Metabolic reprogramming drives pancreatic β cell neogenesis from α cells
Yufeng Zhang1,2, Guangxing Lu1, Wenhao Xie1
1State Key Laboratory of Genetics and Development of Complex Phenotypes, School of Pharmaceutical Sciences, Zhongshan Hospital and School of Life Sciences, Fudan University, Shanghai, China.
None:
Loss of functional β cells is a hallmark of diabetes, and restoring β cell mass remains a critical goal in the quest for a specific therapy. One potential strategy is to convert non-β cells in the islet, such as α cells, into insulin-producing cells. Although several compounds have been identified to induce β cell-like features in α cells, none have been successfully translated into clinical applications. In this study, we identify PRC2 inhibitors as potent inducers of β cell-enriched gene expression in α cells, acting through modulation of the AR-ETV1 complex. AR inhibition suppresses glycogen synthesis and enhances the pentose phosphate pathway. Direct metabolic reprogramming with methyl esterified 6-phosphogluconate, an intermediate metabolite of the pentose phosphate pathway, induces β cell-like features in α cells, stimulates β cell regeneration and ameliorates diabetes. Our findings demonstrate that metabolic reprogramming drives β cell regeneration and highlight a promising therapeutic strategy for diabetes.
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