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Assessing Cellular Target Engagement by SHP2 PTPN11 Phosphatase Inhibitors
Published on: July 17, 2020
SHetA2 Attack on Mortalin and Colleagues in Cancer Therapy and Prevention
1Stephenson Cancer Center, Obstetrics and Gynecology Department, Gynecologic Oncology Section, University of Oklahoma Health Sciences Center, Oklahoma City, OK, United States.
Abstract:
Heat Shock Proteins of the 70-kDa family (HSP70s) do not cause cancer by themselves, but instead protect cells as they transform into cancer. These molecular chaperones bind numerous client proteins and utilize ATP hydrolysis to facilitate proper protein folding, formation of functional complexes and cellular localizations, or degradation of irreparably damaged proteins. Their transient upregulation by stressful situations avoids induction of programmed cell death. Continued upregulation of the mortalin, heat shock cognate (hsc70) and glucose regulated protein 78 (Grp78) support cancer development and progression by supporting pro-proliferative and metabolic functions and repressing pro-death functions of oncoproteins and tumor suppressor proteins. This review describes the discovery and development of a lead anti-cancer compound, sulfur heteroarotinoid A2 (SHetA2, NSC726189), which was originally developed to bind retinoic acid receptors, but was subsequently found to work independently of these receptors. The discovery and validation of mortalin, hsc70 and Grp78 as SHetA2 target proteins is summarized. The documented and hypothesized roles of these HSP70 proteins and their clients in the mechanism of SHetA2 inhibition of cancer without toxicity are discussed. Use of this mechanistic data to evaluate drug action in a cancer clinical trial and develop synergistic drug combinations is explained. Knowledge needed to optimize SHetA2 analogs for use in cancer therapy and prevention is proposed as future directions.
Insights
Heat Shock Proteins (HSP70s) aid cancer development by protecting cells. A novel compound, SHetA2, targets these HSP70s to inhibit cancer growth without toxicity, offering a new therapeutic strategy.
Area of Science:
- Molecular Biology
- Oncology
- Drug Discovery
Background:
- Heat Shock Proteins of the 70-kDa family (HSP70s) are molecular chaperones crucial for protein homeostasis.
- HSP70s, including mortalin, hsc70, and Grp78, are upregulated in cancer, supporting tumor development and progression.
- These proteins protect cancer cells by promoting proliferation, metabolic functions, and inhibiting cell death.
Purpose of the Study:
- To review the discovery and development of the anti-cancer compound sulfur heteroarotinoid A2 (SHetA2).
- To summarize the identification and validation of mortalin, hsc70, and Grp78 as SHetA2 target proteins.
- To discuss the mechanism of SHetA2's anti-cancer action and its potential for clinical application.
Main Methods:
- Review of literature on HSP70 family proteins and their roles in cancer.
- Description of the discovery and validation process for SHetA2 and its targets.
- Analysis of documented and hypothesized mechanisms of SHetA2 action.
Main Results:
- SHetA2 functions independently of retinoic acid receptors.
- Mortalin, hsc70, and Grp78 are validated targets of SHetA2.
- SHetA2 inhibits cancer progression by targeting HSP70 proteins, potentially without toxicity.
Conclusions:
- SHetA2 demonstrates a novel mechanism for cancer therapy by targeting HSP70s.
- Mechanistic insights support SHetA2's evaluation in clinical trials and combination therapies.
- Further optimization of SHetA2 analogs is proposed for cancer treatment and prevention.
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