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Updated: Nov 30, 2025

Kinase Inhibitor Screening In Self-assembled Human Protein Microarrays
Published on: October 23, 2019
Pharmacophore based virtual screening, molecular docking and molecular dynamic simulation studies for finding ROS1
Ramar Vanajothi1, Hemamalini Vedagiri2, Mysoon M Al-Ansari3
1Department of Biomedical Science, Bharathidasan University, Tamil Nadu, India.
Abstract:
Proto-oncogene receptor tyrosine kinase ROS-1 is one of the clinically important biomarker and plays a crucial role in regulation of a number of cellular functions including cell proliferation, migration and angiogenesis. Recently, inhibition of ROS1 kinase has proven to be a promising target of anticancer drugs for non-small cell lung cancer (NSCLC). The very few compounds have been used as potent drug molecules so far and the selective ROS1 inhibitors are relatively rare. Besides the currently available drugs such as Crizotinib and PF-06463922 are becoming sensitive due to mutations in the ROS1 protein. To curtail the problem of the resistant, present study was designed to identify the potent inhibitors against ROS1. Three different screening approaches such as structure based, Atom-based and pharmacophore based screening were carried out against commercially available databases and the retrieved best hits were further evaluated by Lipinski's filter. Thereafter the lead molecule was subjected to pocket specific docking with ROS1. The results show that, total of 9 molecules (3 from each screening) has good docking score (with range of -9.288 to -12.49 Kcal/Mol) and binding interactions within the active site of ROS1. In order to analyze the stability of the ligand- protein complexes, molecular dynamics simulation was performed. Thus, these identified potential lead molecules with good binding score and binding affinity with ROS1 may act as the potent ROS1 inhibitor, and that are worth considering for further experimental studies.Communicated by Ramaswamy H. Sarma.
Insights
Researchers identified novel potent inhibitors for ROS1 kinase, a key target in non-small cell lung cancer (NSCLC). These compounds show promise in overcoming drug resistance, offering new therapeutic avenues for NSCLC patients.
Area of Science:
- Oncology
- Pharmacology
- Biochemistry
Background:
- Proto-oncogene receptor tyrosine kinase ROS1 is a critical biomarker in non-small cell lung cancer (NSCLC).
- ROS1 kinase inhibition is a promising anticancer strategy, but resistance to existing drugs like Crizotinib is a growing challenge.
- Selective ROS1 inhibitors are scarce, necessitating the development of new therapeutic agents.
Purpose of the Study:
- To identify novel, potent inhibitors targeting ROS1 kinase.
- To address the problem of drug resistance in ROS1-mutated non-small cell lung cancer.
- To discover lead molecules for further experimental validation as anticancer drugs.
Main Methods:
- Employed structure-based, atom-based, and pharmacophore-based virtual screening approaches.
- Utilized Lipinski's filter for drug-likeness evaluation and pocket-specific docking against ROS1.
- Performed molecular dynamics simulations to assess the stability of ligand-protein complexes.
Main Results:
- Identified 9 potential ROS1 inhibitors with significant docking scores ranging from -9.288 to -12.49 Kcal/Mol.
- Confirmed favorable binding interactions within the ROS1 active site for the identified molecules.
- Molecular dynamics simulations indicated stable interactions for the lead compounds.
Conclusions:
- The identified molecules demonstrate potent binding affinity and interactions with ROS1 kinase.
- These compounds represent promising lead candidates for developing new ROS1 inhibitors.
- Further experimental studies are warranted to validate their therapeutic potential in non-small cell lung cancer.
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