[线粒体DNA突变及其与神经肌肉疾病的关系]。

V Wunderlich
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引用次数: 0

摘要

根据目前的知识,线粒体DNA (mtDNA)的突变与50年前由Graffi创立的线粒体致癌理论有关,似乎参与了细胞的恶性转化,尽管尚未提供明确的证据。然而,正如最近阐明的那样,不同类别的mtDNA突变(其中包括点突变、缺失和重复)与一些人类线粒体疾病,特别是神经肌肉疾病之间存在明确的关联。这些疾病包括利伯氏遗传性视神经病变,卡恩斯-塞尔综合征和两种脑肌病,简称为MERRF和MELAS综合征。mtDNA的不同改变,虽然是可变的,但可以分配到mtDNA遗传图谱上的定义位置。mtDNA的点突变似乎优先与母系遗传疾病一起发生。虽然到目前为止获得的结果主要是在认知理论方面,但它们为分子诊断、遗传咨询和可能更有效地治疗上述疾病的发展提供了新的刺激。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Mutations of mitochondrial DNA and their relation to neuromuscular diseases].

According to present knowledge, mutations of mitochondrial DNA (mtDNA), implicated in the mitochondrial theory of carcinogenesis that had been inaugurated 50 years ago by Graffi, appear to be involved in malignant transformation of cells, although no definite evidence has been provided, as yet. However, as very recently elucidated, a clear-cut association exists between different classes of mutations of mtDNA (among them point mutations, deletions and duplications) and some human mitochondriopathies, particularly neuromuscular diseases. These include Leber's hereditary optic neuropathy, the Kearns-Sayre syndrome and two encephalomyopathies known by the acronyms MERRF and MELAS syndrome. The different alterations of mtDNA, though variable, can be assigned to defined positions on the genetic map of mtDNA. Point mutations of mtDNA seem to occur preferentially in conjunction with maternally inherited disorders. Although the results obtained so far are of interest mainly in terms of cognitive theory they provide new stimuli for the development of molecular diagnosis, genetic counselling and possibly for more effective treatment of the above diseases.

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