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首页> 外文期刊>Nature Communications >The role of maternal-specific H3K9me3 modification in establishing imprinted X-chromosome inactivation and embryogenesis in mice
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The role of maternal-specific H3K9me3 modification in establishing imprinted X-chromosome inactivation and embryogenesis in mice

机译:母体特异性H3K9me3修饰在建立小鼠印迹X染色体失活和胚胎发生中的作用

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Maintaining a single active X-chromosome by repressing Xist is crucial for embryonic development in mice. Although the Xist activator RNF12/RLIM is present as a maternal factor, maternal Xist (Xm-Xist) is repressed during preimplantation phases to establish imprinted X-chromosome inactivation (XCI). Here we show, using a highly reproducible chromatin immunoprecipitation method that facilitates chromatin analysis of preimplantation embryos, that H3K9me3 is enriched at the Xist promoter region, preventing Xm-Xist activation by RNF12. The high levels of H3K9me3 at the Xist promoter region are lost in embryonic stem (ES) cells, and ES-cloned embryos show RNF12-dependent Xist expression. Moreover, lack of Xm-XCI in the trophectoderm, rather than loss of paternally expressed imprinted genes, is the primary cause of embryonic lethality in 70-80% of parthenogenotes immediately after implantation. This study reveals that H3K9me3 is involved in the imprinting that silences Xm-Xist. Our findings highlight the role of maternal-specific H3K9me3 modification in embryo development.
机译:通过抑制Xist来维持单个活性X染色体对于小鼠胚胎发育至关重要。尽管Xist活化剂RNF12 / RLIM作为母体因子存在,但在植入前阶段会抑制母体Xist(Xm-Xist),以建立印迹的X染色体失活(XCI)。在这里,我们显示出使用高度可重复的染色质免疫沉淀方法,可促进植入前胚胎的染色质分析,H3K9me3在Xist启动子区域富集,可防止Xm-Xist被RNF12激活。 Xist启动子区域的高水平H3K9me3在胚胎干(ES)细胞中丢失,ES克隆的胚胎显示RNF12依赖的Xist表达。此外,滋养外胚层中缺乏Xm-XCI而不是失去父系表达的印迹基因,是植入后立即产生70-80%单性生殖生殖力的主要原因。这项研究表明,H3K9me3参与了使Xm-Xist沉默的印迹。我们的发现突出了母体特异性H3K9me3修饰在胚胎发育中的作用。

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