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Rif1 延长了果蝇中胚层囊胚转换期的胚胎 S 期。

Rif1 prolongs the embryonic S phase at the Drosophila mid-blastula transition.

机构信息

Department of Biochemistry and Biophysics, University of California San Francisco, San Francisco, California, United States of America.

出版信息

PLoS Biol. 2018 May 10;16(5):e2005687. doi: 10.1371/journal.pbio.2005687. eCollection 2018 May.

Abstract

In preparation for dramatic morphogenetic events of gastrulation, rapid embryonic cell cycles slow at the mid-blastula transition (MBT). In Drosophila melanogaster embryos, down-regulation of cyclin-dependent kinase 1 (Cdk1) activity initiates this slowing by delaying replication of heterochromatic satellite sequences and extending S phase. We found that Cdk1 activity inhibited the chromatin association of Rap1 interacting factor 1 (Rif1), a candidate repressor of replication. Furthermore, Rif1 bound selectively to satellite sequences following Cdk1 down-regulation at the MBT. In the next S phase, Rif1 dissociated from different satellites in an orderly schedule that anticipated their replication. Rif1 lacking potential phosphorylation sites failed to dissociate and dominantly prevented completion of replication. Loss of Rif1 in mutant embryos shortened the post-MBT S phase and rescued embryonic cell cycles disrupted by depletion of the S phase-promoting kinase, cell division cycle 7 (Cdc7). Our work shows that Rif1 and S phase kinases compose a replication timer controlling first the developmental onset of late replication and then the precise schedule of replication within S phase. In addition, we describe how onset of late replication fits into the progressive maturation of heterochromatin during development.

摘要

为了准备原肠胚形成过程中的剧烈形态发生事件,胚胎细胞周期在中胚层胚泡转变(MBT)时会减慢。在黑腹果蝇胚胎中,下调细胞周期蛋白依赖性激酶 1(Cdk1)的活性通过延迟异染色质卫星序列的复制并延长 S 期来启动这种减缓。我们发现 Cdk1 活性抑制了 Rap1 相互作用因子 1(Rif1)的染色质结合,Rif1 是复制的候选抑制剂。此外,在 MBT 下调 Cdk1 后,Rif1 特异性地结合到卫星序列上。在下一个 S 期,Rif1 按照预定的时间表从不同的卫星上解离,这些卫星将在随后进行复制。缺乏潜在磷酸化位点的 Rif1 无法解离,并主要阻止了复制的完成。在突变体胚胎中缺失 Rif1 会缩短 MBT 后的 S 期,并挽救因 S 期促进激酶细胞分裂周期 7(Cdc7)耗竭而破坏的胚胎细胞周期。我们的工作表明,Rif1 和 S 期激酶组成了一个复制定时器,首先控制晚期复制的发育起始,然后控制 S 期内复制的精确时间安排。此外,我们描述了晚期复制的开始如何适应发育过程中异染色质的逐渐成熟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96e0/5963817/5b94dd4574f4/pbio.2005687.g001.jpg

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