Kollberg Gittan, Moslemi Ali-Reza, Lindberg Christopher, Holme Elisabeth, Oldfors Anders
Department of Pathology, Sahlgrenska University Hospital, Göteborg, Sweden.
J Neuropathol Exp Neurol. 2005 Feb;64(2):123-8. doi: 10.1093/jnen/64.2.123.
Mitochondrial DNA (mtDNA) mutations associated with rhabdomyolysis are rare but have been described in sporadic cases with mutations in the cytochrome b and cytochrome c oxidase (COX) genes and in 3 cases with tRNALeu mutation. We report a novel heteroplasmic G6708A nonsense mutation in the mtDNA COI gene encoding COX subunit I in a 30-year-old woman with muscle weakness, pain, fatigue, and one episode of rhabdomyolysis. Histochemical examination of muscle biopsy specimens revealed reduced COX activity in the majority of the muscle fibers (approximately 90%) and frequent ragged red fibers. Biochemical analysis showed a marked and isolated COX deficiency. Analysis of DNA extracted from single fibers revealed higher levels of the mutation in COX-deficient fibers (> 95%) compared with COX-positive fibers (1%-80%). The mutation was not detected in a skin biopsy, cultured myoblasts, or blood leukocytes. Nor was it identified in blood leukocytes from the asymptomatic mother, indicating a de novo mutation that arose after germ layer differentiation. Western blot analysis and immunohistochemical staining revealed that reduced levels of COX subunit I were accompanied by reduced levels of other mtDNA encoded subunits, as well as nuclear DNA encoded subunit IV, supporting the concept that COX subunit I is essential for the assembly of complex IV in the respiratory chain.
与横纹肌溶解相关的线粒体DNA(mtDNA)突变罕见,但在细胞色素b和细胞色素c氧化酶(COX)基因发生突变的散发病例以及3例tRNALeu突变病例中已有报道。我们报告了一名30岁女性,她患有肌肉无力、疼痛、疲劳以及一次横纹肌溶解发作,其mtDNA编码COX亚基I的COI基因中存在一种新的异质性G6708A无义突变。肌肉活检标本的组织化学检查显示,大多数肌纤维(约90%)的COX活性降低,且常见破碎红纤维。生化分析显示存在明显且孤立的COX缺乏。对从单根纤维提取的DNA分析表明,与COX阳性纤维(1%-80%)相比,COX缺陷纤维中的突变水平更高(>95%)。在皮肤活检、培养的成肌细胞或血液白细胞中未检测到该突变。在无症状母亲的血液白细胞中也未发现该突变,这表明该突变是在胚层分化后出现的新发突变。蛋白质免疫印迹分析和免疫组织化学染色显示,COX亚基I水平降低伴随着其他mtDNA编码亚基以及核DNA编码亚基IV水平的降低,这支持了COX亚基I对于呼吸链中复合物IV组装至关重要的观点。