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Embryonic onset of late replication requires Cdc25 down-regulation

机译:晚期复制的胚胎发作需要Cdc25下调

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摘要

The Drosophila midblastula transition (MBT), a major event in embryogenesis, remodels and slows the cell cycle. In the pre-MBT cycles, all genomic regions replicate simultaneously in rapid S phases that alternate with mitosis, skipping gap phases. At the MBT, down-regulation of Cdc25 phosphatase and the resulting inhibitory phosphorylation of the mitotic kinase Cdk1 create a G2 pause in interphase 14. However, an earlier change in interphase 14 is the prolongation of S phase. While the signals modifying S phase are unknown, the onset of late replication-where replication of constitutively heterochromatic satellite sequences is delayed-extends S-phase 14. We injected Cdc25 mRNA to bypass the developmentally programmed down-regulation of Cdc25 at the MBT. Introduction of either Cdc25 isoform (String or Twine) or enhanced Cdk1 activity triggered premature replication of late-replicating sequences, even after their specification, and thereby shortened S phase. Reciprocally, reduction of Cdk1 activity by knockdown of mitotic cyclins extended pre-MBT S phase. These findings suggest that high Cdc25 and Cdk1 contribute to the speed of the rapid, pre-MBT S phases and that down-regulation of these activities plays a broader role in MBT-associated changes than was previously suspected.
机译:果蝇中胚层过渡(MBT),在胚胎发生中的一个重大事件,重塑并减慢了细胞周期。在MBT之前的周期中,所有基因组区域均以快速S期同时复制,并与有丝分裂交替,跳过了间隙期。在MBT处,Cdc25磷酸酶的下调和有丝分裂激酶Cdk1的抑制磷酸化在中间相14中产生G2停顿。但是,中间相14中较早的变化是S相的延长。虽然尚不清楚修饰S期的信号,但后期复制的开始(在此复制中,组成性异色卫星序列的复制被延迟扩展了S期14​​)。我们注入了Cdc25 mRNA,以绕过MBT上Cdc25的发育程序性下调。 Cdc25同工型(字符串或麻线)或增强的Cdk1活性的引入触发了后期复制序列的过早复制,即使在其指定之后,也因此缩短了S期。相应地,通过有丝分裂细胞周期蛋白的敲低降低了Cdk1活性,延长了MBT S前期。这些发现表明,高Cdc25和Cdk1促进了MBT前S期快速阶段的速度,并且这些活动的下调在MBT相关变化中起着比以前所怀疑的更广泛的作用。

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