Role of oxidative stress in geldanamycin-induced cytotoxicity and disruption of Hsp90 signaling complex

被引:39
作者
Clark, Christina B. [1 ]
Rane, Madhavi J. [2 ,3 ]
El Mehdi, Delphine [4 ]
Miller, Cynthia J. [5 ]
Sachleben, Leroy R., Jr. [4 ]
Gozal, Evelyne [1 ,4 ,5 ]
机构
[1] Univ Louisville, Dept Pharmacol & Toxicol, Louisville, KY 40292 USA
[2] Univ Louisville, Dept Med, Louisville, KY 40292 USA
[3] Univ Louisville, Dept Biochem & Mol Biol, Louisville, KY 40292 USA
[4] Kosair Childrens Hosp, Res Inst, Dept Pediat, Louisville, KY 40202 USA
[5] Univ Louisville, Dept Physiol & Biophys, Louisville, KY 40292 USA
关键词
Heat shock protein 90; Geldanamycin; Reactive oxygen species; Protein degradation; Free radicals; NITRIC-OXIDE SYNTHASE; HEAT-SHOCK PROTEINS; CHAPERONE-MEDIATED AUTOPHAGY; B-KINASE IKK; PHASE-I; HEAT-SHOCK-PROTEIN-90; HSP90; MOLECULAR CHAPERONES; ADULT PATIENTS; BRAIN-TUMORS; CALPAIN;
D O I
10.1016/j.freeradbiomed.2009.08.012
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Heat shock protein 90 (Hsp90) is a chaperone protein regulating PC-12 cell survival by binding and stabilizing Akt, Raf-1, and Cdc37. Hsp90 inhibitor geldanamycin (GA) cytotoxicity has been attributed to the disruption of Hsp90 binding, and the contribution of oxidative stress generated by its quinone group has not been studied in this context. Reactive oxygen species (ROS) and cell survival were assessed in PC-12 cells exposed to GA or menadione (MEN), and Akt, Raf-1, and Cdc37 expression and binding to Hsp90 were determined. GA disrupted Hsp90 binding and increased ROS production starting at I h, and cell death occurred at 6 h, inhibited by N-acetylcysteine (NAC) without preventing dissociation of proteins. At 24 h, NAC prevented cytotoxicity and Hsp90 complex disruption. However, MnTBAP antioxidant treatment failed to inhibit GA cytotoxicity, suggesting that NAC acts by restoring glutathione. In contrast, 24 h MEN treatment induced cytotoxicity without disrupting Hsp90 binding. CA and MEN decreased Hsp90-binding protein expression, and proteasomal inhibition prevented MEN-, but not GA-induced degradation. in conclusion, whereas MEN cytotoxicity is mediated by ROS and proteasomal degradation, GA-induced cytotoxicity requires ROS but induces Hsp90 complex dissociation and proteasome-independent protein degradation. These differences between MEN- and GA-induced cytotoxicity may allow more specific targeting of cancer cells. (C) 2009 Elsevier Inc. All rights reserved.
引用
收藏
页码:1440 / 1449
页数:10
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