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Age-associated increase in aneuploidy and changes in gene expression in mouse eggs.

机译:与年龄相关的非整倍性增加和小鼠卵中基因表达的变化。

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An increase in the incidence of aneuploidy is well documented with increasing maternal age, in particular in human females. Remarkably, little is known regarding the underlying molecular basis for the age-associated increase in aneuploidy, which is a major source of decreased fertility in humans. Using mouse as a model system we find that eggs obtained from old mice (60-70 weeks of age) display a 6-fold increase in the incidence of hyperploidy as assessed by chromosome spreads. Expression profiling of transcripts in oocytes and eggs obtained from young and old mice reveals that approximately 5% of the transcripts are differentially expressed in oocytes obtained from old females when compared to oocytes obtained from young females (6-12 weeks of age) and that this fraction increases to approximately 33% in eggs. The latter finding indicates that the normal pattern of degradation of maternal mRNAs that occurs during oocyte maturation is dramatically altered in eggs obtained from old mice and could therefore be a contributing source to the decline in fertility. Analysis of the differentially expressed transcripts also indicated that the strength of the spindle assembly checkpoint is weakened and that higher errors of microtubule-kinetochore interactions constitute part of molecular basis for the age-associated increase in aneuploidy in females. Last, BRCA1 expression is reduced in oocytes obtained from old females and RNAi-mediated reduction of BRCA1 in oocytes obtained from young females results in perturbing spindle formation and chromosome congression following maturation.
机译:随着孕妇年龄的增加,特别是在人类女性中,非整倍性的发生率的增加有充分的记录。值得注意的是,关于与年龄相关的非整倍性增加的潜在分子基础知之甚少,这是人类生育力下降的主要来源。使用小鼠作为模型系统,我们发现从老年小鼠(60-70周龄)获得的卵显示通过染色体传播评估的超倍性发生率增加了6倍。从幼年和老年小鼠获得的卵母细胞和卵中转录本的表达谱分析表明,与从幼年雌性小鼠(6-12周龄)获得的卵母细胞相比,从老年雌性获得的卵母细胞中大约有5%的转录本差异表达。鸡蛋中的比例增加到大约33%。后一个发现表明在卵母细胞成熟过程中发生的母体mRNA降解的正常模式在从老小鼠获得的卵中发生了巨大变化,因此可能是导致生育力下降的原因。对差异表达的转录本的分析还表明,纺锤体装配检查点的强度被削弱,并且微管-线粒体相互作用的较高误差构成了女性与非整倍性年龄相关性增加的分子基础的一部分。最后,从老年雌性获得的卵母细胞中BRCA1表达降低,而从年轻雌性获得的卵母细胞中RNAi介导的BRCA1降低导致成熟后扰动纺锤体形成和染色体转化。

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