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Nature Communications

Nature Communications

IF: 14.69
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OSGEP regulates islet β-cell function by modulating proinsulin translation and maintaining ER stress homeostasis in mice

Published:2 December 2024 DOI: 10.1038/s41467-024-54905-8
Yujie Liu, Xuechun Yang, Jian Zhou, Haijun Yang, Ruimeng Yang, Peng Zhu, Rong Zhou, Tianyuan Wu, Yongchao Gao, Zhi Ye, Xi Li, Rong Liu, Wei Zhang, Honghao Zhou, Qing Li

Abstract

Proinsulin translation and folding is crucial for glucose homeostasis. However, islet β-cell control of Proinsulin translation remains incompletely understood. Here, we identify OSGEP, an enzyme responsible for t6A37 modification of tRNANNU that tunes glucose metabolism in β-cells. Global Osgep deletion causes glucose intolerance, while β-cell-specific deletion induces hyperglycemia and glucose intolerance due to impaired insulin activity. Transcriptomics and proteomics reveal activation of the unfolded protein response (UPR) and apoptosis signaling pathways in Osgep-deficient islets, linked to an increase in misfolded Proinsulin from reduced t6A37 modification. Osgep overexpression in pancreas rescues insulin secretion and mitigates diabetes in high-fat diet mice. Osgep enhances translational fidelity and alleviates UPR signaling, highlighting its potential as a therapeutic target for diabetes. Individuals carrying the C allele at rs74512655, which promotes OSGEP transcription, may show reduced susceptibility to T2DM. These findings show OSGEP is essential for islet β-cells and a potential diabetes therapy target.

Substances (3)

Materials
Procduct Name CAS Molecular Formula Supplier Price
Dithizone 60-10-6 C13H12N4S 362 suppliers $13.00-$1921.92
Alkaline Phosphatase 9001-78-9 C21H36N8O6 235 suppliers $70.00-$2170.00
INSULIN 11070-73-8 C254H377N65O75S6 193 suppliers $72.00-$2660.00