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首页> 外文期刊>BMC Molecular Biology >Drosophila Ctf4 is essential for efficient DNA replication and normal cell cycle progression
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Drosophila Ctf4 is essential for efficient DNA replication and normal cell cycle progression

机译:果蝇Ctf4对于有效的DNA复制和正常的细胞周期进程至关重要

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Background Proper coordination of the functions at the DNA replication fork is vital to the normal functioning of a cell. Specifically the precise coordination of helicase and polymerase activity is crucial for efficient passage though S phase. The Ctf4 protein has been shown to be a central member of the replication fork and links the replicative MCM helicase and DNA polymerase α primase. In addition, it has been implicated as a member of a complex that promotes replication fork stability, the Fork Protection Complex (FPC), and as being important for sister chromatid cohesion. As such, understanding the role of Ctf4 within the context of a multicellular organism will be integral to our understanding of its potential role in developmental and disease processes.Results We find that Drosophila Ctf4 is a conserved protein that interacts with members of the GINS complex, Mcm2, and Polymerase α primase. Using in vivo RNAi knockdown of CTF4 in Drosophila we show that Ctf4 is required for viability, S phase progression, sister chromatid cohesion, endoreplication, and coping with replication stress.Conclusions Ctf4 remains a central player in DNA replication. Our findings are consistent with what has been previously reported for CTF4 function in yeast, Xenopus extracts, and human tissue culture. We show that Ctf4 function is conserved and that Drosophila can be effectively used as a model to further probe the precise function of Ctf4 as a member of the replication fork and possible roles in development.
机译:背景技术DNA复制叉处功能的正确协调对于细胞的正常功能至关重要。具体而言,解旋酶和聚合酶活性的精确协调对于有效通过S相至关重要。 Ctf4蛋白已被证明是复制叉的核心成员,并连接复制性MCM解旋酶和DNA聚合酶α引发酶。此外,它被认为是促进复制叉稳定性的复合物的成员,即前叉保护复合物(FPC),并且对姐妹染色单体的内聚作用很重要。因此,了解Ctf4在多细胞生物环境中的作用对于我们了解其在发育和疾病过程中的潜在作用将是不可或缺的。结果我们发现,果蝇Ctf4是一种与GINS复杂分子相互作用的保守蛋白, Mcm2和聚合酶α引发酶。利用果蝇体内CTF4的RNAi体内敲除技术,我们证明Ctf4是生存力,S期进程,姐妹染色单体凝聚力,内复制和应对复制压力的必需条件。结论Ctf4仍然是DNA复制的核心参与者。我们的发现与先前报道的酵母,非洲爪蟾提取物和人体组织培养中CTF4功能的报道一致。我们表明,Ctf4功能是保守的,果蝇可以有效地用作模型,以进一步探究Ctf4作为复制叉成员的确切功能以及在开发中的可能作用。

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