Fragment-Based Discovery of Allosteric Inhibitors of SH2 Domain-Containing Protein Tyrosine Phosphatase-2 (SHP2)

化学 变构调节 SH2域 蛋白质酪氨酸磷酸酶 生物化学 磷酸酶 药物发现 原癌基因酪氨酸蛋白激酶Src 片段(逻辑) 立体化学 磷酸化 算法 计算机科学
作者
James E. H. Day,Valério Berdini,J. E. Castro,Gianni Chessari,Thomas G. Davies,Philip J. Day,Jeffrey D. St. Denis,Hideto Fujiwara,Satoshi Fukaya,C.C.F. Hamlett,Keisha Hearn,Steven D. Hiscock,Rhian S. Holvey,Satoru Ito,Navrohit Kandola,Yasuo Kodama,John W. Liebeschuetz,Vanessa Martins,Keitaro Matsuo,Paul N. Mortenson,Sandra Muench,Yoko Nakatsuru,Hiroaki Ochiiwa,Norman D. Palmer,Torren M. Peakman,Amanda N. Price,Michael Reader,David C. Rees,Sharna J. Rich,Ankita Shah,Yoshihiro Shibata,Tomoko Smyth,David G. Twigg,Nicola G. Wallis,Glyn Williams,Nicola E. Wilsher,Andrew J. Woodhead,Tadashi Shimamura,Christopher N. Johnson
出处
期刊:Journal of Medicinal Chemistry [American Chemical Society]
标识
DOI:10.1021/acs.jmedchem.3c02118
摘要

The ubiquitously expressed protein tyrosine phosphatase SHP2 is required for signaling downstream of receptor tyrosine kinases (RTKs) and plays a role in regulating many cellular processes. Genetic knockdown and pharmacological inhibition of SHP2 suppresses RAS/MAPK signaling and inhibit the proliferation of RTK-driven cancer cell lines. Here, we describe the first reported fragment-to-lead campaign against SHP2, where X-ray crystallography and biophysical techniques were used to identify fragments binding to multiple sites on SHP2. Structure-guided optimization, including several computational methods, led to the discovery of two structurally distinct series of SHP2 inhibitors binding to the previously reported allosteric tunnel binding site (Tunnel Site). One of these series was advanced to a low-nanomolar lead that inhibited tumor growth when dosed orally to mice bearing HCC827 xenografts. Furthermore, a third series of SHP2 inhibitors was discovered binding to a previously unreported site, lying at the interface of the C-terminal SH2 and catalytic domains.
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