Global identification of ER stress-regulated RNA binding Proteins in clonal 2 pancreatic beta-cells
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ABSTRACT: Endoplasmic reticulum (ER) stress plays an important role in pancreatic β-cell 20 dysfunction and death, contributing to both type 1 and type 2 diabetes. The Unfolded 21 Protein Response (UPR) is a key adaptive mechanism that helps cells cope with ER 22 stress by altering gene expression. RNA-binding proteins (RBPs), which regulate gene 23 expression at multiple levels, are likely to influence the UPR, yet their role in the UPR 24 remain largely unexplored. 25 To investigate this, we examined global changes in RBP-RNA interactions in the 26 mouse β-cell line MIN6 under ER stress. This analysis identified 339 RBPs, with 13 27 showing significant changes in RNA binding. Among these, DEAD-box helicase 3 X28 linked (DDX3X) emerged as a candidate for further study. Functional experiments 29 revealed that inhibiting or knocking down DDX3X in MIN6 cells suppressed the ER 30 stress-induced expression of the pro-apoptotic protein CHOP and its upstream 31 regulator ATF4.
INSTRUMENT(S):
ORGANISM(S): Mus Musculus (mouse)
TISSUE(S): Type B Pancreatic Cell
DISEASE(S): Diabetes Mellitus
SUBMITTER:
David Boocock
LAB HEAD: David Boocock
PROVIDER: PXD066750 | Pride | 2026-05-29
REPOSITORIES: Pride
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