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帕金森病中线粒体缺陷的线粒体DNA传递

Mitochondrial DNA transmission of the mitochondrial defect in Parkinson's disease.

作者信息

Gu M, Cooper J M, Taanman J W, Schapira A H

机构信息

University Department of Clinical Neurosciences, Royal Free Hospital School of Medicine, London, UK.

出版信息

Ann Neurol. 1998 Aug;44(2):177-86. doi: 10.1002/ana.410440207.

Abstract

Several groups have identified mitochondrial complex I deficiency in Parkinson's disease (PD) substantia nigra and in platelets. A search for any mitochondrial DNA (mtDNA) mutation underlying this defect has not yet produced any consistent result. We have made use of a mtDNA-less (p0) cell line to determine if the complex I deficiency follows the genomic transplantation of platelet mtDNA. From a preselected group of PD patients with low platelet complex I activity, 7 patients were used for detailed study. All 7 patients were used for mixed cybrid analysis and demonstrated a selective 25% deficiency of complex I activity. Individual clonal analysis of A549 p0/PD platelet fusion cybrids from 1 of the patients expressed combined complex I and IV deficiencies with 25% and 20% decreased activities in the PD clones, respectively. Histocytochemical, immunocytochemical, and cellular functional imaging studies of these clones showed the cells within the clones were heterogeneous with respect to cytochrome c oxidase (COX) function, COX I content, and mitochondrial respiratory chain activity. These results are in agreement with a previous study and support the proposition that an mtDNA abnormality may underlie the mitochondrial defect in at least a proportion of PD patients. This p0 technology may serve as a means to identify the subgroup of PD patients in whom an mtDNA defect may contribute to development of the disease.

摘要

多个研究小组已在帕金森病(PD)患者的黑质和血小板中发现线粒体复合体I缺陷。对导致该缺陷的任何线粒体DNA(mtDNA)突变的搜索尚未产生任何一致的结果。我们利用了一种无mtDNA(p0)细胞系来确定复合体I缺陷是否随血小板mtDNA的基因组移植而出现。从一组预先选定的血小板复合体I活性较低的PD患者中,选取了7名患者进行详细研究。所有7名患者均用于混合胞质杂种分析,结果显示复合体I活性选择性降低了25%。对其中1名患者的A549 p0/PD血小板融合胞质杂种进行的个体克隆分析表明,PD克隆中的复合体I和IV活性联合缺陷,活性分别降低了25%和20%。对这些克隆进行的组织细胞化学、免疫细胞化学和细胞功能成像研究表明,克隆内的细胞在细胞色素c氧化酶(COX)功能、COX I含量和线粒体呼吸链活性方面存在异质性。这些结果与先前的一项研究一致,并支持这样一种观点,即mtDNA异常可能是至少一部分PD患者线粒体缺陷的基础。这种p0技术可作为一种手段,用于识别mtDNA缺陷可能促成疾病发展的PD患者亚组。

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