Department of Animal Science & Biotechnology, Research Center for Transgenic Cloned Pigs, Chungnam National University, Daejeon, 34134, Republic of Korea.
Sci Rep. 2019 Mar 7;9(1):3831. doi: 10.1038/s41598-019-40358-3.
The mRNA processing and export factor, Iws1, interacts with the histone H3/H4 chaperone, Spt6 (Supt6 in mouse gene ontology) and recruits the lysine methyltransferase, Setd2, to chromatin to regulate H3K36me3. This recruitment is known to be crucial for pre-mRNA splicing and Iws1 has been shown to interact with REF1/Aly to mediate mRNA export. However, the role of this complex has not yet been examined in embryonic development. Here, we show that knockdown of either Iws1 or Supt6 blocked embryo development, primarily at the 8/16-cell stage, indicating that Iws1 and Supt6 are crucial for mouse preimplantation development. In the knockdown embryos, we observed decreases in pre-mRNA splicing, mRNA export and the expression of the lineage-specific transcription factor, Nanog. We found that either Iws1 or Supt6 are required for H3K36 trimethylation and that concurrent knockdown of both Iws1 and Supt6 blocks embryonic development at the 2-cell stage. We show that H3K36me3 is modulated by the Pi3k/Akt pathway, as inhibition of this pathway reduced the global level of H3K36me3 while activation of the pathway increased the level of this modification in 2-cell embryos. We observed that Iws1 interacts with nuclear Akt in early embryos, and herein propose that Akt modulates H3K36me3 through interaction with Iws1. Together, our results indicate that the Iws1 and Supt6 play crucial roles in embryonic genome activation, lineage specification, and histone modification during mouse early development.
mRNA 加工和输出因子 Iws1 与组蛋白 H3/H4 伴侣 Spt6(小鼠基因本体论中的 Supt6)相互作用,并招募赖氨酸甲基转移酶 Setd2 到染色质上,以调节 H3K36me3。这种募集被认为对前体 mRNA 剪接至关重要,并且已经表明 Iws1 与 REF1/Aly 相互作用以介导 mRNA 输出。然而,该复合物的作用尚未在胚胎发育中进行检查。在这里,我们表明,敲低 Iws1 或 Supt6 都阻止了胚胎发育,主要是在 8/16 细胞阶段,表明 Iws1 和 Supt6 对于小鼠着床前发育至关重要。在敲低的胚胎中,我们观察到前体 mRNA 剪接、mRNA 输出和谱系特异性转录因子 Nanog 的表达减少。我们发现,Iws1 或 Supt6 都需要 H3K36 三甲基化,并且同时敲低 Iws1 和 Supt6 会阻止胚胎在 2 细胞阶段发育。我们表明,H3K36me3 受到 Pi3k/Akt 途径的调节,因为抑制该途径会降低 H3K36me3 的整体水平,而激活该途径会增加 2 细胞胚胎中这种修饰的水平。我们观察到 Iws1 在早期胚胎中与核 Akt 相互作用,并且在此提出 Akt 通过与 Iws1 相互作用来调节 H3K36me3。总之,我们的结果表明,Iws1 和 Supt6 在小鼠早期发育过程中在胚胎基因组激活、谱系特化和组蛋白修饰中发挥着关键作用。