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Publication : PERM1 regulates energy metabolism in the heart via ERRα/PGC-1α axis.

First Author  Oka SI Year  2022
Journal  Front Cardiovasc Med Volume  9
Pages  1033457 PubMed ID  36419485
Mgi Jnum  J:334191 Mgi Id  MGI:7387335
Doi  10.3389/fcvm.2022.1033457 Citation  Oka SI, et al. (2022) PERM1 regulates energy metabolism in the heart via ERRalpha/PGC-1alpha axis. Front Cardiovasc Med 9:1033457
abstractText  AIMS: PERM1 is a striated muscle-specific regulator of mitochondrial bioenergetics. We previously demonstrated that PERM1 is downregulated in the failing heart and that PERM1 positively regulates metabolic genes known as targets of the transcription factor ERRalpha and its coactivator PGC-1alpha in cultured cardiomyocytes. The aims of this study were to determine the effect of loss of PERM1 on cardiac function and energetics using newly generated Perm1-knockout (Perm1 (-/-)) mice and to investigate the molecular mechanisms of its transcriptional control. METHODS AND RESULTS: Echocardiography showed that ejection fraction and fractional shortening were lower in Perm1 (-/-) mice than in wild-type mice (both p < 0.05), and the phosphocreatine-to-ATP ratio was decreased in Perm1 (-/-) hearts (p < 0.05), indicating reduced contractile function and energy reserves of the heart. Integrated proteomic and metabolomic analyses revealed downregulation of oxidative phosphorylation and upregulation of glycolysis and polyol pathways in Perm1 (-/-) hearts. To examine whether PERM1 regulates energy metabolism through ERRalpha, we performed co-immunoprecipitation assays, which showed that PERM1 bound to ERRalpha in cardiomyocytes and the mouse heart. DNA binding and reporter gene assays showed that PERM1 was localized to and activated the ERR target promoters partially through ERRalpha. Mass spectrometry-based screening in cardiomyocytes identified BAG6 and KANK2 as potential PERM1's binding partners in transcriptional regulation. Mammalian one-hybrid assay, in which PERM1 was fused to Gal4 DNA binding domain, showed that the recruitment of PERM1 to a gene promoter was sufficient to activate transcription, which was blunted by silencing of either PGC-1alpha, BAG6, or KANK2. CONCLUSION: This study demonstrates that PERM1 is an essential regulator of cardiac energetics and function and that PERM1 is a novel transcriptional coactivator in the ERRalpha/PGC-1alpha axis that functionally interacts with BAG6 and KANK2.
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