Bohuslavova Romana, Fabriciova Valeria, Lebrón-Mora Laura, Malfatti Jessica, Smolik Ondrej, Valihrach Lukas, Benesova Sarka, Zucha Daniel, Berkova Zuzana, Saudek Frantisek, Evans Sylvia M, Pavlinkova Gabriela
Laboratory of Molecular Pathogenetics, Institute of Biotechnology CAS, 25250, Vestec, Czechia.
Laboratory of Gene Expression, Institute of Biotechnology CAS, 25250, Vestec, Czechia.
Cell Biosci. 2023 Mar 10;13(1):53. doi: 10.1186/s13578-023-01003-9.
Glucose homeostasis is dependent on functional pancreatic α and ß cells. The mechanisms underlying the generation and maturation of these endocrine cells remain unclear.
We unravel the molecular mode of action of ISL1 in controlling α cell fate and the formation of functional ß cells in the pancreas. By combining transgenic mouse models, transcriptomic and epigenomic profiling, we uncover that elimination of Isl1 results in a diabetic phenotype with a complete loss of α cells, disrupted pancreatic islet architecture, downregulation of key ß-cell regulators and maturation markers of ß cells, and an enrichment in an intermediate endocrine progenitor transcriptomic profile.
Mechanistically, apart from the altered transcriptome of pancreatic endocrine cells, Isl1 elimination results in altered silencing H3K27me3 histone modifications in the promoter regions of genes that are essential for endocrine cell differentiation. Our results thus show that ISL1 transcriptionally and epigenetically controls α cell fate competence, and ß cell maturation, suggesting that ISL1 is a critical component for generating functional α and ß cells.
葡萄糖稳态依赖于功能性胰腺α细胞和β细胞。这些内分泌细胞的产生和成熟机制仍不清楚。
我们揭示了ISL1在控制胰腺α细胞命运和功能性β细胞形成中的分子作用模式。通过结合转基因小鼠模型、转录组学和表观基因组学分析,我们发现消除Isl1会导致糖尿病表型,α细胞完全丧失,胰岛结构破坏,关键β细胞调节因子和β细胞成熟标志物下调,以及中间内分泌祖细胞转录组谱富集。
从机制上讲,除了胰腺内分泌细胞转录组改变外,消除Isl1还会导致内分泌细胞分化所必需基因的启动子区域中沉默的H3K27me3组蛋白修饰发生改变。因此,我们的结果表明,ISL1在转录和表观遗传水平上控制α细胞命运能力和β细胞成熟,提示ISL1是产生功能性α细胞和β细胞的关键组成部分。