首页> 外文期刊>American Journal of Physiology >SMCHD1 terminates the first embryonic genome activation event in mouse two-cell embryos and contributes to a transcriptionally repressive state
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SMCHD1 terminates the first embryonic genome activation event in mouse two-cell embryos and contributes to a transcriptionally repressive state

机译:SMCHD1 终止小鼠双细胞胚胎中的第一个胚胎基因组激活事件,并导致转录抑制状态

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摘要

Embryonic genome activation (EGA) in mammals begins with transient expression of a large group of genes (EGA1). Importantly, entry into and exit from the 2C/EGA state is essential for viability. Dux family member genes play an integral role in EGA1 by activating other EGA marker genes such as Zscan4 family members. We previously reported that structural maintenance of chromosomes flexible hinge domain-containing protein 1 (Smchdl) is expressed at the mRNA and protein levels in mouse oocytes and early embryos and that elimination of Smchdl expression inhibits inner cell mass formation, blasto-cyst formation and hatching, and term development. We extend these observations here by showing that siRNA knockdown of Smchdl in zygotes results in overexpression of Dux and Zscan4 in two-cell embryos, with continued overexpression of Dux at least through the eight-cell stage as well as prolonged expression of Zscan4. These results are consistent with a role for SMCHD1 in promoting exit from the EGA1 state and establishing SMCHD1 as a maternal effect gene and the first chromatin regulatory factor identified with this role. Additionally, bioinformatics analysis reveals that SMCHD1 also contributes to the creation of a transcriptionally repressive state to allow correct gene regulation.
机译:哺乳动物的胚胎基因组激活 (EGA) 始于一大组基因 (EGA1) 的瞬时表达。重要的是,进入和退出 2C/EGA 状态对于生存能力至关重要。Dux 家族成员基因通过激活其他 EGA 标记基因(如 Zscan4 家族成员)在 EGA1 中发挥不可或缺的作用。我们之前报道过,含染色体柔性铰链结构域的蛋白 1 (Smchdl) 的结构维持在小鼠卵母细胞和早期胚胎的 mRNA 和蛋白质水平上表达,并且 Smchdl 表达的消除抑制内部细胞团形成、囊胚形成和孵化以及足月发育。我们在这里扩展了这些观察结果,表明受精卵中 Smchdl 的 siRNA 敲低导致双细胞胚胎中 Dux 和 Zscan4 的过表达,至少在八细胞阶段持续过表达 Dux 以及 Zscan4 的表达延长。这些结果与 SMCHD1 在促进退出 EGA1 状态和建立 SMCHD1 作为母体效应基因和第一个确定具有该作用的染色质调节因子方面的作用一致。此外,生物信息学分析表明,SMCHD1 还有助于产生转录抑制状态,从而实现正确的基因调控。

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