ATF3 represses PDX-1 expression in pancreatic β-cells

Min Kyung Jang1, Hyun Jin Park, Myeong Ho Jung

  • 1Pusan National University, School of Korean Medicine, #30 Beom-eo ri, Mulguem-eup, Yangsan-si, Gyeongnam 609-735, South Korea.

Insights

Activating transcription factor 3 (ATF3) directly binds the PDX-1 promoter, reducing its expression in pancreatic beta cells. This ATF3-mediated repression contributes to the beta cell dysfunction seen in type 2 diabetes.

Area of Science:

  • Molecular Biology
  • Endocrinology
  • Diabetes Research

Background:

  • PDX-1 expression is crucial for pancreatic beta cell function and its downregulation is implicated in type 2 diabetes.
  • The specific molecular mechanisms and regulators responsible for PDX-1 downregulation remain incompletely understood.

Purpose of the Study:

  • To investigate the role of Activating Transcription Factor 3 (ATF3) as a negative regulator of PDX-1 expression in pancreatic beta cells.
  • To identify the specific binding site and mechanism by which ATF3 represses PDX-1 gene activity.

Main Methods:

  • Utilized MIN6N8 pancreatic beta cell line for experiments.
  • Performed promoter activity assays using 5' deletion reporters and site-directed mutagenesis.
  • Conducted electrophoretic mobility shift assays (EMSA) and chromatin immunoprecipitation (ChIP) assays.
  • Treated cells with thapsigargin (ER stress inducer), high glucose, and high palmitate.

Main Results:

  • ATF3 expression and ER stress induction by thapsigargin decreased PDX-1 expression and repressed PDX-1 promoter activity.
  • ATF3 was found to bind directly to a specific region (-759 to -738) of the PDX-1 promoter containing an ATF/CRE site.
  • Mutation of this ATF/CRE site abolished ATF3-mediated repression of PDX-1.
  • Elevated glucose and palmitate levels increased ATF3 expression and decreased PDX-1 expression in beta cells.

Conclusions:

  • ATF3 directly represses PDX-1 expression by binding to a specific element in its promoter.
  • ATF3 mediates the downregulation of PDX-1 in response to hyperglycemia and hyperlipidemia.
  • These findings highlight ATF3 as a key player in the suppression of pancreatic beta cell function and suggest its involvement in type 2 diabetes pathogenesis.

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