Mitochondrial Research Group, Institute for Ageing and Health, Newcastle University, Newcastle-upon-Tyne, United Kingdom.
Invest Ophthalmol Vis Sci. 2010 Jul;51(7):3340-6. doi: 10.1167/iovs.09-4659. Epub 2010 Feb 17.
PURPOSE. Chronic progressive external ophthalmoplegia (CPEO) is a prominent, and often the only, presentation among patients with mitochondrial diseases. The mechanisms underlying the preferential involvement of extraocular muscles (EOMs) in CPEO were explored in a comprehensive histologic and molecular genetic study, to define the extent of mitochondrial dysfunction in EOMs compared with that in skeletal muscle from the same patient. METHODS. A well-characterized cohort of 13 CPEO patients harboring a variety of primary and secondary mitochondrial (mt)DNA defects was studied. Mitochondrial enzyme function was determined in EOM and quadriceps muscle sections with cytochrome c oxidase (COX)/succinate dehydrogenase (SDH) histochemistry, and the mutation load in single muscle fibers was quantified by real-time PCR and PCR-RFLP assays. RESULTS. CPEO patients with mtDNA deletions had more COX-deficient fibers in EOM (41.6%) than in skeletal muscle (13.7%, P > 0.0001), and single-fiber analysis revealed a lower mutational threshold for COX deficiency in EOM. Patients with mtDNA point mutations had a less severe ocular phenotype, and there was no significant difference in the absolute level of COX deficiency or mutational threshold between these two muscle groups. CONCLUSIONS. The more pronounced mitochondrial biochemical defect and lower mutational threshold in EOM compared with skeletal muscle fibers provide an explanation of the selective muscle involvement in CPEO. The data also suggest that tissue-specific mechanisms are involved in the clonal expansion and expression of secondary mtDNA deletions in CPEO patients with nuclear genetic defects.
慢性进行性眼外肌麻痹(CPEO)是线粒体疾病患者的一个突出表现,且通常是唯一的表现。在一项全面的组织学和分子遗传学研究中,我们探讨了导致 CPEO 中外眼肌(EOM)优先受累的机制,以确定与同一患者的骨骼肌相比,EOM 中线粒体功能障碍的程度。
研究了一组由 13 名患有各种原发性和继发性线粒体(mt)DNA 缺陷的 CPEO 患者组成的特征明确的队列。通过细胞色素 c 氧化酶(COX)/琥珀酸脱氢酶(SDH)组织化学测定 EOM 和股四头肌切片中的线粒体酶功能,并通过实时 PCR 和 PCR-RFLP 测定定量单根肌纤维中的突变负荷。
mtDNA 缺失的 CPEO 患者的 EOM 中 COX 缺陷纤维(41.6%)比骨骼肌(13.7%)多(P>0.0001),单纤维分析显示 EOM 中 COX 缺陷的突变阈值较低。mtDNA 点突变的患者眼部表型较轻,两组之间 COX 缺陷的绝对水平或突变阈值均无显着差异。
与骨骼肌纤维相比,EOM 中更明显的线粒体生化缺陷和较低的突变阈值为 CPEO 中外眼肌选择性受累提供了一种解释。这些数据还表明,在核基因缺陷的 CPEO 患者中,继发性 mtDNA 缺失的克隆扩增和表达涉及组织特异性机制。