Maiorano Domenico, Cuvier Olivier, Danis Etienne, Méchali Marcel
Institute of Human Genetics, Centre National de la Recherche Scientifique, 141 rue de la Cardonille, 34396 Montpellier Cedex 05, France.
Cell. 2005 Feb 11;120(3):315-28. doi: 10.1016/j.cell.2004.12.010.
MCM2-7 proteins are replication factors required to initiate DNA synthesis and are currently the best candidates for replicative helicases. We show that the MCM2-7-related protein MCM8 is required to efficiently replicate chromosomal DNA in Xenopus egg extracts. MCM8 does not associate with the soluble MCM2-7 complex and binds chromatin upon initiation of DNA synthesis. MCM8 depletion does not affect replication licensing or MCM3 loading but slows down DNA synthesis and reduces chromatin recruitment of RPA34 and DNA polymerase-alpha. Recombinant MCM8 displays both DNA helicase and ATPase activities in vitro. Reconstitution experiments show that ATP binding in MCM8 is required to rescue DNA synthesis in MCM8-depleted extracts. MCM8 colocalizes with replication foci and RPA34 on chromatin. We suggest that MCM8 functions in the elongation step of DNA replication as a helicase that facilitates the recruitment of RPA34 and stimulates the processivity of DNA polymerases at replication foci.
MCM2 - 7蛋白是启动DNA合成所需的复制因子,目前是复制解旋酶的最佳候选者。我们发现,与MCM2 - 7相关的蛋白MCM8是非洲爪蟾卵提取物中高效复制染色体DNA所必需的。MCM8不与可溶性MCM2 - 7复合物结合,而是在DNA合成起始时与染色质结合。MCM8的缺失不影响复制许可或MCM3的加载,但会减缓DNA合成,并减少RPA34和DNA聚合酶α在染色质上的募集。重组MCM8在体外表现出DNA解旋酶和ATP酶活性。重组实验表明,MCM8中的ATP结合对于挽救MCM8缺失提取物中的DNA合成是必需的。MCM8与染色质上的复制灶和RPA34共定位。我们认为,MCM8在DNA复制的延伸步骤中作为一种解旋酶发挥作用,促进RPA34的募集,并刺激DNA聚合酶在复制灶处的持续合成能力。