Laboratoire Joliot-Curie, Ecole Normale Supérieure de Lyon, CNRS, F-69007 Lyon, France.
Nucleic Acids Res. 2012 Oct;40(19):9470-81. doi: 10.1093/nar/gks736. Epub 2012 Aug 8.
Although chromatin folding is known to be of functional importance to control the gene expression program, less is known regarding its interplay with DNA replication. Here, using Circular Chromatin Conformation Capture combined with high-throughput sequencing, we identified megabase-sized self-interacting domains in the nucleus of a human lymphoblastoid cell line, as well as in cycling and resting peripheral blood mononuclear cells (PBMC). Strikingly, the boundaries of those domains coincide with early-initiation zones in every cell types. Preferential interactions have been observed between the consecutive early-initiation zones, but also between those separated by several tens of megabases. Thus, the 3D conformation of chromatin is strongly correlated with the replication timing along the whole chromosome. We furthermore provide direct clues that, in addition to the timing value per se, the shape of the timing profile at a given locus defines its set of genomic contacts. As this timing-related scheme of chromatin organization exists in lymphoblastoid cells, resting and cycling PBMC, this indicates that it is maintained several weeks or months after the previous S-phase. Lastly, our work highlights that the major chromatin changes accompanying PBMC entry into cell cycle occur while keeping largely unchanged the long-range chromatin contacts.
尽管染色质折叠对于控制基因表达程序具有重要的功能意义,但对于其与 DNA 复制的相互作用却知之甚少。在这里,我们使用环形染色质构象捕获结合高通量测序,在人类淋巴母细胞系的细胞核中以及在循环和静止外周血单核细胞 (PBMC) 中鉴定了兆碱基大小的自我相互作用域。引人注目的是,这些域的边界与每种细胞类型中的早期起始区重合。在连续的早期起始区之间观察到优先相互作用,但也在相隔数十兆碱基的区域之间观察到优先相互作用。因此,染色质的 3D 构象与整个染色体的复制时间密切相关。我们还提供了直接的线索,表明除了时间值本身外,给定基因座的时间曲线的形状定义了其基因组接触的集合。由于这种与时间相关的染色质组织方案存在于淋巴母细胞系、静止和循环 PBMC 中,这表明它在之前的 S 期后可以维持数周或数月。最后,我们的工作强调了 PBMC 进入细胞周期时伴随的主要染色质变化,同时保持了长距离染色质接触的大部分不变。