Department of Cell Biology and Medical Genetics, School of Medicine Zhejiang University, Hangzhou, Zhejiang, China.
Department of Reproductive Genetics, Women's Hospital, School of Medicine Zhejiang University, Hangzhou, Zhejiang, China.
PLoS One. 2020 Apr 7;15(4):e0231115. doi: 10.1371/journal.pone.0231115. eCollection 2020.
Leber congenital amaurosis (LCA) is a group of severe congenital retinal diseases. Variants in the guanylate cyclase 2D gene (GUCY2D), which encodes guanylate cyclase 1 (ROS-GC1), are associated with LCA1 and account for 6%-21% of all LCA cases. In this study, one family with LCA1 was recruited from China. A combination of next generation sequencing and Sanger sequencing was used to screen for disease-causing mutations. We found three novel mutations (c.139delC, p.Ala49Profs*36; c.835G>A, p.Asp279Asn and c.2783G>A, p.Gly928Glu) in the GUCY2D gene. Proband III-2 carries mutations c.139delC and c.2783G>A, which are inherited from the heterozygous mutation carriers, II-2 (c.139delC) and II-3 (c.2783G>A) that possess c.139delC and c.2783G>A. Additionally, II-8 carries heterozygous mutation c.835G>A. Sanger sequencing was used to confirm the presence of the three novel mutations in other family members. Mutation c.139delC results in a truncated protein. Mutations c.835G>A and c.2783G>A significantly reduce the catalytic activity of ROS-GC1. Our findings highlight the gene variants range of LCA. Moreover, HPLC-coupled tandem mass spectrometry (HPLC-MS/MS) was used to analyze the concentration of 3',5'-cyclic guanosine monophosphate (cGMP), suggesting that HPLC-MS/MS is an effective alternative method to evaluate the catalytic activity of wild-type and mutant ROS-GC1.
Leber 先天性黑蒙(LCA)是一组严重的先天性视网膜疾病。鸟苷酸环化酶 2D 基因(GUCY2D)的变异与 LCA1 相关,该基因编码鸟苷酸环化酶 1(ROS-GC1),占所有 LCA 病例的 6%-21%。在这项研究中,我们从中国招募了一个 LCA1 家系。我们采用下一代测序和 Sanger 测序相结合的方法来筛选致病突变。我们在 GUCY2D 基因中发现了三个新的突变(c.139delC,p.Ala49Profs*36;c.835G>A,p.Asp279Asn 和 c.2783G>A,p.Gly928Glu)。先证者 III-2 携带突变 c.139delC 和 c.2783G>A,这两个突变分别遗传自杂合突变携带者 II-2(c.139delC)和 II-3(c.2783G>A),他们携带 c.139delC 和 c.2783G>A。此外,II-8 携带杂合突变 c.835G>A。我们使用 Sanger 测序来确认这三个新突变在其他家庭成员中的存在。突变 c.139delC 导致截短蛋白。突变 c.835G>A 和 c.2783G>A 显著降低 ROS-GC1 的催化活性。我们的研究结果强调了 LCA 的基因变异范围。此外,我们使用高效液相色谱-串联质谱法(HPLC-MS/MS)分析了 3',5'-环鸟苷酸(cGMP)的浓度,提示 HPLC-MS/MS 是评估野生型和突变型 ROS-GC1 催化活性的有效替代方法。