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Dual Allosteric Inhibition of SHP2 Phosphatase

变构调节 磷酸酶 对偶(语法数字) 化学 DUSP6型 蛋白磷酸酶2 生物化学 双特异性磷酸酶 计算生物学 生物 艺术 文学类
作者
Michelle Fodor,Edmund V. Price,Ping Wang,Hengyu Lu,Andreea Argintaru,Zhouliang Chen,Meir Glick,Huai‐Xiang Hao,Mitsunori Kato,Robert Koenig,Jonathan R. LaRochelle,Gang Liu,Eric McNeill,Dyuti Majumdar,Gisele Nishiguchi,Lawrence Perez,Grégory Paris,Christopher M. Quinn,Timothy M. Ramsey,Martin Sendzik
出处
期刊:ACS Chemical Biology [American Chemical Society]
卷期号:13 (3): 647-656 被引量:117
标识
DOI:10.1021/acschembio.7b00980
摘要

SHP2 is a cytoplasmic protein tyrosine phosphatase encoded by the PTPN11 gene and is involved in cell proliferation, differentiation, and survival. Recently, we reported an allosteric mechanism of inhibition that stabilizes the auto-inhibited conformation of SHP2. SHP099 (1) was identified and characterized as a moderately potent, orally bioavailable, allosteric small molecule inhibitor, which binds to a tunnel-like pocket formed by the confluence of three domains of SHP2. In this report, we describe further screening strategies that enabled the identification of a second, distinct small molecule allosteric site. SHP244 (2) was identified as a weak inhibitor of SHP2 with modest thermal stabilization of the enzyme. X-ray crystallography revealed that 2 binds and stabilizes the inactive, closed conformation of SHP2, at a distinct, previously unexplored binding site—a cleft formed at the interface of the N-terminal SH2 and PTP domains. Derivatization of 2 using structure-based design resulted in an increase in SHP2 thermal stabilization, biochemical inhibition, and subsequent MAPK pathway modulation. Downregulation of DUSP6 mRNA, a downstream MAPK pathway marker, was observed in KYSE-520 cancer cells. Remarkably, simultaneous occupation of both allosteric sites by 1 and 2 was possible, as characterized by cooperative biochemical inhibition experiments and X-ray crystallography. Combining an allosteric site 1 inhibitor with an allosteric site 2 inhibitor led to enhanced pharmacological pathway inhibition in cells. This work illustrates a rare example of dual allosteric targeted protein inhibition, demonstrates screening methodology and tactics to identify allosteric inhibitors, and enables further interrogation of SHP2 in cancer and related pathologies.
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