首页> 外文期刊>Frontiers in Cell and Developmental Biology >Echinoderm Microtubule Associated Protein Like 1 Is Indispensable for Oocyte Spindle Assembly and Meiotic Progression in Mice
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Echinoderm Microtubule Associated Protein Like 1 Is Indispensable for Oocyte Spindle Assembly and Meiotic Progression in Mice

机译:Echinoderm microTubule相关的蛋白质,如1对于卵母细胞主轴组件和小鼠的减数分裂进展是必不可少的

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Completion of the first meiosis is an essential prerequisite for producing a functionally normal egg for fertilization and embryogenesis, but the precise mechanisms governing oocyte meiotic progression remains largely unclear. Here, we report that echinoderm microtubule-associated protein (EMAP)-like 1(EML1), a member of the conserved EMAP family proteins, plays a crucial role in the control of oocyte meiotic progression in the mouse. Female mice carrying an ENU-induced nonsense mutation (c.1956T A; p.Tyr652*) of Eml1 are infertile, and the majority of their ovulated oocytes contain abnormal spindles and misaligned chromosomes. In accordance with the mutant oocyte phenotype, we find that EML1 is colocalized with spindle microtubules during the process of normal oocyte meiotic maturation, and knockdown (KD) of EML1 by specific morpholinos in the fully-grown oocytes (FGOs) disrupts the integrity of spindles, and delays meiotic progression. Moreover, EML1-KD oocytes fail to progress to metaphase II (MII) stage after extrusion of the first polar body, but enter into interphase and form a pronucleus containing decondensed chromatins. Further analysis shows that EML1-KD impairs the recruitment of γ-tubulin and pericentrin to the spindle poles, as well as the attachment of kinetochores to microtubules and the proper inactivation of spindle assembly checkpoint at metaphase I (MI). The loss of EML1 also compromises the activation of maturation promoting factor around the time of oocyte resumption and completion of the first meiosis, which, when corrected by WEE1/2 inhibitor PD166285, efficiently rescues the phenotype of oocyte delay of meiotic resumption and inability of reaching MII. Through IP- mass spectrometry analysis, we identified that EML1 interacts with nuclear distribution gene C (NUDC), a critical mitotic regulator in somatic cells, and EML1-KD disrupts the specific localization of NUDC at oocyte spindles. Taken together, these data suggest that EML1 regulates acentrosomal spindle formation and the progression of meiosis to MII in mammalian oocytes, which is likely mediated by distinct mechanisms.
机译:完成第一减数分裂是为施肥和胚胎发生的功能普通卵产生功能正常卵的必要必要条件,但治疗卵母细胞减数分裂进展的精确机制仍然很大程度上不清楚。在这里,我们报告说,棘皮药微管相关蛋白(EMAP)-like1(EML1),保守的eMAP系列蛋白的成员在小鼠中的卵母细胞减少进展中起着至关重要的作用。携带ENU诱导的非义突变(C.1956T> A; P.TYR652 *)的雌性小鼠是不孕的,并且其大部分卵卵母细胞含有异常的主轴和未对准的染色体。根据突变体卵母细胞表型,我们发现EML1在正常的卵母细胞生成过程中与主轴微管率分开,并且通过完全生长的卵母细胞(FGOS)中的特定吗啡啉(FGOS)的EML1的敲低(KD)扰乱了主轴的完整性,延迟减肥进展。此外,EML1-KD卵母细胞未能在挤出第一极体后的中期II(MII)阶段,但进入相互作用并形成含有脱稠的染色质的前核。进一步的分析表明,EML1-KD损害了γ-微管蛋白和Pericentrin的血管杆,以及Kinetochores在中期I(MI)中的主轴组件检查点的适当灭活的γ-肾盂蛋白和蠕虫蛋白。 EML1的损失也损害了卵母细胞恢复和完成第一减数分裂的时间局部的成熟促进因子的激活,当通过WEE1 / 2抑制剂PD166285校正时,有效地拯救了减少人性恢复和无法达到的卵母细胞延迟表型。 mii。通过IP质谱分析,我们认为EML1与核分布基因C(NUDC)相互作用,在体细胞中,临界有丝分子调节剂,并且EML1-KD扰乱了NUDC在卵母细胞主轴上的特定定位。总之,这些数据表明EML1调节哺乳动物卵母细胞中的穴位形纺织形成和分数症的进展,这可能是由不同机制介导的。

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