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非洲爪蟾Drf1是Cdc7的一种调节因子,在S期停滞期间,它在染色质上呈现出依赖于检查点的积累。

Xenopus Drf1, a regulator of Cdc7, displays checkpoint-dependent accumulation on chromatin during an S-phase arrest.

作者信息

Yanow Stephanie K, Gold Daniel A, Yoo Hae Yong, Dunphy William G

机构信息

Division of Biology, Howard Hughes Medical Institute, California Institute of Technology, Pasadena, California 91125, USA.

出版信息

J Biol Chem. 2003 Oct 17;278(42):41083-92. doi: 10.1074/jbc.M307144200. Epub 2003 Aug 1.

Abstract

We have cloned a Xenopus Dbf4-related factor named Drf1 and characterized this protein by using Xenopus egg extracts. Drf1 forms an active complex with the kinase Cdc7. However, most of the Cdc7 in egg extracts is not associated with Drf1, which raises the possibility that some or all of the remaining Cdc7 is bound to another Dbf4-related protein. Immunodepletion of Drf1 does not prevent DNA replication in egg extracts. Consistent with this observation, Cdc45 can still associate with chromatin in Drf1-depleted extracts, albeit at significantly reduced levels. Nonetheless, Drf1 displays highly regulated binding to replicating chromatin. Treatment of egg extracts with aphidicolin results in a substantial accumulation of Drf1 on chromatin. This accumulation is blocked by addition of caffeine and by immunodepletion of either ATR or Claspin. These observations suggest that the increased binding of Drf1 to aphidicolin-treated chromatin is an active process that is mediated by a caffeine-sensitive checkpoint pathway containing ATR and Claspin. Abrogation of this pathway also leads to a large increase in the binding of Cdc45 to chromatin. This increase is substantially reduced in the absence of Drf1, which suggests that regulation of Drf1 might be involved in the suppression of Cdc45 loading during replication arrest. We also provide evidence that elimination of this checkpoint causes resumed initiation of DNA replication in both Xenopus tissue culture cells and egg extracts. Taken together, these observations argue that Drf1 is regulated by an intra-S-phase checkpoint mechanism that down-regulates the loading of Cdc45 onto chromatin containing DNA replication blocks.

摘要

我们克隆了一种名为Drf1的非洲爪蟾Dbf4相关因子,并利用非洲爪蟾卵提取物对该蛋白进行了表征。Drf1与激酶Cdc7形成活性复合物。然而,卵提取物中的大多数Cdc7并不与Drf1结合,这增加了一种可能性,即其余部分或全部Cdc7与另一种Dbf4相关蛋白结合。免疫去除Drf1并不妨碍卵提取物中的DNA复制。与这一观察结果一致,Cdc45在去除Drf1的提取物中仍能与染色质结合,尽管水平显著降低。尽管如此,Drf1在与复制染色质的结合上表现出高度调控。用阿非科林处理卵提取物会导致Drf1在染色质上大量积累。这种积累被咖啡因的添加以及ATR或Claspin的免疫去除所阻断。这些观察结果表明,Drf1与经阿非科林处理的染色质结合增加是一个由包含ATR和Claspin的咖啡因敏感检查点途径介导的活跃过程。该途径的废除也导致Cdc45与染色质的结合大幅增加。在没有Drf1的情况下,这种增加会显著减少,这表明Drf1的调控可能参与了复制停滞期间Cdc45加载的抑制。我们还提供了证据表明,消除这个检查点会导致非洲爪蟾组织培养细胞和卵提取物中DNA复制重新开始。综上所述,这些观察结果表明,Drf1受S期内检查点机制调控,该机制下调Cdc45加载到含有DNA复制阻滞的染色质上。

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