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Pluripotency deficit in clones overcome by clone-clone aggregation: epigenetic complementation?

机译:多能性赤字克隆克服clone-clone聚合:表观遗传互补?

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Abnormal gene expression patterns in somatic cell clones and their attrition in utero are commonly considered a consequence of errors in nuclear reprogramming. We observe that mouse clone blastocysts have less than half the normal cell number, and that higher cell number correlates with correct expression of Oct4, a gene essential for peri-implantation development and embryonic pluripotency. To increase the cell number, we aggregated genetically identical clones at the 4-cell stage. Clone-clone aggregates did not form more blastocysts, but the majority expressed Oct4 normally and had higher rates of fetal and postnatal development. Fertilized blastocysts with low cell numbers, induced by removal of two blastomeres at the 4-cell stage, did not exhibit abnormal Oct4 expression, indicating that improved gene expression and post-implantation development of clone-clone aggregates is not a consequence of increased cell number. Rather, we propose that complementation of non-cell-autonomous defects of genetically identical, but epigenetically different, embryos results in improved gene expression in clone-clone aggregates.
机译:不正常的体细胞基因表达模式克隆及其磨损在子宫内一般认为核中的错误的结果重新编程。胚泡不到一半的正常细胞数量,更高的细胞数量有关用正确的表达Oct4,基因重要peri-implantation发展和胚胎多能性。聚合基因相同的克隆的4细胞阶段。更多的胚泡,但大多数Oct4表示正常,胎儿的几率更高产后发展。较低的细胞数量,由两个卵裂球4细胞阶段,没有展览Oct4异常表达,表明改进的基因表达和post-implantationclone-clone总量不是发展结果细胞数量的增加。提出的互补non-cell-autonomous缺陷基因相同,但epigenetically不同,胚胎在改进的基因表达的结果clone-clone总量。

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