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Drosophila Double parked: a conserved essential replication protein that colocalizes with the origin recognition complex and links DNA replication with mitosis and the down-regulation of S phase transcripts

机译:果蝇双重停放:一种保守的必需复制蛋白与起源识别复合体共定位并将DNA复制与有丝分裂和S期转录的下调联系在一起

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摘要

We identified a Drosophila gene, double parked (dup), that is essential for DNA replication and belongs to a new family of replication proteins conserved from Schizosaccharomyces pombe to humans. Strong mutations in dup cause embryonic lethality, preceded by a failure to undergo S phase during the postblastoderm divisions. dup is required also for DNA replication in the adult ovary, establishing that dup is needed for DNA replication at multiple stages of development. Strikingly, DUP protein colocalizes with the origin recognition complex to specific sites in the ovarian follicle cells. This suggests that DUP plays a direct role in DNA replication. The dup transcript is cell cycle regulated and is under the control of E2F and Cyclin E. Interestingly, dup mutant embryos fail both to downregulate S phase genes and to engage a checkpoint preventing mitosis until completion of S phase. This could be either because these events depend on progression of S phase beyond the point blocked in the dup mutants or because DUP is needed directly for these feedback mechanisms.
机译:我们确定了果蝇基因,双重停放(dup),这是DNA复制所必需的,并且属于粟酒裂殖酵母对人类保守的一个新的复制蛋白家族。 dup中的强突变会导致胚胎致死,然后在胚盘后分裂过程中未能经历S期。在成年卵巢中进行DNA复制也需要dup,从而确定在多个发育阶段进行DNA复制都需要dup。令人惊讶的是,DUP蛋白与起源识别复合物共定位在卵巢卵泡细胞的特定位点。这表明DUP在DNA复制中起直接作用。 dup转录本受细胞周期调节,并受E2F和Cyclin E的控制。有趣的是,dup突变体胚胎既不能下调S期基因,又不能参与防止有丝分裂的检查点,直到S期完成。这可能是因为这些事件取决于S期超过dup突变体中受阻点的进展,或者是因为这些反馈机制直接需要DUP。

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