1. AEG3482 Is an Antiapoptotic Compound that Inhibits Jun Kinase Activity and Cell Death through Induced Expression of Heat Shock Protein 70
- Author
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Amir H. Salehi, Kathleen M. Dickson, Stephen J. Morris, Jon P. Durkin, Wai-Chi Ho, John W. Gillard, Snezana Milutinovic, Genevieve Doucet, and Philip A. Barker
- Subjects
Programmed cell death ,Lactams, Macrocyclic ,Clinical Biochemistry ,Apoptosis ,CELLCYCLE ,PC12 Cells ,Receptor, Nerve Growth Factor ,Biochemistry ,03 medical and health sciences ,0302 clinical medicine ,Antigens, Neoplasm ,Thiadiazoles ,Drug Discovery ,Benzoquinones ,Low-affinity nerve growth factor receptor ,Animals ,HSP70 Heat-Shock Proteins ,Enzyme Inhibitors ,Phosphorylation ,Molecular Biology ,030304 developmental biology ,Neurons ,Pharmacology ,0303 health sciences ,Sulfonamides ,biology ,JUN kinase activity ,JNK Mitogen-Activated Protein Kinases ,Quinones ,General Medicine ,JUN kinase ,Cell cycle ,Hsp90 ,Cell biology ,Hsp70 ,Neoplasm Proteins ,Rats ,Enzyme Activation ,CHEMBIO ,SIGNALING ,biology.protein ,Cancer research ,Molecular Medicine ,030217 neurology & neurosurgery - Abstract
SummaryWe describe a group of small-molecule inhibitors of Jun kinase (JNK)-dependent apoptosis. AEG3482, the parental compound, was identified in a screening effort designed to detect compounds that reduce apoptosis of neonatal sympathetic neurons after NGF withdrawal. We show that AEG3482 blocks apoptosis induced by the p75 neurotrophin receptor (p75NTR) or its cytosolic interactor, NRAGE, and demonstrate that AEG3482 blocks proapoptotic JNK activity. We show that AEG3482 induces production of heat shock protein 70 (HSP70), an endogenous inhibitor of JNK, and establish that HSP70 accumulation is required for the AEG3482-induced JNK blockade. We show that AEG3482 binds HSP90 and induces HSF1-dependent HSP70 mRNA expression and find that AEG3482 facilitates HSP70 production while retaining HSP90 chaperone activity. These studies establish that AEG3482 inhibits JNK activation and apoptosis by a mechanism involving induced expression of HSP proteins.
- Published
- 2006
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