Qianyun Cai, Haijiao Wang, Rong Luo, Xiao Qian, Zhongjie Zhou
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引用次数: 0
摘要
线粒体复合体IV(细胞色素c氧化酶,COX)对氧化磷酸化至关重要,COX相关基因的致病变异,如COX 6a1,与神经肌肉疾病有关。虽然隐性COX6A1变异与沙科-玛丽-图斯病(CMT)有关,但表型谱和分子机制仍不完全清楚。在这里,我们报告了一个2- 4个月大的女孩,她表现为整体发育迟缓,轴突CMT疾病和乳酸水平升高。WES发现了一个罕见的纯合COX6A1变异(NM_004373.4: c.329 a > T, p.110Leuext41),该变异在种群数据库中不存在。这种变体比野生型蛋白质长41个氨基酸。功能分析显示突变蛋白水平显著降低(p
A novel homozygous COX6A1 variant causes axonal charcot-marie-tooth disease, developmental delays and mitochondrial dysfunction.
Mitochondrial complex IV (cytochrome c oxidase, COX) is essential for oxidative phosphorylation, and pathogenic variants of COX-related genes, such as COX6A1, are associated with neuromuscular disorders. While recessive COX6A1 variants are linked to Charcot-Marie-Tooth disease (CMT), the phenotypic spectrum and molecular mechanism remain incompletely understood. Here we report a 2-year-4-month-old girl who presented with global developmental delay, axonal CMT disease, and elevated lactate levels. WES revealed a rare homozygous COX6A1 variant (NM_004373.4: c.329 A > T, p.110Leuext41) that is absent in population databases. This variant is 41 amino acids longer than the wild-type protein. Functional assays demonstrated significantly reduced mutant protein levels (p < 0.01), supporting the pathogenicity of this mutation. The patient experienced rapid decompensation and died following febrile illness at the age of 3.5 years. This study revealed a novel pathogenic COX6A1 variant that causes developmental delay and mitochondrial dysfunction, highlighting stop-loss mutations as a mechanism of disease. We report the first COX6A1 stop-loss variant, and our findings expand the phenotypic and genetic spectrum of COX6A1-related disorders.
期刊介绍:
The Journal of Human Genetics is an international journal publishing articles on human genetics, including medical genetics and human genome analysis. It covers all aspects of human genetics, including molecular genetics, clinical genetics, behavioral genetics, immunogenetics, pharmacogenomics, population genetics, functional genomics, epigenetics, genetic counseling and gene therapy.
Articles on the following areas are especially welcome: genetic factors of monogenic and complex disorders, genome-wide association studies, genetic epidemiology, cancer genetics, personal genomics, genotype-phenotype relationships and genome diversity.