The Role of IRE1α in the Degradation of Insulin mRNA in Pancreatic β-Cells
Open Access
- 20 February 2008
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 3 (2), e1648
- https://doi.org/10.1371/journal.pone.0001648
Abstract
The endoplasmic reticulum (ER) is a cellular compartment for the biosynthesis and folding of newly synthesized secretory proteins such as insulin. Perturbations to ER homeostasis cause ER stress and subsequently activate cell signaling pathways, collectively known as the Unfolded Protein Response (UPR). IRE1α is a central component of the UPR. In pancreatic β-cells, IRE1α also functions in the regulation of insulin biosynthesis. Here we report that hyperactivation of IRE1α caused by chronic high glucose treatment or IRE1α overexpression leads to insulin mRNA degradation in pancreatic β-cells. Inhibition of IRE1α signaling using its dominant negative form prevents insulin mRNA degradation. Islets from mice heterozygous for IRE1α retain expression of more insulin mRNA after chronic high glucose treatment than do their wild-type littermates. These results reveal a role of IRE1α in insulin mRNA expression under ER stress conditions caused by chronic high glucose. The rapid degradation of insulin mRNA could provide immediate relief for the ER and free up the translocation machinery. Thus, this mechanism would preserve ER homeostasis and help ensure that the insulin already inside the ER can be properly folded and secreted. This adaptation may be crucial for the maintenance of β-cell homeostasis and may explain why the β-cells of type 2 diabetic patients with chronic hyperglycemia stop producing insulin in the absence of apoptosis. This mechanism may also be involved in suppression of the autoimmune type 1 diabetes by reducing the amount of misfolded insulin, which could be a source of “neo-autoantigens.”Keywords
This publication has 24 references indexed in Scilit:
- That which does not kill me makes me stronger: adapting to chronic ER stressTrends in Biochemical Sciences, 2007
- Signal integration in the endoplasmic reticulum unfolded protein responseNature Reviews Molecular Cell Biology, 2007
- Decay of Endoplasmic Reticulum-Localized mRNAs During the Unfolded Protein ResponseScience, 2006
- Endoplasmic Reticulum Stress Links Obesity, Insulin Action, and Type 2 DiabetesScience, 2004
- MafA Is a Glucose-regulated and Pancreatic β-Cell-specific Transcriptional Activator for the Insulin GeneJournal of Biological Chemistry, 2002
- Involvement of c-Jun N-terminal Kinase in Oxidative Stress-mediated Suppression of Insulin Gene ExpressionJournal of Biological Chemistry, 2002
- IRE1 couples endoplasmic reticulum load to secretory capacity by processing the XBP-1 mRNANature, 2002
- XBP1 mRNA Is Induced by ATF6 and Spliced by IRE1 in Response to ER Stress to Produce a Highly Active Transcription FactorCell, 2001
- Chronic exposure of betaTC-6 cells to supraphysiologic concentrations of glucose decreases binding of the RIPE3b1 insulin gene transcription activator.Journal of Clinical Investigation, 1996
- Chronic exposure of HIT cells to high glucose concentrations paradoxically decreases insulin gene transcription and alters binding of insulin gene regulatory protein.Journal of Clinical Investigation, 1993