Elucidating the therapeutic potential of indazole derivative bindarit against K-ras receptor: An in-silico analysis
Parmar Keshri Nandan1, Jayanthi Sivaraman1
1School of Biosciences and Technology, Vellore Institute of Technology, Vellore, India.
Abstract:
Ras gene is frequently mutated in cancer. Among different subtypes of Ras gene, K-Ras mutation occurs in nearly 30 % of human cancers. K-Ras mutation, specifically K-Ras (G12D) mutation is prevalent in cancers like lung, colon and pancreatic cancer. During cancer occurrence, mutant Ras remain in activated form (GTP bound state) for cancer cell proliferation. In the quest for a potential K-Ras inhibitor, nitrogen-containing indazole derivatives can show promise as inhibitors, as they have numerous therapeutic properties like anti-inflammatory, anti-viral and anti-tumor. Furthermore, among various indazole derivatives, "Bindarit" is an important therapeutic compound which could have potential inhibitory action against K-Ras due to its structural resemblance with reference compound "Benzimidazole". So, the current study is an attempt to find out the inhibitory effect of Bindarit against K-Ras activation by binding to a pocket which is adjacent to the switch I/II regions of the K-Ras receptor. AutoDock tool was used to investigate the binding affinity of protein ligand interaction and GROMACS package was utilised to assess their interactions in a dynamic setting. Bindarit shows better binding affinity than reference with binding energy of -7.3 kcal/mol. Upon ligand binding conformational changes take place, which could lead to the loss of GTPase activity. Consequently, further downstream signalling of the K-Ras pathway would be blocked and this could lead to the inhibition of K-Ras dependent cancer cell proliferation. However, further validation of present study can be done through experimental assay such as cytotoxic and protein expression analysis.
Insights
Bindarit shows potential as a K-Ras inhibitor by blocking its activation, thus inhibiting cancer cell proliferation. This study explored Bindarit
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- K-Ras mutations are prevalent in human cancers, driving cell proliferation.
- Mutant K-Ras remains GTP-bound, promoting uncontrolled cancer growth.
- Nitrogen-containing indazole derivatives, like Bindarit, exhibit anti-tumor properties.
Purpose of the Study:
- To investigate the inhibitory effect of Bindarit against K-Ras activation.
- To assess Bindarit's binding affinity to K-Ras.
- To explore Bindarit's potential in blocking K-Ras-driven cancer cell proliferation.
Main Methods:
- Molecular docking using AutoDock tool to analyze protein-ligand binding affinity.
- Molecular dynamics simulations using GROMACS to assess interactions.
- Comparison of Bindarit's binding energy with a reference compound.
Main Results:
- Bindarit demonstrated a binding energy of -7.3 kcal/mol, indicating strong binding affinity.
- Ligand binding induced conformational changes in K-Ras, potentially affecting GTPase activity.
- Bindarit showed superior binding affinity compared to the reference compound.
Conclusions:
- Bindarit shows promise as an inhibitor of K-Ras activation.
- Inhibition of K-Ras by Bindarit could block downstream signaling and cancer cell proliferation.
- Further experimental validation, including cytotoxic and protein expression analysis, is recommended.
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