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首页> 外文期刊>Reproduction, fertility, and development >Mitochondria and the success of somatic cell nuclear transfer cloning: from nuclear-mitochondrial interactions to mitochondrial complementation and mitochondrial DNA recombination.
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Mitochondria and the success of somatic cell nuclear transfer cloning: from nuclear-mitochondrial interactions to mitochondrial complementation and mitochondrial DNA recombination.

机译:线粒体和体细胞核转移克隆的成功:从核-线粒体相互作用到线粒体互补和线粒体DNA重组。

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摘要

The overall success of somatic cell nuclear transfer (SCNT) cloning is rather unsatisfactory, both in terms of efficacy and from an animal health and welfare point of view. Most research activities have concentrated on epigenetic reprogramming problems as one major cause of SCNT failure. The present review addresses the limited success of mammalian SCNT from yet another viewpoint, the mitochondrial perspective. Mitochondria have a broad range of critical functions in cellular energy supply, cell signalling and programmed cell death and, thus, affect embryonic and fetal development, suggesting that inadequate or perturbed mitochondrial functions may adversely affect SCNT success. A survey of perinatal clinical data from human subjects with deficient mitochondrial respiratory chain activity has revealed a plethora of phenotypes that have striking similarities with abnormalities commonly encountered in SCNT fetuses and offspring. We discuss the limited experimental data on nuclear-mitochondrial interaction effects in SCNT and explore the potential effects in the context of new findings about the biology of mitochondria. These include mitochondrial fusion/fission, mitochondrial complementation and mitochondrial DNA recombination, processes that are likely to be affected by and impact on SCNT cloning. Furthermore, we indicate pathways that could link epigenetic reprogramming and mitochondria effects in SCNT and address questions and perspectives for future research.
机译:从功效以及从动物健康和福利的角度来看,体细胞核转移(SCNT)克隆的总体成功都不能令人满意。大多数研究活动都集中在表观遗传重编程问题上,这是SCNT失败的主要原因之一。本综述从线粒体的角度介绍了哺乳动物SCNT的有限成功。线粒体在细胞能量供应,细胞信号传导和程序性细胞死亡中具有广泛的关键功能,因此会影响胚胎和胎儿的发育,表明线粒体功能不足或受到干扰可能会对SCNT成功产生不利影响。一项来自线粒体呼吸链活性不足的人类受试者的围产期临床数据的调查显示,许多表型与SCNT胎儿和后代中常见的异常具有惊人的相似性。我们讨论了关于SCNT中核-线粒体相互作用效应的有限实验数据,并在有关线粒体生物学的新发现中探索了潜在的效应。这些包括线粒体融合/裂变,线粒体互补和线粒体DNA重组,这些过程可能会受到SCNT克隆的影响并对其产生影响。此外,我们指出了可以将表观遗传重编程和线粒体效应联系在一起的途径,并提出了未来研究的问题和观点。

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