Laboratory of Molecular Pathogenetics, Institute of Biotechnology CAS, 25250, Vestec, Czechia.
Laboratory of Gene Expression, Institute of Biotechnology CAS, 25250, Vestec, Czechia.
Nat Commun. 2023 Sep 9;14(1):5554. doi: 10.1038/s41467-023-41306-6.
NEUROD1 is a transcription factor that helps maintain a mature phenotype of pancreatic β cells. Disruption of Neurod1 during pancreatic development causes severe neonatal diabetes; however, the exact role of NEUROD1 in the differentiation programs of endocrine cells is unknown. Here, we report a crucial role of the NEUROD1 regulatory network in endocrine lineage commitment and differentiation. Mechanistically, transcriptome and chromatin landscape analyses demonstrate that Neurod1 inactivation triggers a downregulation of endocrine differentiation transcription factors and upregulation of non-endocrine genes within the Neurod1-deficient endocrine cell population, disturbing endocrine identity acquisition. Neurod1 deficiency altered the H3K27me3 histone modification pattern in promoter regions of differentially expressed genes, which resulted in gene regulatory network changes in the differentiation pathway of endocrine cells, compromising endocrine cell potential, differentiation, and functional properties.
神经调节蛋白 1(NeuroD1)是一种转录因子,有助于维持胰岛β细胞的成熟表型。在胰腺发育过程中破坏 Neurod1 会导致严重的新生儿糖尿病;然而,Neurod1 在内分泌细胞的分化程序中的确切作用尚不清楚。在这里,我们报告了 NeuroD1 调控网络在内分泌谱系特化和分化中的关键作用。从机制上讲,转录组和染色质景观分析表明,Neurod1 的失活会触发内分泌分化转录因子的下调和 Neurod1 缺陷的内分泌细胞群体中非内分泌基因的上调,从而干扰内分泌特性的获得。Neurod1 缺乏改变了差异表达基因启动子区域的 H3K27me3 组蛋白修饰模式,导致内分泌细胞分化途径中的基因调控网络发生变化,从而损害内分泌细胞的潜能、分化和功能特性。