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A chemical enucleation method for the transfer of mitochondrial DNA to ρ° cells

机译:线粒体DNA向ρ°细胞转移的化学去核方法

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摘要

The study of pathogenic mitochondrial DNA mutations has, in most cases, relied on the production of transmitochondrial cybrids. Although the procedure to produce such cybrids is well established, it is laborious and cumbersome. Moreover, the mechanical enucleation procedure is inefficient and different techniques have to be used depending on the adherence properties of the cell. To circumvent these difficulties, we developed a chemical enucleation method that can have wide applicability for the production of transmitochondrial cybrids. The method is based on the use of actinomycin D to render the nuclear genome transcription/replication inactive and unable to recover after treatment. Such treated cells are fused to cells devoid of mitochondrial DNA and selected for the presence of a functional oxidative phosphorylation system. Our results showed that 95% of the clones recovered by this procedure are true transmitochondrial cybrids. This method greatly facilitates the production of transmitochondrial cybrids, thereby increasing the number of mtDNA mutations and the recipient cell types that can be studied by this system.
机译:在大多数情况下,致病性线粒体DNA突变的研究依赖于线粒体杂种的产生。尽管产生这种杂种的程序已经很成熟,但它既费力又麻烦。而且,机械去核程序效率低下,并且必须根据细胞的粘附特性使用不同的技术。为了克服这些困难,我们开发了一种化学去核方法,该方法可广泛用于生产线粒体杂种。该方法基于使用放线菌素D来使核基因组转录/复制失活,并且在治疗后无法恢复。将这样处理的细胞与不含线粒体DNA的细胞融合,并针对功能性氧化磷酸化系统的存在进行选择。我们的结果表明,通过该程序回收的克隆中有95%是真正的线粒体杂种。该方法极大地促进了线粒体杂种的产生,从而增加了可通过该系统研究的mtDNA突变数和受体细胞类型。

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