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Maturation-associated Dbf4 expression is essential for mouse zygotic DNA replication

机译:与成熟相关的Dbf4表达对于小鼠合子DNA复制至关重要

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Cdc7 is an S-phase-promoting kinase (SPK) that is required for the activation of replication initiation complex assembly because it phosphorylates the MCM protein complex serving as the replicative helicase in eukaryotic organisms. Cdc7 activity is undetectable in immature mouse GV oocytes, although Cdc7 protein is already expressed at the same level as in mature oocytes or early one-cell embryos at zygotic S-phase, in which Cdc7 kinase activity is clearly detectable. Dbf4 is a regulatory subunit of Cdc7 and is required for Cdc7 kinase activity. Dbf4 is not readily detectable in immature GV oocytes but accumulates to a level similar to that in one-cell embryos during oocyte maturation, suggesting that Cdc7 is already activated in unfertilized eggs (metaphase II). RNAi-mediated knockdown of maternal Dbf4 expression prevents the maturation-associated increase in Dbf4 protein, abolishes the activation of Cdc7, and leads to the failure of DNA replication in one-cell embryos, demonstrating that Dbf4 expression is the key regulator of Cdc7 activity in mouse oocytes. Dormant Dbf4 mRNA in immature GV oocytes is recruited by cytoplasmic polyadenylation during oocyte maturation and is dependent on MPF activity via its cytoplasmic polyadenylation element (CPE) upstream of the hexanucleotide (HEX) in the 3 untranslated region (3UTR). Our results suggest that Cdc7 is inactivated in immature oocytes, preventing it from the unwanted phosphorylation of MCM proteins, and the oocyte is qualified by proper maturation to proceed following embryogenesis after fertilization through zygotic DNA replication.
机译:Cdc7是S期促进激酶(SPK),是激活复制起始复合物装配所必需的,因为它磷酸化了在真核生物中用作复制解旋酶的MCM蛋白复合物。 Cdc7活性在未成熟的小鼠GV卵母细胞中无法检测到,尽管Cdc7蛋白已经以与成熟卵母细胞或合子S期早期早期单细胞胚胎中相同的水平表达,其中Cdc7激酶活性可以明显检测到。 Dbf4是Cdc7的调节亚基,是Cdc7激酶活性所必需的。 Dbf4在未成熟的GV卵母细胞中不易检测到,但积累到与卵母细胞成熟过程中单细胞胚胎相似的水平,这表明Cdc7已在未受精卵中被激活(中期II)。 RNAi介导的母体Dbf4表达的抑制可阻止Dbf4蛋白的成熟相关增加,消除Cdc7的激活,并导致DNA在单细胞胚胎中复制失败,这表明Dbf4表达是Cdc7活性的关键调节因子。小鼠卵母细胞。未成熟GV卵母细胞中的Dormant Dbf4 mRNA通过卵母细胞成熟过程中的胞质多腺苷酸化而募集,并依赖于其3个非翻译区(3UTR)中六核苷酸(HEX)上游的胞质多腺苷酸化元件(CPE)的MPF活性。我们的结果表明,Cdc7在未成熟的卵母细胞中被灭活,从而防止了MCM蛋白的有害磷酸化,并且卵母细胞通过合子DNA复制受精后,经过适当的成熟可以在胚胎发生后继续发育。

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