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Lipid Droplet Protein LID-1 Mediates ATGL-1-Dependent Lipolysis during Fasting in Caenorhabditis elegans

机译:秀丽隐杆线虫禁食过程中脂滴蛋白LID-1介导ATGL-1依赖性脂解。

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Lipolysis is a delicate process involving complex signaling cascades and sequential enzymatic activations. In Caenorhabditis elegans, fasting induces various physiological changes, including a dramatic decrease in lipid contents through lipolysis. Interestingly, C. elegans lacks perilipin family genes which play a crucial role in the regulation of lipid homeostasis in other species. Here, we demonstrate that in the intestinal cells of C. elegans, a newly identified protein, lipid droplet protein 1 (C25A1.12; LID-1), modulates lipolysis by binding to adipose triglyceride lipase 1 (C05D11.7; ATGL-1) during nutritional deprivation. In fasted worms, lipid droplets were decreased in intestinal cells, whereas suppression of ATGL-1 via RNA interference (RNAi) resulted in retention of stored lipid droplets. Overexpression of ATGL-1 markedly decreased lipid droplets, whereas depletion of LID-1 via RNAi prevented the effect of overexpressed ATGL-1 on lipolysis. In adult worms, short-term fasting increased cyclic AMP (cAMP) levels, which activated protein kinase A (PKA) to stimulate lipolysis via ATGL-1 and LID-1. Moreover, ATGL-1 protein stability and LID-1 binding were augmented by PKA activation, eventually leading to increased lipolysis. These data suggest the importance of the concerted action of lipase and lipid droplet protein in the response to fasting signals via PKA to maintain lipid homeostasis.
机译:脂解是一个复杂的过程,涉及复杂的信号级联反应和顺序的酶促活化。在秀丽隐杆线虫中,禁食引起各种生理变化,包括通过脂解作用使脂质含量急剧下降。有趣的是,秀丽隐杆线虫缺乏周脂蛋白家族基因,其在调节其他物种的脂质稳态中起着至关重要的作用。在这里,我们证明在秀丽隐杆线虫的肠细胞中,新鉴定出的蛋白质脂质滴蛋白1(C25A1.12; LID-1)通过与脂肪甘油三酸酯脂酶1(C05D11.7; ATGL-1)结合来调节脂肪分解)在营养剥夺期间。在禁食的蠕虫中,肠道细胞中的脂质滴减少,而通过RNA干扰(RNAi)抑制ATGL-1导致保留的脂质滴保留。 ATGL-1的过表达显着减少了脂质滴,而通过RNAi去除LID-1阻止了过表达的ATGL-1对脂解的影响。在成虫中,短期禁食会增加循环AMP(cAMP)的水平,从而激活蛋白激酶A(PKA)通过ATGL-1和LID-1刺激脂解。此外,ATGL-1蛋白质的稳定性和LID-1的结合通过PKA激活得到增强,最终导致脂解增加。这些数据表明脂酶和脂滴蛋白协同作用在通过PKA禁食信号的反应中维持脂稳态的重要性。

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