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Unique Regulation of Adipose Triglyceride Lipase (ATGL) by Perilipin 5, a Lipid Droplet-associated Protein*

机译:脂滴相关蛋白Perilipin 5对脂肪甘油三酸酯脂肪酶(ATGL)的独特调控*

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摘要

Lipolysis is a critical metabolic pathway contributing to energy homeostasis through degradation of triacylglycerides stored in lipid droplets (LDs), releasing fatty acids. Neutral lipid lipases act at the oil/water interface. In mammalian cells, LD surfaces are coated with one or more members of the perilipin protein family, which serve important functions in regulating lipolysis. We investigated mechanisms by which three perilipin proteins control lipolysis by adipocyte triglyceride lipase (ATGL), a key lipase in adipocytes and non-adipose cells. Using a cell culture model, we examined interactions of ATGL and its co-lipase CGI-58 with perilipin 1 (perilipin A), perilipin 2 (adipose differentiation-related protein), and perilipin 5 (LSDP5) using multiple techniques as follows: anisotropy Forster resonance energy transfer, co-immunoprecipitation, [32P]orthophosphate radiolabeling, and measurement of lipolysis. The results show that ATGL interacts with CGI-58 and perilipin 5; the latter is selectively expressed in oxidative tissues. Both proteins independently recruited ATGL to the LD surface, but with opposite effects; interaction of ATGL with CGI-58 increased lipolysis, whereas interaction of ATGL with perilipin 5 decreased lipolysis. In contrast, neither perilipin 1 nor 2 interacted directly with ATGL. Activation of protein kinase A (PKA) increased [32P]orthophosphate incorporation into perilipin 5 by 2-fold, whereas neither ATGL nor CGI-58 was labeled under the incubation conditions. Cells expressing both ectopic perilipin 5 and ATGL showed a 3-fold increase in lipolysis following activation of PKA. Our studies establish perilipin 5 as a novel ATGL partner and provide evidence that the protein composition of perilipins at the LD surface regulates lipolytic activity of ATGL.
机译:脂解是关键的代谢途径,可通过降解脂滴(LDs)中的三酰基甘油酯降解,释放脂肪酸来促进能量稳态。中性脂脂肪酶作用于油/水界面。在哺乳动物细胞中,LD表面涂有一种或多种perilipin蛋白家族成员,它们在调节脂解中起重要作用。我们研究了三种脂蛋白通过脂肪细胞甘油三酸酯脂肪酶(ATGL)(脂肪细胞和非脂肪细胞中的关键脂肪酶)控制脂解的机制。使用细胞培养模型,我们使用多种技术检查了ATGL及其共脂肪酶CGI-58与periplipin 1(perilipin A),periplipin 2(脂肪分化相关蛋白)和periplipin 5(LSDP5)的相互作用,方法如下:各向异性Forster共振能量转移,免疫共沉淀,[32P]正磷酸盐放射性标记和脂肪分解的测量。结果表明,ATGL与CGI-58和periplipin 5相互作用。后者在氧化组织中选择性表达。两种蛋白均独立地将ATGL募集到LD表面,但作用相反。 ATGL与CGI-58的相互作用增加了脂解作用,而ATGL与periplipin 5的相互作用减少了脂解作用。相反,周脂素1和2均不与ATGL直接相互作用。蛋白激酶A(PKA)的激活使[32P]正磷酸酯结合到脂蛋白5中的程度增加了2倍,而在培养条件下ATGL和CGI-58均未标记。表达异位perilipin 5和ATGL的细胞在激活PKA后脂解作用增加了3倍。我们的研究建立了periplipin 5作为新型ATGL伴侣的作用,并提供了证据表明,periplipins在LD表面的蛋白质成分调节了ATGL的脂解活性。

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