Biology of Lipid Metabolism Laboratory, Department of Physiology, Monash University, Clayton, Victoria 3800, Australia.
Am J Physiol Endocrinol Metab. 2012 Jun 1;302(11):E1315-28. doi: 10.1152/ajpendo.00561.2011. Epub 2011 Dec 20.
Fatty acids derived from adipose tissue lipolysis, intramyocellular triacylglycerol lipolysis, or de novo lipogenesis serve a variety of functions in skeletal muscle. The two major fates of fatty acids are mitochondrial oxidation to provide energy for the myocyte and storage within a variety of lipids, where they are stored primarily in discrete lipid droplets or serve as important structural components of membranes. In this review, we provide a brief overview of skeletal muscle fatty acid metabolism and highlight recent notable advances in the field. We then 1) discuss how lipids are stored in and mobilized from various subcellular locations to provide adaptive or maladaptive signals in the myocyte and 2) outline how lipid metabolites or metabolic byproducts derived from the actions of triacylglycerol metabolism or β-oxidation act as positive and negative regulators of insulin action. We have placed an emphasis on recent developments in the lipid biology field with respect to understanding skeletal muscle physiology and discuss unanswered questions and technical limitations for assessing lipid signaling in skeletal muscle.
脂肪组织脂解、肌内三酰基甘油脂解或从头合成产生的脂肪酸在骨骼肌中具有多种功能。脂肪酸的两个主要命运是线粒体氧化为肌细胞提供能量和储存在各种脂质中,其中脂肪酸主要储存在离散的脂滴中,或作为膜的重要结构成分。在这篇综述中,我们简要概述了骨骼肌脂肪酸代谢,并强调了该领域的最新显著进展。然后,我们 1)讨论了脂质如何在各种亚细胞位置储存和动员,以在肌细胞中提供适应性或不适应性信号,2)概述了三酰基甘油代谢或β-氧化作用产生的脂质代谢物或代谢副产物如何作为胰岛素作用的正调节剂和负调节剂。我们强调了脂质生物学领域的最新发展,以了解骨骼肌生理学,并讨论了评估骨骼肌脂质信号的未解决问题和技术限制。