Key Laboratory of Human Functional Genomics of Jiangsu Province, Nanjing Medical University, Nanjing, Jiangsu, China.
The State Key Laboratory of Pharmaceutical Biotechnology, Nanjing University, Nanjing, Jiangsu, China.
Diabetes. 2020 May;69(5):940-953. doi: 10.2337/db19-1060. Epub 2020 Feb 21.
Inadequate insulin secretion in response to glucose is an important factor for β-cell failure in type 2 diabetes (T2D). Although HMG-CoA reductase degradation 1 (HRD1), a subunit of the endoplasmic reticulum-associated degradation complex, plays a pivotal role in β-cell function, HRD1 elevation in a diabetic setting contributes to β-cell dysfunction. We report in this study the excessive HRD1 expression in islets from humans with T2D and T2D mice. Functional studies reveal that β-cell-specific HRD1 overexpression triggers impaired insulin secretion that will ultimately lead to severe hyperglycemia; by contrast, HRD1 knockdown improves glucose control and response in diabetic models. Proteomic analysis results reveal a large HRD1 interactome, which includes v-maf musculoaponeurotic fibrosarcoma oncogene homolog A (MafA), a master regulator of genes implicated in the maintenance of β-cell function. Furthermore, mechanistic assay results indicate that HRD1 is a novel E3 ubiquitin ligase that targets MafA for ubiquitination and degradation in diabetic β-cells, resulting in cytoplasmic accumulation of MafA and in the reduction of its biological function in the nucleus. Our results not only reveal the pathological importance of excessive HRD1 in β-cell dysfunction but also establish the therapeutic importance of targeting HRD1 in order to prevent MafA loss and suppress the development of T2D.
葡萄糖刺激下胰岛素分泌不足是 2 型糖尿病(T2D)β 细胞衰竭的一个重要因素。尽管内质网相关降解复合物的亚基羟甲基戊二酰基辅酶 A 还原酶降解 1(HRD1)在β细胞功能中发挥着关键作用,但在糖尿病环境中 HRD1 的升高导致β细胞功能障碍。我们在这项研究中报告了 T2D 患者和 T2D 小鼠胰岛中 HRD1 的过度表达。功能研究表明,β细胞特异性 HRD1 过表达会触发胰岛素分泌受损,最终导致严重的高血糖;相比之下,HRD1 敲低可改善糖尿病模型中的葡萄糖控制和反应。蛋白质组学分析结果揭示了一个庞大的 HRD1 相互作用组,其中包括 v-maf 肌肉腱膜纤维肉瘤癌基因同源物 A(MafA),它是维持β细胞功能的基因的主要调节因子。此外,机制测定结果表明,HRD1 是一种新型的 E3 泛素连接酶,可靶向 MafA 进行泛素化和降解,导致 MafA 在细胞质中的积累,并降低其在核中的生物学功能。我们的研究结果不仅揭示了 HRD1 在β细胞功能障碍中的病理重要性,还确立了靶向 HRD1 的治疗重要性,以防止 MafA 丢失并抑制 T2D 的发展。