Location of oncogene-induced DNA damage sites revealed by quantitative analysis of a DNA counterstain.

IF 2.2 4区 生物学 Q3 BIOPHYSICS
Greta Paternò, Silvia Scalisi, Gaetano Ivan Dellino, Mario Faretta, Pier Giuseppe Pelicci, Alberto Diaspro, Luca Lanzanò
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引用次数: 0

Abstract

Oncogene activation is a key driver of cancer development, inducing aberrant cellular proliferation and DNA replication stress. This in turn, leads to DNA damage-which accumulates in specific genomic regions-contributing to genomic instability in cancer. However, the interplay between oncogene-induced DNA damage and chromatin organization is still poorly understood. In this study, we introduce a QUantitative ANalysis of DNA cOunterstains (QUANDO) to investigate the subnuclear localization of DNA damage in single-cell nuclei of U937-PR9 cells, an in vitro model of acute promyelocytic leukemia (APL). Using advanced imaging techniques, including DNA intensity analysis and colocalization by image cross-correlation spectroscopy (ICCS), we map DNA damage foci and correlate them with chromatin regions of different density. QUANDO is applied to dual-color confocal images of the DNA damage marker γ-H2AX and the DNA counterstain DAPI, allowing single-cell measurements of foci distribution within areas of low or high DNA density. We find that spontaneous DNA damage and DNA damage induced by the activation of PML-RARα oncogene predominantly localize in euchromatic regions. Conversely, when DNA damage is induced by the radiomimetic agent neocarzinostatin (NCS), the foci appear more evenly distributed in euchromatic and heterochromatic regions. These findings underscore the complex interplay between oncogene activation and chromatin organization, revealing how disruptions in DNA damage distribution can contribute to genomic instability and offering new insights for targeting DNA repair mechanisms in cancer therapies.

DNA反染定量分析揭示癌基因诱导的DNA损伤位点的位置。
癌基因激活是癌症发展的关键驱动因素,诱导异常细胞增殖和DNA复制应激。这反过来又会导致DNA损伤——在特定的基因组区域积累——导致癌症的基因组不稳定。然而,癌基因诱导的DNA损伤和染色质组织之间的相互作用仍然知之甚少。在这项研究中,我们引入DNA反染色定量分析(QUANDO)来研究急性早幼粒细胞白血病(APL)体外模型U937-PR9细胞单细胞细胞核中DNA损伤的亚核定位。利用先进的成像技术,包括DNA强度分析和图像相互关联光谱(ICCS)共定位,我们绘制了DNA损伤病灶,并将它们与不同密度的染色质区域相关联。QUANDO应用于DNA损伤标记γ-H2AX和DNA反染剂DAPI的双色共聚焦图像,允许单细胞测量低或高DNA密度区域内的焦点分布。我们发现自发DNA损伤和PML-RARα癌基因激活引起的DNA损伤主要集中在染色质区。相反,当由拟放射线剂neocarzinostatin (NCS)诱导DNA损伤时,病灶更均匀地分布在正染色质和异染色质区域。这些发现强调了癌基因激活和染色质组织之间复杂的相互作用,揭示了DNA损伤分布的破坏如何导致基因组不稳定,并为靶向癌症治疗中的DNA修复机制提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
European Biophysics Journal
European Biophysics Journal 生物-生物物理
CiteScore
4.30
自引率
0.00%
发文量
43
审稿时长
6-12 weeks
期刊介绍: The journal publishes papers in the field of biophysics, which is defined as the study of biological phenomena by using physical methods and concepts. Original papers, reviews and Biophysics letters are published. The primary goal of this journal is to advance the understanding of biological structure and function by application of the principles of physical science, and by presenting the work in a biophysical context. Papers employing a distinctively biophysical approach at all levels of biological organisation will be considered, as will both experimental and theoretical studies. The criteria for acceptance are scientific content, originality and relevance to biological systems of current interest and importance. Principal areas of interest include: - Structure and dynamics of biological macromolecules - Membrane biophysics and ion channels - Cell biophysics and organisation - Macromolecular assemblies - Biophysical methods and instrumentation - Advanced microscopics - System dynamics.
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