Nelson Institute of Environmental Medicine, New York University School of Medicine, Tuxedo, New York 10987, USA.
J Biol Chem. 2010 Aug 20;285(34):26058-65. doi: 10.1074/jbc.M110.100271. Epub 2010 Jun 21.
p27 is an atypical tumor suppressor that can regulate the activity of cyclin-dependent kinases and G(0)-to-S phase transitions. More recent studies reveal that p27 may also exhibit its tumor-suppressive function through regulating many other essential cellular events. However, the molecular mechanisms underlying these anticancer effects of p27 are largely unknown. In this study, we found that depletion of p27 expression by either gene knock-out or knockdown approaches resulted in up-regulation of both Hsp27 and Hsp70 expression at mRNA- and promoter-derived transcription as well as protein levels upon arsenite exposure, indicating that p27 provides a negative signal for regulating the expression of Hsp27 and Hsp70. Consistently, arsenite-induced activation of JNK2/c-Jun and HSF-1 pathways was also markedly elevated in p27 knock-out (p27(-/-)) and knockdown (p27 shRNA) cells. Moreover, interference with the expression or function of JNK2, c-Jun, and HSF-1, but not JNK1, led to dramatic inhibition of arsenite-induced Hsp27 and Hsp70 expression. Collectively, our results demonstrate that p27 suppresses Hsp27 and Hsp70 expression at the transcriptional level specifically through JNK2/c-Jun- and HSF-1-dependent pathways upon arsenite exposure, which provides additional important molecular mechanisms for the tumor-suppressive function of p27.
p27 是一种非典型的肿瘤抑制因子,可调节细胞周期蛋白依赖性激酶的活性和 G0 期到 S 期的转变。最近的研究表明,p27 还可能通过调节许多其他重要的细胞事件来发挥其肿瘤抑制功能。然而,p27 发挥这些抗癌作用的分子机制在很大程度上尚不清楚。在这项研究中,我们发现通过基因敲除或敲低方法耗尽 p27 表达会导致砷暴露时 Hsp27 和 Hsp70 的表达在 mRNA 和启动子衍生转录以及蛋白水平上上调,表明 p27 提供了一个负信号来调节 Hsp27 和 Hsp70 的表达。一致地,砷酸盐诱导的 JNK2/c-Jun 和 HSF-1 途径的激活在 p27 敲除 (p27(-/-)) 和敲低 (p27 shRNA) 细胞中也显著升高。此外,干扰 JNK2、c-Jun 和 HSF-1 的表达或功能,但不是 JNK1,导致砷诱导的 Hsp27 和 Hsp70 表达显著抑制。总之,我们的结果表明,p27 通过 JNK2/c-Jun 和 HSF-1 依赖性途径在转录水平上特异性抑制 Hsp27 和 Hsp70 的表达,这为 p27 的肿瘤抑制功能提供了额外的重要分子机制。