首页> 外文期刊>International Journal of Alzheimer’s Disease >Novel Point Mutations and A8027G Polymorphism in Mitochondrial-DNA-Encoded Cytochrome c Oxidase II Gene in Mexican Patients with Probable Alzheimer Disease
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Novel Point Mutations and A8027G Polymorphism in Mitochondrial-DNA-Encoded Cytochrome c Oxidase II Gene in Mexican Patients with Probable Alzheimer Disease

机译:墨西哥阿尔茨海默氏病患者线粒体DNA编码的细胞色素c氧化酶II基因中的新型点突变和A8027G多态性

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Mitochondrial dysfunction has been thought to contribute to Alzheimer disease (AD) pathogenesis through the accumulation of mitochondrial DNA mutations and net production of reactive oxygen species (ROS). Mitochondrial cytochrome c-oxidase plays a key role in the regulation of aerobic production of energy and is composed of 13 subunits. The 3 largest subunits (I, II, and III) forming the catalytic core are encoded by mitochondrial DNA. The aim of this work was to look for mutations in mitochondrial cytochrome c-oxidase gene II (MTCO II) in blood samples from probable AD Mexican patients. MTCO II gene was sequenced in 33 patients with diagnosis of probable AD. Four patients (12%) harbored the A8027G polymorphism and three of them were early onset (EO) AD cases with familial history of the disease. In addition, other four patients with EOAD had only one of the following point mutations A8003C, T8082C, C8201T, or G7603A. Neither of the point mutations found in this work has been described previously for AD patients, and the A8027G polymorphism has been described previously; however, it hasn’t been related to AD. We will need further investigation to demonstrate the role of the point mutations of mitochondrial DNA in the pathogenesis of AD.
机译:线粒体功能障碍被认为是通过线粒体DNA突变的积累和活性氧(ROS)的净产生而导致阿尔茨海默病(AD)发病机理的。线粒体细胞色素c-氧化酶在有氧能量生产的调节中起关键作用,由13个亚基组成。形成催化核心的3个最大的亚基(I,II和III)由线粒体DNA编码。这项工作的目的是在可能来自AD墨西哥患者的血液样本中寻找线粒体细胞色素c-氧化酶基因II(MTCO II)的突变。对33例诊断为AD的患者进行了MTCO II基因测序。 4例患者(占12%)具有A8027G多态性,其中3例为具有家族病史的早发(EO)AD病例。此外,其他四名EOAD患者仅具有以下点突变之一:A8003C,T8082C,C8201T或G7603A。先前没有针对AD患者描述过这项工作中发现的任何点突变,并且先前已经描述了A8027G多态性。但是,它与广告无关。我们将需要进一步的研究,以证明线粒体DNA的点突变在AD的发病机理中的作用。

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