Department of Biological Science, Florida State University, Tallahassee, FL 32304, USA.
J Cell Sci. 2022 May 15;135(10). doi: 10.1242/jcs.244004. Epub 2022 May 24.
Genome organization and the three-dimensional folding of chromosomes are now seen as major contributors to nearly all nuclear functions including gene regulation, replication and repair. Recent studies have shown that in addition to the dramatic metamorphoses in chromosome conformation associated with entry to, and exit from mitosis, chromosomes undergo continual conformational changes throughout interphase with differential dynamics in loop structure, topological domains, compartments and lamina-associated domains. Understanding and accounting for these cell-cycle-dependent conformational changes is essential for the interpretation of data from a growing array of powerful molecular techniques to investigate genome conformation function, and to identify the molecules and mechanisms that drive chromosome conformational changes. In this Cell Science at a Glance article and the accompanying poster, we review Hi-C and microscopy studies describing cell-cycle-dependent conformational changes in chromosome structure.
基因组组织和染色体的三维折叠现在被认为是几乎所有核功能的主要贡献者,包括基因调控、复制和修复。最近的研究表明,除了与有丝分裂进入和退出相关的染色体构象的巨大变化外,染色体在整个间期也会发生持续的构象变化,环结构、拓扑域、隔室和核纤层相关域的动力学存在差异。理解和解释这些细胞周期依赖性构象变化对于解释越来越多的强大分子技术研究基因组构象功能的数据以及确定驱动染色体构象变化的分子和机制至关重要。在这篇《细胞科学一瞥》文章和随附的海报中,我们回顾了描述染色体结构中细胞周期依赖性构象变化的 Hi-C 和显微镜研究。