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Reprogramming Efficiency Following Somatic Cell Nuclear Transfer Is Influenced by the Differentiation and Methylation State of the Donor Nucleus

机译:体细胞核转移后的重编程效率受供体核的分化和甲基化状态影响。

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摘要

Reprogramming of a differentiated cell nucleus by somatic cell nuclear transplantation is an inefficient process. Following nuclear transfer, the donor nucleus often fails to express early embryonic genes and establish a normal embryonic pattern of chromatin modifications. These defects correlate with the low number of cloned embryos able to produce embryonic stem cells or develop into adult animals. Here, we show that the differentiation and methylation state of the donor cell influence the efficiency of genomic reprogramming. First, neural stem cells, when used as donors for nuclear transplantation, produce embryonic stem cells at a higher efficiency than blastocysts derived from terminally differentiated neuronal donor cells, demonstrating a correlation between the state of differentiation and cloning efficiency. Second, using a hypomorphic allele of DNA methyl-transferase-1, we found that global hypomethylation of a differentiated cell genome improved cloning efficiency. Our results provide functional evidence that the differentiation and epigenetic state of the donor nucleus influences reprogramming efficiency.
机译:通过体细胞核移植对分化的细胞核进行重编程是效率低下的过程。核转移后,供体核通常无法表达早期胚胎基因,无法建立染色质修饰的正常胚胎模式。这些缺陷与能够产生胚胎干细胞或发育为成年动物的克隆胚胎数量少有关。在这里,我们表明供体细胞的分化和甲基化状态影响基因组重编程的效率。首先,神经干细胞用作核移植的供体时,其胚胎干细胞的产生效率要高于衍生自终末分化神经元供体细胞的胚泡,从而证明了分化状态与克隆效率之间的相关性。其次,使用DNA甲基转移酶-1的亚等位基因,我们发现分化细胞基因组的整体亚甲基化可提高克隆效率。我们的结果提供了功能性证​​据,证明供体核的分化和表观遗传状态会影响重编程效率。

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