Chen Haiming, Comment Nicholas, Chen Jie, Ronquist Scott, Hero Alfred, Ried Thomas, Rajapakse Indika
a Department of Computational Medicine & Bioinformatics ; Medical School, University of Michigan ; Ann Arbor , MI USA.
Nucleus. 2015;6(1):55-65. doi: 10.1080/19491034.2014.1003745.
In the study of interphase chromosome organization, genome-wide chromosome conformation capture (Hi-C) maps are often generated using 2-dimensional (2D) monolayer cultures. These 2D cells have morphological deviations from cells that exist in 3-dimensional (3D) tissues in vivo, and may not maintain the same chromosome conformation. We used Hi-C maps to test the extent of differences in chromosome conformation between human fibroblasts grown in 2D cultures and those grown in 3D spheroids. Significant differences in chromosome conformation were found between 2D cells and those grown in spheroids. Intra-chromosomal interactions were generally increased in spheroid cells, with a few exceptions, while inter-chromosomal interactions were generally decreased. Overall, chromosomes located closer to the nuclear periphery had increased intra-chromosomal contacts in spheroid cells, while those located more centrally had decreased interactions. This study highlights the necessity to conduct studies on the topography of the interphase nucleus under conditions that mimic an in vivo environment.
在间期染色体组织的研究中,全基因组染色体构象捕获(Hi-C)图谱通常是使用二维(2D)单层培养物生成的。这些二维细胞在形态上与体内三维(3D)组织中的细胞存在偏差,并且可能无法维持相同的染色体构象。我们使用Hi-C图谱来测试二维培养的人成纤维细胞与三维球体中生长的人成纤维细胞之间染色体构象的差异程度。在二维细胞和球体中生长的细胞之间发现了染色体构象的显著差异。除了少数例外,染色体内部相互作用在球体细胞中通常增加,而染色体间相互作用通常减少。总体而言,位于核周边较近位置的染色体在球体细胞中的染色体内接触增加,而位于更中心位置的染色体相互作用减少。这项研究强调了在模拟体内环境的条件下研究间期细胞核拓扑结构的必要性。