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MCM9与Cdt1结合,是复制前复合体组装所必需的。

MCM9 binds Cdt1 and is required for the assembly of prereplication complexes.

作者信息

Lutzmann Malik, Méchali Marcel

机构信息

Institute of Human Genetics, CNRS, 141 rue de la Cardonille, 34396 Montpellier, France.

出版信息

Mol Cell. 2008 Jul 25;31(2):190-200. doi: 10.1016/j.molcel.2008.07.001.

Abstract

Prereplication complexes (pre-RCs) define potential origins of DNA replication and allow the recruitment of the replicative DNA helicase MCM2-7. Here, we characterize MCM9, a member of the MCM2-8 family. We demonstrate that MCM9 binds to chromatin in an ORC-dependent manner and is required for the recruitment of the MCM2-7 helicase onto chromatin. Its depletion leads to a block in pre-RC assembly, as well as DNA replication inhibition. We show that MCM9 forms a stable complex with the licensing factor Cdt1, preventing an excess of geminin on chromatin during the licensing reaction. Our data suggest that MCM9 is an essential activating linker between Cdt1 and the MCM2-7 complex, required for loading the MCM2-7 helicase onto DNA replication origins. Thus, Cdt1, with its two opposing regulatory binding factors MCM9 and geminin, appears to be a major platform on the pre-RC to integrate cell-cycle signals.

摘要

复制前复合体(pre-RCs)确定了DNA复制的潜在起始点,并允许招募复制性DNA解旋酶MCM2-7。在此,我们对MCM2-8家族成员MCM9进行了表征。我们证明MCM9以ORC依赖的方式与染色质结合,并且是将MCM2-7解旋酶招募到染色质上所必需的。它的缺失会导致pre-RC组装受阻以及DNA复制抑制。我们表明MCM9与许可因子Cdt1形成稳定复合体,在许可反应期间防止染色质上出现过量的geminin。我们的数据表明,MCM9是Cdt1与MCM2-7复合体之间必不可少的激活连接物,是将MCM2-7解旋酶加载到DNA复制起始点所必需的。因此,Cdt1与其两个相互对立的调节结合因子MCM9和geminin,似乎是pre-RC上整合细胞周期信号的主要平台。

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