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p53 寡聚化状态作为 p53 野生型神经母细胞瘤对 DNA 损伤剂和 Chk1 抑制剂联合治疗敏感性的指标。

p53 oligomerization status as an indicator of sensitivity of p53-wildtype neuroblastomas to the combination of DNA damaging agent and Chk1 inhibitor.

机构信息

Department of Biology, University of Hartford, West Hartford, Connecticut, United States of America.

出版信息

PLoS One. 2022 Feb 10;17(2):e0263463. doi: 10.1371/journal.pone.0263463. eCollection 2022.

Abstract

Neuroblastomas are one of the most common types of solid tumors in infants and children and are responsible for approximately 15% of childhood cancer deaths. Neuroblastomas rarely have mutations in p53, with less than 2% of NB containing mutations in p53, compared to up to 60% for other tumor classes. Previous studies on the therapeutic combination of a DNA damaging agent and checkpoint kinase 1 (Chk1) inhibitor have shown that DNA damage-induced cell cycle arrest can be specifically abrogated in p53-defective tumors. However, some p53-wildtype tumors have also been shown to be sensitive to this therapeutic combination, suggesting that these cells have other defects in the p53 response that can be exploited for therapeutic purposes. In the current study, we investigated the response to the combination of a DNA damaging agent (SN38) and a Chk1 inhibitor (UCN-01) of four p53-wildtype neuroblastoma cell lines: SK-N-SH, SH-SY5Y, SK-N-AS, and Lan-5. When the cells were treated with concentrations of SN38 ranging from 0-30 ng/ml, all four cell lines accumulated p53 which was phosphorylated on serines 15 and 20. However, only the SK-N-SH were found to activate p21waf1 and repress cyclin B. In order to assess sensitivity to UCN-01-mediated abrogation of cell cycle arrest, cell were treated with 10 ng/ml SN38 for 24 h, followed by 25 nM UCN-01 for 6 and 24 h. The SK-N-SH showed no sensitivity to UCN-01 treatment whereas the SH-SY5Y, SK-N-AS, and Lan-5 abrogated G2 arrest within 24 h. Our recent studies revealed that cells that are sensitive to checkpoint abrogation lack p53 dimers and tetramers, so we analyzed the oligomerization status of p53 in all four cell lines using glutaraldehyde crosslinking. The SK-N-SH cells possessed levels of p53 dimers and tetramers similar to what has previously been reported in p53-wildtype MCF10A cells. The SH-SY5Y, SK-N-AS, and Lan-5 however, had extremely low to undetectable levels of dimers and tetramers. Our study also showed no cytoplasmic accumulation of p53 in these cells contrary to some previous reports. The results of this study suggest that oligomerization status may serve as an indicator of sensitivity of p53-wildtype tumors to the therapeutic combination of DNA damaging agent and Chk1 inhibitor.

摘要

神经母细胞瘤是婴儿和儿童中最常见的实体肿瘤类型之一,约占儿童癌症死亡人数的 15%。神经母细胞瘤中 p53 很少发生突变,只有不到 2%的 NB 含有 p53 突变,而其他肿瘤类型高达 60%。先前关于 DNA 损伤剂和检查点激酶 1(Chk1)抑制剂的治疗组合的研究表明,DNA 损伤诱导的细胞周期停滞可以在 p53 缺陷型肿瘤中特异性地被破坏。然而,一些 p53 野生型肿瘤也已被证明对这种治疗组合敏感,这表明这些细胞在 p53 反应中有其他缺陷,可以被用于治疗目的。在目前的研究中,我们研究了四种 p53 野生型神经母细胞瘤细胞系:SK-N-SH、SH-SY5Y、SK-N-AS 和 Lan-5 对 DNA 损伤剂(SN38)和 Chk1 抑制剂(UCN-01)联合治疗的反应。当细胞用 0-30ng/ml 的 SN38 浓度处理时,所有四种细胞系都积累了磷酸化丝氨酸 15 和 20 的 p53。然而,只有 SK-N-SH 被发现能激活 p21waf1 并抑制细胞周期蛋白 B。为了评估对 UCN-01 介导的细胞周期阻滞破坏的敏感性,细胞用 10ng/ml SN38 处理 24 小时,然后用 25nM UCN-01 处理 6 和 24 小时。SK-N-SH 对 UCN-01 处理没有敏感性,而 SH-SY5Y、SK-N-AS 和 Lan-5 在 24 小时内破坏了 G2 期阻滞。我们最近的研究表明,对检查点破坏敏感的细胞缺乏 p53 二聚体和四聚体,因此我们使用戊二醛交联分析了所有四种细胞系中 p53 的寡聚状态。SK-N-SH 细胞的 p53 二聚体和四聚体水平与先前报道的 p53 野生型 MCF10A 细胞相似。然而,SH-SY5Y、SK-N-AS 和 Lan-5 的二聚体和四聚体水平极低或无法检测到。与一些先前的报道相反,我们的研究也没有显示这些细胞中 p53 的细胞质积累。这项研究的结果表明,寡聚状态可能是 p53 野生型肿瘤对 DNA 损伤剂和 Chk1 抑制剂治疗组合敏感性的一个指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1deb/8830664/0cb415deb62b/pone.0263463.g001.jpg

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