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A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
ROS1 Kinase Inhibitors for Molecular-Targeted Therapies
M M Al-Sanea, A Z Abdelazem, B S Park
1Chemical Kinomics Research Center, Korea Institute of Science and Technology, Hwarangno 14-gil 5, Seongbuk-gu, Seoul 136-791, Republic of Korea. LSH6211@kist.re.kr.
Abstract:
ROS1 is a pivotal transmembrane receptor protein tyrosine kinase which regulates several cellular processes like apoptosis, survival, differentiation, proliferation, cell migration, and transformation. There is increasing evidence supporting that ROS1 plays an important role in different malignancies including glioblastoma, colorectal cancer, gastric adenocarcinoma, inflammatory myofibroblastic tumor, ovarian cancer, angiosarcoma, and non small cell lung cancer; thus, ROS1 has become a potential drug discovery target. ROS1 shares about 49% sequence homology with ALK primary structure; therefore, wide range of ALK kinase inhibitors have shown in vitro inhibitory activity against ROS1 kinase. After Crizotinib approval by FDA for the management of ALK-rearranged lung cancer, ROS1-positive tumors have been focused. Although significant advancements have been achieved in understanding ROS1 function and its signaling pathways plus recent discovery of small molecules modulating ROS1 protein, a vital need of medicinal chemistry efforts is still required to produce selective and potent ROS1 inhibitors as an important therapeutic strategy for different human malignancies. This review focuses on the current knowledge about different scaffolds targeting ROS1 rearrangements, methods to synthesis, and some biological data about the most potent compounds that have delivered various scaffold structures.
Insights
ROS1 kinase is a key target in various cancers. This review details scaffolds and synthesis methods for developing potent ROS1 inhibitors, crucial for new cancer therapies.
Area of Science:
- Oncology
- Molecular Biology
- Medicinal Chemistry
Background:
- ROS1 (receptor tyrosine kinase) regulates critical cellular functions like apoptosis and proliferation.
- ROS1 rearrangements are implicated in diverse malignancies, including non-small cell lung cancer, glioblastoma, and ovarian cancer, making it a significant drug discovery target.
- ALK kinase inhibitors demonstrate in vitro activity against ROS1 due to sequence homology, highlighting a therapeutic avenue.
Purpose of the Study:
- To review current knowledge on scaffolds targeting ROS1 rearrangements.
- To discuss synthesis methods for potential ROS1 inhibitors.
- To present biological data on potent compounds modulating ROS1 activity.
Main Methods:
- Literature review of studies on ROS1 inhibitors.
- Analysis of chemical scaffolds targeting ROS1.
- Summary of synthesis strategies and biological data for ROS1-targeting compounds.
Main Results:
- Identified various chemical scaffolds with inhibitory activity against ROS1.
- Detailed synthesis approaches for generating ROS1 inhibitors.
- Highlighted potent compounds and their biological profiles.
Conclusions:
- Despite advancements, selective and potent ROS1 inhibitors are needed for therapeutic applications.
- Medicinal chemistry efforts are vital for developing novel ROS1-targeting drugs.
- Targeting ROS1 rearrangements represents a promising strategy for treating multiple human cancers.
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