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Updated: Aug 9, 2026

Studies of Chaperone-Cochaperone Interactions using Homogenous Bead-Based Assay
Published on: July 21, 2021
Chaperoning oncogenes: Hsp90 as a target of geldanamycin
1Urologic Oncology Branch, National Cancer Institute, Rockville MD, 20850, USA. len@helix.nih.gov
Abstract:
Heat shock protein 90 (Hsp90) is a molecular chaperone required for the stability and function of a number of conditionally activated and/or expressed signaling proteins, as well as multiple mutated, chimeric, and/or over-expressed signaling proteins, that promote cancer cell growth and/or survival. Hsp90 inhibitors, by interacting specifically with a single molecular target, cause the inactivation, destabilization, and eventual degradation of Hsp90 client proteins, and they have shown promising anti-tumor activity in preclinical model systems. One Hsp90 inhibitor, 17-AAG, has completed Phase I clinical trial and several Phase II trials of this agent are in progress. Hsp90 inhibitors are unique in that, although they are directed toward a specific molecular target, they simultaneously inhibit multiple signaling pathways that frequently interact to promote cancer cell survival. Further, by inhibiting nodal points in multiple overlapping survival pathways utilized by cancer cells, a combination of an Hsp90 inhibitor with standard chemotherapeutic agents may dramatically increase the in vivo efficacy of the standard agent. Hsp90 inhibitors may circumvent the characteristic genetic plasticity that has allowed cancer cells to eventually evade the toxic effects of most molecularly targeted agents. The mechanism-based use of Hsp90 inhibitors, both alone and in combination with other drugs, should be effective toward multiple forms of cancer.
Insights
Heat shock protein 90 (Hsp90) inhibitors target cancer cell survival pathways. These inhibitors show promise alone and in combination therapies for various cancers.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Heat shock protein 90 (Hsp90) is a molecular chaperone crucial for cancer cell growth and survival.
- Hsp90 client proteins include mutated, overexpressed, or conditionally activated signaling proteins that drive tumorigenesis.
Purpose of the Study:
- To evaluate the anti-tumor potential of Hsp90 inhibitors.
- To explore the mechanism of action and therapeutic applications of Hsp90 inhibitors in cancer treatment.
Main Methods:
- Hsp90 inhibitors target Hsp90, leading to the degradation of its client proteins.
- Preclinical models were used to assess the anti-tumor activity of Hsp90 inhibitors.
- Clinical trials (Phase I and II) have been conducted for specific Hsp90 inhibitors like 17-AAG.
Main Results:
- Hsp90 inhibitors demonstrate promising anti-tumor activity in preclinical studies.
- These inhibitors destabilize and degrade multiple Hsp90 client proteins, impacting various cancer survival pathways simultaneously.
- Combination therapy with Hsp90 inhibitors and standard chemotherapeutics may enhance in vivo efficacy.
Conclusions:
- Hsp90 inhibitors offer a unique therapeutic strategy by targeting nodal points in multiple overlapping cancer survival pathways.
- Their ability to circumvent cancer cell genetic plasticity suggests potential efficacy against diverse cancer types.
- Mechanism-based use of Hsp90 inhibitors, alone or in combination, holds significant therapeutic promise for multiple cancers.
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