Are the processes of DNA replication and DNA repair reading a common structural chromatin unit?

Stefania Mamberti, M Cristina Cardoso
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引用次数: 6

Abstract

Decades of investigation on genomic DNA have brought us deeper insights into its organization within the nucleus and its metabolic mechanisms. This was fueled by the parallel development of experimental techniques and has stimulated model building to simulate genome conformation in agreement with the experimental data. Here, we will discuss our recent discoveries on the chromatin units of DNA replication and DNA damage response. We will highlight their remarkable structural similarities and how both revealed themselves as clusters of nanofocal structures each on the hundred thousand base pair size range corresponding well with chromatin loop sizes. We propose that the function of these two global genomic processes is determined by the loop level organization of chromatin structure with structure dictating function.Abbreviations: 3D-SIM: 3D-structured illumination microscopy; 3C: chromosome conformation capture; DDR: DNA damage response; FISH: fluorescent in situ hybridization; Hi-C: high conformation capture; HiP-HoP: highly predictive heteromorphic polymer model; IOD: inter-origin distance; LAD: lamina associated domain; STED: stimulated emission depletion microscopy; STORM: stochastic optical reconstruction microscopy; SBS: strings and binders switch model; TAD: topologically associated domain.

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DNA复制和DNA修复是一个共同的染色质结构单元吗?
几十年来对基因组DNA的研究使我们对其在细胞核内的组织及其代谢机制有了更深入的了解。这是由实验技术的平行发展推动的,并刺激了模型的建立,以模拟与实验数据一致的基因组构象。在这里,我们将讨论我们在DNA复制和DNA损伤反应的染色质单位方面的最新发现。我们将强调它们显着的结构相似性,以及它们如何在100,000碱基对大小范围内显示出各自的纳米焦结构簇,这些纳米焦结构簇与染色质环的大小相对应。我们认为,这两个整体基因组过程的功能是由染色质结构的环级组织决定的,结构决定功能。缩写词:3D-SIM: 3d结构照明显微镜;3C:染色体构象捕获;DDR: DNA损伤反应;FISH:荧光原位杂交;Hi-C:高构象俘获;HiP-HoP:高预测的异型聚合物模型;IOD:产地间距离;LAD:层相关结构域;STED:受激发射耗尽显微镜;STORM:随机光学重建显微镜;SBS:字符串和绑定器切换模型;TAD:拓扑关联域。
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