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Malachite Green Assay for the Discovery of Heat-Shock Protein 90 Inhibitors
Published on: January 20, 2023
Heat shock protein 90 inhibitors augment endogenous wild-type p53 expression but down-regulate the
Kuan Chai1,2, Xuerao Ning1,2, Thảo Thi Thanh Nguyễn1,3
1Division of Pathology and Cell Therapy, Chiba Cancer Center Research Institute, Chuo-ku, Chiba 260-8717, Japan.
Abstract:
Heat shock protein 90 (HSP90) inhibitors suppressed MDM4 functions which mediated p53 ubiquitination, and blocked a chaperon function which influenced expression of the client proteins. We examined cytotoxic effects of the inhibitors, 17-allylamino-17-demetheoxygeldanamycin (17-AAG) and 17-dimethylaminoethylamino-17-demethoxy-geldanamycin (17-DMAG), on mesothelioma and investigated combinatory effects of the inhibitors and adenoviruses expressing the wild-type p53 gene (Ad-p53). A majority of mesothelioma lacks p14 and p16 expression, which leads to defective p53 pathway despite bearing the wild-type p53 genotype. The HSP90 inhibitors up-regulated endogenous wild-type p53 expression and induced cell death. Furthermore, the inhibitors increased the endogenous p53 levels that were induced by cisplatin. Nevertheless, the HSP90 inhibitors suppressed Ad-p53-induced exogenous p53 expression primarily at a posttranscriptional level and inhibited the Ad-p53-mediated cell death. HSP90 inhibitors suppressed ubiquitination processes which were involved in p53 degradation, but a proteasome inhibitor, MG-132, prevented the HSP90 inhibitors-induced p53 down-regulation. In contrast, an inhibitor for HSP70 with a chaperon function, pifithrin-μ, did not produce the p53 down-regulation. The HSP90 inhibitors did not suppress expression of Ad receptor molecules but rather increased expression of green fluorescence protein transduced by the same Ad vector. These data collectively indicated that an HSP90 inhibitor possessed a divalent action on p53 expression, as an activator for endogenous wild-type p53 through inhibited ubiquitination and a negative regulator of exogenously over-expressed p53 through the proteasome pathway.
Insights
Heat shock protein 90 (HSP90) inhibitors activate endogenous p53 and induce mesothelioma cell death. However, they also suppress exogenous p53 expression, indicating a dual role in p53 regulation.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Mesothelioma often has a defective p53 pathway due to loss of p14/p16, despite wild-type p53 genotype.
- Heat shock protein 90 (HSP90) is crucial for client protein stability and has roles in cancer pathways.
Purpose of the Study:
- To investigate the cytotoxic effects of HSP90 inhibitors (17-AAG, 17-DMAG) on mesothelioma cells.
- To explore the combined effects of HSP90 inhibitors and adenoviral wild-type p53 (Ad-p53) gene therapy.
Main Methods:
- Treatment of mesothelioma cells with HSP90 inhibitors (17-AAG, 17-DMAG).
- Co-treatment with HSP90 inhibitors and Ad-p53.
- Assessment of p53 expression, ubiquitination, and cell death.
- Use of proteasome inhibitor (MG-132) and HSP70 inhibitor (pifithrin-μ).
Main Results:
- HSP90 inhibitors upregulated endogenous p53 and induced mesothelioma cell death.
- HSP90 inhibitors enhanced cisplatin-induced p53 levels.
- HSP90 inhibitors suppressed Ad-p53-mediated exogenous p53 expression and cell death post-transcriptionally.
- HSP90 inhibitors reduced p53 ubiquitination and degradation, but MG-132 blocked this effect.
- HSP90 inhibitors did not inhibit Ad receptor expression but enhanced transduction of other genes via Ad vectors.
Conclusions:
- HSP90 inhibitors have a dual effect on p53: activating endogenous p53 by inhibiting ubiquitination and suppressing exogenous p53 via the proteasome pathway.
- HSP90 inhibitors may modulate p53-based cancer therapies.
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