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Extensive NEUROG3 occupancy in the human pancreatic endocrine gene regulatory network

机译:广泛的Neurog3在人胰腺内分泌基因监管网络中占用

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Objective Mice lacking the bHLH transcription factor (TF) Neurog3 do not form pancreatic islet cells, including insulin-secreting beta cells, the absence of which leads to diabetes. In humans, homozygous mutations of NEUROG3 manifest with neonatal or childhood diabetes. Despite this critical role in islet cell development, the precise function of and downstream genetic programs regulated directly by NEUROG3 remain elusive. Therefore, we mapped genome-wide NEUROG3 occupancy in human induced pluripotent stem cell (hiPSC)–derived endocrine progenitors and determined NEUROG3 dependency of associated genes to uncover direct targets. Methods We generated a novel hiPSC line (NEUROG3-HA-P2A-Venus) where NEUROG3 is HA-tagged and fused to a self-cleaving fluorescent VENUS reporter. We used the CUT&RUN technique to map NEUROG3 occupancy and epigenetic marks in pancreatic endocrine progenitors (PEP) that were differentiated from this hiPSC line. We integrated NEUROG3 occupancy data with chromatin status and gene expression in PEPs as well as their NEUROG3-dependence. In addition, we investigated whether NEUROG3 binds type 2 diabetes mellitus (T2DM)–associated variants at the PEP stage. Results CUT&RUN revealed a total of 863 NEUROG3 binding sites assigned to 1263 unique genes. NEUROG3 occupancy was found at promoters as well as at distant cis-regulatory elements that frequently overlapped within PEP active enhancers. De novo motif analyses defined a NEUROG3 consensus binding motif and suggested potential co-regulation of NEUROG3 target genes by FOXA or RFX transcription factors. We found that 22% of the genes downregulated in NEUROG3 ?/? PEPs, and 10% of genes enriched in NEUROG3-Venus positive endocrine cells were bound by NEUROG3 and thus likely to be directly regulated. NEUROG3 binds to 138 transcription factor genes, some with important roles in islet cell development or function, such as NEUROD1, PAX4, NKX2-2, SOX4, MLXIPL, LMX1B, RFX3 , and NEUROG3 itself, and many others with unknown islet function. Unexpectedly, we uncovered that NEUROG3 targets genes critical for insulin secretion in beta cells (e.g., GCK, ABCC8/KCNJ11, CACNA1A, CHGA, SCG2, SLC30A8, and PCSK1). Thus, analysis of NEUROG3 occupancy suggests that the transient expression of NEUROG3 not only promotes islet destiny in uncommitted pancreatic progenitors, but could also initiate endocrine programs essential for beta cell function. Lastly, we identified eight T2DM risk SNPs within NEUROG3-bound regions. Conclusion Mapping NEUROG3 genome occupancy in PEPs uncovered unexpectedly broad, direct control of the endocrine genes, raising novel hypotheses on how this master regulator controls islet and beta cell differentiation.
机译:目的小鼠缺乏BHLH转录因子(TF)Neurog3不形成胰岛细胞,包括胰岛素分泌β细胞,其不存在导致糖尿病。在人类中,Neurog3的纯合酶突变用新生儿或儿童糖尿病表现出来。尽管在胰岛细胞发展中具有这种关键作用,但Neurog3直接监管的精确功能和下游遗传计划仍然难以捉摸。因此,我们在人诱导的多能干细胞(HIPSC)的内分泌祖细胞(HIPSC)的内分泌祖细胞中映射了基因组的神经痛3占据,并确定了相关基因的神经痛3依赖性,以发现直接靶标。方法我们生成了一种新的HIPSC线(神经痛3-HA-P2A-VENUS),其中神经胶3被HA标牌标记并融合到自切割荧光Venus报告体中。我们使用了剪切和运行技术来映射Neurog3占据胰腺内分泌祖细胞(PEP)中的占用和表观遗传标记,这些血管内分泌祖细胞(PEP)与该HIPSC线不同。我们将Neurog3占用染色质状态和PEPE中的基因表达的占用数据综合,以及它们的神经痛3依赖性。此外,我们研究了Neurog3是否在PEP阶段结合2型糖尿病(T2DM) - 分配的变体。结果削减&运行揭示了总共863个神经痛3绑定站点,分配到1263个独特基因。在促进剂中发现了神经痛3占用率,以及在PEP活性增强剂中经常重叠的遥远的顺式调节元件。 De Novo Motif分析定义了Neurog3共有结合基质,并通过FOXA或RFX转录因子建议潜在共调节神经痛3靶基因。我们发现,在Neurog3中下调22%的基因?/? PEPS和10%的富集神经痛3-金纳斯阳性内分泌细胞的基因受神经痛3的约束,因此可能直接调节。 Neurog3与138转录因子基因结合,其中一些具有胰岛细胞发育或功能的重要作用,例如神经元1,PAX4,NKX2-2,SOX4,MLXIPLIP,LMX1B,RFX3和Neurog3本身,以及许多具有未知胰岛功能的许多其他功能。出乎意料的是,我们发现Neurog3靶向β细胞中胰岛素分泌至关重要的基因(例如,GCK,ABCC8 / KCNJ11,CaCNA1a,CHGA,SCG2,SLC30A8和PCSK1)。因此,对神经痛3占用的分析表明,神经痛3的瞬态表达不仅在未提交的胰腺祖细胞中促进了胰岛命运,而且还可以启动对β细胞功能必不可少的内分泌计划。最后,我们在神经胶3界区域内确定了八个T2DM风险SNP。结论Meppe ineurog3基因组占据胃肠内的占用意外宽阔,直接控制内分泌基因,提高了该母型调节剂如何控制胰岛素和β细胞分化的新建假设。

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