Shinkai Soya, Nozaki Tadasu, Maeshima Kazuhiro, Togashi Yuichi
Research Center for the Mathematics on Chromatin Live Dynamics (RcMcD), Hiroshima University, Higashi-Hiroshima, Japan.
Biological Macromolecules Laboratory, Structural Biology Center, National Institute of Genetics, Mishima, Japan.
PLoS Comput Biol. 2016 Oct 20;12(10):e1005136. doi: 10.1371/journal.pcbi.1005136. eCollection 2016 Oct.
The mammalian genome is organized into submegabase-sized chromatin domains (CDs) including topologically associating domains, which have been identified using chromosome conformation capture-based methods. Single-nucleosome imaging in living mammalian cells has revealed subdiffusively dynamic nucleosome movement. It is unclear how single nucleosomes within CDs fluctuate and how the CD structure reflects the nucleosome movement. Here, we present a polymer model wherein CDs are characterized by fractal dimensions and the nucleosome fibers fluctuate in a viscoelastic medium with memory. We analytically show that the mean-squared displacement (MSD) of nucleosome fluctuations within CDs is subdiffusive. The diffusion coefficient and the subdiffusive exponent depend on the structural information of CDs. This analytical result enabled us to extract information from the single-nucleosome imaging data for HeLa cells. Our observation that the MSD is lower at the nuclear periphery region than the interior region indicates that CDs in the heterochromatin-rich nuclear periphery region are more compact than those in the euchromatin-rich interior region with respect to the fractal dimensions as well as the size. Finally, we evaluated that the average size of CDs is in the range of 100-500 nm and that the relaxation time of nucleosome movement within CDs is a few seconds. Our results provide physical and dynamic insights into the genome architecture in living cells.
哺乳动物基因组被组织成亚兆碱基大小的染色质结构域(CDs),包括拓扑相关结构域,这些结构域已通过基于染色体构象捕获的方法得以鉴定。对活的哺乳动物细胞进行的单核小体成像揭示了亚扩散动态的核小体运动。目前尚不清楚CDs内的单个核小体如何波动,以及CD结构如何反映核小体运动。在此,我们提出一种聚合物模型,其中CDs由分形维数表征,并且核小体纤维在具有记忆的粘弹性介质中波动。我们通过分析表明,CDs内核小体波动的平均平方位移(MSD)是亚扩散的。扩散系数和亚扩散指数取决于CDs的结构信息。这一分析结果使我们能够从HeLa细胞的单核小体成像数据中提取信息。我们观察到核周区域的MSD低于内部区域,这表明在富含异染色质的核周区域,CDs在分形维数和大小方面比富含常染色质的内部区域更紧凑。最后,我们评估出CDs的平均大小在100 - 500 nm范围内,并且CDs内核小体运动的弛豫时间为几秒。我们的结果为活细胞中的基因组结构提供了物理和动态方面的见解。