Mason Rachael R, Meex Ruth C R, Russell Aaron P, Canny Benedict J, Watt Matthew J
Biology of Lipid Metabolism Laboratory, Department of Physiology, Monash University, Clayton, Victoria, Australia.
Centre of Physical Activity and Nutrition (C-PAN) Research, School of Exercise and Nutrition Sciences, Deakin University, Burwood, Victoria, Australia.
PLoS One. 2014 Jul 23;9(7):e103062. doi: 10.1371/journal.pone.0103062. eCollection 2014.
Lipolysis involves the sequential breakdown of fatty acids from triacylglycerol and is increased during energy stress such as exercise. Adipose triglyceride lipase (ATGL) is a key regulator of skeletal muscle lipolysis and perilipin (PLIN) 5 is postulated to be an important regulator of ATGL action of muscle lipolysis. Hence, we hypothesized that non-genomic regulation such as cellular localization and the interaction of these key proteins modulate muscle lipolysis during exercise. PLIN5, ATGL and CGI-58 were highly (>60%) colocated with Oil Red O (ORO) stained lipid droplets. PLIN5 was significantly colocated with ATGL, mitochondria and CGI-58, indicating a close association between the key lipolytic effectors in resting skeletal muscle. The colocation of the lipolytic proteins, their independent association with ORO and the PLIN5/ORO colocation were not altered after 60 min of moderate intensity exercise. Further experiments in cultured human myocytes showed that PLIN5 colocation with ORO or mitochondria is unaffected by pharmacological activation of lipolytic pathways. Together, these data suggest that the major lipolytic proteins are highly expressed at the lipid droplet and colocate in resting skeletal muscle, that their localization and interactions appear to remain unchanged during prolonged exercise, and, accordingly, that other post-translational mechanisms are likely regulators of skeletal muscle lipolysis.
脂肪分解涉及三酰甘油中脂肪酸的逐步分解,在诸如运动等能量应激期间会增强。脂肪甘油三酯脂肪酶(ATGL)是骨骼肌脂肪分解的关键调节因子,而围脂滴蛋白(PLIN)5被认为是肌肉脂肪分解中ATGL作用的重要调节因子。因此,我们推测非基因组调控,如细胞定位以及这些关键蛋白的相互作用,在运动过程中调节肌肉脂肪分解。PLIN5、ATGL和CGI-58与油红O(ORO)染色的脂滴高度共定位(>60%)。PLIN5与ATGL、线粒体和CGI-58显著共定位,表明在静息骨骼肌中关键脂肪分解效应物之间存在密切关联。中度强度运动60分钟后,脂肪分解蛋白的共定位、它们与ORO的独立关联以及PLIN5/ORO共定位均未改变。在培养的人肌细胞中进行的进一步实验表明,PLIN5与ORO或线粒体的共定位不受脂肪分解途径药物激活的影响。总之,这些数据表明主要的脂肪分解蛋白在脂滴处高度表达且在静息骨骼肌中共定位,它们的定位和相互作用在长时间运动期间似乎保持不变,因此,其他翻译后机制可能是骨骼肌脂肪分解的调节因子。