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Updated: Jun 24, 2026

Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
New Scaffolds of Proteasome Inhibitors: Boosting Anticancer Potential by Exploiting the Synergy of In Silico and In
Romina A Guedes1,2,3, Jorge H Grilo1, Andreia N Carvalho1
1Research Institute for Medicines (iMed.ULisboa), Faculty of Pharmacy, University of Lisbon, 1649-003 Lisboa, Portugal.
Abstract:
Cancer is a complex multifactorial disease whose pathophysiology involves multiple metabolic pathways, including the ubiquitin-proteasome system, for which several proteasome inhibitors have already been approved for clinical use. However, the resistance to existing therapies and the occurrence of severe adverse effects is still a concern. The purpose of this study was the discovery of novel scaffolds of proteasome inhibitors with anticancer activity, aiming to overcome the limitations of the existing proteasome inhibitors. Thus, a structure-based virtual screening protocol was developed using the structure of the human 20S proteasome, and 246 compounds from virtual databases were selected for in vitro evaluation, namely proteasome inhibition assays and cell viability assays. Compound 4 (JHG58) was shortlisted as the best hit compound based on its potential in terms of proteasome inhibitory activity and its ability to induce cell death (both with IC50 values in the low micromolar range). Molecular docking studies revealed that compound 4 interacts with key residues, namely with the catalytic Thr1, Ala20, Thr21, Lys33, and Asp125 at the chymotrypsin-like catalytic active site. The hit compound is a good candidate for additional optimization through a hit-to-lead campaign.
Insights
Researchers discovered a novel anticancer compound (JHG58) that inhibits proteasomes, offering a potential new therapy. This compound shows promise in overcoming resistance and reducing side effects associated with current cancer treatments.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Cancer involves complex metabolic pathways, including the ubiquitin-proteasome system.
- Existing proteasome inhibitors face challenges with drug resistance and adverse effects.
Purpose of the Study:
- To discover novel proteasome inhibitor scaffolds with anticancer activity.
- To develop new therapeutic strategies overcoming limitations of current treatments.
Main Methods:
- Structure-based virtual screening of the human 20S proteasome.
- In vitro evaluation including proteasome inhibition and cell viability assays.
- Molecular docking studies to analyze compound-target interactions.
Main Results:
- 246 compounds were screened, with Compound 4 (JHG58) identified as the best hit.
- Compound 4 demonstrated significant proteasome inhibitory activity and induced cancer cell death (low micromolar IC50).
- Molecular docking revealed Compound 4 interacts with key active site residues (Thr1, Ala20, Thr21, Lys33, Asp125).
Conclusions:
- Compound 4 (JHG58) is a promising novel scaffold for proteasome inhibitor development.
- Further optimization through a hit-to-lead campaign is warranted.
- This discovery could lead to more effective cancer therapies.
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