异质性
线粒体DNA
生物
人类线粒体遗传学
线粒体
遗传学
基因组
非孟德尔遗传
粒线体疾病
计算生物学
基因
人类基因组
作者
N. A. Verechshagina,Natalia Nikitchina,Yuma Yamada,N Harashima,Masashi Tanaka,Кonstantin E. Orishchenko,Ilya Mazunin
标识
DOI:10.1080/24701394.2018.1472773
摘要
ATP and other metabolites, which are necessary for the development, maintenance, and functioning of bodily cells are all synthesized in the mitochondria. Multiple copies of the genome, present within the mitochondria, together with its maternal inheritance, determine the clinical manifestation and spreading of mutations in mitochondrial DNA (mtDNA). The main obstacle in the way of thorough understanding of mitochondrial biology and the development of gene therapy methods for mitochondrial diseases is the absence of systems that allow to directly change mtDNA sequence. Here, we discuss existing methods of manipulating the level of mtDNA heteroplasmy, as well as the latest systems, that could be used in the future as tools for human mitochondrial genome editing.
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