Pdcd4 promotes lipid deposition by attenuating PPARα-mediated fatty acid oxidation in hepatocytes

Nonalcoholic fatty liver disease (NAFLD) is characterized by excessive lipid accumulation in hepatocytes. The involvement of programmed cell death 4 (Pdcd4) in inflammation and metabolic diseases has been widely reported. However, the precise regulatory role of Pdcd4 in hepatocytic lipid metabolism...

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Published inMolecular and cellular endocrinology Vol. 545; p. 111562
Main Authors Du, Xiaojuan, Osoro, Ezra Kombo, Chen, Qian, Yan, Xiaofei, Gao, Dan, Wu, Litao, Ren, Jiajun, Feng, Lina, Wu, Nan, Lu, Kaikai, Yang, Xudong, Zhong, Bo, Han, Yan, Zhang, Fujun, Li, Dongmin, Lan, Xi, Lu, Shemin
Format Journal Article
LanguageEnglish
Published Ireland Elsevier B.V 05.04.2022
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Summary:Nonalcoholic fatty liver disease (NAFLD) is characterized by excessive lipid accumulation in hepatocytes. The involvement of programmed cell death 4 (Pdcd4) in inflammation and metabolic diseases has been widely reported. However, the precise regulatory role of Pdcd4 in hepatocytic lipid metabolism and NAFLD is not well known. We established a high-fat diet–induced NAFLD (HFD-NAFLD) rat model and a free fatty acids (FFAs)-treated cell model, and analyzed the expression and distribution of PDCD4. The lentivirus for Pdcd4 knockout and the vector for Pdcd4 overexpression were used to alter Pdcd4 expression in BRL 3A cells. Thereafter, lipid accumulation, FA metabolic gene expression, and peroxisome proliferator-activated receptor alpha (Pparα)-dependent peroxisomal β-oxidation-related gene expression, especially that of the critical transcription factors and enzymes acyl-CoA oxidases 1–3 (Acox1-3), were detected both at the mRNA and protein levels. PDCD4 expression increased and it was mainly distributed in hepatocyte nuclei of the HFD-NAFLD rats. as well as the FFAs-treated CBRH-7919 and BRL 3A cell lines. Pdcd4 knockout significantly suppressed FFAs-induced lipid accumulation, and Pdcd4 overexpression accelerated FFAs-induced lipid accumulation in hepatocytes. Mechanistically, Pdcd4 negatively regulated the expression Pparα and Acox1-3. In addition, rescue experiments confirmed that Pparα knockdown could attenuate the expression of Acox1-3 in Pdcd4 knockout cells, which ultimately restored lipid deposition to normal levels. PPARα expression decreased in the liver of the HFD-NAFLD rats. The enrichment of PDCD4 in hepatocyte nuclei correlated with lower PPARα expression after FFAs treatment in vitro. Our results indicate that the abundance of PDCD4 under high-fat conditions facilitates hepatocellular lipid accumulation by decreasing PPARα-dependent FA peroxisomal β-oxidation. •PDCD4 expression increases and it is localized in hepatocyte nuclei of HFD-NAFLD rats.•The upregulation and nuclear translocation of PDCD4 in hepatocytes are induced by FFAs in vitro.•Pdcd4 negatively regulates PPARα and fatty acyl-CoA oxidases expression at both the mRNA and protein levels.•Pdcd4 promotes lipid deposition by attenuating PPARα-mediated fatty acid oxidation.
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ISSN:0303-7207
1872-8057
DOI:10.1016/j.mce.2022.111562