Retinal cone dystrophy (COD) is an inherited retinal disease characterized by reduced central vision, color vision defects and photophobia, resulting from the degeneration of photoreceptors in cone cells, and commonly occurs due to mutations in cyclic nucleotide-gated channel subunit α 3 (CNGA3). CNGA3 mutations are associated exclusively with autosomal recessive retinal disorders, requiring homozygous or compound heterozygous mutations for pathogenicity. In the present study, whole-exome sequencing was performed on a 9-year-old girl diagnosed with COD and her parents, which identified a compound heterozygous CNGA3 mutation in the proband. The previously reported c.C1001T:p.S334F variant was inherited from her mother and a novel frameshift mutation, c.566_567insT:p.R189fs, was inherited from her father. Further analysis identified that the p.S334F mutation affects a conserved residue in the ion-transport (ion-trans) structural domain, while the frameshift mutation p.R189fs introduces a premature stop codon at position 194, resulting in a truncated protein that retains only the ion-trans structural domain and lacks the cysteine-rich CAP domain-extended domain and cyclic nucleotide-gated ligand-binding zinc finger-like domain. Through ectopic expression in 293T cells and western blotting, p.S334F mutated CNGA3 was observed to increase CNGA3 protein levels, while the p.R189fs mutation produced a truncated protein. These findings suggest that both mutations compromise normal CNGA3 channel function and are likely to contribute to the disease pathogenesis.
Novel compound heterozygous CNGA3 mutation associated with retinal cone dystrophy.
与视网膜锥体营养不良相关的新型复合杂合 CNGA3 突变
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作者:Sun Rui, Wang Yao, Zhou Wentao, Chen Shujian, Li Yafei, Pan Meng, Ji Dandan, Li Jin, Shi Xuefeng
| 期刊: | Experimental and Therapeutic Medicine | 影响因子: | 2.300 |
| 时间: | 2025 | 起止号: | 2025 Jun 10; 30(2):155 |
| doi: | 10.3892/etm.2025.12905 | 研究方向: | 其它 |
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