Dalgaard Jacob Z, Eydmann Trevor, Koulintchenko Milana, Sayrac Suha, Vengrova Sonya, Yamada-Inagawa Tomoko
Marie Curie Research Institute, The Chart, Oxted, Surrey, UK.
Methods Mol Biol. 2009;521:35-53. doi: 10.1007/978-1-60327-815-7_3.
Bi-directionality is a common feature observed for genomic replication for all three phylogenetic kingdoms: Eubacteria, Archaea, and Eukaryotes. A consequence of bi-directional replication, where the two replication forks initiated at an origin move away from each other, is that the replication termination will occur at positions away from the origin sequence(s). The replication termination processes are therefore physically and mechanistically dissociated from the replication initiation. The replication machinery is a highly processive complex that in short time copies huge numbers of bases while competing for the DNA substrate with histones, transcription factors, and other DNA-binding proteins. Importantly, the replication machinery generally wins out; meanwhile, when converging forks meet termination occurs, thus preventing over-replication and genetic instability. Very different scenarios for the replication termination processes have been described for the three phylogenetic kingdoms. In eubacterial genomes replication termination is site specific, while in archaea and eukaryotes termination is thought to occur randomly within zones where converging replication forks meet. However, a few site-specific replication barrier elements that mediate replication termination have been described in eukaryotes. This review gives an overview about what is known about replication termination, with a focus on these natural site-specific replication termination sites.
双向性是在真细菌、古细菌和真核生物这三个系统发育界的基因组复制中观察到的一个共同特征。双向复制的一个结果是,在一个起点启动的两个复制叉彼此远离移动,这意味着复制终止将发生在远离起点序列的位置。因此,复制终止过程在物理和机制上与复制起始是分离的。复制机制是一个高度持续合成的复合体,它在短时间内复制大量碱基,同时与组蛋白、转录因子和其他DNA结合蛋白竞争DNA底物。重要的是,复制机制通常会胜出;与此同时,当汇合的复制叉相遇时就会发生终止,从而防止过度复制和遗传不稳定。对于这三个系统发育界,已经描述了非常不同的复制终止过程情况。在真细菌基因组中,复制终止是位点特异性的,而在古细菌和真核生物中,终止被认为发生在汇合的复制叉相遇的区域内的随机位置。然而,在真核生物中已经描述了一些介导复制终止的位点特异性复制屏障元件。本综述概述了关于复制终止的已知情况,重点关注这些天然的位点特异性复制终止位点。