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Inhibition of the Eukaryotic Initiation Factor-2-α Kinase PERK Decreases Risk of Autoimmune Diabetes in Mice
Charanya Muralidharan1, Fei Huang1, Jacob R Enriquez1
1Department of Medicine and the Kovler Diabetes Center, The University of Chicago, Chicago, IL, USA.
Abstract:
Preventing the onset of autoimmune type 1 diabetes (T1D) is feasible through pharmacological interventions that target molecular stress-responsive mechanisms. Cellular stresses, such as nutrient deficiency, viral infection, or unfolded proteins, trigger the integrated stress response (ISR), which curtails protein synthesis by phosphorylating eIF2α. In T1D, maladaptive unfolded protein response (UPR) in insulin-producing β cells renders these cells susceptible to autoimmunity. We show that inhibition of the eIF2α kinase PERK, a common component of the UPR and ISR, reverses the mRNA translation block in stressed human islets and delays the onset of diabetes, reduces islet inflammation, and preserves β cell mass in T1D-susceptible mice. Single-cell RNA sequencing of islets from PERK-inhibited mice shows reductions in the UPR and PERK signaling pathways and alterations in antigen processing and presentation pathways in β cells. Spatial proteomics of islets from these mice shows an increase in the immune checkpoint protein PD-L1 in β cells. Golgi membrane protein 1, whose levels increase following PERK inhibition in human islets and EndoC-βH1 human β cells, interacts with and stabilizes PD-L1. Collectively, our studies show that PERK activity enhances β cell immunogenicity, and inhibition of PERK may offer a strategy to prevent or delay the development of T1D.
Insights
Inhibiting the PERK pathway in pancreatic beta cells can prevent type 1 diabetes (T1D) by reducing inflammation and preserving beta cell function. This approach targets cellular stress responses to protect against autoimmune attack.
Area of Science:
- Immunology
- Endocrinology
- Molecular Biology
Background:
- Autoimmune type 1 diabetes (T1D) involves the destruction of insulin-producing beta cells.
- Cellular stress responses, including the unfolded protein response (UPR) and integrated stress response (ISR), contribute to beta cell susceptibility in T1D.
- The eIF2α kinase PERK is a key mediator of the UPR and ISR.
Purpose of the Study:
- To investigate the role of PERK in T1D pathogenesis.
- To evaluate the therapeutic potential of PERK inhibition for preventing or delaying T1D onset.
Main Methods:
- Inhibition of PERK in human islets and T1D-susceptible mouse models.
- Single-cell RNA sequencing and spatial proteomics to analyze molecular changes in islets.
- Assessment of diabetes onset, islet inflammation, and beta cell mass.
Main Results:
- PERK inhibition reversed mRNA translation block in stressed human islets.
- Inhibition delayed diabetes onset, reduced islet inflammation, and preserved beta cell mass in mice.
- PERK inhibition altered antigen processing pathways and increased PD-L1 expression in beta cells.
- Golgi membrane protein 1 was identified to stabilize PD-L1.
Conclusions:
- PERK activity promotes beta cell immunogenicity, making them vulnerable to autoimmune attack in T1D.
- Inhibiting PERK represents a potential strategy for T1D prevention or delay.
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