Coster Gideon, Diffley John F X
Francis Crick Institute, London NW1 1AT, UK.
Science. 2017 Jul 21;357(6348):314-318. doi: 10.1126/science.aan0063.
Bidirectional replication from eukaryotic DNA replication origins requires the loading of two ring-shaped minichromosome maintenance (MCM) helicases around DNA in opposite orientations. MCM loading is orchestrated by binding of the origin recognition complex (ORC) to DNA, but how ORC coordinates symmetrical MCM loading is unclear. We used natural budding yeast DNA replication origins and synthetic DNA sequences to show that efficient MCM loading requires binding of two ORC molecules to two ORC binding sites. The relative orientation of these sites, but not the distance between them, was found to be critical for MCM loading in vitro and origin function in vivo. We propose that quasi-symmetrical loading of individual MCM hexamers by ORC and directed MCM translocation into double hexamers acts as a unifying mechanism for the establishment of bidirectional replication in archaea and eukaryotes.
真核生物DNA复制起点的双向复制需要两个环形微小染色体维持(MCM)解旋酶以相反方向围绕DNA加载。MCM的加载是由起点识别复合物(ORC)与DNA的结合来协调的,但ORC如何协调对称的MCM加载尚不清楚。我们使用天然出芽酵母DNA复制起点和合成DNA序列表明,高效的MCM加载需要两个ORC分子与两个ORC结合位点结合。发现这些位点的相对方向而非它们之间的距离对于体外MCM加载和体内起点功能至关重要。我们提出,ORC对单个MCM六聚体的准对称加载以及MCM定向转位形成双六聚体,是古细菌和真核生物中建立双向复制的统一机制。