O-GlcNAcylation of Orphan Nuclear Receptor Estrogen-Related Receptor γ Promotes Hepatic Gluconeogenesis

Author:

Misra Jagannath1,Kim Don-Kyu1,Jung Yoon Seok1,Kim Han Byeol2,Kim Yong-Hoon3,Yoo Eun-Kyung4,Kim Byung Gyu5,Kim Sunghoon6,Lee In-Kyu4,Harris Robert A.7,Kim Jeong-Sun8,Lee Chul-Ho3,Cho Jin Won2,Choi Hueng-Sik1

Affiliation:

1. National Creative Research Initiatives Center for Nuclear Receptor Signals and Hormone Research Center, School of Biological Sciences and Technology, Chonnam National University, Gwangju, Republic of Korea

2. Department of Integrated OMICS for Biomedical Science, Yonsei University, Seoul, Republic of Korea

3. Korea Research Institute of Bioscience and Biotechnology, Daejeon, Republic of Korea

4. Department of Internal Medicine, Kyungpook National University School of Medicine, Deagu, Republic of Korea

5. Leading-edge Research Center for Drug Discovery and Development and Metabolic Disease, Kyungpook National University, Daegu, Korea

6. Medicinal Bioconvergence Research Center Department of Molecular Medicine and Biopharmaceutical Sciences Graduate School of Convergence Science and Technology College of Pharmacy, Seoul National University, Seoul, Korea

7. Department of Biochemistry and Molecular Biology, Indiana University School of Medicine and the Roudebush VA Medical Center, Indianapolis, IN

8. Department of Chemistry and Institute of Basic Sciences, Chonnam National University, Gwangju, Republic of Korea

Abstract

Estrogen-related receptor γ (ERRγ) is a major positive regulator of hepatic gluconeogenesis. Its transcriptional activity is suppressed by phosphorylation signaled by insulin in the fed state, but whether posttranslational modification alters its gluconeogenic activity in the fasted state is not known. Metabolically active hepatocytes direct a small amount of glucose into the hexosamine biosynthetic pathway, leading to protein O-GlcNAcylation. In this study, we demonstrate that ERRγ is O-GlcNAcylated by O-GlcNAc transferase in the fasted state. This stabilizes the protein by inhibiting proteasome-mediated protein degradation, increasing ERRγ recruitment to gluconeogenic gene promoters. Mass spectrometry identifies two serine residues (S317, S319) present in the ERRγ ligand-binding domain that are O-GlcNAcylated. Mutation of these residues destabilizes ERRγ protein and blocks the ability of ERRγ to induce gluconeogenesis in vivo. The impact of this pathway on gluconeogenesis in vivo was confirmed by the observation that decreasing the amount of O-GlcNAcylated ERRγ by overexpressing the deglycosylating enzyme O-GlcNAcase decreases ERRγ-dependent glucose production in fasted mice. We conclude that O-GlcNAcylation of ERRγ serves as a major signal to promote hepatic gluconeogenesis.

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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