Bioinformatics and Systems Biology Graduate Program, UC San Diego, 9500 Gilman Drive, La Jolla, CA, 92093, USA.
Biomedical Sciences Graduate Program, UC San Diego, 9500 Gilman Drive, La Jolla, CA, 92093, USA.
Nat Commun. 2019 May 7;10(1):2078. doi: 10.1038/s41467-019-09975-4.
Genetic variants affecting pancreatic islet enhancers are central to T2D risk, but the gene targets of islet enhancer activity are largely unknown. We generate a high-resolution map of islet chromatin loops using Hi-C assays in three islet samples and use loops to annotate target genes of islet enhancers defined using ATAC-seq and published ChIP-seq data. We identify candidate target genes for thousands of islet enhancers, and find that enhancer looping is correlated with islet-specific gene expression. We fine-map T2D risk variants affecting islet enhancers, and find that candidate target genes of these variants defined using chromatin looping and eQTL mapping are enriched in protein transport and secretion pathways. At IGF2BP2, a fine-mapped T2D variant reduces islet enhancer activity and IGF2BP2 expression, and conditional inactivation of IGF2BP2 in mouse islets impairs glucose-stimulated insulin secretion. Our findings provide a resource for studying islet enhancer function and identifying genes involved in T2D risk.
影响胰岛增强子的遗传变异是 T2D 风险的核心,但胰岛增强子活性的基因靶标在很大程度上仍是未知的。我们使用 Hi-C 测定法在三个胰岛样本中生成胰岛染色质环的高分辨率图谱,并使用环来注释使用 ATAC-seq 和已发表的 ChIP-seq 数据定义的胰岛增强子的靶基因。我们确定了数千个胰岛增强子的候选靶基因,并发现增强子环与胰岛特异性基因表达相关。我们对影响胰岛增强子的 T2D 风险变异进行精细映射,并发现使用染色质环和 eQTL 图谱定义的这些变异的候选靶基因在蛋白质运输和分泌途径中富集。在 IGF2BP2 处,精细映射的 T2D 变体降低了胰岛增强子活性和 IGF2BP2 表达,并且在胰岛中条件性失活 IGF2BP2 会损害葡萄糖刺激的胰岛素分泌。我们的发现为研究胰岛增强子功能和鉴定 T2D 风险相关基因提供了资源。