和脂肪组织内脂质储存的调节。自噬在肝细胞中的这一作用的关键在于细胞质脂滴的分解,这一过程被称为脂质自噬。相反,自噬是脂肪细胞分化和脂质滴同时积累所必需的。自噬还通过参与脂蛋白组装影响脂质代谢。现在有许多报告表明自噬参与了载脂蛋白B的降解,载脂蛋白B是极低密度脂蛋白的主要结构蛋白。异常自噬也可能与代谢紊乱(如代谢综合征)中脂质稳态失调的情况有关。首先,胰岛素信号传导和自噬活性在一种相互调节的机制中似乎存在分歧,这表明自噬在胰岛素抵抗中起作用。其次,自噬的上调可能导致白色脂肪组织转化为棕色脂肪组织,从而调节能量消耗和肥胖。第三,肝细胞中自噬的上调可能会增加脂质储存的分解,从而控制甘油三酯稳态和脂肪肝。综上所述,自噬似乎在脂质稳态中发挥着非常复杂的作用,根据组织的不同对脂质储存产生不同影响,同时也参与脂蛋白代谢途径。

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