AI Article Synopsis

  • Selective modulation of cell death is crucial for effective chemotherapy, as exemplified by heat-shock protein-90-active drugs like geldanamycin (GA) and 17-AAG, which sensitize certain cancer cells to treatment.
  • In apoptosis-prone cells (e.g., HL60 and U937), GA reduces the effectiveness of doxorubicin (DOX) by inducing Hsp70, which inhibits apoptosis, while also causing G1 cell cycle arrest.
  • The study suggests that GA’s ability to protect certain cancer cells through Hsp70 induction could lead to strategies that minimize chemotherapy side effects without compromising its effectiveness.

Article Abstract

Selective modulation of cell death is important for rational chemotherapy. By depleting Hsp90-client oncoproteins, geldanamycin (GA) and 17-allylamino-17-demethoxy-GA (17-AAG) (heat-shock protein-90-active drugs) render certain oncoprotein-addictive cancer cells sensitive to chemotherapy. Here we investigated effects of GA and 17-AAG in apoptosis-prone cells such as HL60 and U937. In these cells, doxorubicin (DOX) caused rapid apoptosis, whereas GA-induced heat-shock protein-70 (Hsp70) (a potent inhibitor of apoptosis) and G1 arrest without significant apoptosis. GA blocked caspase activation and apoptosis and delayed cell death caused by DOX. Inhibitors of translation and transcription and siRNA Hsp70 abrogated cytoprotective effects of GA. Also GA failed to protect HL60 cells from cytotoxicity of actinomycin D and flavopiridol (FL), inhibitors of transcription. We next compared cytoprotection by GA-induced Hsp70, caspase inhibitors (Z-VAD-fmk) and cell-cycle arrest. Whereas cell-cycle arrest protected HL60 cells from paclitaxel (PTX) but not from FL and DOX, Z-VAD-fmk prevented FL-induced apoptosis but was less effective against DOX and PTX. Thus, by inducing Hsp70, GA protected apoptosis-prone cells in unique and cell-type selective manner. Since GA does not protect apoptosis-reluctant cancer cells, we envision a therapeutic strategy to decrease side effects of chemotherapy without affecting its therapeutic efficacy.

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Source
http://dx.doi.org/10.1038/sj.cdd.4401812DOI Listing

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