γ- h2ax在小鼠胚胎干细胞分化及γ辐照后的分布

IF 3.9 4区 生物学 Q4 Biochemistry, Genetics and Molecular Biology Cells and Development Pub Date : 2023-11-11 DOI:10.1016/j.cdev.2023.203882
Tom C. Karagiannis , Christian Orlowski , Katherine Ververis , Eleni Pitsillou , Gulcan Sarila , Samuel T. Keating , Laura J. Foong , Stefanie Fabris , Christina Ngo-Nguyen , Neha Malik , Jun Okabe , Andrew Hung , Theo Mantamadiotis , Assam El-Osta
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引用次数: 0

摘要

磷酸化组蛋白H2AX (γH2AX)是DNA双链断裂(DSBs)的敏感分子标记,与干细胞生物学有关。我们建立了小鼠胚胎干细胞(mESC)分化模型,并观察了在此过程中γ - h2ax聚焦的动态变化。我们的研究结果显示,未分化的mESCs中有大量的γ - h2ax灶,随着细胞向内皮细胞谱系分化而减少。值得注意的是,我们观察到两种不同的γH2AX聚焦模式:典型的离散型γH2AX聚焦,与转录允许的染色质标记H3K4me3共定位,以及不太明确的聚集型γH2AX区域,仅在中间祖细胞中观察到。接下来,我们探讨了mESCs对γ-辐射(137Cs)的响应。暴露于γ辐射后,mESCs表现出细胞活力降低和γ- h2ax灶增加,表明放射敏感性。尽管受到辐射,存活的mESCs仍保持其分化潜能。为了进一步证明我们的发现,我们研究了神经干细胞祖细胞(NSPCs)。与mESCs类似,NSPCs显示出与祖细胞相关的聚集性γ - h2ax灶,以及指示胚胎干细胞或分化细胞的离散性γ - h2ax灶。综上所述,我们的研究结果表明,γH2AX是dsb的一种多功能标记物,可能在干细胞分化过程中发挥生物标记物的作用。在mESCs和NSPCs分化过程中,γ - h2ax聚焦的不同模式为分化过程中的DNA修复动力学提供了有价值的见解,揭示了干细胞基因组完整性和细胞可塑性之间的复杂平衡。最后,在中间祖细胞中观察到的聚集的γ - h2ax焦点是一个有趣的特征,需要进一步的探索。
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γH2AX in mouse embryonic stem cells: Distribution during differentiation and following γ-irradiation

Phosphorylated histone H2AX (γH2AX) represents a sensitive molecular marker of DNA double-strand breaks (DSBs) and is implicated in stem cell biology. We established a model of mouse embryonic stem cell (mESC) differentiation and examined the dynamics of γH2AX foci during the process. Our results revealed high numbers of γH2AX foci in undifferentiated mESCs, decreasing as the cells differentiated towards the endothelial cell lineage. Notably, we observed two distinct patterns of γH2AX foci: the typical discrete γH2AX foci, which colocalize with the transcriptionally permissive chromatin mark H3K4me3, and the less well-characterized clustered γH2AX regions, which were only observed in intermediate progenitor cells. Next, we explored responses of mESCs to γ-radiation (137Cs). Following exposure to γ-radiation, mESCs showed a reduction in cell viability and increased γH2AX foci, indicative of radiosensitivity. Despite irradiation, surviving mESCs retained their differentiation potential. To further exemplify our findings, we investigated neural stem progenitor cells (NSPCs). Similar to mESCs, NSPCs displayed clustered γH2AX foci associated with progenitor cells and discrete γH2AX foci indicative of embryonic stem cells or differentiated cells. In conclusion, our findings demonstrate that γH2AX serves as a versatile marker of DSBs and may have a role as a biomarker in stem cell differentiation. The distinct patterns of γH2AX foci in differentiating mESCs and NSPCs provide valuable insights into DNA repair dynamics during differentiation, shedding light on the intricate balance between genomic integrity and cellular plasticity in stem cells. Finally, the clustered γH2AX foci observed in intermediate progenitor cells is an intriguing feature, requiring further exploration.

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来源期刊
Cells and Development
Cells and Development Biochemistry, Genetics and Molecular Biology-Developmental Biology
CiteScore
2.90
自引率
0.00%
发文量
33
审稿时长
41 days
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