Issue 36, 2023

Design, synthesis and biological evaluation of sulfonylamidines as potent c-Met inhibitors by enhancing hydrophobic interaction

Abstract

The dysregulation of c-Met kinase has emerged as a significant contributing factor for the occurrence, progression, poor clinical outcomes and drug resistance of various human cancers. In our ongoing pursuit to identify promising c-Met inhibitors as potential antitumor agents, a docking study of the previously reported c-Met inhibitor 7 revealed a large unoccupied hydrophobic pocket, which could present an opportunity for further exploration of structure–activity relationships to improve the binding affinity with the allosteric hydrophobic back pocket of c-Met. Herein we performed structure–activity relationship and molecular modeling studies based on lead compound 7. The collective endeavors culminated in the discovery of compound 21j with superior efficacy to 7 and positive control foretinib by increasing the hydrophobic interaction with the hydrophobic back pocket of c-Met active site.

Graphical abstract: Design, synthesis and biological evaluation of sulfonylamidines as potent c-Met inhibitors by enhancing hydrophobic interaction

Supplementary files

Article information

Article type
Paper
Submitted
21 Jul 2023
Accepted
21 Aug 2023
First published
05 Sep 2023

Org. Biomol. Chem., 2023,21, 7459-7466

Design, synthesis and biological evaluation of sulfonylamidines as potent c-Met inhibitors by enhancing hydrophobic interaction

X. Nan, X. Li, Y. Wu, H. Li, Q. Wang, S. Xing and Z. Liang, Org. Biomol. Chem., 2023, 21, 7459 DOI: 10.1039/D3OB01156A

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