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Paternal H3K4 methylation is required for minor zygotic gene activation and early mouse embryonic development

机译:轻微的合子基因激活和小鼠早期胚胎发育需要父本H3K4甲基化

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摘要

Epigenetic modifications, such as DNA methylation and histone modifications, are dynamically altered predominantly in paternal pronuclei soon after fertilization. To identify which histone modifications are required for early embryonic development, we utilized histone K-M mutants, which prevent endogenous histone methylation at the mutated site. We prepared four single K-M mutants for histone H3.3, K4M, K9M, K27M, and K36M, and demonstrate that overexpression of H3.3 K4M in embryos before fertilization results in developmental arrest, whereas overexpression after fertilization does not affect the development. Furthermore, loss of H3K4 methylation decreases the level of minor zygotic gene activation (ZGA) predominantly in the paternal pronucleus, and we obtained similar results from knockdown of the H3K4 methyltransferase Mll3/4. We therefore conclude that H3K4 methylation, likely established by Mll3/4 at the early pronuclear stage, is essential for the onset of minor ZGA in the paternal pronucleus, which is necessary for subsequent preimplantation development in mice.
机译:受精后不久,表观遗传修饰(例如DNA甲基化和组蛋白修饰)就会在父系原核中发生动态变化。为了确定早期胚胎发育需要哪些组蛋白修饰,我们利用了组蛋白K-M突变体,该突变体可防止突变位点处的内源性组蛋白甲基化。我们为组蛋白H3.3,K4M,K9M,K27M和K36M准备了四个单个K-M突变体,并证明了受精前胚胎中H3.3 K4M的过表达导致发育停滞,而受精后过表达则不影响发育。此外,H3K4甲基化的丧失主要在父核中降低了次要合子基因激活(ZGA)的水平,我们从H3K4甲基转移酶Mll3 / 4的敲除中获得了相似的结果。因此,我们得出结论,H3K4甲基化可能是由Mll3 / 4在前核早期阶段建立的,对于父本核中次要ZGA的发作是必不可少的,这对于小鼠随后的植入前发育是必需的。

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