首页> 外文期刊>Molecular Neurobiology >Mitochondrial DNA mutation-elicited oxidative stress, oxidative damage, and altered gene expression in cultured cells of patients with MERRF syndrome.
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Mitochondrial DNA mutation-elicited oxidative stress, oxidative damage, and altered gene expression in cultured cells of patients with MERRF syndrome.

机译:线粒体DNA突变引起MERRF综合征患者培养细胞中的氧化应激,氧化损伤和基因表达改变。

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Myoclonic epilepsy and ragged-red fibers (MERRF) syndrome is a rare disorder characterized by myoclonus, muscle weakness, cerebellar ataxia, heart conduction block, and dementia. It has been documented that 80-90% of the patients with MERRF syndrome are caused by the A8344G mutation in the tRNA(Lys) gene of mitochondrial DNA (mtDNA). We and other investigators have reported that the mtDNA mutation results in not only inefficient generation of adenosine triphosphate but also increased production of reactive oxygen species (ROS) in cultured cells harboring A8344G mutation of mtDNA. In addition, we found an imbalance in the gene expression of antioxidant enzymes in the skin fibroblasts of MERRF patients. The mRNA, protein, and enzyme activity levels of manganese-superoxide dismutase were increased, but those of Cu,Zn-SOD, catalase, and glutathione peroxidase did not show significant changes. Recently, we showed that the excess ROS could damage voltage-dependent anion channel, prohibitin, Lon protease, and aconitase in the MERRF cells. Moreover, there was a dramatic increase in the gene expression and activity of matrix metalloproteinase 1, which may contribute to the cytoskeleton remodeling involved in the weakness and atrophy of muscle commonly seen in MERRF patients. Taken together, we suggest that mtDNA mutation-elicited oxidative stress, oxidative damage, and altered gene expression are involved in the pathogenesis and progression of MERRF syndrome.
机译:肌阵挛性癫痫和红衣纤维综合征(MERRF)综合征是一种罕见的疾病,其特征在于肌阵挛,肌肉无力,小脑性共济失调,心脏传导阻滞和痴呆。有文献证明,MERRF综合征的患者中80-90%是由线粒体DNA(mtDNA)的tRNA(Lys)基因中的A8344G突变引起的。我们和其他研究人员已经报道,mtDNA突变不仅导致三磷酸腺苷生成效率低下,而且还导致含有mtDNA A8344G突变的培养细胞中活性氧(ROS)的产生增加。此外,我们发现MERRF患者皮肤成纤维细胞中抗氧化酶的基因表达不平衡。锰超氧化物歧化酶的mRNA,蛋白质和酶活性水平增加,但是铜,锌超氧化物歧化酶,过氧化氢酶和谷胱甘肽过氧化物酶的mRNA,蛋白质和酶活性没有显示出显着变化。最近,我们发现过量的ROS可能会损坏MERRF细胞中的电压依赖性阴离子通道,禁止素,Lon蛋白酶和乌头酸酶。此外,基质金属蛋白酶1的基因表达和活性显着增加,这可能有助于参与MERRF患者常见的肌肉无力和萎缩的细胞骨架重塑。两者合计,我们建议mtDNA突变引起的氧化应激,氧化损伤和基因表达改变参与MERRF综合征的发病机制和进展。

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