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一名帕金森病患者细胞色素b基因的框外缺失与复合物III组装受损及自由基产生增加有关。

An out-of-frame cytochrome b gene deletion from a patient with parkinsonism is associated with impaired complex III assembly and an increase in free radical production.

作者信息

Rana M, de Coo I, Diaz F, Smeets H, Moraes C T

机构信息

Department of Neurology, University of Miami, School of Medicine, FL 33136, USA.

出版信息

Ann Neurol. 2000 Nov;48(5):774-81.

Abstract

We have isolated transmitochondrial cybrids containing a mitochondrial DNA cytochrome b 4-base pair deletion previously identified in a patient with parkinsonism. This presentation is in contrast to that of most patients with cytochrome b mutations, who present with exercise intolerance. Clones containing different levels of the cytochrome b 4-base pair deletion showed that high levels of the mutation were associated with a respiratory deficiency and a specific complex III defect. Newly synthesized full-length cytochrome b was undetectable by metabolic labeling of mutant cells, and these cells were unable to grow in media that restricts proliferation of cells with defective oxidative phosphorylation. Steady state levels of some subunits previously found to be in close association with cytochrome b by crystallography and biochemical analysis (ie, Rieske [2Fe-2S] protein and subunit VI) were drastically reduced in clones containing high levels of the mutation, whereas the reduction in the core-1 subunit was milder. The absence of cytochrome b and complex III activity was also associated with increased hydrogen peroxide production. These findings, together with the variable tissue distribution of pathogenic mitochondrial DNA molecules, provide clues to the heterogeneous phenotypes associated with mitochondrial DNA mutations and establish a link between different forms of parkinsonism and oxidative phosphorylation defects.

摘要

我们已经分离出了含有线粒体DNA细胞色素b 4碱基对缺失的线粒体杂交细胞,该缺失先前在一名帕金森病患者中被鉴定出。这一表现与大多数细胞色素b突变患者不同,后者表现为运动不耐受。含有不同水平细胞色素b 4碱基对缺失的克隆显示,高突变水平与呼吸缺陷和特定的复合物III缺陷相关。通过对突变细胞进行代谢标记,无法检测到新合成的全长细胞色素b,并且这些细胞无法在限制氧化磷酸化缺陷细胞增殖的培养基中生长。先前通过晶体学和生化分析发现与细胞色素b密切相关的一些亚基(即 Rieske [2Fe-2S] 蛋白和亚基VI)的稳态水平在含有高突变水平的克隆中大幅降低,而核心1亚基的降低则较为轻微。细胞色素b和复合物III活性的缺失还与过氧化氢产生增加有关。这些发现,连同致病性线粒体DNA分子的可变组织分布,为与线粒体DNA突变相关的异质性表型提供了线索,并在不同形式的帕金森病和氧化磷酸化缺陷之间建立了联系。

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