lizuka N, Miyamoto K, Tangoku A, Hayashi H, Hazama S, Yoshino S, Yoshimura K, Hirose K, Yoshida H, Oka M
Department of Bioregulatory Function, Department of Surgery II, Yamaguchi University School of Medicine, 1-1-1 Minami-kogushi, Ube, Yamaguchi, Japan.
Br J Cancer. 2000 Nov;83(9):1209-15. doi: 10.1054/bjoc.2000.1436.
Previously, we showed that expression of nm23-H1 is associated inversely with sensitivity to cisplatin in human oesophageal squamous cell carcinoma (OSCC). The present study was undertaken to investigate the association of nm23-H1 expression with cisplatin-induced DNA damage in OSCC using antisense nm23-H1 transfectants. YES-2/AS-12, an antisense nm23-H1-transfected OSCC cell line, showed significantly reduced expression of intracellular nm23-H1 protein compared with that in parental YES-2 cells and YES-2/Neo transfectants. Surface expression of nm23-H1 protein was not observed in any of the three cell lines. PCR analysis for DNA damage demonstrated that YES-2/AS-12 cells were more resistant to nuclear and mitochondrial DNA damage by cisplatin than were YES-2/Neo cells. In addition, mitochondrial membrane potentials and DNA fragmentation assays confirmed that YES-2/AS-12 was more resistant than YES-2/Neo to apoptosis induced by cisplatin. In contrast, YES-2/AS-12 was more sensitive to ouabain, a selective inhibitor of Na(+), K(+)-ATPase, than YES-2 and YES-2/Neo. Pre-treatment with ouabain resulted in no differences in cisplatin sensitivity between the three cell lines examined. Intracellular platinum level in YES-2/AS-12 was significantly lower than that in YES-2 and YES-2/Neo following incubation with cisplatin, whereas ouabain pre-treatment resulted in no differences in intracellular platinum accumulations between the three cell lines. Our data support the conclusion that reduced expression of intracellular nm23-H1 in OSCC cells is associated with cisplatin resistance via the prevention of both nuclear and mitochondrial DNA damage and suggest that it may be related to Na(+), K(+)-ATPase activity, which is responsible for intracellular cisplatin accumulation.
此前,我们发现nm23-H1的表达与人食管鳞状细胞癌(OSCC)对顺铂的敏感性呈负相关。本研究旨在使用反义nm23-H1转染子,研究nm23-H1表达与OSCC中顺铂诱导的DNA损伤之间的关联。YES-2/AS-12是一种反义nm23-H1转染的OSCC细胞系,与亲本YES-2细胞和YES-2/Neo转染子相比,其细胞内nm23-H1蛋白的表达显著降低。在这三种细胞系中均未观察到nm23-H1蛋白的表面表达。DNA损伤的PCR分析表明,与YES-2/Neo细胞相比,YES-2/AS-12细胞对顺铂诱导的核DNA和线粒体DNA损伤更具抗性。此外,线粒体膜电位和DNA片段化分析证实,YES-2/AS-12比YES-2/Neo对顺铂诱导的凋亡更具抗性。相反,与YES-2和YES-2/Neo相比,YES-2/AS-12对钠钾ATP酶的选择性抑制剂哇巴因更敏感。用哇巴因预处理后,所检测的三种细胞系之间的顺铂敏感性没有差异。与顺铂孵育后,YES-2/AS-12细胞内的铂水平显著低于YES-2和YES-2/Neo细胞,而哇巴因预处理后,三种细胞系之间的细胞内铂积累没有差异。我们的数据支持以下结论:OSCC细胞中细胞内nm23-H1表达的降低通过预防核DNA和线粒体DNA损伤与顺铂耐药性相关,并表明这可能与负责细胞内顺铂积累的钠钾ATP酶活性有关。