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拼凑 perilipin 蛋白与骨骼肌脂肪分解之谜。

Piecing together the puzzle of perilipin proteins and skeletal muscle lipolysis.

作者信息

MacPherson Rebecca E K, Peters Sandra J

机构信息

a Center for Bone and Muscle Health, Department of Kinesiology, Faculty of Applied Health Sciences, Brock University, St. Catharines, ON, Canada.

b Department of Human Health and Nutritional Sciences, University of Guelph, Guelph, ON N1G 2W1, Canada.

出版信息

Appl Physiol Nutr Metab. 2015 Jul;40(7):641-51. doi: 10.1139/apnm-2014-0485. Epub 2015 Feb 26.

Abstract

The regulation of skeletal muscle lipolysis and fat oxidation is a complex process involving multiple proteins and enzymes. Emerging work indicates that skeletal muscle PLIN proteins likely play a role in the hydrolysis of triglycerides stored in lipid droplets and the passage of fatty acids to the mitochondria for oxidation. In adipocytes, PLIN1 regulates lipolysis by interacting with comparative gene identification-58 (CGI-58), an activator of adipose triglyceride lipase (ATGL). Upon lipolytic stimulation, PLIN1 is phosphorylated, releasing CGI-58 to activate ATGL and initiate triglyceride breakdown. The absence of PLIN1 in skeletal muscle leads us to believe that other PLIN family members undertake this role. The focus of this review is on the PLIN family proteins expressed in skeletal muscle: PLIN2, PLIN3, and PLIN5. To date, most studies involving these PLIN proteins have used nonmuscle tissues and cell cultures to determine their potential roles. Results from work in these models support a role for PLIN proteins in sequestering lipases during basal conditions and in potentially working together for lipase translocation and activity during lipolysis. In skeletal muscle, PLIN2 tends to mirror the lipid content and may play a role in lipid droplet growth and stability through lipase interactions on the lipid droplet surface, whereas the skeletal muscle roles of both PLIN3 and PLIN5 seem to be more complex because they are found not only on the lipid droplet, but also at the mitochondria. Clearly, further work is needed to fully understand the intricate mechanisms by which PLIN proteins contribute to skeletal muscle lipid metabolism.

摘要

骨骼肌脂解作用和脂肪氧化的调节是一个复杂的过程,涉及多种蛋白质和酶。新出现的研究表明,骨骼肌中的PLIN蛋白可能在储存于脂滴中的甘油三酯水解以及脂肪酸进入线粒体进行氧化的过程中发挥作用。在脂肪细胞中,PLIN1通过与脂肪甘油三酯脂肪酶(ATGL)的激活剂——比较基因识别-58(CGI-58)相互作用来调节脂解作用。在脂解刺激下,PLIN1被磷酸化,释放出CGI-58以激活ATGL并启动甘油三酯分解。骨骼肌中缺乏PLIN1使我们相信其他PLIN家族成员承担了这一角色。本综述的重点是骨骼肌中表达的PLIN家族蛋白:PLIN2、PLIN3和PLIN5。迄今为止,大多数涉及这些PLIN蛋白的研究都使用非肌肉组织和细胞培养来确定它们的潜在作用。这些模型的研究结果支持PLIN蛋白在基础条件下隔离脂肪酶以及在脂解过程中可能协同作用促进脂肪酶易位和活性方面发挥作用。在骨骼肌中,PLIN2往往反映脂质含量,并且可能通过与脂滴表面的脂肪酶相互作用在脂滴生长和稳定性方面发挥作用,而PLIN3和PLIN5在骨骼肌中的作用似乎更为复杂,因为它们不仅存在于脂滴上,还存在于线粒体中。显然,需要进一步开展工作以全面了解PLIN蛋白促进骨骼肌脂质代谢的复杂机制。

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