Arroyo Maria, Fernández-Mimbrera M A, Gollini E, Esteve-Codina A, Sánchez A, Marchal Juan Alberto
Cell Biology and Epigenetics, Department of Biology, Technical University of Darmstadt, Darmstadt, Germany.
Departamento Biología Experimental, Universidad de Jaén, Paraje Las Lagunillas S/N E23071, Jaén, Spain.
Sci Rep. 2025 Jan 30;15(1):3831. doi: 10.1038/s41598-025-87895-8.
In this study, we investigate the G2 checkpoint activated by chromosome entanglements, the so-called Decatenation Checkpoint (DC), which can be activated by TOP2A catalytic inhibition. Specifically, we focus on the spontaneous ability of cells to bypass or override this checkpoint, referred to as checkpoint adaptation. Some factors involved in adapting to this checkpoint are p53 and MCPH1. Using cellular models depleted of p53 or both p53 and MCPH1 in hTERT-RPE1 cells, we analyzed cell cycle dynamics and adaptation, segregation defects, apoptosis rate, and transcriptional changes related to prolonged exposure to TOP2A inhibitors. Our findings reveal that cell cycle dynamics are altered in MCPH1-depleted cells compared to control cells. We found that MCPH1 depletion can restore the robustness of the DC in a p53-negative background. Furthermore, this research highlights the differential effects of TOP2A poisons and catalytic inhibitors on cellular outcomes and transcriptional profiles. By examining the different mechanisms of TOP2A inhibition and their impact on cellular processes, this study contributes to a deeper understanding of the regulation and physiological implications of the DC and checkpoint adaptation in non-carcinogenic cell lines.
在本研究中,我们探究了由染色体缠结激活的G2检查点,即所谓的解连环检查点(DC),它可被TOP2A催化抑制所激活。具体而言,我们聚焦于细胞绕过或克服此检查点的自发能力,即检查点适应。参与适应此检查点的一些因素是p53和MCPH1。利用hTERT-RPE1细胞中p53缺失或p53与MCPH1均缺失的细胞模型,我们分析了细胞周期动力学与适应情况、分离缺陷、凋亡率以及与长期暴露于TOP2A抑制剂相关的转录变化。我们的研究结果表明,与对照细胞相比,MCPH1缺失的细胞中细胞周期动力学发生了改变。我们发现,在p53阴性背景下,MCPH1缺失可恢复DC的稳健性。此外,本研究突出了TOP2A毒物和催化抑制剂对细胞结果及转录谱的不同影响。通过研究TOP2A抑制的不同机制及其对细胞过程的影响,本研究有助于更深入地理解非致癌细胞系中DC及检查点适应的调控和生理意义。