Eye Institute, Affiliated Hospital of Nantong University, Nantong, China.
The Third People's Hospital of Changzhou, Changzhou, China.
FASEB J. 2019 Sep;33(9):10469-10476. doi: 10.1096/fj.201802291R. Epub 2019 Jun 27.
DNA damage in lens cells is considered a critical trigger for the onset of age-related cataracts (ARCs). Among DNA repair pathways, the base excision repair (BER) pathway is responsible for mending single-strand breaks in DNA. In this case-control study with 993 ARC cases and 993 healthy controls, we genotyped 9 single-nucleotide polymorphisms (SNPs) within microRNA (miRNA) regions of 6 BER pathway genes and examined their associations with ARC susceptibility. We identified rs4639:T > C in the Nei-like DNA glycosylase 2 () gene as significantly associated with ARCs. Individuals carrying different rs4639 alleles had distinct expression in lens capsule tissues from ARC cases and controls. Bioinformatics predicts that the rs4639 T allele could disrupt hsa-miR-3912-5p binding. The results of the luciferase reporter assay were in concordance with this prediction. This study has added more evidence that SNP-modified posttranscriptional gene regulation by miRNA might be a potential pathogenic mechanism of ARCs. SNPs potentially affecting miRNA binding to the 3'UTR of BER pathway genes could contribute to discrepant disease susceptibility. -rs4639T was strongly associated with a protective role in ARCs. This protective role might be fulfilled by maintaining normal expression of NEIL2 in the mediation of disrupted binding of rs4639T with hsa-miR-3912-5p. A further study to generate model systems (cell lines or animal models) with variants is warranted. The results provide 2 molecular targets (, and hsa-miR-3912-5p) for intervention strategies of ARC in the future.-Kang, L., Zou, X., Zhang, G., Xiang, J., Wang, Y., Yang, M., Chen, X., Wu, J., Guan, H. A variant in a microRNA binding site in NEIL2 3'UTR confers susceptibility to age-related cataract.
DNA 损伤在晶状体细胞中被认为是引发年龄相关性白内障 (ARC) 的关键触发因素。在 DNA 修复途径中,碱基切除修复 (BER) 途径负责修复 DNA 的单链断裂。在这项包含 993 例 ARC 病例和 993 名健康对照的病例对照研究中,我们对 6 个 BER 途径基因的 miRNA 区域内的 9 个单核苷酸多态性 (SNP) 进行了基因分型,并检查了它们与 ARC 易感性的关联。我们发现 Nei 样 DNA 糖基化酶 2 () 基因中的 rs4639:T > C 与 ARC 显著相关。携带不同 rs4639 等位基因的个体在 ARC 病例和对照的晶状体囊组织中具有不同的 表达。生物信息学预测 rs4639 T 等位基因可能破坏 hsa-miR-3912-5p 的结合。荧光素酶报告基因检测结果与这一预测一致。这项研究提供了更多证据表明,miRNA 修饰的 SNP 可能是 ARC 的潜在致病机制之一。可能影响 miRNA 与 BER 途径基因 3'UTR 结合的 SNPs 可能导致疾病易感性的差异。-rs4639T 与 ARC 的保护作用强烈相关。这种保护作用可能通过维持 NEIL2 的正常表达来实现,在 rs4639T 与 hsa-miR-3912-5p 结合被破坏的情况下,rs4639T 可以介导这种保护作用。进一步研究具有 变异的模型系统(细胞系或动物模型)是必要的。这些结果为未来 ARC 的干预策略提供了 2 个分子靶点(、和 hsa-miR-3912-5p)。-Kang, L., Zou, X., Zhang, G., Xiang, J., Wang, Y., Yang, M., Chen, X., Wu, J., Guan, H. A variant in a microRNA binding site in NEIL2 3'UTR confers susceptibility to age-related cataract.