Lin Yun, Ho Dah H, Newman Robert A
Department of Experimental Therapeutics, The Univ. of Texas M. D. Anderson Cancer Center, Houston, TX 77030, USA.
J Exp Ther Oncol. 2010;8(4):271-86.
The membrane enzyme Na+, K+ -ATPase is known to help maintain ion homeostasis in mammalian cells. Newly identified functions of this enzyme suggest that inhibition of Na+, K+ -ATPase by cardiac glycosides may be useful to patients with cancer. Twelve human tumor cell lines were chosen to examine determinants of human tumor cell sensitivity to cardiac glycosides. In vitro cell culture models of human glioma HF U251 and U251 cells as well as human parental and modified melanoma BRO cells were also included in these studies. Data derived from both models and twelve tumor cell lines indicated that high expression of Na+, K+ -ATPase alpha 1 isoform in the presence of low alpha 3 expression correlated with increased resistance to inhibition of cell proliferation by cardiac glycosides such as oleandrin, ouabain and bufalin. Interestingly, increased expression of Na+, K+ -ATPase alpha 1 and therefore total Na+, K+ -ATPase activity is associated with increased cellular levels of glutathione. The altered enzyme activity and glutathione content were associated with a delayed and diminished release of cytochrome c and caspase activation. Additionally, an increased colony-forming ability was noted in cells with high levels of Na+, K+ -ATPase alpha 1 expression, suggesting that Na+, K+ -ATPase alpha 1 isoform may be actively involved in tumor growth and cell survival. Its inhibition by cardiac glycosides may provide a strategy for effective cancer therapy.
膜酶钠钾 -ATP酶已知有助于维持哺乳动物细胞中的离子稳态。该酶新发现的功能表明,强心苷对钠钾 -ATP酶的抑制作用可能对癌症患者有益。选择了12种人类肿瘤细胞系来研究人类肿瘤细胞对强心苷敏感性的决定因素。这些研究还包括人类胶质瘤HF U251和U251细胞以及人类亲本和改良黑色素瘤BRO细胞的体外细胞培养模型。来自这两种模型和12种肿瘤细胞系的数据表明,在α3表达较低的情况下,钠钾 -ATP酶α1同工型的高表达与对诸如夹竹桃麻素、哇巴因和蟾毒灵等强心苷抑制细胞增殖的抗性增加相关。有趣的是,钠钾 -ATP酶α1表达的增加以及因此总钠钾 -ATP酶活性的增加与细胞内谷胱甘肽水平的升高有关。酶活性和谷胱甘肽含量的改变与细胞色素c的释放延迟和减少以及半胱天冬酶激活有关。此外,在钠钾 -ATP酶α1表达水平高的细胞中观察到集落形成能力增强,这表明钠钾 -ATP酶α1同工型可能积极参与肿瘤生长和细胞存活。强心苷对其的抑制作用可能为有效的癌症治疗提供一种策略。