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Updated: Jun 21, 2026

Assessment of Resistance to Tyrosine Kinase Inhibitors by an Interrogation of Signal Transduction Pathways by Antibody Arrays
Published on: September 19, 2018
NS-187 (INNO-406), a Bcr-Abl/Lyn dual tyrosine kinase inhibitor
Tomoko Niwa1, Tetsuo Asaki, Shinya Kimura
1Discovery Research Laboratories, Nippon Shinyaku Co., Ltd. 14, Nishinosho-Monguchi-Cho, Kisshoin, Minami-ku, Kyoto 601-8550, Japan.
Abstract:
Protein kinases catalyze the transfer of the gamma-phosphoryl group of adenosine triphosphate (ATP) to the hydroxyl groups of protein side chains, and they play critical roles in regulating cellular signal transduction and other biochemical processes. They are attractive targets for today's drug discovery and development, and many pharmaceutical companies are intensively developing various kinds of protein kinase inhibitors. A good example is the recent success with the Bcr-Abl tyrosine kinase inhibitor imatinib mesylate (Gleevec) in the treatment of chronic myeloid leukemia. Though imatinib has dramatically improved the treatment of Bcr-Abl-positive chronic myeloid leukemia, resistance is often found in patients with advanced-stage disease. Several mechanisms have been proposed to explain this resistance, including point mutations within the Abl kinase domain, amplification of the bcr-abl gene, overexpression of the corresponding mRNA, increased drug efflux mediated by P-glycoprotein, and activation of the Src-family kinase (SFK) Lyn. We set out to develop a novel drug whose affinity for Abl is higher than that of imatinib and whose specificity in inhibiting Lyn is higher than that of SFK/Abl inhibitors such as dasatinib (Sprycel) or bosutinib (SKI-606). Our work has led to the development of NS-187 (INNO-406), a novel Abl/Lyn dual tyrosine kinase inhibitor with clinical prospects. To provide an overview of how a selective kinase inhibitor has been developed, this review presents chemical-modification studies carried out with the guidance of molecular modeling, the structural basis for the high potency and selectivity of NS-187 based on the X-ray structure of the NS-187/Abl complex, and the biological profiling of NS-187, including site-directed mutagenesis experiments.
Insights
Researchers developed NS-187 (INNO-406), a novel Abl/Lyn dual tyrosine kinase inhibitor, to overcome imatinib resistance in chronic myeloid leukemia. This new drug shows higher affinity for Abl and greater specificity for Lyn than existing inhibitors.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Protein kinases regulate cellular signaling and are key drug targets.
- Imatinib (Gleevec) is effective against Bcr-Abl tyrosine kinase in chronic myeloid leukemia but faces resistance.
- Resistance mechanisms include mutations, gene amplification, and activation of Src-family kinase (SFK) Lyn.
Purpose of the Study:
- To develop a novel kinase inhibitor with higher affinity for Abl than imatinib.
- To achieve greater specificity in inhibiting Lyn compared to SFK/Abl inhibitors like dasatinib or bosutinib.
- To introduce NS-187 (INNO-406), a dual Abl/Lyn tyrosine kinase inhibitor with clinical potential.
Main Methods:
- Chemical modification guided by molecular modeling.
- X-ray crystallography to determine the structure of the NS-187/Abl complex.
- Biological profiling including site-directed mutagenesis experiments.
Main Results:
- Development of NS-187 (INNO-406), a potent Abl/Lyn dual tyrosine kinase inhibitor.
- Elucidation of the structural basis for NS-187's high potency and selectivity.
- Demonstration of NS-187's biological activity through various experiments.
Conclusions:
- NS-187 (INNO-406) represents a promising therapeutic candidate for overcoming imatinib resistance.
- The study highlights the successful development of a selective kinase inhibitor through integrated chemical and structural biology approaches.
- Further research and clinical trials are warranted to evaluate NS-187's therapeutic efficacy.
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