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Publication : PAQR9 regulates hepatic ketogenesis and fatty acid oxidation during fasting by modulating protein stability of PPARα.

First Author  Lin Y Year  2021
Journal  Mol Metab Volume  53
Pages  101331 PubMed ID  34474167
Mgi Jnum  J:313029 Mgi Id  MGI:6793669
Doi  10.1016/j.molmet.2021.101331 Citation  Lin Y, et al. (2021) PAQR9 regulates hepatic ketogenesis and fatty acid oxidation during fasting by modulating protein stability of PPARalpha. Mol Metab 53:101331
abstractText  BACKGROUND: The cycle of feeding and fasting is fundamental to life and closely coordinated with changes of metabolic programs. During extended starvation, ketogenesis coupled with fatty acid oxidation in the liver supplies ketone bodies to extrahepatic tissues as the major form of fuel. In this study, we demonstrated that PAQR9, a member of the progesterone and adipoQ receptor family, has a regulatory role on hepatic ketogenesis. METHODS: We analyzed the phenotype of Paqr9-deleted mice. We also used biochemical methods to investigate the interaction of PAQR9 with PPARalpha and HUWE1, an E3 ubiquitin ligase. RESULTS: The expression of Paqr9 was decreased during fasting partly depending on PPARgamma. The overall phenotype of the mice was not altered by Paqr9 deletion under normal chow feeding. However, fasting-induced ketogenesis and fatty acid oxidation were attenuated by Paqr9 deletion. Mechanistically, Paqr9 deletion decreased protein stability of PPARalpha via enhancing its poly-ubiquitination. PAQR9 competed with HUWE1 for interaction with PPARalpha, thus preventing ubiquitin-mediated degradation of PPARalpha. CONCLUSION: Our study reveals that PAQR9 impacts starvation-mediated metabolic changes in the liver via post-translational regulation of PPARalpha.
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6 Authors

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