Mitochondrial ND1 T4216C and ND2 C5178A mutations are associated with maternally transmitted diabetes mellitus.

Zhaochang Jiang, Lili Teng, Shunrong Zhang, Yu Ding
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引用次数: 15

Abstract

Mutations in mitochondrial DNA (mtDNA) are important causes for type 2 diabetes mellitus (T2DM). To investigate the association between mtDNA mutations/variants and diabetes, we reported here clinical, genetic and biochemical characterization of a Chinese pedigree with maternally transmitted T2DM. Using PCR and direct sequencing analysis of mitochondrial genomes from the matrilineal relatives, we identified two potential pathogenic mutations, m.T4216C (p.Y304H) and m.C5178A (p.L237M) in the ND1 and ND2 genes, respectively, together with a set of genetic polymorphisms belonging to the human mitochondrial haplogroup D4b. Moreover, by isolating and analyzing polymononuclear leukocytes generated from the T2DM patients and controls, we identified lower levels of mitochondrial membrane potential and ATP production in T2DM patients than in the controls, in contrast, a significantly higher level of reactive oxygen species was observed in the T2DM patients carrying both of the m.T4216C and m.C5178A mutations (p < 0.05 for all). In addition, the plasma levels of malondialdehyde and 8-hydroxydeoxyguanosine in the T2DM patients markedly increased, while the level of superoxide dismutase decreased (p < 0.05 for all). Taken together, our data indicated that the ND1 T4216C and ND2 C5178A mutations may lead to oxidative stress and impair the mitochondrial function, and this, in turn, might have been involved in the pathogenesis and progression of T2DM in this pedigree. Thus, our study provides novel insight into the pathophysiology of T2DM that is manifested by mitochondrial dysfunction.

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线粒体ND1 T4216C和ND2 C5178A突变与母体遗传的糖尿病有关。
线粒体DNA (mtDNA)突变是2型糖尿病(T2DM)的重要病因。为了研究mtDNA突变/变异体与糖尿病之间的关系,我们报告了一名母系遗传T2DM的中国家系的临床、遗传和生化特征。通过对母系亲属线粒体基因组的PCR和直接测序分析,我们分别在ND1和ND2基因中发现了两个潜在的致病突变,m.T4216C (p.Y304H)和m.C5178A (p.L237M),以及一组属于人类线粒体单倍群D4b的遗传多态性。此外,通过分离和分析T2DM患者和对照组产生的多核白细胞,我们发现T2DM患者的线粒体膜电位和ATP产生水平低于对照组,相反,携带m.T4216C和m.C5178A突变的T2DM患者的活性氧水平明显高于对照组(p.p ND1 T4216C和ND2 C5178A突变可能导致氧化应激和线粒体功能受损)。反过来,这可能与该家系中T2DM的发病和进展有关。因此,我们的研究为以线粒体功能障碍为表现的T2DM的病理生理学提供了新的见解。
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