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在植入前小鼠胚胎谱系形成和卵子发生过程中是一种新型细胞分裂调节因子。

Is a Novel Cell Division Regulator During Preimplantation Mouse Embryo Lineage Formation and Oogenesis.

作者信息

Virnicchi Giorgio, Bora Pablo, Gahurova Lenka, Šušor Andrej, Bruce Alexander W

机构信息

Laboratory of Early Mammalian Developmental Biology, Department of Molecular Biology and Genetics, Faculty of Science, University of South Bohemia, České Budějovice, Czechia.

Laboratory of Biochemistry and Molecular Biology of Germ Cells, Institute of Animal Physiology and Genetics, Czech Academy of Sciences, Liběchov, Czechia.

出版信息

Front Cell Dev Biol. 2020 Sep 17;8:857. doi: 10.3389/fcell.2020.00857. eCollection 2020.

Abstract

Formation of the hatching mouse blastocyst marks the end of preimplantation development, whereby previous cell cleavages culminate in the formation of three distinct cell lineages (trophectoderm, primitive endoderm and epiblast). We report that dysregulated expression of , a genetic paralog of (a known activator of Hippo-signaling, a key pathway during preimplantation development), is specifically associated with cell autonomous deficits in embryo cell number and cell division abnormalities. Division phenotypes are also observed during mouse oocyte meiotic maturation, as dysregulation blocks progression to the stage of meiosis II metaphase (MII) arrest and is associated with spindle defects and failed Aurora-A kinase (AURKA) activation. Oocyte and embryo cell division defects, each occurring in the absence of centrosomes, are fully reversible by expression of recombinant HA-epitope tagged WWC2, restoring activated oocyte AURKA levels. Additionally, clonal embryonic dysregulation implicates in maintaining the pluripotent epiblast lineage. Thus, is a novel regulator of meiotic and early mitotic cell divisions, and mouse blastocyst cell fate.

摘要

孵化中的小鼠囊胚的形成标志着着床前发育的结束,在此之前的细胞分裂最终形成了三种不同的细胞谱系(滋养外胚层、原始内胚层和上胚层)。我们报告称, (Hippo信号通路的已知激活因子,着床前发育过程中的关键通路)的基因旁系同源物 的表达失调,与胚胎细胞数量的细胞自主性缺陷和细胞分裂异常特别相关。在小鼠卵母细胞减数分裂成熟过程中也观察到分裂表型,因为 的失调会阻止进展到减数分裂II中期(MII)停滞阶段,并与纺锤体缺陷和极光激酶A(AURKA)激活失败有关。在没有中心体的情况下发生的卵母细胞和胚胎细胞分裂缺陷,通过表达重组HA表位标记的WWC2可完全逆转,恢复激活的卵母细胞AURKA水平。此外,克隆胚胎失调表明 在维持多能上胚层谱系方面发挥作用。因此, 是减数分裂和早期有丝分裂细胞分裂以及小鼠囊胚细胞命运的新型调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4d4/7527741/cc758e331209/fcell-08-00857-g001.jpg

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