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SOMG-833, a novel selective c-MET inhibitor, blocks c-MET-dependent neoplastic effects and exerts antitumor activity
Hao-tian Zhang1, Lu Wang1, Jing Ai1
1Department of Pharmacology, Shenyang Pharmaceutical University, Shenyang, People's Republic of China (H.-t.Z., J.-y.Y.); Division of Anti-tumor Pharmacology, State Key Laboratory of Drug Research (L.W., J.A., Y.C., C.-x.H., Y.-c.J., M.H., J.D., M.-y.G.) and CAS Key Laboratory of Receptor Research and Synthetic Organic & Medicinal Chemistry Laboratory (A.Z.), Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, People's Republic of China.
Abstract:
The hepatocyte growth factor/c-MET signaling axis plays an important role in tumor cell proliferation, metastasis, and tumor angiogenesis, and therefore presents as an attractive target for cancer therapy. Notably, most small-molecule c-MET inhibitors currently undergoing clinical trials are multitarget inhibitors with the unwanted inhibition of additional kinases, often accounting for undesirable toxicity. Here, we discovered SOMG-833 [3-(4-methylpiperazin-1-yl)-5-(3-nitrobenzylamino)-7-(trifluoromethyl) quinoline] as a potent and selective small-molecule c-MET inhibitor, with an average IC50 of 0.93 nM against c-MET, over 10,000-fold more potent compared with 19 tyrosine kinases, including c-MET family members and highly homologous kinases. SOMG-833 strongly suppressed c-MET-mediated signaling transduction regardless of mechanistic complexity implicated in c-MET activation, including MET gene amplification, MET gene fusion, and HGF-stimulated c-MET activation. In a panel of 24 human cancer or genetically engineered model cell lines, SOMG-833 potently inhibited c-MET-driven cell proliferation, whereas cancer cells lacking c-MET activation were markedly less sensitive (at least 15-fold) to the treatment. SOMG-833 also suppressed c-MET-mediated migration, invasion, urokinase activity, and invasive growth phenotype. In addition, inhibition of primary human umbilical vascular endothelial cell (HUVEC) proliferation and downregulation of plasma proangiogenic factor interleukin-8 secretion resulted from SOMG-833 treatment, suggesting its significant antiangiogenic properties. Together, these results led to the remarkable antitumor efficacy of SOMG-833 in vivo, as demonstrated in c-MET-dependent NIH-3T3/TPR-MET, U-87MG, and EBC-1 xenograft models. Collectively, our results suggested SOMG-833 as a promising candidate for highly selective c-MET inhibition and a powerful tool to investigate the sole role of MET kinase in cancer.
Insights
We discovered SOMG-833, a potent and selective c-MET inhibitor, showing strong antitumor efficacy. This targeted therapy effectively inhibits cancer growth and metastasis, offering a promising new approach for cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The hepatocyte growth factor/c-MET signaling pathway is crucial for tumor progression, making it a key therapeutic target.
- Existing c-MET inhibitors often lack selectivity, leading to off-target effects and toxicity.
- Developing selective inhibitors is essential for effective and safer cancer therapy.
Purpose of the Study:
- To discover and characterize a novel, potent, and selective small-molecule inhibitor of c-MET.
- To evaluate the efficacy of the novel inhibitor in preclinical cancer models.
- To investigate the anti-tumor and anti-angiogenic properties of the novel inhibitor.
Main Methods:
- In vitro kinase assays to determine IC50 values and selectivity against a panel of kinases.
- Cell-based assays to assess inhibition of proliferation, migration, and invasion in cancer cell lines.
- In vivo studies using xenograft models to evaluate antitumor efficacy and antiangiogenic effects.
Main Results:
- SOMG-833 demonstrated potent inhibition of c-MET with an average IC50 of 0.93 nM, exhibiting over 10,000-fold selectivity against other kinases.
- The compound effectively suppressed c-MET-driven proliferation, migration, and invasion in various cancer cell lines.
- SOMG-833 showed significant antitumor efficacy in vivo and exhibited antiangiogenic properties by inhibiting HUVEC proliferation and IL-8 secretion.
Conclusions:
- SOMG-833 is a highly potent and selective c-MET inhibitor with promising therapeutic potential.
- The compound effectively targets c-MET-driven oncogenic processes, including proliferation, metastasis, and angiogenesis.
- SOMG-833 represents a valuable tool for cancer therapy and for studying the specific role of MET kinase in cancer.
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