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Identification of Mediators of T-cell Receptor Signaling via the Screening of Chemical Inhibitor Libraries
Published on: January 22, 2019
Identification of effective natural PIK3CA H1047R inhibitors by computational study
Naimeng Liu1, Xinhui Wang2, Xuan Li3
1Department of Breast Surgery, The First Hospital of Jilin University, Changchun, China.
Abstract:
Triple-negative breast cancer (TNBC) is a highly aggressive subtype of breast cancer with a poor prognosis and a high recurrence rate. PIK3CA gene is frequently mutated in breast cancer, with PIK3CA H1047R as the hotspot mutation reported in TNBC. We used the ZINC database to screen natural compounds that could be structurally modified to develop drugs targeting the PIK3CA H1047R mutant protein in the PI3K pathway. The LibDock module showed that 2,749 compounds could strongly bind to the PIK3CA H1047R protein. Ultimately, the top 20 natural ligands with high LibDock scores were used for further analyses including assessment of ADME (absorption, distribution, metabolism, and excretion), toxicity, stability, and binding affinity. ZINC000004098448 and ZINC000014715656 were selected as the safest drug candidates with strong binding affinity to PIK3CA H1047R, no hepatotoxicity, less carcinogenicity, better plasma protein binding (PPB) properties, and enhanced intestinal permeability and absorption than the two reference drugs, PKI-402 and wortmannin. Moreover, their lower potential energies than those of PIK3CA H1047R confirmed the stability of the ligand-receptor complex under physiological conditions. ZINC000004098448 and ZINC000014715656 are thus safe and stable leads for designing drugs against PIK3CA H1047R as part of a targeted therapeutic approach for patients with TNBC.
Insights
Researchers identified two natural compounds, ZINC000004098448 and ZINC000014715656, as promising drug leads. These compounds show strong binding affinity and favorable safety profiles for targeting PIK3CA H1047R in triple-negative breast cancer treatment.
Area of Science:
- Oncology
- Pharmacology
- Computational Chemistry
Background:
- Triple-negative breast cancer (TNBC) is an aggressive subtype with poor prognosis.
- PIK3CA mutations, particularly H1047R, are common in TNBC and drive cancer progression.
- Targeting the PI3K pathway is a key strategy for TNBC therapy.
Purpose of the Study:
- To screen natural compounds for potential drug candidates targeting the PIK3CA H1047R mutant protein.
- To identify safe and effective compounds with strong binding affinity and favorable pharmacokinetic properties.
Main Methods:
- Utilized the ZINC database for virtual screening of natural compounds.
- Employed molecular docking (LibDock) to assess binding affinity to PIK3CA H1047R.
- Conducted in silico analyses of ADME, toxicity, stability, and binding affinity for top candidates.
Main Results:
- Screening identified 2,749 compounds with strong binding to PIK3CA H1047R.
- Two compounds, ZINC000004098448 and ZINC000014715656, were selected as optimal candidates.
- These candidates demonstrated superior safety and pharmacokinetic profiles compared to reference drugs, with stable ligand-receptor complex formation.
Conclusions:
- ZINC000004098448 and ZINC000014715656 represent safe and stable lead compounds for developing targeted therapies against PIK3CA H1047R.
- These findings offer a promising avenue for novel therapeutic strategies in triple-negative breast cancer treatment.
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