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AMPK activation negatively regulates GDAP1, which influences metabolic processes and circadian gene expression in skeletal muscle

机译:AMPK激活负调节GDAP1,从而影响骨骼肌的代谢过程和昼夜节律基因表达

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Objective We sought to identify AMPK-regulated genes via bioinformatic analysis of microarray data generated from skeletal muscle of animal models with genetically altered AMPK activity. We hypothesized that such genes would play a role in metabolism. Ganglioside-induced differentiation-associated protein 1 ( GDAP1 ), a gene which plays a role in mitochondrial fission and peroxisomal function in neuronal cells but whose function in skeletal muscle is undescribed, was identified and further validated. AMPK activation reduced GDAP1 expression in skeletal muscle. GDAP1 expression was elevated in skeletal muscle from type 2 diabetic patients but decreased after acute exercise. Methods The metabolic impact of GDAP1 silencing was determined in primary skeletal muscle cells via siRNA-transfections. Confocal microscopy was used to visualize whether silencing GDAP1 impacted mitochondrial network morphology and membrane potential. Results GDAP1 silencing increased mitochondrial protein abundance, decreased palmitate oxidation, and decreased non-mitochondrial respiration. Mitochondrial morphology was unaltered by GDAP1 silencing. GDAP1 silencing and treatment of cells with AMPK agonists altered several genes in the core molecular clock machinery. Conclusion We describe a role for GDAP1 in regulating mitochondrial proteins, circadian genes, and metabolic flux in skeletal muscle. Collectively, our results implicate GDAP1 in the circadian control of metabolism.
机译:目的我们试图通过生物信息学分析,从具有AMPK基因活性改变的动物模型骨骼肌中生成的微阵列数据,来鉴定AMPK调控的基因。我们假设这些基因将在新陈代谢中起作用。识别并进一步验证了神经节苷脂诱导的分化相关蛋白1(GDAP1),该基因在神经元细胞中的线粒体裂变和过氧化物酶体功能中起作用,但在骨骼肌中的功能尚未描述。 AMPK激活降低了骨骼肌中GDAP1的表达。 GDAP1表达在2型糖尿病患者的骨骼肌中升高,但在急性运动后降低。方法通过siRNA转染确定GDAP1沉默对原代骨骼肌细胞代谢的影响。共聚焦显微镜用于可视化GDAP1沉默是否影响线粒体网络形态和膜电位。结果GDAP1沉默增加了线粒体蛋白的丰度,降低了棕榈酸酯的氧化,并降低了非线粒体的呼吸。 GDAP1沉默不会改变线粒体的形态。 GDAP1沉默和用AMPK激动剂处理细胞改变了核心分子钟机制中的几个基因。结论我们描述了GDAP1在调节骨骼肌线粒体蛋白,昼夜节律基因和代谢通量中的作用。总的来说,我们的结果表明GDAP1参与了代谢的昼夜节律控制。

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