Song Qiaoling, Zhang Yuchao, Zhang Minghui, Ma Xiaoli, Zhang Qianyue, Zhao Chenyang, Zhang Zhongwen, Zhao Huichen, Hu Wenchao, Zhang Xinxin, Ren Xiwen, An Ming, Yang Jinbo, Liu Yuantao
School of Medicine and Pharmacy, Ocean University of China, Qingdao, China.
Innovation Platform of Marine Drug Screening and Evaluation, Qingdao National Laboratory for Marine Science and Technology, Qingdao, China.
Front Genet. 2022 Aug 10;13:929049. doi: 10.3389/fgene.2022.929049. eCollection 2022.
Diabetic retinopathy (DR) is a common complication and the leading cause of blindness in patients with type 2 diabetes. DR has been shown to be closely correlated with blood glucose levels and the duration of diabetes. However, the onset and progression of DR also display clinical heterogeneity. We applied whole-exome sequencing and RNA-seq approaches to study the gene mutation and transcription profiles in three groups of diabetic patients with extreme clinical phenotypes in DR onset, timing, and disease progression, aiming to identify genetic variants that may play roles in the pathogenesis of DR. We identified 23 putatively pathogenic genes, and ingenuity pathway analysis of these mutated genes reveals their functional association with glucose metabolism, diabetic complications, neural system activity, and dysregulated immune responses. In addition, ten potentially protective genes were also proposed. These findings shed light on the mechanisms underlying the pathogenesis of DR and may provide potential targets for developing new strategies to combat DR.
糖尿病视网膜病变(DR)是2型糖尿病患者常见的并发症,也是导致失明的主要原因。研究表明,DR与血糖水平及糖尿病病程密切相关。然而,DR的发病和进展也表现出临床异质性。我们应用全外显子组测序和RNA测序方法,研究了三组在DR发病、发病时间和疾病进展方面具有极端临床表型的糖尿病患者的基因突变和转录谱,旨在鉴定可能在DR发病机制中起作用的基因变异。我们鉴定出23个可能致病的基因,对这些突变基因的 Ingenuity 通路分析揭示了它们与葡萄糖代谢、糖尿病并发症、神经系统活动和免疫反应失调的功能关联。此外,还提出了10个潜在的保护基因。这些发现揭示了DR发病机制的潜在机制,并可能为开发对抗DR的新策略提供潜在靶点。