Institute of Medical Sciences, University of Aberdeen, Aberdeen, UK
Institute of Medical Sciences, University of Aberdeen, Aberdeen, UK.
EMBO Rep. 2018 Sep;19(9). doi: 10.15252/embr.201846222. Epub 2018 Aug 13.
Despite its evolutionarily conserved function in controlling DNA replication, the chromosomal binding sites of the budding yeast Rif1 protein are not well understood. Here, we analyse genome-wide binding of budding yeast Rif1 by chromatin immunoprecipitation, during G1 phase and in S phase with replication progressing normally or blocked by hydroxyurea. Rif1 associates strongly with telomeres through interaction with Rap1. By comparing genomic binding of wild-type Rif1 and truncated Rif1 lacking the Rap1-interaction domain, we identify hundreds of Rap1-dependent and Rap1-independent chromosome interaction sites. Rif1 binds to centromeres, highly transcribed genes and replication origins in a Rap1-independent manner, associating with both early and late-initiating origins. Interestingly, Rif1 also binds around activated origins when replication progression is blocked by hydroxyurea, suggesting association with blocked forks. Using nascent DNA labelling and DNA combing techniques, we find that in cells treated with hydroxyurea, yeast Rif1 stabilises recently synthesised DNA Our results indicate that, in addition to controlling DNA replication initiation, budding yeast Rif1 plays an ongoing role after initiation and controls events at blocked replication forks.
尽管 Rif1 蛋白在控制 DNA 复制方面具有进化上保守的功能,但芽殖酵母 Rif1 蛋白的染色体结合位点还不是很清楚。在这里,我们通过染色质免疫沉淀分析,在 G1 期和 S 期(正常复制或被羟基脲阻断)分析了芽殖酵母 Rif1 的全基因组结合情况。Rif1 通过与 Rap1 相互作用而与端粒强烈结合。通过比较野生型 Rif1 和缺少 Rap1 相互作用域的截断 Rif1 的基因组结合情况,我们确定了数百个依赖 Rap1 和不依赖 Rap1 的染色体相互作用位点。Rif1 以 Rap1 独立的方式与着丝粒、高度转录的基因和复制起点结合,与早期和晚期起始的起点都有联系。有趣的是,当复制被羟基脲阻断时,Rif1 也会围绕激活的起点结合,这表明它与受阻的叉结合。使用新生 DNA 标记和 DNA 梳理技术,我们发现,在用羟基脲处理的细胞中,酵母 Rif1 稳定了最近合成的 DNA。我们的结果表明,除了控制 DNA 复制起始外,芽殖酵母 Rif1 在起始后还发挥着持续的作用,并控制受阻复制叉上的事件。