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PI3K 依赖性 HSP27 和 p53 表达在轻度热休克触发 A549 细胞代谢应激诱导的坏死向凋亡转换中的意义。

Implication of PI3K-dependent HSP27 and p53 expression in mild heat shock-triggered switch of metabolic stress-induced necrosis to apoptosis in A549 cells.

机构信息

Research Center for Resistant Cells, Department of Pathology, College of Medicine, Chosun University, Gwangju 501-759, Korea.

出版信息

Int J Oncol. 2010 Feb;36(2):387-93.

Abstract

Previously, we showed that mild heat shock modulates patterns of cell death in response to glucose deprivation (GD), a common characteristic of the tumor microenvironment, by switching necrosis to apoptosis through ERK-dependent suppression of reactive oxygen species production in A549 cells. In the present study, we further examined the molecular mechanism underlying mild heat shock-induced necrosis-to-apoptosis switch. We examined the possible implication of p53 and heat shock proteins (HSPs) in the mechanism. Inhibition of p53 by pifithrin-alpha or p53 siRNA markedly suppressed apoptosis induced by heat shock/GD. On the other hand, silencing of HSP27, but not of HSP70, reversed heat shock/GD-induced apoptosis to necrosis, and HSP27 overexpression suppressed GD-induced necrosis. We further demonstrate that mild heat shock activated AKT and ERK1/2 through phosphorylation. Prevention of PI3K by LY294002 blocked heat shock/GD-induced apoptosis without reversing the cell death mode to necrosis, while inhibition of MEK1/2 by U0126 reversed heat shock/GD-induced apoptosis to necrosis, indicating a different role(s) of PI3K and ERK1/2 in heat shock/GD-induced cell death mode determination. We also found that mild heat shock increased HSP27 and p53 protein levels dependent on PI3K and suppressed the GD-induced increase in RIPA-insoluble HSP27 and p53 protein levels dependent on PI3K and ERK1/2. In conclusion, these results indicate that PI3K-dependent HSP27 and p53 induction and PI3K- and ERK1/2-dependent inhibition of the GD-induced increase in RIPA-insoluble HSP27 and p53 protein levels by heat play a key role(s) in heat shock-mediated switch of GD-induced necrosis to apoptosis.

摘要

先前,我们发现温和热休克通过 ERK 依赖性抑制活性氧产生来调节细胞死亡模式,从而将葡萄糖剥夺(GD)引起的细胞坏死转化为细胞凋亡,GD 是肿瘤微环境的一个常见特征,在 A549 细胞中。在本研究中,我们进一步研究了温和热休克诱导的坏死到凋亡转换的分子机制。我们研究了 p53 和热休克蛋白(HSPs)在该机制中的可能作用。用 pifithrin-α或 p53 siRNA 抑制 p53 显著抑制了热休克/GD 诱导的细胞凋亡。另一方面,沉默 HSP27,但不是 HSP70,将热休克/GD 诱导的细胞凋亡逆转为坏死,并且 HSP27 过表达抑制了 GD 诱导的坏死。我们进一步证明温和热休克通过磷酸化激活 AKT 和 ERK1/2。LY294002 通过 PI3K 阻断阻止了热休克/GD 诱导的细胞凋亡,而没有将细胞死亡模式逆转回坏死,而 U0126 抑制 MEK1/2 将热休克/GD 诱导的细胞凋亡逆转回坏死,表明 PI3K 和 ERK1/2 在热休克/GD 诱导的细胞死亡模式决定中具有不同的作用。我们还发现温和热休克增加 HSP27 和 p53 蛋白水平依赖于 PI3K,并抑制 GD 诱导的 RIPA 不溶性 HSP27 和 p53 蛋白水平的增加依赖于 PI3K 和 ERK1/2。总之,这些结果表明,PI3K 依赖性 HSP27 和 p53 诱导以及 PI3K 和 ERK1/2 依赖性抑制热休克对 GD 诱导的 RIPA 不溶性 HSP27 和 p53 蛋白水平增加的抑制在热休克介导的 GD 诱导的坏死到凋亡的转换中起关键作用。

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