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Perilipin 5 S155 phosphorylation by PKA is required for the control of hepatic lipid metabolism and glycemic control

机译:PKA的Perilipin 5S155磷酸化是控制肝脂代谢和血糖控制所必需的

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摘要

Perilipin 5 (PLIN5) is a lipid-droplet-associated protein that coordinates intracellular lipolysis in highly oxidative tissues and is thought to regulate lipid metabolism in response to phosphorylation by protein kinase A (PKA). We sought to identify PKA phosphorylation sites in PLIN5 and assess their functional relevance in cultured cells and the livers of mice. We detected phosphorylation on S155 and identified S155 as a functionally important site for lipid metabolism. Expression of phosphorylation-defective PLIN5 S155A in Plin5 null cells resulted in decreased rates of lipolysis and triglyceride-derived fatty acid oxidation. FLIM-FRET analysis of protein-protein interactions showed that PLIN5 S155 phosphorylation regulates PLIN5 interaction with adipose triglyceride lipase at the lipid droplet, but not with α-β hydrolase domain-containing 5. Re-expression of PLIN5 S155A in the liver of Plin5 liver-specific null mice reduced lipolysis compared with wild-type PLIN5 re-expression, but was not associated with other changes in hepatic lipid metabolism. Furthermore, glycemic control was impaired in mice with expression of PLIN5 S155A compared with mice expressing PLIN5. Together, these studies demonstrate that PLIN5 S155 is required for PKA-mediated lipolysis and builds on the body of evidence demonstrating a critical role for PLIN5 in coordinating lipid and glucose metabolism.
机译:Perilipin 5(PLIN5)是一种脂质液滴相关蛋白,其在高氧化组织中坐标,并且旨在调节蛋白激酶A(PKA)磷酸化的脂质代谢。我们试图鉴定PLIN5中的PKA磷酸化位点,并评估它们在培养细胞和小鼠肝脏中的功能相关性。我们检测到S155上的磷酸化,并将S155鉴定为脂质代谢的功能重要部位。磷酸化缺陷PLIN5 S155A在PLIN5核细胞中的表达导致脂解和甘油三酯衍生的脂肪酸氧化率降低。蛋白质 - 蛋白质相互作用的Flim-Fret分析表明,PLIN5 S155磷酸化在脂质液滴中调节PLIN5与脂肪甘油三酯脂肪酶的脂肪酸脂肪酶,但没有含α-β水解域域5.在PLIN5肝脏肝脏中重新表达PLIN5 S155A与野生型PLIN5再表达相比,特异性零小鼠减少脂解,但与肝脂代谢的其他变化无关。此外,与表达PLIN5的小鼠相比,小鼠血糖对小鼠的表达损害了血糖控制。这些研究表明,PKA介导的脂解,在证明脂质和葡萄糖代谢方面证明PLIN5的关键作用,所以PKA介导的脂解和建立在证明中的关键作用。

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