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Mechanisms by which in vitro meiotic arrest and sexual maturity improve developmental potential of mouse oocytes

机译:体外减数分裂阻滞和性成熟提高小鼠卵母细胞发育潜能的机制

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摘要

To study the relationship between chromatin condensation, gene transcription and developmental competence during oocyte maturation and to explore the mechanisms by which meiotic arrest maintenance (MAM) and sexual maturity improve oocyte competence, we examined effects of MAM with roscovitine or db-cAMP on chromatin condensation, gene transcription and developmental potential of NSN or SN oocytes from prepubertal or adult mice. MAM with roscovitine improved the developmental competence and global gene transcription of prepubertal NSN (prep-NSN) and adult-SN oocytes while having no effect on those of prep-SN oocytes. MAM with db-cAMP facilitated neither development nor transcription in any type of oocytes. MAM with either roscovitine or db-cAMP promoted chromatin condensation of prep-NSN oocytes. MAM with roscovitine promoted gene transcription and chromatin condensation simultaneously through inhibiting cyclin-dependent kinase (CDK) 5 and 2, respectively. The results suggested that MAM with roscovitine improved oocyte competence by promoting gene transcription via inhibiting CDK5. Oocyte cytoplasmic maturation is correlated with gene transcription but not with chromatin condensation. The difference in developmental competence between prepubertal NSN and SN oocytes and between prepubertal and adult SN oocytes was because while the former had not, the latter had completed or acquired the ability for transcription of important genes.
机译:为了研究卵母细胞成熟过程中染色质凝结,基因转录和发育能力之间的关系,并探讨减数分裂停滞维持(MAM)和性成熟机制改善卵母细胞能力的机制,我们研究了roscovitine或db-cAMP对MAM染色质凝结的影响。 ,青春期前或成年小鼠的NSN或SN卵母细胞的基因转录和发育潜力。 MAM与roscovitine改善了青春期前NSN(prep-NSN)和成年SN卵母细胞的发育能力和整体基因转录,而对prep-SN卵母细胞没有影响。带有db-cAMP的MAM在任何类型的卵母细胞中均不促进发育或转录。 MAM与roscovitine或db-cAMP一起可促进pre-NSN卵母细胞的染色质浓缩。具有roscovitine的MAM分别通过抑制细胞周期蛋白依赖性激酶(CDK)5和2来同时促进基因转录和染色质浓缩。结果表明,带有roscovitine的MAM可通过抑制CDK5促进基因转录,从而提高卵母细胞的能力。卵母细胞的细胞质成熟与基因转录相关,但与染色质浓缩无关。青春期前NSN和SN卵母细胞之间以及青春期前和成年SN卵母细胞之间发育能力的差异是因为前者没有,后者已经完成或获得了重要基因转录的能力。

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