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首页> 外文期刊>Neurology: Official Journal of the American Academy of Neurology >Mitochondrial dysfunction associated with a mutation in the Notch3 gene in a CADASIL family.
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Mitochondrial dysfunction associated with a mutation in the Notch3 gene in a CADASIL family.

机译:线粒体功能障碍有关CADASIL家庭Notch3基因的突变。

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BACKGROUND: Cerebral autosomal arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is characterized by recurrent subcortical ischemic strokes and dementia caused by mutations in the Notch3 gene. In Drosophila melanogaster, Notch signaling has a pleiotropic effect, affecting most tissues of the organism during development. OBJECTIVE: To characterize a potential mitochondrial dysfunction associated with mutations in the Notch3 gene. METHODS: Biochemical, histochemical, molecular, and genetic analyses were performed on muscle biopsy specimens and fibroblasts obtained from patients of a Spanish family with CADASIL. Additional biochemical and molecular analyses of the N(55e11) mutant of D. melanogaster were performed. RESULTS: In muscle biopsy specimens, a significant decrease was found in the activity of complex I (NADH [reduced form of nicotinamide adenine dinucleotide] dehydrogenase), and in one patient, histochemical analysis showed the presence of ragged-red fibers with abnormal cytochrome c oxidase staining. Reduced fibroblast activity of complex V (ATP synthase) was found. Supporting data on patients with CADASIL, it was found that the mutation N(55e11) in Drosophila decreases the activity of mitochondrial respiratory complexes I and V. CONCLUSIONS: Mitochondrial respiratory chain activity responds, directly or indirectly, to the Notch signaling pathway. Mitochondrial dysfunction in patients with CADASIL may be an epiphenomenon, but results of this study suggest that the pathophysiology of the disease could include a defect in oxidative phosphorylation.
机译:背景:脑常染色体动脉病皮层下梗死和脑白质病(CADASIL)特点是周期性的皮质下缺血性中风和痴呆Notch3基因的突变。腹,Notch信号有多效性的效果,影响组织的有机体在开发过程中。潜在的线粒体功能障碍Notch3基因的突变。生物化学、组织化学、分子基因分析进行肌肉活检从病人获得的标本和成纤维细胞一个西班牙家庭CADASIL。生化和分子分析N (55 e11)突变的d .腹执行。明显降低被发现的活动复杂的我(NADH(烟酰胺的形式腺嘌呤二核苷酸脱氢酶),在一个耐心,组织化学分析显示ragged-red纤维异常的存在细胞色素c氧化酶染色。活动的复杂V (ATP合酶)被发现。支持数据CADASIL患者,这是发现在果蝇突变N (55 e11)降低线粒体的活性呼吸配合物我和v .结论:线粒体呼吸链的活动反应,直接或间接,切口信号通路。CADASIL患者可能是一个附带现象,但本研究的结果表明疾病的病理生理学可能包括氧化磷酸化的缺陷。

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