Ebrahimi Hani, Donaldson Anne D
Institute of Medical Sciences, University of Aberdeen, Foresterhill, Aberdeen AB25 2ZD, Scotland, United Kingdom.
Genes Dev. 2008 Dec 1;22(23):3363-74. doi: 10.1101/gad.486208.
The perinuclear localization of Saccharomyces cerevisiae telomeres provides a useful model for studying mechanisms that control chromosome positioning. Telomeres tend to be localized at the nuclear periphery during early interphase, but following S phase they delocalize and remain randomly positioned within the nucleus. We investigated whether DNA replication causes telomere delocalization from the nuclear periphery. Using live-cell fluorescence microscopy, we show that delaying DNA replication causes a corresponding delay in the dislodgment of telomeres from the nuclear envelope, demonstrating that replication of individual telomeres causes their delocalization. Telomere delocalization is not simply the result of recruitment to a replication factory in the nuclear interior, since we found that telomeric DNA replication can occur either at the nuclear periphery or in the nuclear interior. The telomere-binding complex Ku is one of the factors that localizes telomeres to the nuclear envelope. Using a gene locus tethering assay, we show that Ku-mediated peripheral positioning is switched off after DNA replication. Based on these findings, we propose that DNA replication causes telomere delocalization by triggering stable repression of the Ku-mediated anchoring pathway. In addition to maintaining genetic information, DNA replication may therefore regulate subnuclear organization of chromatin.
酿酒酵母端粒的核周定位为研究控制染色体定位的机制提供了一个有用的模型。在早期分裂间期,端粒倾向于定位在核周边,但在S期之后,它们会离开原定位并随机分布于细胞核内。我们研究了DNA复制是否会导致端粒从核周边脱离。通过活细胞荧光显微镜观察,我们发现延迟DNA复制会相应延迟端粒从核膜上的脱离,这表明单个端粒的复制会导致其脱离原定位。端粒脱离原定位并非仅仅是因为被招募到核内的复制工厂,因为我们发现端粒DNA复制既可以发生在核周边,也可以发生在核内部。端粒结合复合物Ku是将端粒定位到核膜的因素之一。通过基因位点拴系试验,我们发现DNA复制后,Ku介导的外周定位被关闭。基于这些发现,我们提出DNA复制通过触发对Ku介导的锚定途径的稳定抑制来导致端粒脱离原定位。因此,除了维持遗传信息外,DNA复制可能还调控染色质的亚核组织。