Ju Zhao, Lei Mingjun, Xuan Lihui, Luo Jinhua, Zhou Meiling, Wang Yin, Shen Liangfang, Skonieczna Magdalena, Ivanov Dmitry S, Zakaly Hesham M H, Markovic Vladimir, Zhou Pingkun, Huang Ruixue
Department of Occupational and Environmental Health, Xiangya School of Public Health, Central South University, Changsha 410078, China.
Department of Oncology, Xiangya Hospital, Central South University, China.
J Adv Res. 2023 Aug 2. doi: 10.1016/j.jare.2023.07.011.
p53 wild-type lung cancer cells can develop radiation resistance. Circular RNA (circRNA) consists of a family of transcripts with exclusive structures. circRNA is critical in tumorigenesis and is a potential biomarker or therapeutic target. It is uncertain how circRNA expression and functions are regulated post-radiation in p53 wild-type cancer cells.
A549 or H1299 cells were divided into p53 and p53 groups by CRISPR/Cas9; both groups were subjected to 4 Gy ionizing radiation (IR: p53-IR and p53-IR). RNA-seq, CCK8, cell cycle, and other functional and mechanism experiments were performed in vivo. p53 gene knockout mice were generated to test the cell results in vitro.
circRNAs were found in differential groups. circRNA_0006420 (IRSense) was upregulated in p53 cells but had the same expression level as p53 cells after radiation, indicating that p53 silencing prevents its upregulation after IR. In the presence of p53, upregulated IRSense post-radiation induces G2/M arrest by regulating DNA damage repair (DDR) pathway-related proteins. Meanwhile, upregulated IRSense post-radiation aggravates the radiation-induced epithelial-mesenchymal transition (EMT). Interestingly, in the presence of p53, it promotes IRSense/HUR/PTBP1 complex formation resulting in the promotion of the radiation-induced EMT. Moreover, c-Jun regulates the upregulation of p53 transcription after radiation treatment. For these lung cancer cells with p53, upregulated IRSense aggravates lung cancer cell proliferation and increases radiation resistance by interacting with HUR (ElAV-like protein 1) and PTBP1 (polypyrimidine tract-binding protein 1) in the nucleus.
Lung cancer cells retaining p53 may upregulate circRNA_0006420 (IRSense) expression post radiation to form an IRSense/HUR/PTBP1 complex leading to radiotherapy resistance. This study furthers our understanding of the roles of circRNA in regulating the effect of radiotherapy and provides novel therapeutic avenues for effective clinical lung cancer therapies.
p53野生型肺癌细胞可产生辐射抗性。环状RNA(circRNA)由具有独特结构的转录本家族组成。circRNA在肿瘤发生中起关键作用,是一种潜在的生物标志物或治疗靶点。目前尚不清楚在p53野生型癌细胞中,辐射后circRNA的表达和功能是如何被调控的。
通过CRISPR/Cas9将A549或H1299细胞分为p53和p53组;两组均接受4 Gy电离辐射(IR:p53-IR和p53-IR)。在体内进行RNA测序、CCK8、细胞周期及其他功能和机制实验。构建p53基因敲除小鼠以验证体外细胞实验结果。
在差异组中发现了circRNA。circRNA_0006420(IRSense)在p53细胞中上调,但辐射后其表达水平与p53细胞相同,这表明p53沉默可阻止其在辐射后上调。在p53存在的情况下,辐射后上调的IRSense通过调节DNA损伤修复(DDR)途径相关蛋白诱导G2/M期阻滞。同时,辐射后上调的IRSense会加重辐射诱导的上皮-间质转化(EMT)。有趣的是,在p53存在的情况下,它促进IRSense/HUR/PTBP1复合物形成,从而促进辐射诱导的EMT。此外,c-Jun调节辐射处理后p53转录的上调。对于这些具有p53的肺癌细胞,上调的IRSense通过与细胞核中的HUR(类ElAV蛋白1)和PTBP1(多嘧啶序列结合蛋白1)相互作用,加重肺癌细胞增殖并增加辐射抗性。
保留p53的肺癌细胞可能在辐射后上调circRNA_0006420(IRSense)的表达,形成IRSense/HUR/PTBP1复合物,导致放疗抗性。本研究进一步加深了我们对circRNA在调节放疗效果中作用的理解,并为有效的临床肺癌治疗提供了新的治疗途径。