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在正常人类成纤维细胞中,Timeless 独立于 Tim-Tipin 复合物发挥作用,促进姐妹染色单体黏合。

Timeless functions independently of the Tim-Tipin complex to promote sister chromatid cohesion in normal human fibroblasts.

机构信息

University of North Carolina at Chapel Hill, Chapel Hill, NC USA.

出版信息

Cell Cycle. 2011 May 15;10(10):1618-24. doi: 10.4161/cc.10.10.15613.

Abstract

The Timeless-Tipin complex and Claspin are mediators of the ATR-dependent activation of Chk1 in the intra-S checkpoint response to stalled DNA replication forks. Tim-Tipin and Claspin also contribute to sister chromatid cohesion (SCC) in various organisms, likely through a replication-coupled process. Some models of the establishment of SCC posit that interactions between cohesin rings and replisomes could result in physiological replication stress requiring fork stabilization. The contributions of Timeless, Tipin, Claspin, Chk1 and ATR to SCC were investigated in genetically stable, human diploid fibroblast cell lines. Whereas Timeless, Tipin and Claspin showed similar contributions to UVC-induced activation of Chk1, siRNA-mediated knockdown of Timeless induced a 100-fold increase in sister chromatid discohesion, whereas the inductive effects of knocking down Tipin, Claspin and ATR were 4-20-fold. Knockdown of Chk1 did not significantly affect SCC. Consistent findings were obtained in two independently derived human diploid fibroblast lines and support a conclusion that SCC in human cells is strongly dependent on Timeless but independent of Chk1. Furthermore, the 10-fold difference in discohesion observed when depleting Timeless versus Tipin indicates that Timeless has a function in SCC that is independent of the Tim-Tipin complex, even though the abundance of Timeless is reduced when Tipin is targeted for depletion. A better understanding of how Timeless, Tipin and Claspin promote SCC will elucidate non-checkpoint functions of these proteins at DNA replication forks and inform models of the establishment of SCC.

摘要

Timeless-Tipin 复合物和 Claspin 是 ATR 依赖性激活 Chk1 的中介物,在停滞的 DNA 复制叉的细胞内 S 期检查点反应中发挥作用。Tim-Tipin 和 Claspin 也有助于各种生物中的姐妹染色单体黏合(SCC),可能通过复制偶联过程。SCC 建立的一些模型假设,着丝粒环和复制体之间的相互作用可能导致需要叉稳定化的生理复制应激。在遗传上稳定的人二倍体成纤维细胞系中,研究了 Timeless、Tipin、Claspin、Chk1 和 ATR 对 SCC 的贡献。虽然 Timeless、Tipin 和 Claspin 对 UVC 诱导的 Chk1 激活具有相似的贡献,但 siRNA 介导的 Timeless 敲低导致姐妹染色单体解聚增加 100 倍,而敲低 Tipin、Claspin 和 ATR 的诱导效应增加 4-20 倍。Chk1 的敲低对 SCC 没有显著影响。在两个独立衍生的人二倍体成纤维细胞系中获得了一致的发现,支持 SCC 在人细胞中强烈依赖于 Timeless 但独立于 Chk1 的结论。此外,当耗尽 Timeless 与 Tipin 时观察到的解聚差异为 10 倍,表明 Timeless 在 SCC 中具有独立于 Tim-Tipin 复合物的功能,即使 Tipin 被靶向耗尽时,Timeless 的丰度降低。更好地理解 Timeless、Tipin 和 Claspin 如何促进 SCC 将阐明这些蛋白质在 DNA 复制叉处的非检查点功能,并为 SCC 的建立模型提供信息。

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