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Low Amount of Salinomycin Greatly Increases Akt Activation but Reduces Activated p70S6K Levels

机译:少量的沙利霉素可大大增加Akt激活但降低激活的p70S6K水平

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摘要

The present study identified a novel salinomycin (Sal)-sensitization mechanism in cancer cells. We analyzed the signal proteins Akt, Jnk, p38, Jak, and Erk1/2 in cancer cell lines that had arrested growth following low amounts of Sal treatment. We also tested the signal molecules PI3K, PDK1, GSK3β, p70S6K, mTOR, and PTEN to analyze the PI3K/Akt/mTOR pathway. The results showed that Sal sensitization positively correlates with large reductions in p70S6K activation. Interestingly, Akt was the only signal protein to be significantly activated by Sal treatment. The Akt activation appeared to require the PI3K pathway as its activation was abolished by the PI3K inhibitors and wortmannin. The Akt activation by Sal was conserved in the other cell lines analyzed, which originated from other organs. Both Akt activation and C-PARP production were proportionally increased with increased doses of Sal. In addition, the increased levels of pAkt were not reduced over the time course of the experiment. Co-treatment with Akt inhibitors sensitized the Sal-treated cancer cells. The results thereby suggest that Akt activation is increased in cells that survive Sal treatment and resist the cytotoxic effect of Sal. Taken together; these results indicate that Akt activation may promote the resistance of cancer cells to Sal.
机译:本研究确定了癌细胞中一种新的盐霉素(Sal)敏化机制。我们分析了在经过少量Sal治疗后已停止生长的癌细胞系中的信号蛋白Akt,Jnk,p38,Jak和Erk1 / 2。我们还测试了信号分子PI3K,PDK1,GSK3β,p70S6K,mTOR和PTEN,以分析PI3K / Akt / mTOR途径。结果表明,Sal致敏与p70S6K激活的大量减少呈正相关。有趣的是,Akt是唯一被Sal治疗显着激活的信号蛋白。 Akt激活似乎需要PI3K途径,因为其激活被PI3K抑制剂和渥曼青霉素废除了。 Sal引起的Akt激活在分析的其他细胞系中均保守,这些细胞系来自其他器官。随着Sal剂量的增加,Akt激活和C-PARP产量均成比例增加。另外,在实验的整个过程中,pAkt的升高水平并未降低。与Akt抑制剂共同治疗可使Sal治疗的癌细胞增敏。因此结果表明,在Sal治疗后存活并抵抗Sal的细胞毒性作用的细胞中,Akt激活增加。一起这些结果表明,Akt激活可能促进癌细胞对Sal的抗性。

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