Identification of TNO155, an Allosteric SHP2 Inhibitor for the Treatment of Cancer

Matthew J. LaMarche, Michael Acker(Novartis (United States)), Andreea Argintaru, Daniel Bauer(Novartis (United States)), Julie Boisclair(Novartis (United States)), Homan Chan(Novartis (United States)), Christine Hiu-Tung Chen, Yingnan Chen(Novartis (United States)), Zhouliang Chen, Zhan Deng, Michaël Doré, David Dunstan, Jianmei Fan, Peter Fekkes, Brant Firestone(Novartis (United States)), Michelle Fodor, Jorge García‐Fortanet, Pascal D. Fortin(Novartis (United States)), Cary Fridrich, J. Giraldes, Meir Glick, Denise C. Grünenfelder, Huia-Xiang Hao(Novartis (United States)), Martin Hentemann(Novartis (United States)), Samuel B. Ho, Andriana O. Jouk, Kang Zhao, Rajesh Karki, Mitsunori Kato, Nick Keen(Novartis (United States)), Robert Koenig, Laura R. LaBonte(Novartis (United States)), Jay F. Larrow, Gang Liu, Shumei Liu(Novartis (United States)), Dyuti Majumdar, Simon Mathieu, Matthew J. Meyer(Novartis (United States)), Morvarid Mohseni(Novartis (United States)), Rukundo Ntaganda, Mark Palermo, Lawrence Perez, Minying Pu(Novartis (United States)), Timothy M. Ramsey, John F. Reilly, Patrick Sarver, William R. Sellers(Novartis (United States)), Martin Sendzik, Michael D. Shultz, Joanna Slisz(Novartis (United States)), Kelly L. Slocum(Novartis (United States)), Troy Smith, Stan Spence(Novartis (United States)), Travis Stams, Christopher Straub, Victoriano Tamez, Bakary-Barry Toure, Christopher Towler, Ping Wang(Novartis (United States)), Hongyun Wang(Novartis (United States)), Sarah Williams, Fan Yang, Bing Yu, Ji-Hu Zhang, Suzanne Zhu(Novartis (United States))
Journal of Medicinal Chemistry
September 10, 2020
Cited by 216Open Access
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Abstract

SHP2 is a nonreceptor protein tyrosine phosphatase encoded by the PTPN11 gene and is involved in cell growth and differentiation via the MAPK signaling pathway. SHP2 also plays an important role in the programed cell death pathway (PD-1/PD-L1). As an oncoprotein as well as a potential immunomodulator, controlling SHP2 activity is of high therapeutic interest. As part of our comprehensive program targeting SHP2, we identified multiple allosteric binding modes of inhibition and optimized numerous chemical scaffolds in parallel. In this drug annotation report, we detail the identification and optimization of the pyrazine class of allosteric SHP2 inhibitors. Structure and property based drug design enabled the identification of protein–ligand interactions, potent cellular inhibition, control of physicochemical, pharmaceutical and selectivity properties, and potent in vivo antitumor activity. These studies culminated in the discovery of TNO155, (3S,4S)-8-(6-amino-5-((2-amino-3-chloropyridin-4-yl)thio)pyrazin-2-yl)-3-methyl-2-oxa-8-azaspiro[4.5]decan-4-amine (1), a highly potent, selective, orally efficacious, and first-in-class SHP2 inhibitor currently in clinical trials for cancer.


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