Key Laboratory of Laboratory Medicine, Ministry of Education, Zhejiang Provincial Key Laboratory of Medical Genetics, School of Laboratory Medicine and Life sciences, Wenzhou Medical University, Wenzhou, 325035, Zhejiang, China.
International Sakharov Environmental Institute of Belarusian State University, Minsk, 220070, Republic of Belarus.
J Hum Genet. 2024 Aug;69(8):381-389. doi: 10.1038/s10038-024-01254-5. Epub 2024 May 10.
Mitochondrial diseases are a group of genetic diseases caused by mutations in mitochondrial DNA and nuclear DNA. However, the genetic spectrum of this disease is not yet complete. In this study, we identified a novel variant m.4344T>C in mitochondrial tRNA from a patient with developmental delay. The mutant loads of m.4344T>C were 95% and 89% in the patient's blood and oral epithelial cells, respectively. Multialignment analysis showed high evolutionary conservation of this nucleotide. TrRosettaRNA predicted that m.4344T>C variant would introduce an additional hydrogen bond and alter the conformation of the T-loop. The transmitochondrial cybrid-based study demonstrated that m.4344T>C variant impaired the steady-state level of mitochondrial tRNA and decreased the contents of mitochondrial OXPHOS complexes I, III, and IV, resulting in defective mitochondrial respiration, elevated mitochondrial ROS production, reduced mitochondrial membrane potential and decreased mitochondrial ATP levels. Altogether, this is the first report in patient carrying the m.4344T>C variant. Our data uncover the pathogenesis of the m.4344T>C variant and expand the genetic mutation spectrum of mitochondrial diseases, thus contributing to the clinical diagnosis of mitochondrial tRNA gene variants-associated mitochondrial diseases.
线粒体疾病是一组由线粒体 DNA 和核 DNA 突变引起的遗传疾病。然而,这种疾病的遗传谱尚不完全。在这项研究中,我们从一名发育迟缓的患者中鉴定出线粒体 tRNA 中的新型变异 m.4344T>C。患者血液和口腔上皮细胞中的 m.4344T>C 突变负荷分别为 95%和 89%。多序列比对分析表明该核苷酸具有高度的进化保守性。TrRosettaRNA 预测 m.4344T>C 变体将引入额外的氢键并改变 T 环的构象。基于传递线粒体杂种的研究表明,m.4344T>C 变体损害了线粒体 tRNA 的稳态水平,并降低了线粒体 OXPHOS 复合物 I、III 和 IV 的含量,导致线粒体呼吸缺陷、线粒体 ROS 产生增加、线粒体膜电位降低和线粒体 ATP 水平降低。总之,这是首例携带 m.4344T>C 变体的患者报告。我们的数据揭示了 m.4344T>C 变体的发病机制,并扩展了线粒体疾病的遗传突变谱,从而有助于线粒体 tRNA 基因变体相关线粒体疾病的临床诊断。