Pancreatic -cells store insulin and release it in response to an elevation of blood glucose. Additionally, with each meal, healthy -cells synthesize new insulin to replace what they have lost. The synthesis pathway begins with introducing into the endoplasmic reticulum (ER) on average ~6,000 new proinsulin molecules every second per -cell. Under normal conditions, these molecules must fold their insulin moiety to the native state, including the formation of 3 evolutionarily conserved disulfide bonds. However, we have now definitively identified proinsulin misfolded states that occur in the ER of human islets, rodent islets, or -cell lines, and get worse (more abundant) with perturbations of the ER folding environment. We believe that this is an important contributor to abnormally increased -cell ER stress ? and it is even worse in the disease of Mutant INS-gene induced Diabetes of Youth (MIDY) ? caused by any one of >30 heterozygous (dominant-negative) INS gene coding sequence mutations. A portion of the work in the current proposal will focus on MIDY models, but we also present important new data highlighting the formation of misfolded protein complexes containing proinsulin that are especially abundant in islet -cells without INS mutation, preceding the onset of type 2 diabetes (T2D). In our first Aim, we will further analyze the ER environment and diabetogenic conditions promoting the formation of misfolded complexes of proinsulin, using molecular, cellular, and physiological tools. In our second Aim, we propose to understand more about the molecular mechanism of misfolding by using various MIDY models, and particularly, we propose experiments that will allow us to determine how much misfolded proinsulin must accumulate in order to trigger diabetes. Finally, in our third Aim, we propose a strategy to limit proinsulin misfolding with the intent to ameliorate, delay, or prevent diabetes.

Public Health Relevance

To make and store insulin, pancreatic islet -cells must make large quantities of the precursor protein, proinsulin, and fold it properly. However, we have now definitively identified misfolded proinsulin that occurs in the islets of human beings or rodents, and is markedly worse in individuals with insulin gene mutations, or in islets prior to the onset of type 2 diabetes. This proposal aims to understand the mechanism of how proinsulin misfolding occurs, and how to limit its damage, in order to prevent diabetes.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
2R01DK048280-26A1
Application #
9971230
Study Section
Molecular and Cellular Endocrinology Study Section (MCE)
Program Officer
Sato, Sheryl M
Project Start
1994-09-01
Project End
2025-01-31
Budget Start
2020-04-14
Budget End
2021-01-31
Support Year
26
Fiscal Year
2020
Total Cost
Indirect Cost
Name
University of Michigan Ann Arbor
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
073133571
City
Ann Arbor
State
MI
Country
United States
Zip Code
48109
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