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首页> 外文期刊>Stem Cells >Concise Review: Heteroplasmic Mitochondrial DNA Mutations and Mitochondrial Diseases: Toward iPSC-Based Disease Modeling, Drug Discovery, and Regenerative Therapeutics
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Concise Review: Heteroplasmic Mitochondrial DNA Mutations and Mitochondrial Diseases: Toward iPSC-Based Disease Modeling, Drug Discovery, and Regenerative Therapeutics

机译:简要评论:异质性线粒体DNA突变和线粒体疾病:基于iPSC的疾病建模,药物发现和再生疗法

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摘要

Mitochondria contain multiple copies of their own genome (mitochondrial DNA; mtDNA). Once mitochondria are damaged by mutant mtDNA, mitochondrial dysfunction is strongly induced, followed by symptomatic appearance of mitochondrial diseases. Major genetic causes of mitochondrial diseases are defects in mtDNA, and the others are defects of mitochondria-associating genes that are encoded in nuclear DNA (nDNA). Numerous pathogenic mutations responsible for various types of mitochondrial diseases have been identified in mtDNA; however, it remains uncertain why mitochondrial diseases present a wide variety of clinical spectrum even among patients carrying the same mtDNA mutations (e.g., variations in age of onset, in affected tissues and organs, or in disease progression and phenotypic severity). Disease-relevant induced pluripotent stem cells (iPSCs) derived from mitochondrial disease patients have therefore opened new avenues for understanding the definitive genotype-phenotype relationship of affected tissues and organs in various types of mitochondrial diseases triggered by mtDNA mutations. In this concise review, we briefly summarize several recent approaches using patient-derived iPSCs and their derivatives carrying various mtDNA mutations for applications in human mitochondrial disease modeling, drug discovery, and future regenerative therapeutics. Stem Cells2016;34:801-808
机译:线粒体包含其自身基因组(线粒体DNA; mtDNA)的多个副本。线粒体一旦被突变的mtDNA破坏,就会强烈诱导线粒体功能障碍,随后出现线粒体疾病的症状。线粒体疾病的主要遗传原因是mtDNA缺陷,其他是核DNA(nDNA)中编码的线粒体相关基因的缺陷。 mtDNA中已鉴定出多种导致各种线粒体疾病的致病突变。然而,即使线粒体疾病即使携带相同的mtDNA突变(例如,发病年龄,受影响的组织和器官中的疾病或疾病进展和表型严重性不同)的患者中,线粒体疾病仍会呈现出广泛的临床意义,这仍是不确定的。因此,源自线粒体疾病患者的与疾病相关的诱导性多能干细胞(iPSC)为了解由mtDNA突变触发的各种线粒体疾病中受影响的组织和器官的确定的基因型与表型关系开辟了新途径。在这篇简明的综述中,我们简要总结了几种使用源自患者的iPSC及其携带各种mtDNA突变的衍生物的最新方法,这些方法可用于人类线粒体疾病建模,药物发现和未来的再生疗法。干细胞2016; 34:801-808

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