首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Thioredoxin 1 as a subcellular biomarker of redox imbalance in human prostate cancer progression.
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Thioredoxin 1 as a subcellular biomarker of redox imbalance in human prostate cancer progression.

机译:硫氧还蛋白1是人类前列腺癌进展中氧化还原失衡的亚细胞生物标志物。

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We determined protein levels and subcellular distribution of thioredoxin 1 (Trx1) in human prostate tissues using tissue microarrays and analyzed redox changes in Trx1 in the nucleus and cytoplasm in cell culture models with a redox Western blot technique. We demonstrated increased nuclear Trx1 levels in high- versus low-grade human prostate cancers. Despite increased protein levels, the oxidized forms of nuclear Trx1 were higher in prostate cancer cell lines compared to their benign counterparts, suggesting that nuclear redox imbalance occurred selectively in cancer cells. A growth-stimulating dose of androgen caused transient oxidation of Trx1 in androgen-responsive prostate cancer cells only, suggesting a loss of both androgen- and redox-signaling mechanisms during cancer progression. Androgen-independent PC3 cells showed a significant increase in nuclear and cytoplasmic Trx1 protein levels, but a significant decrease in total Trx activity. Trx1 redox state and activity correlated with the sensitivity of prostate cancer cells to pro-oxidant agents, and downregulation of Trx1 sensitized cancer cells to these agents. Our findings suggest that loss of Trx function because of oxidation and corresponding redox imbalance may play important roles in prostate cancer progression and response to therapies; and Trx1 may serve as a biomarker of subcellular redox imbalance in prostate cancer.
机译:我们使用组织芯片确定了人类前列腺组织中硫氧还蛋白1(Trx1)的蛋白水平和亚细胞分布,并通过氧化还原Western印迹技术分析了细胞培养模型中细胞核和细胞质中Trx1的氧化还原变化。我们证明了高级别和低级别人类前列腺癌的核Trx1水平增加。尽管蛋白质水平增加,但前列腺癌细胞系中核Trx1的氧化形式比其良性对应物要高,这表明癌细胞中选择性地发生了核氧化还原失衡。刺激雄激素生长的剂量仅在雄激素反应性前列腺癌细胞中引起Trx1的瞬时氧化,表明在癌症进展过程中雄激素和氧化还原信号传导机制均丧失。不依赖雄激素的PC3细胞显示核和细胞质Trx1蛋白水平显着增加,但总Trx活性显着下降。 Trx1的氧化还原状态和活性与前列腺癌细胞对促氧化剂的敏感性相关,而Trx1致敏的癌细胞对这些药物的下调。我们的发现表明,由于氧化引起的Trx功能丧失和相应的氧化还原失衡可能在前列腺癌的进展和对治疗的反应中起重要作用。 Trx1可能是前列腺癌亚细胞氧化还原失衡的生物标志物。

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