Department of Genetics and Genome Sciences, School of Medicine, Case Western Reserve University, Cleveland, OH, 44106, USA.
The Biomedical Sciences Training Program (BSTP), School of Medicine, Case Western Reserve University, Cleveland, OH, 44106, USA.
Nat Commun. 2023 Sep 5;14(1):5400. doi: 10.1038/s41467-023-41228-3.
Broad heterogeneity in pancreatic β-cell function and morphology has been widely reported. However, determining which components of this cellular heterogeneity serve a diabetes-relevant function remains challenging. Here, we integrate single-cell transcriptome, single-nuclei chromatin accessibility, and cell-type specific 3D genome profiles from human islets and identify Type II Diabetes (T2D)-associated β-cell heterogeneity at both transcriptomic and epigenomic levels. We develop a computational method to explicitly dissect the intra-donor and inter-donor heterogeneity between single β-cells, which reflect distinct mechanisms of T2D pathogenesis. Integrative transcriptomic and epigenomic analysis identifies HNF1A as a principal driver of intra-donor heterogeneity between β-cells from the same donors; HNF1A expression is also reduced in β-cells from T2D donors. Interestingly, HNF1A activity in single β-cells is significantly associated with lower Na+ currents and we nominate a HNF1A target, FXYD2, as the primary mitigator. Our study demonstrates the value of investigating disease-associated single-cell heterogeneity and provides new insights into the pathogenesis of T2D.
胰腺β细胞功能和形态的广泛异质性已被广泛报道。然而,确定这种细胞异质性的哪些成分具有与糖尿病相关的功能仍然具有挑战性。在这里,我们整合了来自人类胰岛的单细胞转录组、单核染色质可及性和细胞类型特异性的 3D 基因组图谱,并在转录组和表观基因组水平上鉴定了 2 型糖尿病(T2D)相关的β细胞异质性。我们开发了一种计算方法,可以明确区分单个β细胞之间的个体内和个体间异质性,这些异质性反映了 T2D 发病机制的不同机制。综合转录组和表观基因组分析将 HNF1A 确定为同一位点供体的β细胞之间个体内异质性的主要驱动因素;T2D 供体的β细胞中 HNF1A 的表达也降低了。有趣的是,单个β细胞中 HNF1A 的活性与较低的 Na+电流显著相关,我们将 HNF1A 的一个靶标 FXYD2 作为主要的缓解剂。我们的研究表明了研究与疾病相关的单细胞异质性的价值,并为 T2D 的发病机制提供了新的见解。