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首页> 外文期刊>Cell stem cell >Genetic Drift Can Compromise Mitochondrial Replacement by Nuclear Transfer in Human Oocytes
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Genetic Drift Can Compromise Mitochondrial Replacement by Nuclear Transfer in Human Oocytes

机译:遗传漂移可以损害人类卵母细胞中核转移的线粒体置换。

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摘要

Replacement of mitochondria through nuclear transfer between oocytes of two different women has emerged recently as a strategy for preventing inheritance of mtDNA diseases. Although experiments in human oocytes have shown effective replacement, the consequences of small amounts of mtDNA carryover have not been studied sufficiently. Using human mitochondrial replacement stem cell lines, we show that, even though the low levels of heteroplasmy introduced into human oocytes by mitochondrial carryover during nuclear transfer often vanish, they can sometimes instead result in mtDNA genotypic drift and reversion to the original genotype. Comparison of cells with identical oocyte-derived nuclear DNA but different mtDNA shows that either mtDNA genotype is compatible with the nucleus and that drift is independent of mitochondrial function. Thus, although functional replacement of the mitochondrial genome is possible, even low levels of heteroplasmy can affect the stability of the mtDNA genotype and compromise the efficacy of mitochondrial replacement.
机译:作为防止mtDNA疾病遗传的策略,最近已经出现了通过两名女性卵母细胞之间的核转移来替代线粒体的方法。尽管在人类卵母细胞中的实验显示出有效的替代作用,但尚未充分研究少量mtDNA残留的后果。使用人线粒体替代干细胞系,我们显示,即使在核移植过程中由线粒体残留带入人卵母细胞的异源性水平较低,通常也会消失,但有时它们有时会导致mtDNA基因型漂移并回复到原始基因型。比较具有相同卵母细胞来源的核DNA但具有不同mtDNA的细胞,结果表明mtDNA的基因型与细胞核兼容,并且漂移与线粒体功能无关。因此,尽管可以进行线粒体基因组的功能置换,但即使是低水平的异质性也可能影响mtDNA基因型的稳定性并损害线粒体置换的功效。

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