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首页> 外文期刊>British Journal of Cancer >Regulation of expression of Na+,K+-ATPase in androgen-dependent and androgen-independent prostate cancer
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Regulation of expression of Na+,K+-ATPase in androgen-dependent and androgen-independent prostate cancer

机译:Na +,K + -ATPase在雄激素依赖性和非雄激素依赖性前列腺癌中的表达调控

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The β1-subunit of Na+,K+-ATPase was isolated and identified as an androgen down-regulated gene. Expression was observed at high levels in androgen-independent as compared to androgen-dependent (responsive) human prostate cancer cell lines and xenografts when grown in the presence of androgens. Down-regulation of the β1-subunit was initiated at concentrations between 0.01 nM and 0.03 nM of the synthetic androgen R1881 after relatively long incubation times (> 24 h). Using polyclonal antibodies, the concentration of β1-subunit protein, but not of the α1-subunit protein, was markedly reduced in androgen-dependent human prostate cancer cells (LNCaP-FGC) cultured in the presence of androgens. In line with these observations it was found that the protein expression of total Na+,K+-ATPase in the membrane (measured by 3H-ouabain binding) was also markedly decreased. The main function of Na+,K+-ATPase is to maintain sodium and potassium homeostasis in animal cells. The resulting electrochemical gradient is facilitative for transport of several compounds over the cell membrane (for example cisplatin, a chemotherapeutic agent experimentally used in the treatment of hormone-refractory prostate cancer). Here we observed that a ouabain-induced decrease of Na+,K+-ATPase activity in LNCaP-FGC cells results in reduced sensitivity of these cells to cisplatin-treatment. Surprisingly, androgen-induced decrease of Na+,K+-ATPase expression, did not result in significant protection against the chemotherapeutic agent.
机译:分离出Na +,K + -ATP酶的β1-亚基,并将其鉴定为雄激素下调基因。当在雄激素存在下生长时,与雄激素依赖性(应答)人前列腺癌细胞系和异种移植物相比,在雄激素非依赖性中观察到高水平的表达。经过相对较长的孵育时间(> 24小时)后,在合成雄激素R1881的0.01 nM和0.03 nM之间的浓度下,β1-亚基开始下调。使用多克隆抗体,在存在雄激素的情况下培养的雄激素依赖性人前列腺癌细胞(LNCaP-FGC)中,β1亚基蛋白的浓度显着降低,而α1亚基蛋白的浓度却没有显着降低。与这些观察结果一致,发现膜中总Na +,K + -ATP酶的蛋白质表达(通过3 H-哇巴因结合测定)也显着降低。 Na +,K + -ATPase的主要功能是维持动物细胞中的钠和钾稳态。产生的电化学梯度有助于几种化合物在细胞膜上的转运(例如,顺铂,一种实验性用于治疗激素难治性前列腺癌的化学治疗剂)。在这里,我们观察到哇巴因诱导的LNCaP-FGC细胞Na +,K + -ATPase活性降低导致这些细胞对顺铂处理的敏感性降低。出人意料的是,雄激素诱导的Na +,K + -ATPase表达的降低并未导致针对化学治疗剂的显着保护。

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