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◆ Nature metabolism2026-09-18

m6A mRNA methylation regulates pancreatic α-cell plasticity.

Dario F De Jesus, Natalie K Brown, Garrett Fogarty, Guilherme Gabriel, Shirong Wang, Shen Wang, Lenee Shrestha, Kristin Kendall, Lily Young, Jiang Hu, Jermaine Austin, Joan Sabadell-Basallote, Sevim Kahraman, Ling Xiao, Rohit N Kulkarni

原始摘要(英文原文)· Original abstract
Pancreatic α-cells are central regulators of glucose and amino acid homeostasis, yet the mechanisms that preserve α-cell identity and function remain incompletely understood. N6-methyladenosine (m6A) is a widespread mRNA modification that is essential for β-cell biology and pancreatic endocrine differentiation. Here we show that m6A is a key regulator of α-cell function and plasticity. In α-cells, metabolic cues that stimulate glucagon secretion such as L-arginine increase METTL3, METTL14 and m6A levels. Loss of m6A impairs amino acid-stimulated glucagon secretion, disrupts α-cell identity programmes and induces metabolic rewiring. In mice, α-cell-specific Mettl14 deletion reduces α-cell mass, increases β-cell mass and promotes α-to-β-cell conversion, accompanied by the emergence of late β-like states with features of incomplete maturation. Mechanistically, m6A-eCLIP identifies Yy1 as a direct m6A-sensitive target, and elevated YY1 links m6A loss to signalling rewiring and erosion of α-cell identity. These findings identify m6A as a central regulator of α-cell state and reveal an epitranscriptomic mechanism controlling endocrine cell plasticity.
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m6A mRNA methylation regulates pancreatic α-cell plasticity. — 科研速览 Science Skim