Related Experiment Video
Updated: Apr 28, 2026

High-resolution Respirometry to Measure Mitochondrial Function of Intact Beta Cells in the Presence of Natural Compounds
Published on: January 23, 2018
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.
Background:
Insulin synthesis and cell proliferation are under tight regulation in pancreatic β-cells to maintain glucose homeostasis. Dysfunction in either aspect leads to development of diabetes. PERK (EIF2AK3) loss of function mutations in humans and mice exhibit permanent neonatal diabetes that is characterized by insufficient β-cell mass and reduced proinsulin trafficking and insulin secretion. Unexpectedly, we found that Perk heterozygous mice displayed lower blood glucose levels.
Methodology:
Longitudinal studies were conducted to assess serum glucose and insulin, intracellular insulin synthesis and storage, insulin secretion, and β-cell proliferation in Perk heterozygous mice. In addition, modulation of Perk dosage specifically in β-cells showed that the glucose homeostasis phenotype of Perk heterozygous mice is determined by reduced expression of PERK in the β-cells.
Principal Findings:
We found that Perk heterozygous mice first exhibited enhanced insulin synthesis and secretion during neonatal and juvenile development followed by enhanced β-cell proliferation and a substantial increase in β-cell mass at the adult stage. These differences are not likely to entail the well-known function of PERK to regulate the ER stress response in cultured cells as several markers for ER stress were not differentially expressed in Perk heterozygous mice.
Conclusions:
In addition to the essential functions of PERK in β-cells as revealed by severely diabetic phenotype in humans and mice completely deficient for PERK, reducing Perk gene expression by half showed that intermediate levels of PERK have a profound impact on β-cell functions and glucose homeostasis. These results suggest that an optimal level of PERK expression is necessary to balance several parameters of β-cell function and growth in order to achieve normoglycemia.
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.
Related Concept Videos
Hormones Regulating Blood Glucose
In addition to accelerating glucose uptake and utilization, insulin has...
Cell Specific Gene Expression
Glucose Homeostasis: Pancreatic Islets and Insulin Secretion
Insulin and C-peptide are...
Glucose Homeostasis: Regulation of Blood Glucose
During fasting, when blood glucose levels are low, the pancreas secretes glucagon. it...
Cells and Secretions of the Pancreas
Exocrine function is carried out by acinar cells, organized into clusters known as acini. These cells contribute to digestion by releasing substantial quantities of enzyme-rich, alkaline digestive juices.
Concurrently, the dispersed clusters of endocrine cells throughout the...
Feedback Loops

