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ABHD5 通过脂肪分解依赖性激活 AMPK/mTORC1 通路来抑制癌细胞合成代谢。

ABHD5 suppresses cancer cell anabolism through lipolysis-dependent activation of the AMPK/mTORC1 pathway.

机构信息

Department of Pathology, Wayne State University School of Medicine, Detroit, Michigan, USA.

Biomedical Research Informatics Core, Clinical and Translational Sciences Institute, Michigan State University, East Lansing, Michigan, USA.

出版信息

J Biol Chem. 2021 Jan-Jun;296:100104. doi: 10.1074/jbc.RA120.014682. Epub 2020 Nov 27.

Abstract

ABHD5 is an essential coactivator of ATGL, the rate-limiting triglyceride (TG) lipase in many cell types. Importantly, ABHD5 also functions as a tumor suppressor, and ABHD5 mRNA expression levels correlate with patient survival for several cancers. Nevertheless, the mechanisms involved in ABHD5-dependent tumor suppression are not known. We found that overexpression of ABHD5 induces cell cycle arrest at the G1 phase and causes growth retardation in a panel of prostate cancer cells. Transcriptomic profiling and biochemical analysis revealed that genetic or pharmacological activation of lipolysis by ABHD5 potently inhibits mTORC1 signaling, leading to a significant downregulation of protein synthesis. Mechanistically, we found that ABHD5 elevates intracellular AMP content, which activates AMPK, leading to inhibition of mTORC1. Interestingly, ABHD5-dependent suppression of mTORC1 was abrogated by pharmacological inhibition of DGAT1 or DGAT2, isoenzymes that re-esterify fatty acids in a process that consumes ATP. Collectively, this study maps out a novel molecular pathway crucial for limiting cancer cell proliferation, in which ABHD5-mediated lipolysis creates an energy-consuming futile cycle between TG hydrolysis and resynthesis, leading to inhibition of mTORC1 and cancer cell growth arrest.

摘要

ABHD5 是 ATGL 的必需共激活因子,ATGL 是许多细胞类型中甘油三酯 (TG) 脂肪酶的限速酶。重要的是,ABHD5 还作为肿瘤抑制因子发挥作用,ABHD5 mRNA 表达水平与几种癌症患者的生存相关。然而,ABHD5 依赖性肿瘤抑制的机制尚不清楚。我们发现,ABHD5 的过表达诱导前列腺癌细胞系中的细胞周期停滞在 G1 期,并导致生长迟缓。转录组分析和生化分析表明,ABHD5 通过脂肪分解的遗传或药理学激活强烈抑制 mTORC1 信号通路,导致蛋白质合成的显著下调。在机制上,我们发现 ABHD5 增加细胞内 AMP 含量,激活 AMPK,从而抑制 mTORC1。有趣的是,ABHD5 依赖性抑制 mTORC1 被 DGAT1 或 DGAT2 的药理学抑制所消除,DGAT1 或 DGAT2 是将脂肪酸重新酯化的同工酶,该过程消耗 ATP。总的来说,这项研究描绘了一条限制癌细胞增殖的新分子途径,其中 ABHD5 介导的脂肪分解在 TG 水解和再合成之间产生一个能量消耗的无效循环,导致 mTORC1 抑制和癌细胞生长停滞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3eeb/7949079/352517c2ba06/gr1.jpg

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