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脂肪分解和脂噬在调节斑马鱼三酰基甘油和胆固醇动态平衡以及线粒体形态方面发挥着各自的作用和交互作用。

Lipolysis and lipophagy play individual and interactive roles in regulating triacylglycerol and cholesterol homeostasis and mitochondrial form in zebrafish.

机构信息

LANEH, School of Life Sciences, East China Normal University, Shanghai, China.

University of Dar es Salaam, P.O. Box 60091, Dar es Salaam, Tanzania.

出版信息

Biochim Biophys Acta Mol Cell Biol Lipids. 2021 Sep;1866(9):158988. doi: 10.1016/j.bbalip.2021.158988. Epub 2021 Jun 8.

Abstract

Neutral lipases-mediated lipolysis and acid lipases-moderated lipophagy are two main processes for degradation of lipid droplets (LDs). However, the individual and interactive roles of these metabolic pathways are not well known across vertebrates. This study explored the roles of lipolysis and lipophagy from the aspect of neutral and acid lipases in zebrafish. We established zebrafish strains deficient in either adipose triglyceride lipase (atgl; AKO fish) or lysosomal acid lipase (lal; LKO fish) respectively, and then inhibited lipolysis in the LKO fish and lipophagy in the AKO fish by feeding diets supplemented with the corresponding inhibitors Atglistatin and 3-Methyladenine, respectively. Both the AKO and LKO fish showed reduced growth, swimming activity, and oxygen consumption. The AKO fish did not show phenotypes in adipose tissue, but mainly accumulated triacylglycerol (TAG) in liver, also, they had large LDs in the hepatocytes, and did not stimulate lipophagy as a compensation response but maintained basal lipophagy. The LKO fish reduced total lipid accumulation in the body but had high cholesterol content in liver; also, they accumulated small LDs in the hepatocytes, and showed increased lipolysis, especially Atgl expression, as a compensatory mechanism. Simultaneous inhibition of lipolysis and lipophagy in zebrafish resulted in severe liver damage, with the potential to trigger mitophagy. Overall, our study illustrates that lipolysis and lipophagy perform individual and interactive roles in maintaining homeostasis of TAG and cholesterol metabolism. Furthermore, the interactive roles of lipolysis and lipophagy may be essential in regulating the functions and form of mitochondria.

摘要

中性脂肪酶介导的脂肪分解和酸性脂肪酶介导的脂噬作用是降解脂滴 (LDs) 的两种主要过程。然而,这些代谢途径在脊椎动物中的个体和相互作用角色尚不清楚。本研究从中性和酸性脂肪酶的角度探讨了脂肪分解和脂噬作用在斑马鱼中的作用。我们分别建立了脂肪甘油三酯脂肪酶 (atgl; AKO 鱼) 或溶酶体酸性脂肪酶 (lal; LKO 鱼) 缺陷的斑马鱼品系,然后通过分别用相应的抑制剂 Atglistatin 和 3-甲基腺嘌呤喂养来抑制 LKO 鱼中的脂肪分解和 AKO 鱼中的脂噬作用。AKO 和 LKO 鱼的生长、游泳活动和耗氧量均降低。AKO 鱼在脂肪组织中没有表现出表型,但主要在肝脏中积累三酰基甘油 (TAG),同时,它们的肝细胞中有大的 LDs,并且没有作为补偿反应刺激脂噬作用,而是维持基础脂噬作用。LKO 鱼减少了体内的总脂质积累,但肝脏中的胆固醇含量较高;此外,它们的肝细胞中积累了小的 LDs,并表现出脂肪分解增加,特别是 Atgl 表达增加,作为一种补偿机制。在斑马鱼中同时抑制脂肪分解和脂噬作用会导致严重的肝损伤,并有触发线粒体自噬的潜力。总的来说,我们的研究表明,脂肪分解和脂噬作用在维持 TAG 和胆固醇代谢的平衡中发挥着个体和相互作用的作用。此外,脂肪分解和脂噬作用的相互作用可能对调节线粒体的功能和形态至关重要。

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