Kumar Pradeep, Gholamalamdari Omid, Zhang Yang, Zhang Liguo, Vertii Anastassiia, van Schaik Tom, Peric-Hupkes Daan, Sasaki Takayo, Gilbert David M, van Steensel Bas, Ma Jian, Kaufman Paul D, Belmont Andrew S
bioRxiv. 2023 Nov 1:2023.10.29.564613. doi: 10.1101/2023.10.29.564613.
Genome differential positioning within interphase nuclei remains poorly explored. We extended and validated TSA-seq to map genomic regions near nucleoli and pericentric heterochromatin in four human cell lines. Our study confirmed that smaller chromosomes localize closer to nucleoli but further deconvolved this by revealing a preference for chromosome arms below 36-46 Mbp in length. We identified two lamina associated domain subsets through their differential nuclear lamina versus nucleolar positioning in different cell lines which showed distinctive patterns of DNA replication timing and gene expression across all cell lines. Unexpectedly, active, nuclear speckle-associated genomic regions were found near typically repressive nuclear compartments, which is attributable to the close proximity of nuclear speckles and nucleoli in some cell types, and association of centromeres with nuclear speckles in hESCs. Our study points to a more complex and variable nuclear genome organization than suggested by current models, as revealed by our TSA-seq methodology.
间期细胞核内的基因组差异定位仍未得到充分探索。我们扩展并验证了TSA-seq技术,以绘制四种人类细胞系中核仁附近和着丝粒周围异染色质的基因组区域图谱。我们的研究证实,较小的染色体定位更靠近核仁,但通过揭示对长度低于36 - 46 Mbp的染色体臂的偏好进一步对此进行了剖析。我们通过不同细胞系中核纤层与核仁的差异定位鉴定出两个核纤层相关结构域亚群,这些亚群在所有细胞系中表现出独特的DNA复制时间模式和基因表达模式。出乎意料的是,在通常具有抑制作用的核区室附近发现了活跃的、与核斑相关的基因组区域,这归因于某些细胞类型中核斑与核仁的紧密接近,以及人胚胎干细胞中着丝粒与核斑的关联。我们的研究表明,正如我们的TSA-seq方法所揭示的,核基因组组织比当前模型所暗示的更为复杂和多变。