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组蛋白甲基转移酶Smyd3调节小鼠早期胚胎谱系定向分化。

Histone methyltransferase Smyd3 regulates early embryonic lineage commitment in mice.

作者信息

Suzuki Shinnosuke, Nozawa Yusuke, Tsukamoto Satoshi, Kaneko Takehito, Imai Hiroshi, Minami Naojiro

机构信息

Laboratory of Reproductive BiologyGraduate School of Agriculture, Kyoto University, Kyoto 606-8052, JapanLaboratory of Animal and Genome Sciences SectionNational Institute of Radiological Sciences, Chiba 263-8555, JapanGraduate School of MedicineInstitute of Laboratory Animals, Kyoto University, Kyoto 606-8501, Japan.

Laboratory of Reproductive BiologyGraduate School of Agriculture, Kyoto University, Kyoto 606-8052, JapanLaboratory of Animal and Genome Sciences SectionNational Institute of Radiological Sciences, Chiba 263-8555, JapanGraduate School of MedicineInstitute of Laboratory Animals, Kyoto University, Kyoto 606-8501, Japan

出版信息

Reproduction. 2015 Jul;150(1):21-30. doi: 10.1530/REP-15-0019. Epub 2015 Apr 27.

Abstract

SET and MYND domain-containing protein 3 (Smyd3) is a histone H3 lysine 4 (H3K4) di- and tri-methyltransferase that forms a transcriptional complex with RNA polymerase II and activates the transcription of oncogenes and cell cycle genes in human cancer cells. However, the study of Smyd3 in mammalian early embryonic development has not yet been addressed. In the present study, we investigated the expression pattern of Smyd3 in mouse preimplantation embryos and the effects of RNA interference (RNAi)-mediated Smyd3 repression on the development of mouse embryos. We showed that Smyd3 mRNA levels increased after the two-cell stage, peaked at the four-cell stage, and gradually decreased thereafter. Moreover, in two-cell to eight-cell embryos, SMYD3 staining was more intense in the nuclei than it was in the cytoplasm. In Smyd3-knockdown embryos, the percentage of inner cell mass (ICM)-derived colony formation and trophectoderm (TE)-derived cell attachment were significantly decreased, which resulted in a reduction in the number of viable offspring. Furthermore, the expression of Oct4 and Cdx2 during mid-preimplantation gene activation was significantly decreased in Smyd3-knockdown embryos. In addition, the transcription levels of ICM and epiblast markers, such as Oct4, Nanog, and Sox2, the transcription levels of primitive endoderm markers, such as Gata6, and the transcription levels of TE markers, such as Cdx2 and Eomes, were significantly decreased in Smyd3-knockdown blastocysts. These findings indicate that SMYD3 plays an important role in early embryonic lineage commitment and peri-implantation development through the activation of lineage-specific genes.

摘要

含SET和MYND结构域蛋白3(Smyd3)是一种组蛋白H3赖氨酸4(H3K4)二甲基和三甲基转移酶,它与RNA聚合酶II形成转录复合物,并激活人类癌细胞中癌基因和细胞周期基因的转录。然而,Smyd3在哺乳动物早期胚胎发育中的研究尚未开展。在本研究中,我们调查了Smyd3在小鼠植入前胚胎中的表达模式,以及RNA干扰(RNAi)介导的Smyd3抑制对小鼠胚胎发育的影响。我们发现,Smyd3 mRNA水平在二细胞期后升高,在四细胞期达到峰值,此后逐渐下降。此外,在二细胞至八细胞胚胎中,SMYD3在细胞核中的染色比在细胞质中更强。在Smyd3基因敲低的胚胎中,内细胞团(ICM)来源的集落形成百分比和滋养外胚层(TE)来源的细胞附着显著降低,这导致存活后代数量减少。此外,在植入前中期基因激活过程中,Smyd3基因敲低胚胎中Oct4和Cdx2的表达显著降低。此外,在Smyd3基因敲低的囊胚中,ICM和上胚层标记物(如Oct4、Nanog和Sox2)的转录水平、原始内胚层标记物(如Gata6)的转录水平以及TE标记物(如Cdx2和Eomes)的转录水平均显著降低。这些发现表明,SMYD3通过激活谱系特异性基因在早期胚胎谱系定向和植入周围发育中发挥重要作用。

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