首页> 外文期刊>Molecular pharmacology. >Elevated glutathione levels confer cellular sensitization to cisplatin toxicity by up-regulation of copper transporter hCtr1.
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Elevated glutathione levels confer cellular sensitization to cisplatin toxicity by up-regulation of copper transporter hCtr1.

机译:谷胱甘肽水平升高可通过上调铜转运蛋白hCtr1使细胞对顺铂毒性致敏。

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Previous studies have demonstrated that treating cultured cells with cisplatin (CDDP) up-regulated the expression of glutathione (GSH) and its de novo rate-limiting enzyme glutamate-cysteine ligase (GCL), which consists of a catalytic (GCLC) and a modifier (GCLM) subunit. It has also been shown that many CDDP-resistant cell lines exhibit high levels of GCLC/GCLM and GSH. Because the GSH system is the major intracellular regulator of redox conditions that serve as an important detoxification cytoprotector, these results have been taken into consideration that elevated levels of GCL/GSH are responsible for the CDDP resistance. In contrast to this context, we demonstrated here that overexpression of GSH by transfection with an expression plasmid containing the GCLC cDNA conferred sensitization to CDDP through up-regulation of human copper transporter (hCtr) 1, which is also a transporter for CDDP. Depleting GSH levels in these transfected cells reversed CDDP sensitivity with concomitant reduction of hCtr1expression. Although rates of copper transport were also up-regulated in the transfected cells, these cells exhibited biochemical signature of copper deficiency, suggesting that GSH functions as an intracellular copper-chelator and that overexpression of GSH can alter copper metabolism. More importantly, our results reveal a new role of GSH in the regulation of CDDP sensitivity. Overproduction of GSH depletes the bioavailable copper pool, leading to up-regulation of hCtr1 and sensitization of CDDP transport and cell killing. These findings also have important implications in that modulation of the intracellular copper pool may be a novel strategy for improving chemotherapeutic efficacy of platinum-based antitumor agents.
机译:以前的研究表明,用顺铂(CDDP)处理培养的细胞可上调谷胱甘肽(GSH)及其从头速率限制酶谷氨酸-半胱氨酸连接酶(GCL)的表达,其中谷胱甘肽-半胱氨酸连接酶由催化(GCLC)和修饰剂组成(GCLM)子单元。还显示出许多抗CDDP的细胞系表现出高水平的GCLC / GCLM和GSH。由于GSH系统是氧化还原条件的主要细胞内调节剂,可作为重要的解毒细胞保护剂,因此已考虑到这些结果,认为GCL / GSH的升高是CDDP抗性的原因。与此相反,我们在这里证明了通过用含有GCLC cDNA的表达质粒转染来过表达GSH,可通过上调人类铜转运蛋白(hCtr)1来赋予CDDP敏化性,而hCtr也是CDDP的转运蛋白。这些转染细胞中的GSH含量下降,逆转了CDDP敏感性,同时降低了hCtr1的表达。尽管转染细胞中铜的转运速率也被上调,但这些细胞表现出铜缺乏的生化特征,表明GSH充当细胞内的铜螯合剂,而GSH的过表达可以改变铜的代谢。更重要的是,我们的结果揭示了GSH在调节CDDP敏感性中的新作用。 GSH的过量生产耗尽了生物可利用的铜库,导致hCtr1的上调以及CDDP转运和细胞杀伤的敏化。这些发现也具有重要意义,因为调节细胞内铜池可能是提高铂基抗肿瘤药化疗疗效的新策略。

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