Chronic ethanol consumption inhibits glucokinase transcriptional activity by Atf3 and triggers metabolic syndrome in vivo

  • Ji Yeon Kim
  • , Joo Yeon Hwang
  • , Dae Yeon Lee
  • , Eun Hyun Song
  • , Keon Jae Park
  • , Gyu Hee Kim
  • , Eun Ae Jeong
  • , Yoo Jeong Lee
  • , Min Jin Go
  • , Dae Jin Kim
  • , Seong Su Lee
  • , Bong Jo Kim
  • , Jihyun Song
  • , Gu Seob Roh
  • , Bin Gao
  • , Won Ho Kim

Research output: Contribution to journalArticlepeer-review

43 Scopus citations

Abstract

Chronic ethanol consumption induces pancreatic β-cell dysfunction through glucokinase (Gck) nitration and downregulation, leading to impaired glucose tolerance and insulin resistance, but the underlying mechanism remains largely unknown. Here, we demonstrate that Gck gene expression and promoter activity in pancreatic β-cells were suppressed by chronic ethanol exposure in vivo and in vitro, whereas expression of activating transcription factor 3 (Atf3) and its binding to the putative Atf/Creb site (from -287 to -158 bp) on the Gck promoter were up-regulated. Furthermore, in vitro ethanol-induced Atf3 inhibited the positive effect of Pdx-1 on Gck transcriptional regulation, enhanced recruitment of Hdac1/2 and histone H3 deacetylation, and subsequently augmented the interaction of Hdac1/Pdx-1 on the Gck promoter, which were diminished by Atf3 siRNA. In vivo Atf3-silencing reversed ethanol-mediated Gck down-regulation and β-cell dysfunction, followed by the amelioration of impaired glucose tolerance and insulin resistance. Together, we identified that ethanol-induced Atf3 fosters β-cell dysfunction via Gck down-regulation and that its loss ameliorates metabolic syndrome and could be a potential therapeutic target in treating type 2 diabetes. The Atf3 gene is associated with the induction of type 2 diabetes and alcohol consumption-induced metabolic impairment and thus may be the major negative regulator for glucose homeostasis.

Original languageEnglish
Pages (from-to)27065-27079
Number of pages15
JournalJournal of Biological Chemistry
Volume289
Issue number39
DOIs
StatePublished - 26 Sep 2014

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