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  • EMBO reports: 19 (12)

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Article

Arginine methylation of SIRT7 couples glucose sensing with mitochondria biogenesis

Wei‐Wei Yan, Yun‐Liu Liang, Qi‐Xiang Zhang, Di Wang, Ming‐Zhu Lei, Jia Qu, Xiang‐Huo He, Qun‐Ying Lei, View ORCID ProfileYi‐Ping Wang
DOI 10.15252/embr.201846377 | Published online 12.11.2018
EMBO reports (2018) 19, e46377
Wei‐Wei Yan
Fudan University Shanghai Cancer Center, Cancer Metabolism Laboratory, Institutes of Biomedical Sciences, Shanghai Medical College, Fudan University, Shanghai, China
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Yun‐Liu Liang
Fudan University Shanghai Cancer Center, Cancer Metabolism Laboratory, Institutes of Biomedical Sciences, Shanghai Medical College, Fudan University, Shanghai, China
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Qi‐Xiang Zhang
Department of Biochemistry and Molecular Biology, School of Basic Medical Sciences, Fudan University, Shanghai, China
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Di Wang
Fudan University Shanghai Cancer Center, Cancer Metabolism Laboratory, Institutes of Biomedical Sciences, Shanghai Medical College, Fudan University, Shanghai, China
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Ming‐Zhu Lei
Department of Biochemistry and Molecular Biology, School of Basic Medical Sciences, Fudan University, Shanghai, China
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Jia Qu
Fudan University Shanghai Cancer Center, Cancer Metabolism Laboratory, Institutes of Biomedical Sciences, Shanghai Medical College, Fudan University, Shanghai, China
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Xiang‐Huo He
Fudan University Shanghai Cancer Center, Institutes of Biomedical Sciences, Shanghai Medical College, Fudan University, Shanghai, China
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Qun‐Ying Lei
Fudan University Shanghai Cancer Center, Cancer Metabolism Laboratory, Institutes of Biomedical Sciences, Shanghai Medical College, Fudan University, Shanghai, ChinaState Key Laboratory of Medical Neurobiology, Fudan University, Shanghai, China
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Yi‐Ping Wang
Fudan University Shanghai Cancer Center, Cancer Metabolism Laboratory, Institutes of Biomedical Sciences, Shanghai Medical College, Fudan University, Shanghai, China
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Author Affiliations

  1. Wei‐Wei Yan1,
  2. Yun‐Liu Liang1,
  3. Qi‐Xiang Zhang2,
  4. Di Wang1,
  5. Ming‐Zhu Lei2,
  6. Jia Qu1,
  7. Xiang‐Huo He3,
  8. Qun‐Ying Lei1,4 and
  9. Yi‐Ping Wang (yiping_wang{at}fudan.edu.cn)*,1
  1. 1Fudan University Shanghai Cancer Center, Cancer Metabolism Laboratory, Institutes of Biomedical Sciences, Shanghai Medical College, Fudan University, Shanghai, China
  2. 2Department of Biochemistry and Molecular Biology, School of Basic Medical Sciences, Fudan University, Shanghai, China
  3. 3Fudan University Shanghai Cancer Center, Institutes of Biomedical Sciences, Shanghai Medical College, Fudan University, Shanghai, China
  4. 4State Key Laboratory of Medical Neurobiology, Fudan University, Shanghai, China
  1. ↵*Corresponding author. Tel: +86 21 54237902; E‐mail: yiping_wang{at}fudan.edu.cn
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Abstract

Sirtuins (SIRTs) are a class of lysine deacylases that regulate cellular metabolism and energy homeostasis. Although sirtuins have been proposed to function in nutrient sensing and signaling, the underlying mechanism remains elusive. SIRT7, a histone H3K18‐specific deacetylase, epigenetically controls mitochondria biogenesis, ribosomal biosynthesis, and DNA repair. Here, we report that SIRT7 is methylated at arginine 388 (R388), which inhibits its H3K18 deacetylase activity. Protein arginine methyltransferase 6 (PRMT6) directly interacts with and methylates SIRT7 at R388 in vitro and in vivo. R388 methylation suppresses the H3K18 deacetylase activity of SIRT7 without modulating its subcellular localization. PRMT6‐induced H3K18 hyperacetylation at SIRT7‐target gene promoter epigenetically promotes mitochondria biogenesis and maintains mitochondria respiration. Moreover, high glucose enhances R388 methylation in mouse fibroblasts and liver tissue. PRMT6 signals glucose availability to SIRT7 in an AMPK‐dependent manner. AMPK induces R388 hypomethylation by disrupting the association between PRMT6 and SIRT7. Together, PRMT6‐induced arginine methylation of SIRT7 coordinates glucose availability with mitochondria biogenesis to maintain energy homeostasis. Our study uncovers the regulatory role of SIRT7 arginine methylation in glucose sensing and mitochondria biogenesis.

Synopsis

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PRMT6 methylates and thereby inhibits SIRT7, which epigenetically promotes mitochondria biogenesis and connects it to glucose availability in an AMPK‐dependent manner.

  • PRMT6 methylates SIRT7 at R388 to suppress its H3K18 deacetylase activity.

  • PRMT6 modulates SIRT7 methylation in an AMPK‐dependent manner.

  • SIRT7 methylation connects glucose sensing with mitochondria biogenesis.

  • arginine methylation
  • glucose sensing
  • mitochondria biogenesis
  • PRMT6
  • SIRT7

EMBO Reports (2018) 19: e46377

  • Received May 7, 2018.
  • Revision received September 6, 2018.
  • Accepted October 12, 2018.
  • © 2018 The Authors
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Volume 19, Issue 12
01 December 2018
EMBO reports: 19 (12)
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