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脊索瘤细胞的放射抗性与ATM/ATR通路相关,其中RAD51作为重要的下游效应因子。

Radioresistance of chordoma cells is associated with the ATM/ATR pathway, in which RAD51 serves as an important downstream effector.

作者信息

Zhang Chao, Wang Bing, Li Lei, Li Yawei, Li Pengzhi, Lv Guohua

机构信息

Department of Spine Surgery, The Second Xiangya Hospital of Central South University, Changsha, Hunan 410011, P.R. China.

出版信息

Exp Ther Med. 2017 Sep;14(3):2171-2179. doi: 10.3892/etm.2017.4736. Epub 2017 Jul 9.

Abstract

Surgery followed by radiotherapy is the standard treatment for chordomas, which are a rare but low-grade type of bone cancer arising from remnants of the embryonic notochord. However, disease recurrence following radiotherapy is common, most likely due to endogenous DNA repair mechanisms that promote cell survival upon radiation strikes. The ataxia telangiectasia mutated/ataxia telangiectasia mutated and Rad3 related (ATM/ATR)-mediated pathway has a critical role in DNA repair mechanisms; however, it has rarely been investigated in chordomas. In the present study, the expression of signal molecules related to the ATM/ATR pathway in chordoma tissues and adjacent normal tissues were initially examined using immunohistochemistry and western blot analysis. Chordoma U-CH1 and U-CH2 cells were subsequently used to investigate cell responses to ionizing radiation and the potential protective actions mediated by the ATM/ATR pathway. Phosphorylated (p)-ATM, p-ATR, γ-H2A histone family, member X (H2AX) and RAD51 were significantly upregulated in chordoma tissues relative to adjacent normal tissues (P<0.05). No significant reductions were observed in the viability of U-CH1 and U-CH2 cells following exposure to low-dose (1 and 2 Gy) radiation. Radiation (1 and 2 Gy) triggered a significant upregulation in p-ATM, γ-H2AX and RAD51 expression in U-CH1 cells (P<0.05), as well as a significant upregulation in p-ATM, p-ATR and RAD51 levels in U-CH2 cells (P<0.05). RAD51 knockdown increased the responses of both U-CH1 and U-CH2 cells to 1 Gy radiation, as evidenced by the significantly decreased cell viability and increased apoptosis rate (P<0.05). Collectively, the results of the present study indicated that radioresistance of chordoma cells is associated with the ATM/ATR pathway, in which RAD51 serves as an important downstream effector. Thus, RAD51 presents a promising therapeutic target for improving the outcome of radiotherapy treatment in chordomas.

摘要

手术联合放疗是脊索瘤的标准治疗方法,脊索瘤是一种罕见的低度骨癌,起源于胚胎脊索的残余组织。然而,放疗后疾病复发很常见,最可能的原因是内源性DNA修复机制促进了辐射打击后的细胞存活。共济失调毛细血管扩张症突变/共济失调毛细血管扩张症突变和Rad3相关(ATM/ATR)介导的途径在DNA修复机制中起关键作用;然而,在脊索瘤中很少对此进行研究。在本研究中,首先使用免疫组织化学和蛋白质印迹分析检测脊索瘤组织和相邻正常组织中与ATM/ATR途径相关的信号分子的表达。随后使用脊索瘤U-CH1和U-CH2细胞来研究细胞对电离辐射的反应以及ATM/ATR途径介导的潜在保护作用。相对于相邻正常组织,脊索瘤组织中磷酸化(p)-ATM、p-ATR、γ-H2A组蛋白家族成员X(H2AX)和RAD51显著上调(P<0.05)。暴露于低剂量(1和2 Gy)辐射后,未观察到U-CH1和U-CH2细胞活力有显著降低。辐射(1和2 Gy)触发U-CH1细胞中p-ATM、γ-H2AX和RAD51表达显著上调(P<0.05),以及U-CH2细胞中p-ATM、p-ATR和RAD51水平显著上调(P<0.05)。RAD51敲低增加了U-CH1和U-CH2细胞对1 Gy辐射的反应,细胞活力显著降低和凋亡率增加证明了这一点(P<0.05)。总体而言,本研究结果表明脊索瘤细胞的放射抗性与ATM/ATR途径相关,其中RAD51作为重要的下游效应器。因此,RAD51是改善脊索瘤放射治疗结果的一个有前景的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b995/5609200/d8ce5dc87ecd/etm-14-03-2171-g00.jpg

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