Perk gene dosage regulates glucose homeostasis by modulating pancreatic β-cell functions

Rong Wang1, Elyse E Munoz1, Siying Zhu1

  • 1The Pennsylvania State University, Department of Biology, Center of Cellular Dynamics, University Park, Pennsylvania, United States of America.

Plos One
|June 11, 2014
PubMed
Abstract

Insights

Reducing PERK (EIF2AK3) gene expression by half in mice unexpectedly lowered blood glucose. This suggests an optimal PERK level is crucial for pancreatic beta-cell function and glucose homeostasis.

Area of Science:

  • Endocrinology
  • Molecular Biology
  • Diabetes Research

Background:

  • Pancreatic beta-cells regulate insulin synthesis and proliferation for glucose homeostasis.
  • PERK (EIF2AK3) loss-of-function causes neonatal diabetes with insufficient beta-cell mass and impaired insulin secretion.
  • PERK heterozygous mice unexpectedly showed lower blood glucose levels.

Purpose of the Study:

  • To investigate the impact of reduced PERK expression on beta-cell function and glucose homeostasis.
  • To determine if PERK dosage in beta-cells influences glucose regulation.
  • To explore the role of PERK beyond its known ER stress response function.

Main Methods:

  • Longitudinal assessment of serum glucose, insulin, insulin synthesis, storage, secretion, and beta-cell proliferation in Perk heterozygous mice.
  • Modulation of Perk gene dosage specifically within beta-cells.
  • Analysis of ER stress markers in Perk heterozygous mice.

Main Results:

  • Perk heterozygous mice exhibited enhanced insulin synthesis and secretion during early development.
  • Significant beta-cell proliferation and increased beta-cell mass were observed in adult Perk heterozygous mice.
  • No differential expression of ER stress markers suggested PERK's role extends beyond ER stress regulation.

Conclusions:

  • Intermediate PERK levels, achieved by halving gene expression, profoundly impact beta-cell function and glucose homeostasis.
  • Optimal PERK expression is essential for balancing beta-cell function and growth to maintain normoglycemia.
  • This study highlights PERK's critical role in beta-cell physiology beyond its established function in ER stress.

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