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Calpain inhibitor and ibudilast rescue β cell functions in a cellular model of Wolfram syndrome.

Citation
Nguyen, L. D., et al. “Calpain Inhibitor And Ibudilast Rescue Β Cell Functions In A Cellular Model Of Wolfram Syndrome.”. Proceedings Of The National Academy Of Sciences Of The United States Of America, pp. 17389-17398.
Center Washington University in St Louis
Author Lien D Nguyen, Tom T Fischer, Damien Abreu, Alfredo Arroyo, Fumihiko Urano, Barbara E Ehrlich
Keywords Akt, calcium signaling, cell viability, diabetes, ibudilast
Abstract

Wolfram syndrome is a rare multisystem disease characterized by childhood-onset diabetes mellitus and progressive neurodegeneration. Most cases are attributed to pathogenic variants in a single gene, Wolfram syndrome 1 (). There currently is no disease-modifying treatment for Wolfram syndrome, as the molecular consequences of the loss of WFS1 remain elusive. Because diabetes mellitus is the first diagnosed symptom of Wolfram syndrome, we aimed to further examine the functions of WFS1 in pancreatic β cells in the context of hyperglycemia. Knockout (KO) of WFS1 in rat insulinoma (INS1) cells impaired calcium homeostasis and protein kinase B/Akt signaling and, subsequently, decreased cell viability and glucose-stimulated insulin secretion. Targeting calcium homeostasis with reexpression of WFS1, overexpression of WFS1's interacting partner neuronal calcium sensor-1 (NCS1), or treatment with calpain inhibitor and ibudilast reversed deficits observed in WFS1-KO cells. Collectively, our findings provide insight into the disease mechanism of Wolfram syndrome and highlight new targets and drug candidates to facilitate the development of a treatment for this disorder and similar diseases.

Year of Publication
2020
Journal
Proceedings of the National Academy of Sciences of the United States of America
Volume
117
Issue
29
Number of Pages
17389-17398
Date Published
12/2020
ISSN Number
1091-6490
DOI
10.1073/pnas.2007136117
Alternate Journal
Proc Natl Acad Sci U S A
PMID
32632005
PMCID
PMC7382278
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