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Dysregulation of intercellular signaling by MOF deletion leads to liver injury.
Lei, Hongwei; denDekker, Aaron D; Li, Guobing; Zhang, Zhiguo; Sha, Liang; Schaller, Matthew A; Kunkel, Steven L; Rui, Liangyou; Tao, Kaixiong; Dou, Yali.
Affiliation
  • Lei H; Department of Gastrointestinal Surgery, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China; Department of Medicine, University of Southern California, Los Angeles, California, USA.
  • denDekker AD; Department of Surgery, University of Michigan, Ann Arbor, Michigan, USA.
  • Li G; Department of Medicine, University of Southern California, Los Angeles, California, USA.
  • Zhang Z; Department of Molecular & Integrative Physiology, University of Michigan Medical School, Ann Arbor, Michigan, USA.
  • Sha L; Department of Medicine, University of Southern California, Los Angeles, California, USA.
  • Schaller MA; Division of Pulmonary, Critical Care & Sleep Medicine, University of Florida, Gainesville, Florida, USA.
  • Kunkel SL; Department of Surgery, University of Michigan, Ann Arbor, Michigan, USA.
  • Rui L; Department of Molecular & Integrative Physiology, University of Michigan Medical School, Ann Arbor, Michigan, USA.
  • Tao K; Department of Gastrointestinal Surgery, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China. Electronic address: kaixiongtao@hust.edu.cn.
  • Dou Y; Department of Medicine, University of Southern California, Los Angeles, California, USA. Electronic address: yalidou@usc.edu.
J Biol Chem ; 296: 100235, 2021.
Article in En | MEDLINE | ID: mdl-33376138
ABSTRACT
Epigenetic mechanisms that alter heritable gene expression and chromatin structure play an essential role in many biological processes, including liver function. Human MOF (males absent on the first) is a histone acetyltransferase that is globally downregulated in human steatohepatitis. However, the function of MOF in the liver remains unclear. Here, we report that MOF plays an essential role in adult liver. Genetic deletion of Mof by Mx1-Cre in the liver leads to acute liver injury, with increase of lipid deposition and fibrosis akin to human steatohepatitis. Surprisingly, hepatocyte-specific Mof deletion had no overt liver abnormality. Using the in vitro coculturing experiment, we show that Mof deletion-induced liver injury requires coordinated changes and reciprocal signaling between hepatocytes and Kupffer cells, which enables feedforward regulation to augment inflammation and apoptotic responses. At the molecular level, Mof deletion induced characteristic changes in metabolic gene programs, which bore noticeable similarity to the molecular signature of human steatohepatitis. Simultaneous deletion of Mof in both hepatocytes and macrophages results in enhanced expression of inflammatory genes and NO signaling in vitro. These changes, in turn, lead to apoptosis of hepatocytes and lipotoxicity. Our work highlights the importance of histone acetyltransferase MOF in maintaining metabolic liver homeostasis and sheds light on the epigenetic dysregulation in liver pathogenesis.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Histone Acetyltransferases / Inflammation / Liver / Liver Diseases / Nitric Oxide Limits: Humans Language: En Journal: J Biol Chem Year: 2021 Type: Article Affiliation country: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Histone Acetyltransferases / Inflammation / Liver / Liver Diseases / Nitric Oxide Limits: Humans Language: En Journal: J Biol Chem Year: 2021 Type: Article Affiliation country: United States