Löb D, Lengert N, Chagin V O, Reinhart M, Casas-Delucchi C S, Cardoso M C, Drossel B
Department of Physics, Institute for Condensed Matter Physics, Technische Universität Darmstadt, 64289 Darmstadt, Germany.
Laboratory of Chromosome Stability, Institute of Cytology, St Petersburg 194064, Russia.
Nat Commun. 2016 Apr 7;7:11207. doi: 10.1038/ncomms11207.
DNA replication dynamics in cells from higher eukaryotes follows very complex but highly efficient mechanisms. However, the principles behind initiation of potential replication origins and emergence of typical patterns of nuclear replication sites remain unclear. Here, we propose a comprehensive model of DNA replication in human cells that is based on stochastic, proximity-induced replication initiation. Critical model features are: spontaneous stochastic firing of individual origins in euchromatin and facultative heterochromatin, inhibition of firing at distances below the size of chromatin loops and a domino-like effect by which replication forks induce firing of nearby origins. The model reproduces the empirical temporal and chromatin-related properties of DNA replication in human cells. We advance the one-dimensional DNA replication model to a spatial model by taking into account chromatin folding in the nucleus, and we are able to reproduce the spatial and temporal characteristics of the replication foci distribution throughout S-phase.
高等真核生物细胞中的DNA复制动力学遵循非常复杂但高效的机制。然而,潜在复制起点的起始以及核复制位点典型模式的出现背后的原理仍不清楚。在此,我们提出了一个基于随机、邻近诱导复制起始的人类细胞DNA复制综合模型。关键模型特征包括:常染色质和兼性异染色质中单个起点的自发随机激发,在低于染色质环大小的距离处激发的抑制,以及复制叉诱导附近起点激发的多米诺骨牌效应。该模型再现了人类细胞中DNA复制的经验性时间和染色质相关特性。我们通过考虑细胞核中的染色质折叠,将一维DNA复制模型推进到空间模型,并能够再现整个S期复制灶分布的时空特征。