lncRNA Gm10451 mediates β-cell functional impairment in type 1 diabetes through the miR-24-3p/G6PD axis

BACKGROUND: Pancreatic β-cell dysfunction underlies type 1 diabetes mellitus (T1DM) progression. Previous study showed that lncRNA Gm10451 is upregulated by high glucose and contributes to β-cell impairment, but its mechanism remains unclear. METHODS: Interactions among Gm10451, miR-24-3p, and G6PD were validated by dual-luciferase assay and Ago2-RNA immunoprecipitation (Ago2-RIP). Expression was measured by RT-qPCR and Western blot. β-cell functions were evaluated by glucose-stimulated insulin secretion (GSIS), CCK-8, TUNEL, ELISA, and hyperglycemic clamp in 30 mM glucose-treated MIN6 cell and STZ-treated C57BL/6 mice (Control injected with citrate buffer). RESULTS: Gm10451 was upregulated in diabetic models. Gm10451 acted as ceRNA to spomge miR-24-3p, which directly targeted G6PD. Overexpression of Gm10451 suppressed G6PD, aggravated oxidative/ER stress and inflammation, inhibited insulin secretion and promoted β-cell apoptosis. miR-24-3p mimic reversed these impairments. CONCLUSION: Gm10451 promotes β-cell dysfunction via the miR-24-3p/G6PD axis, representing a poteniall therapeutic target for diabetes-related β-cell dysfunction.

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Journal
Endocrine
Published
2026-09-11
DOI
https://doi.org/10.1007/s12020-026-04736-y
Primary Topic
Pancreatic function and diabetes
Type
article
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article

lncRNA Gm10451 mediates β-cell functional impairment in type 1 diabetes through the miR-24-3p/G6PD axis

Xianhe Wang, Jiaxin Li, Lihai Zhang, Yuming Kang et al.
Endocrine
Pancreatic function and diabetes
article

lncRNA Gm10451 mediates β-cell functional impairment in type 1 diabetes through the miR-24-3p/G6PD axis

Xianhe Wang, Jiaxin Li, Lihai Zhang, Yuming Kang, Jiao Wang
article en

Abstract

BACKGROUND: Pancreatic β-cell dysfunction underlies type 1 diabetes mellitus (T1DM) progression. Previous study showed that lncRNA Gm10451 is upregulated by high glucose and contributes to β-cell impairment, but its mechanism remains unclear. METHODS: Interactions among Gm10451, miR-24-3p, and G6PD were validated by dual-luciferase assay and Ago2-RNA immunoprecipitation (Ago2-RIP). Expression was measured by RT-qPCR and Western blot. β-cell functions were evaluated by glucose-stimulated insulin secretion (GSIS), CCK-8, TUNEL, ELISA, and hyperglycemic clamp in 30 mM glucose-treated MIN6 cell and STZ-treated C57BL/6 mice (Control injected with citrate buffer). RESULTS: Gm10451 was upregulated in diabetic models. Gm10451 acted as ceRNA to spomge miR-24-3p, which directly targeted G6PD. Overexpression of Gm10451 suppressed G6PD, aggravated oxidative/ER stress and inflammation, inhibited insulin secretion and promoted β-cell apoptosis. miR-24-3p mimic reversed these impairments. CONCLUSION: Gm10451 promotes β-cell dysfunction via the miR-24-3p/G6PD axis, representing a poteniall therapeutic target for diabetes-related β-cell dysfunction.

EndocrineVol. 91(1)
First Affiliated Hospital of Jiamusi University (CN), Xi'an Jiaotong University (CN)
Good health and well-being
Openalex Percentile: Top 8%
Pancreatic function and diabetes
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lncRNA Gm10451 mediates β-cell functional impairment in type 1 diabetes through the miR-24-3p/G6PD axis — Xianhe Wang, Jiaxin Li, et al. · Endocrine (2026) | TGRS Research Map | TGRS