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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Whole mitochondrial DNA variations in hippocampal surgical specimens and blood samples with high-throughput sequencing: A case of mesial temporal lobe epilepsy with hippocampal sclerosis
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Whole mitochondrial DNA variations in hippocampal surgical specimens and blood samples with high-throughput sequencing: A case of mesial temporal lobe epilepsy with hippocampal sclerosis

机译:高通量测序海马手术标本和血液样本中线粒体DNA的整体变异:一例中颞叶癫痫伴海马硬化

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Introduction: Hippocampal sclerosis is the most common lesion in patients with mesial temporal lobe epilepsy. Recently, there has been growing evidence on the involvement of mitochondria also in sporadic forms of epilepsy. In addition, it has been increasingly argued that mitochondrial dysfunction has an important role in epileptogenesis and seizure generation in temporal lobe epilepsy. Although mtDNA polymorphisms have been identified as potential risk factors for neurological diseases, the link between homoplasmy and heteroplasmy within tissues is not clear. We investigated whether mitochondrial DNA (mtDNA) polymorphisms are involved in a case report of a patient with mesial temporal lobe epilepsy-hippocampal sclerosis (MTLE-HS). Design: We report the whole genome mtDNA deep sequencing results and clinical features of a 36-year-old woman with MTLE-HS. We used pyrosequencing technology to sequence a whole mitochondrial genome isolated from six different regions of her brain and blood. To assess the possible role of mitochondrial DNA variations in affected tissues, we compared all specimens from different regions of the hippocampus and blood. Results: In total, 35 homoplasmic and 18 heteroplasmic variations have been detected in 6 different regions of the hippocampus and in blood samples. While the samples did not display any difference in homoplasmic variations, it has been shown that hippocampus regions contain more heteroplasmic variations than blood. The number of heteroplasmic variations was highest in the CA2 region of the brain and accumulated in ND2, ND4 and ND5 genes. Also, dentate and subiculum regions of the hippocampus had similar heteroplasmic variation profiles. Discussion: We present a new rare example of parallel mutation at 16223 position. Our case suggests that defects in mitochondrial function might be underlying the pathogenesis of seizures in temporal lobe epilepsy.
机译:简介:海马硬化是中颞叶癫痫患者最常见的病变。最近,越来越多的证据表明线粒体也参与了散发性癫痫。另外,越来越多的人认为线粒体功能障碍在颞叶癫痫的癫痫发生和癫痫发作的产​​生中起着重要作用。尽管mtDNA多态性已被确定为神经系统疾病的潜在危险因素,但组织内同质和异质之间的联系尚不清楚。我们调查了线粒体DNA(mtDNA)多态性是否参与中颞叶癫痫-海马硬化(MTLE-HS)患者的病例报告。设计:我们报告了一名36岁的MTLE-HS妇女的全基因组mtDNA深度测序结果和临床特征。我们使用焦磷酸测序技术对从她的大脑和血液的六个不同区域分离出的整个线粒体基因组进行了测序。为了评估线粒体DNA变异在受影响组织中的可能作用,我们比较了海马和血液不同区域的所有标本。结果:总共在海马的6个不同区域和血液样本中检测到35个同质变异和18个异质变异。尽管样品的同质变异没有表现出任何差异,但已显示海马区比血液包含更多的异质变异。异质变异的数量在大脑的CA2区最高,并累积在ND2,ND4和ND5基因中。此外,海马的齿状和下丘脑区域具有相似的异质变异特征。讨论:我们提出了一个在16223位发生平行突变的新罕例。我们的病例表明线粒体功能缺陷可能是颞叶癫痫发作的发病机制的基础。

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