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Comparable Frequencies of Coding Mutations and Loss of Imprinting in Human Pluripotent Cells Derived by Nuclear Transfer and Defined Factors

机译:通过核转移和确定的因素在人类多能细胞中编码突变和印迹损失的可比频率

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The recent finding that reprogrammed human pluripotent stem cells can be derived by nuclear transfer into human oocytes as well as by induced expression of defined factors has revitalized the debate on whether one approach might be advantageous over the other. Here we compare the genetic and epige-netic integrity of human nuclear-transfer embryonic stem cell (NT-ESC) lines and isogenic induced pluripotent stem cell (iPSC) lines, derived from the same somatic cell cultures of fetal, neonatal, and adult origin. The two cell types showed similar genome-wide gene expression and DNA methylation profiles. Importantly, NT-ESCs and iPSCs had comparable numbers of de novo coding mutations, but significantly more than parthenogenetic ESCs. As iPSCs, NT-ESCs displayed clone- and gene-specific aberrations in DNA methylation and allele-specific expression of imprinted genes. The occurrence of these genetic and epigenetic defects in both NT-ESCs and iPSCs suggests that they are inherent to reprog-ramming, regardless of derivation approach.
机译:最近的发现是,通过对人卵母细胞进行核转移以及定义因子的诱导表达,可以重新编程人多能干细胞,这使人们对一种方法是否比另一种方法更具优势的争论更加活跃。在这里,我们比较了人类的核移植胚胎干细胞(NT-ESC)系和同基因诱导的多能干细胞(iPSC)系的遗传和表观完整性,这些系来自胎儿,新生儿和成人的相同体细胞培养。两种细胞类型显示出相似的全基因组基因表达和DNA甲基化谱。重要的是,NT-ESC和iPSC具有相当数量的从头编码突变,但明显多于孤雌生殖ESC。作为iPSC,NT-ESC在DNA甲基化和印迹基因的等位基因特异性表达中表现出克隆和基因特异性畸变。在NT-ESC和iPSC中,这些遗传和表观遗传缺陷的发生表明,无论衍生方法如何,它们都是重组编程固有的。

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