4.7 Article

Creb-Pgc1α pathway modulates the interaction between lipid droplets and mitochondria and influences high fat diet-induced changes of lipid metabolism in the liver and isolated hepatocytes of yellow catfish

期刊

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.jnutbio.2020.108364

关键词

Creb-Pgc1 alpha pathway; Rab32; LDs-MT interaction; Lipid metabolism; High fat diet

资金

  1. National Key R&D Program of China [2018YFD0900400]
  2. National Natural Science Foundation of China [31902380]
  3. Fundamental Research Funds for the Central Universities, China [2662018PY089]
  4. China Postdoctoral Science Foundation [2016 M602326]

向作者/读者索取更多资源

Although the crucial role of lipid droplets (LDs), mitochondria (MT) and their interactions in regulating lipid metabolism are well accepted, the mechanism of LDs-MT interactions in high fat diet (HFD)-induced changes of lipid metabolism remains unknown. Thus, this study was conducted to determine the mechanism of LDs-MT interactions in HFD-induced changes of lipid accumulation. We found that HFD not only up-regulated the expression of key proteins linked with TAG biosynthesis, but also increased the expression of proteins involved in lipolysis and fatty acid (FA) oxidation in LDs, including Rab32 (the only Rab protein associated with the MT). FA-induced LDs accumulation coincided with increased mitochondrial biogenesis, suggesting the potential LDs-MT interaction in hepatocytes after FA incubation. Also, FA incubation markedly increased the localization of Rab32 into Ws and MT, which confirmed the LDs-MT interaction and indicated the involvement of Rab32 in LDs-MT interaction following FA incubation. Inhibitors of Creb-Pgc1 alpha pathway significantly blocked the localization of Rab32 into LDs and MT, and significantly reduced FA-induced LDs lipolysis by targeting Atgl and Plin5. Meanwhile, the FA-enhanced LDs accumulation, and mitochondria! biogenesis, fusion and oxidation were also significantly repressed. These indicated the regulatory role of Creb-Pgc1 alpha in Rab32-mediated LDs-MT interactions and lipolysis after FA incubation. Taken together, these results revealed a novel mechanism of HID- and FA-induced IDs-MT interactions in regulating hepatic LDs lipolysis, which provided new insight into the crosstalk between LDs-MT interaction and their potential role in HFD-induced hepatic steatosis. (C) 2020 Elsevier Inc. All rights reserved.

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