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首页> 外文期刊>Nucleus >H3.3 replacement facilitates epigenetic reprogramming of donor nuclei in somatic cell nuclear transfer embryos
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H3.3 replacement facilitates epigenetic reprogramming of donor nuclei in somatic cell nuclear transfer embryos

机译:H3.3替换促进体细胞核移植胚胎中供体核的表观遗传重编程

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Transfer of a somatic nucleus into an enucleated oocyte is the most efficient approach for somatic cell reprogramming. While this process is known to involve extensive chromatin remodeling of the donor nucleus, the maternal factors responsible and the underlying chromatin-based mechanisms remain largely unknown. Here we discuss our recent findings demonstrating that the histone variant H3.3 plays an essential role in reprogramming and is required for reactivation of key pluripotency genes in somatic cell nuclear transfer (SCNT) embryos. Maternal-derived H3.3 replaces H3 in the donor nucleus shortly after oocyte activation, with the amount of replacement directly related to the differentiation status of the donor nucleus in SCNT embryos. We provide additional evidence to suggest that de novo synthesized H3.3 replaces histone H3 carrying repressive modifications in the donor nuclei of SCNT embryos, and hypothesize that replacement may occur at specific loci that must be reprogrammed for gene reactivation.
机译:体细胞核转移到去核卵母细胞是体细胞重编程最有效的方法。虽然已知该过程涉及供体核的广泛染色质重塑,但主要的母体因子和潜在的基于染色质的机制仍然未知。在这里,我们讨论我们最近的发现,证明组蛋白变体H3.3在重编程中起着至关重要的作用,并且是激活体细胞核移植(SCNT)胚胎中关键多能性基因所必需的。卵母细胞活化后不久,母体来源的H3.3替代了供体核中的H3,替代量与SCNT胚胎中供体核的分化状态直接相关。我们提供了其他证据,表明从头合成的H3.3替代了在SCNT胚胎的供体核中带有阻遏性修饰的组蛋白H3,并假设替换可能发生在必须重新编程以进行基因激活的特定基因座上。

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