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RPA32 磷酸化在 Xenopus 卵提取物中用阿菲迪霉素阻滞复制叉停滞的 S 期检验点信号传导中的作用。

Implication of RPA32 phosphorylation in S-phase checkpoint signalling at replication forks stalled with aphidicolin in Xenopus egg extracts.

机构信息

Genome Surveillance and Stability Laboratory, Department "Molecular Bases of Human Diseases", CNRS-UPR1142, Institute of Human Genetics, 141 rue de la Cardonille, 34396 Cedex 5 Montpellier, France.

出版信息

Biochem Biophys Res Commun. 2012 Nov 2;427(4):785-9. doi: 10.1016/j.bbrc.2012.09.139. Epub 2012 Oct 6.

Abstract

Activation of the replication checkpoint relies upon uncoupling of DNA polymerases and helicase activities at replication forks, which in multicellular organism results in production of long stretches of single-stranded DNA bound by the trimeric, single stranded DNA binding protein, the RPA complex. Binding of RPA to this substrate promotes synthesis of replication intermediates that contributes to checkpoint activation by allowing binding of the 9-1-1 checkpoint clamp. The RPA32kDa subunit is also phosphorylated during this process but its role in checkpoint signalling is unclear. Here we have investigated the requirement for RPA32 phosphorylation in checkpoint activation in Xenopus egg extracts. We show that phospho-deficient mutants of RPA32 stimulate checkpoint signalling at replication forks arrested with aphidicolin at both the initiation and the elongation step of DNA replication, without affecting DNA synthesis. In contrast, we show that phospho-mimetic RPA32 mutants do not stimulate checkpoint activation at unwound forks. These results indicate that the hypophosphorylated, replication fork-associated form of RPA32 functions in S-phase-dependent checkpoint signalling at unwound forks in Xenopus egg extracts while RPA32 phosphorylation may be implicated in other pathways such as repair or restart of arrested replication forks.

摘要

复制检查点的激活依赖于在复制叉处解偶联 DNA 聚合酶和解旋酶活性,这在多细胞生物中导致产生由三聚体单链 DNA 结合蛋白 RPA 复合物结合的长链单链 DNA。RPA 与该底物的结合促进了复制中间体的合成,这有助于通过允许 9-1-1 检查点夹结合来激活检查点。在此过程中,RPA32kDa 亚基也被磷酸化,但它在检查点信号传导中的作用尚不清楚。在这里,我们研究了在爪蟾卵提取物中复制检查点激活对 RPA32 磷酸化的需求。我们发现,RPA32 的磷酸缺陷突变体在 DNA 复制的起始和延伸步骤中用 aphidicolin 阻断复制叉时,会刺激复制检查点信号,而不会影响 DNA 合成。相比之下,我们发现磷酸模拟 RPA32 突变体不会刺激未缠绕叉上的检查点激活。这些结果表明,在爪蟾卵提取物中,与未缠绕叉相关的低磷酸化 RPA32 形式在 S 期依赖性检查点信号传导中起作用,而 RPA32 磷酸化可能涉及其他途径,如修复或停滞复制叉的重新启动。

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