Graduate Program, Peking Union Medical College and Chinese Academy of Medical Sciences, Beijing 100730, People's Republic of China.
Science. 2010 Apr 2;328(5974):94-8. doi: 10.1126/science.1178994.
Semiconservative DNA replication ensures the faithful duplication of genetic information during cell divisions. However, how epigenetic information carried by histone modifications propagates through mitotic divisions remains elusive. To address this question, the DNA replication-dependent nucleosome partition pattern must be clarified. Here, we report significant amounts of H3.3-H4 tetramers split in vivo, whereas most H3.1-H4 tetramers remained intact. Inhibiting DNA replication-dependent deposition greatly reduced the level of splitting events, which suggests that (i) the replication-independent H3.3 deposition pathway proceeds largely by cooperatively incorporating two new H3.3-H4 dimers and (ii) the majority of splitting events occurred during replication-dependent deposition. Our results support the idea that "silent" histone modifications within large heterochromatic regions are maintained by copying modifications from neighboring preexisting histones without the need for H3-H4 splitting events.
半保守的 DNA 复制确保了遗传信息在细胞分裂过程中的忠实复制。然而,由组蛋白修饰携带的表观遗传信息如何在有丝分裂分裂中传播仍然难以捉摸。为了解决这个问题,必须阐明依赖于 DNA 复制的核小体分配模式。在这里,我们报道了大量的 H3.3-H4 四聚体在体内分裂,而大多数 H3.1-H4 四聚体保持完整。抑制依赖于 DNA 复制的沉积大大降低了分裂事件的水平,这表明:(i)非复制依赖的 H3.3 沉积途径主要通过合作掺入两个新的 H3.3-H4 二聚体进行;(ii)大多数分裂事件发生在依赖于复制的沉积过程中。我们的结果支持这样一种观点,即在大的异染色质区域内的“沉默”组蛋白修饰通过从相邻的预先存在的组蛋白复制修饰来维持,而不需要 H3-H4 分裂事件。