Inserm, 1048, Obesity Research Laboratory, Institute of Metabolic and Cardiovascular Diseases, Paul Sabatier University, Toulouse, France.
Department of Pharmaceutical Biosciences, School of Pharmacy, University of Oslo, Oslo, Norway.
J Lipid Res. 2012 May;53(5):839-848. doi: 10.1194/jlr.M019182. Epub 2012 Feb 29.
We investigated here the specific role of CGI-58 in the regulation of energy metabolism in skeletal muscle. We first examined CGI-58 protein expression in various muscle types in mice, and next modulated CGI-58 expression during overexpression and knockdown studies in human primary myotubes and evaluated the consequences on oxidative metabolism. We observed a preferential expression of CGI-58 in oxidative muscles in mice consistent with triacylglycerol hydrolase activity. We next showed by pulse-chase that CGI-58 overexpression increased by more than 2-fold the rate of triacylglycerol (TAG) hydrolysis, as well as TAG-derived fatty acid (FA) release and oxidation. Oppositely, CGI-58 silencing reduced TAG hydrolysis and TAG-derived FA release and oxidation (-77%, P < 0.001), whereas it increased glucose oxidation and glycogen synthesis. Interestingly, modulations of CGI-58 expression and FA release are reflected by changes in pyruvate dehydrogenase kinase 4 gene expression. This regulation involves the activation of the peroxisome proliferator activating receptor-δ (PPARδ) by lipolysis products. Altogether, these data reveal that CGI-58 plays a limiting role in the control of oxidative metabolism by modulating FA availability and the expression of PPARδ-target genes, and highlight an important metabolic function of CGI-58 in skeletal muscle.
我们在这里研究了 CGI-58 在骨骼肌能量代谢调节中的特定作用。我们首先在小鼠的各种肌肉类型中检查了 CGI-58 蛋白的表达,然后在人类原代肌管的过表达和敲低研究中调节 CGI-58 的表达,并评估了对氧化代谢的影响。我们观察到 CGI-58 在小鼠的氧化肌肉中优先表达,与三酰基甘油水解酶活性一致。接下来,我们通过脉冲追踪实验表明,CGI-58 的过表达使三酰基甘油 (TAG) 水解的速度增加了两倍以上,以及 TAG 衍生的脂肪酸 (FA) 的释放和氧化。相反,CGI-58 的沉默减少了 TAG 水解和 TAG 衍生的 FA 释放和氧化 (-77%,P < 0.001),同时增加了葡萄糖氧化和糖原合成。有趣的是,CGI-58 表达和 FA 释放的调节反映在丙酮酸脱氢酶激酶 4 基因表达的变化中。这种调节涉及脂解产物对过氧化物酶体增殖物激活受体-δ (PPARδ) 的激活。总之,这些数据表明 CGI-58 通过调节 FA 的可用性和 PPARδ 靶基因的表达,在控制氧化代谢中发挥了限制作用,并强调了 CGI-58 在骨骼肌中的重要代谢功能。