Chakraborty Sudipta, Sarma Jyotishman, Roy Shantanu Saha, Mitra Sukanya, Bagchi Sayani, Das Sankhadip, Saha Sreemoyee, Mahapatra Surajit, Bhattacharjee Samsiddhi, Maulik Mahua, Acharya Moulinath
Biotechnology Research and Innovation Council-National Institute of Biomedical Genomics (BRIC-NIBMG), Kalyani, India.
Regional Centre for Biotechnology, Faridabad, India.
PLoS Genet. 2024 Dec 5;20(12):e1011502. doi: 10.1371/journal.pgen.1011502. eCollection 2024 Dec.
Primary angle closure glaucoma (PACG) affects more than 20 million people worldwide, with an increased prevalence in south-east Asia. In a prior haplotype-based Genome Wide Association Study (GWAS), we identified a novel CNTNAP5 genic region, significantly associated with PACG. In the current study, we have extended our perception of CNTNAP5 involvement in glaucomatous neurodegeneration in a zebrafish model, through investigating phenotypic consequences pertinent to retinal degeneration upon knockdown of cntnap5 by translation-blocking morpholinos. While cntnap5 knockdown was successfully validated using an antibody, immunofluorescence followed by western blot analyses in cntnap5-morphant (MO) zebrafish revealed increased expression of acetylated tubulin indicative of perturbed cytoarchitecture of retinal layers. Moreover, significant loss of Nissl substance is observed in the neuro-retinal layers of cntnap5-MO zebrafish eye, indicating neurodegeneration. Additionally, in spontaneous movement behavioural analysis, cntnap5-MO zebrafish have a significantly lower average distance traversed in light phase compared to mismatch-controls, whereas no significant difference was observed in the dark phase, corroborating with vision loss in the cntnap5-MO zebrafish. This study provides the first direct functional evidence of a putative role of CNTNAP5 in visual neurodegeneration.
原发性闭角型青光眼(PACG)在全球影响着超过2000万人,在东南亚地区的患病率呈上升趋势。在之前一项基于单倍型的全基因组关联研究(GWAS)中,我们鉴定出一个与PACG显著相关的新型接触蛋白相关蛋白5(CNTNAP5)基因区域。在当前研究中,我们通过研究翻译阻断吗啉代寡核苷酸敲低cntnap5后与视网膜变性相关的表型后果,扩展了对斑马鱼模型中CNTNAP5参与青光眼性神经变性的认识。虽然使用抗体成功验证了cntnap5的敲低,但在cntnap5基因敲降(MO)斑马鱼中进行免疫荧光然后蛋白质免疫印迹分析显示,乙酰化微管蛋白表达增加,表明视网膜层细胞结构受到干扰。此外,在cntnap5-MO斑马鱼眼睛的神经视网膜层中观察到尼氏物质显著丢失,表明存在神经变性。此外,在自发运动行为分析中,与错配对照组相比,cntnap5-MO斑马鱼在明相阶段平均游动距离显著更低,而在暗相阶段未观察到显著差异,这与cntnap5-MO斑马鱼的视力丧失情况相符。本研究提供了CNTNAP5在视觉神经变性中假定作用的首个直接功能证据。