Jiang Bimei, Wang Kangkai, Liang Pengfei, Xiao Weimin, Wang Haiyun, Xiao Xianzhong
Department of Pathophysiology, Xiangya School of Medicine, Central South University, Changsha, Hunan, China.
FEBS J. 2009 May;276(9):2615-24. doi: 10.1111/j.1742-4658.2009.06989.x. Epub 2009 Mar 26.
Hydrogen peroxide (H(2)O(2)) is a well known oxidative stress inducer causing apoptosis of many cells. Previously, we have shown that heat shock pretreatment blocked the release of the second mitochondria-derived activator of caspase (Smac) to the cytosol and inhibited apoptosis of C2C12 myoblast cells in response to H(2)O(2). The present study aimed to elucidate the underlying mechanism by over-expressing a major stress-inducible protein, heat shock protein (HSP) 70, and characterizing the resulting cellular changes. We demonstrate that HSP70 over-expression markedly inhibited the release of Smac and prevented the activation of caspases-9 and -3 and apoptosis in C2C12 cells under H(2)O(2) treatment. However, no direct interaction between HSP70 and Smac was observed by co-immunoprecipitation. Mutational analysis demonstrated that the ATP-binding domain of HSP70, rather than the peptide-binding domain, was essential for these observed HSP functions. Taken together, our results provide evidence supporting the role of HSP70 in the protection of C2C12 cells from H(2)O(2)-induced and Smac-promoted apoptosis by preventing the release of Smac from mitochondria, thereby inhibiting activation of caspases-9 and -3. This mechanism of HSP70 action is dependent on its ATP-binding domain but independent of its interaction with Smac protein.
过氧化氢(H₂O₂)是一种众所周知的氧化应激诱导剂,可导致许多细胞凋亡。此前,我们已经表明热休克预处理可阻止第二线粒体衍生的半胱天冬酶激活剂(Smac)释放到细胞质中,并抑制C2C12成肌细胞对H₂O₂的凋亡反应。本研究旨在通过过表达一种主要的应激诱导蛋白——热休克蛋白(HSP)70,并表征由此产生的细胞变化来阐明其潜在机制。我们证明,在H₂O₂处理下,HSP70的过表达显著抑制了Smac的释放,并阻止了C2C12细胞中半胱天冬酶-9和-3的激活以及细胞凋亡。然而,通过共免疫沉淀未观察到HSP70与Smac之间的直接相互作用。突变分析表明,HSP70的ATP结合结构域而非肽结合结构域对于这些观察到的HSP功能至关重要。综上所述,我们的结果提供了证据,支持HSP70通过阻止Smac从线粒体释放,从而抑制半胱天冬酶-9和-3的激活,在保护C2C12细胞免受H₂O₂诱导和Smac促进的凋亡中发挥作用。HSP70的这种作用机制依赖于其ATP结合结构域,但与其与Smac蛋白的相互作用无关。