A novel nonsense variant in MT-CO3 causes MELAS syndrome

异质性 细胞色素c氧化酶 乳酸性酸中毒 分子生物学 线粒体 线粒体肌病 先证者 突变 粒线体疾病 呼吸链 遗传学 无义突变 线粒体DNA 生物 错义突变 症候群 基因 生物化学
作者
Wei Wang,Yuan Sun,Yan Lin,Xuebi Xu,Dandan Zhao,Kunqian Ji,Wei Li,Yuying Zhao,Chuanzhu Yan
出处
期刊:Neuromuscular Disorders [Elsevier BV]
卷期号:31 (6): 558-565 被引量:11
标识
DOI:10.1016/j.nmd.2021.02.020
摘要

Abstract Both mitochondrial and nuclear gene mutations can cause cytochrome c oxidase (COX, complex Ⅳ) dysfunction, leading to mitochondrial diseases. Although numerous diseases caused by defects of the COX subunits or COX assembly factors have been documented, clinical cases directly related to mitochondrial cytochrome c oxidase subunit 3 gene (MT-CO3) mutations are relatively rare. Here, we report a 47-year-old female patient presented with mitochondrial encephalopathy, lactic acidosis, and stroke-like episodes (MELAS) syndrome. Muscle pathology revealed ragged-red fibres and remarkable COX-deficient muscle fibres. Muscle mitochondrial DNA sequencing analysis identified a novel MT-CO3 variant (m.9553G>A) that changed a highly conserved amino acid to a stop codon (p.Trp116*). This variant was heteroplasmic in multiple tissues, where the mutation load was 13% in oral epithelial cells, 89% in muscle samples, and not detectable in the peripheral blood lymphocytes. Single muscle fiber PCR analysis showed clear segregation of the mutation load with COX deficient fibres. Western blot analysis of the muscle samples revealed a significant decrease in the levels of COX1, COX2, COX3, COX4 and UQCRC2. COX respiration activity was remarkably reduced (58.84%) relative to the controls according to spectrophotometric assays. Taken together, our results indicated that this m.9553G>A variant may be responsible for the MELAS symdrome in the proband by affecting the stability and function of COX. The study expands the clinical and molecular spectrum of COX3-specific mitochondrial diseases.
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