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ERCC2/XPD 赖氨酸 751 谷氨酰胺通过 P53 通路改变铂诱导的 DNA 损伤的修复效率。

ERCC2/XPD Lys751Gln alter DNA repair efficiency of platinum-induced DNA damage through P53 pathway.

机构信息

Dept. of Toxicology, School of Public Health, China Medical University, Shenyang, PR China.

Cancer Hospital of China Medical University/Liaoning Cancer Hospital & Institute, PR China.

出版信息

Chem Biol Interact. 2017 Feb 1;263:55-65. doi: 10.1016/j.cbi.2016.12.015. Epub 2016 Dec 24.

Abstract

Platinum-based treatment causes Pt-DNA adducts which lead to cell death. The platinum-induced DNA damage is recognized and repaired by the nucleotide excision repair (NER) system of which ERCC2/XPD is a critical enzyme. Single nucleotide polymorphisms in ERCC2/XPD have been found to be associated with platinum resistance. The aim of the present study was to investigate whether ERCC2/XPD Lys751Gln (rs13181) polymorphism is causally related to DNA repair capacity of platinum-induced DNA damage. First, cDNA clones expressing different genotypes of the polymorphism was transfected to an ERCC2/XPD defective CHO cell line (UV5). Second, all cells were treated with cisplatin. Cellular survival rate were investigated by MTT growth inhibition assay, DNA damage levels were investigated by comet assay and RAD51 staining. The distribution of cell cycle and the change of apoptosis rates were detected by a flow cytometric method (FCM). Finally, P53mRNA and phospho-P53 protein levels were further investigated in order to explore a possible explanation. As expected, there was a significantly increased in viability of UV5 as compared to UV5 after cisplatin treatment. The DNA damage level of UV5 was significant decreased compared to UV5 at 24 h of treatment. Mutation of ERCC2rs13181 AA to CC causes a prolonged S phase in cell cycle. UV5 alleviated the apoptosis compared to UV5, meanwhile P53mRNA levels in UV was also lower when compared UV5. It co-incides with a prolonged high expression of phospho-P53, which is relevant for cell cycle regulation, apoptosis, and the DNA damage response (DDR). We concluded that ERCC2/XPD rs13181 polymorphism is possibly related to the DNA repair capacity of platinum-induced DNA damage. This functional study provides some clues to clarify the relationship between cisplatin resistance and ERCC2/XPDrs13181 polymorphism.

摘要

铂类治疗会导致 Pt-DNA 加合物,从而导致细胞死亡。铂引起的 DNA 损伤被核苷酸切除修复(NER)系统识别和修复,其中 ERCC2/XPD 是关键酶。已经发现 ERCC2/XPD 中的单核苷酸多态性与铂耐药性有关。本研究旨在探讨 ERCC2/XPD Lys751Gln(rs13181)多态性是否与铂诱导的 DNA 损伤的 DNA 修复能力有关。首先,将表达该多态性不同基因型的 cDNA 克隆转染到 ERCC2/XPD 缺陷型 CHO 细胞系(UV5)中。其次,所有细胞均用顺铂处理。通过 MTT 生长抑制试验研究细胞存活率,通过彗星试验和 RAD51 染色研究 DNA 损伤水平。通过流式细胞术(FCM)检测细胞周期分布和细胞凋亡率的变化。最后,进一步研究 P53mRNA 和磷酸化 P53 蛋白水平,以探讨可能的解释。正如预期的那样,与顺铂处理后的 UV5 相比,UV5 的活力显著增加。与 UV5 相比,处理 24 小时后,UV5 的 DNA 损伤水平显著降低。ERCC2rs13181AA 突变为 CC 导致细胞周期 S 期延长。与 UV5 相比,UV5 减轻了细胞凋亡,同时 UV 中的 P53mRNA 水平也低于 UV5。这与磷酸化 P53 的高表达时间延长相吻合,磷酸化 P53 与细胞周期调控、细胞凋亡和 DNA 损伤反应(DDR)有关。我们得出结论,ERCC2/XPD rs13181 多态性可能与铂诱导的 DNA 损伤的 DNA 修复能力有关。这项功能研究为阐明顺铂耐药性与 ERCC2/XPDrs13181 多态性之间的关系提供了一些线索。

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