Arpit Mishra, Ajay Jajodia, Eryn Weston, N. Jayavelu, Mariana Garcia, Daniel Hossack, R. D. Hawkins
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引用次数: 0
摘要
I 型糖尿病是一种由 T 细胞破坏胰岛β细胞介导的自身免疫性疾病。目前还没有已知的治愈方法,治疗方法包括每天注射胰岛素。全基因组关联研究和双胞胎研究表明,I 型糖尿病具有很强的遗传性,并与多个基因有关。由于大多数强相关变异都是非编码变异,因此仍然缺乏对功能性变异的鉴定,因此也可能缺乏对成因变异的鉴定。鉴于这些基因变异中有许多位于增强子元件中,我们测试了 121 个与 T1D 相关的 CD4+ T 细胞增强子变异。通过大规模并行报告实验,我们发现其中四个具有功能性。其中三个增强子变体削弱了活性,而第四个增强子变体则增强了活性。我们利用三维基因组结构或 eQTL 数据将这些变异与它们的同源基因联系起来,并利用 CRISPR 编辑技术对它们进行验证。经过验证的靶基因包括 CLEC16A 和 SOCS1。虽然这些基因以前曾与 1 型糖尿病和其他自身免疫性疾病有关,但我们发现控制这些基因表达的增强子存在功能变异。因此,这些变体可能是 1 型糖尿病的致病变体。
Identification of functional enhancer variants associated with type I diabetes in CD4+ T cells
Type I diabetes is an autoimmune disease mediated by T-cell destruction of β cells in pancreatic islets. Currently, there is no known cure, and treatment consists of daily insulin injections. Genome-wide association studies and twin studies have indicated a strong genetic heritability for type I diabetes and implicated several genes. As most strongly associated variants are noncoding, there is still a lack of identification of functional and, therefore, likely causal variants. Given that many of these genetic variants reside in enhancer elements, we have tested 121 CD4+ T-cell enhancer variants associated with T1D. We found four to be functional through massively parallel reporter assays. Three of the enhancer variants weaken activity, while the fourth strengthens activity. We link these to their cognate genes using 3D genome architecture or eQTL data and validate them using CRISPR editing. Validated target genes include CLEC16A and SOCS1. While these genes have been previously implicated in type 1 diabetes and other autoimmune diseases, we show that enhancers controlling their expression harbor functional variants. These variants, therefore, may act as causal type 1 diabetic variants.