Institute of Epigenetics and Stem Cells, Helmholtz Zentrum München, Feodor-Lynen-Strasse 21, 81377 München, Germany.
Institute of Functional Epigenetics, Helmholtz Zentrum München, Ingolstädter Landstrasse 1, 85764 Neuherberg, Germany.
Cell Rep. 2023 Feb 28;42(2):112045. doi: 10.1016/j.celrep.2023.112045. Epub 2023 Jan 25.
The chromatin environment at origins of replication is thought to influence DNA replication initiation in eukaryotic genomes. However, it remains unclear how and which chromatin features control the firing of early-efficient (EE) or late-inefficient (LI) origins. Here, we use site-specific recombination and single-locus chromatin isolation to purify EE and LI replication origins in Saccharomyces cerevisiae. Using mass spectrometry, we define the protein composition of native chromatin regions surrounding the EE and LI replication start sites. In addition to known origin interactors, we find the microtubule-binding Ask1/DASH complex as an origin-regulating factor. Strikingly, tethering of Ask1 to individual origin sites advances replication timing (RT) of the targeted chromosomal domain. Targeted degradation of Ask1 globally changes RT of a subset of origins, which can be reproduced by inhibiting microtubule dynamics. Thus, our findings mechanistically connect RT and chromosomal organization via Ask1/DASH with the microtubule cytoskeleton.
复制起始点的染色质环境被认为会影响真核基因组中的 DNA 复制起始。然而,目前尚不清楚染色质的哪些特征以及如何控制早期高效(EE)或晚期低效(LI)起始点的启动。在这里,我们使用位点特异性重组和单基因座染色质分离技术,在酿酒酵母中纯化 EE 和 LI 复制起始点。通过质谱分析,我们定义了 EE 和 LI 复制起始位点周围天然染色质区域的蛋白质组成。除了已知的起始点相互作用因子外,我们还发现微管结合 Ask1/DASH 复合物是一种调节起始点的因子。引人注目的是,将 Ask1 固定在单个起始点上会提前靶向染色质区域的复制时间(RT)。Ask1 的靶向降解会全局改变一部分起始点的 RT,这可以通过抑制微管动力学来重现。因此,我们的研究结果通过 Ask1/DASH 与微管细胞骨架将 RT 和染色体组织联系起来,从机制上进行了连接。