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ALADIN is required for the production of fertile mouse oocytes

机译:ALADIN是生产可育小鼠卵母细胞所必需的

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Asymmetric cell divisions depend on the precise placement of the spindle apparatus. In mammalian oocytes, spindles assemble close to the cell’s center, but chromosome segregation takes place at the cell periphery where half of the chromosomes are expelled into small, nondeveloping polar bodies at anaphase. By dividing so asymmetrically, most of the cytoplasmic content within the oocyte is preserved, which is critical for successful fertilization and early development. Recently we determined that the nucleoporin ALADIN participates in spindle assembly in somatic cells, and we have also shown that female mice homozygously null for ALADIN are sterile. In this study we show that this protein is involved in specific meiotic stages, including meiotic resumption, spindle assembly, and spindle positioning. In the absence of ALADIN, polar body extrusion is compromised due to problems in spindle orientation and anchoring at the first meiotic anaphase. ALADIN null oocytes that mature far enough to be fertilized in vitro are unable to support embryonic development beyond the two-cell stage. Overall, we find that ALADIN is critical for oocyte maturation and appears to be far more essential for this process than for somatic cell divisions.
机译:不对称的细胞分裂取决于主轴设备的精确放置。在哺乳动物的卵母细胞中,纺锤体在靠近细胞中心的位置聚集,但染色体分离发生在细胞外围,在后期,一半的染色体被排入小的,不发育的极体。通过如此不对称地分裂,卵母细胞内的大部分细胞质含量得以保留,这对于成功受精和早期发育至关重要。最近,我们确定了核孔蛋白ALADIN参与体细胞中的纺锤体组装,并且我们还显示了ALADIN纯合无效的雌性小鼠是不育的。在这项研究中,我们表明该蛋白参与特定的减数分裂阶段,包括减数分裂恢复,纺锤体装配和纺锤体定位。在缺少ALADIN的情况下,由于纺锤体定向和在第一个减数分裂后期的锚定存在问题,极体挤出受到了影响。已经成熟到足以在体外受精的ALADIN空卵母细胞无法支持两细胞期以外的胚胎发育。总的来说,我们发现ALADIN对于卵母细胞的成熟至关重要,并且对于该过程而言,它似乎比体细胞分裂更为重要。

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