Strzeszewska-Potyrała Anna, Staniak Karolina, Czarnecka-Herok Joanna, Rafiee Mahmoud-Reza, Herok Marcin, Mosieniak Grażyna, Krijgsveld Jeroen, Sikora Ewa
Laboratory of Molecular Bases of Aging, Nencki Institute of Experimental Biology, PAS, 3 Pasteur Street, 02-093 Warsaw, Poland.
Bioinformatics and Computational Biology Laboratory, Francis Crick Institute, 1 Midland Road, London NW1 1AT, UK.
Cancers (Basel). 2021 Apr 27;13(9):2115. doi: 10.3390/cancers13092115.
The p21 protein, encoded by , plays a vital role in senescence, and its transcriptional control by the tumour suppressor p53 is well-established. However, p21 can also be regulated in a p53-independent manner, by mechanisms that still remain less understood. We aimed to expand the knowledge about p53-independent senescence by looking for novel players involved in regulation. We used a chromatin-directed proteomic approach and identified ZNF84 as a novel regulator of p21 in various p53-deficient cell lines treated with cytostatic dose of doxorubicin. Knock-down of ZNF84, an as-yet un-characterized protein, inhibited p21 gene and protein expression in response to doxorubicin, it attenuated senescence and was associated with enhanced proliferation, indicating that ZNF84-deficiency can favor senescence bypass. ZNF84 deficiency was also associated with transcriptomic changes in genes governing various cancer-relevant processes e.g., mitosis. In cells with ZNF84 knock-down we discovered significantly lower level of H2AX Ser139 phosphorylation (γH2AX), which is triggered by DNA double strand breaks. Intriguingly, we observed a reverse correlation between the level of ZNF84 expression and survival rate of colon cancer patients. In conclusion, ZNF84, whose function was previously not recognized, was identified here as a critical p53-independent regulator of senescence, opening possibilities for its targeting in novel therapies of p53-null cancers.
由……编码的p21蛋白在衰老过程中起着至关重要的作用,并且其由肿瘤抑制因子p53进行的转录调控已得到充分证实。然而,p21也可以通过一些仍不太清楚的机制以p53非依赖的方式进行调控。我们旨在通过寻找参与……调控的新因子来扩展关于p53非依赖衰老的知识。我们采用了一种染色质导向的蛋白质组学方法,并在接受细胞毒性剂量阿霉素处理的各种p53缺陷细胞系中鉴定出ZNF84是p21的一种新型调节因子。敲低ZNF84(一种尚未被表征的蛋白质)会抑制阿霉素诱导的p21基因和蛋白表达,减弱衰老并与增殖增强相关,这表明ZNF84缺陷可能有利于衰老的绕过。ZNF84缺陷还与控制各种癌症相关过程(如细胞有丝分裂)的基因的转录组变化有关。在ZNF84敲低的细胞中,我们发现由DNA双链断裂引发的H2AX丝氨酸139磷酸化(γH2AX)水平显著降低。有趣的是,我们观察到ZNF84表达水平与结肠癌患者生存率之间呈负相关。总之,ZNF84此前其功能未被认识,在此被鉴定为衰老的关键p53非依赖调节因子,为其在p53缺失癌症的新疗法中作为靶点开辟了可能性。