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May 17, 2026Journal of Medicinal Chemistry1 citations

Dual Allosteric Targeting of SHP2: Development of Bivalent Inhibitors with Enhanced Potency for Cancer Treatment

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CZChengchun ZhuYZYang ZhangYJYaran Jin

Key Points

  • This research aims to develop bivalent inhibitors that more effectively target SHP2 and improve cancer treatment outcomes.
  • Developed bivalent allosteric inhibitors by linking two ligands targeting SHP2
  • Utilized site-specific biotinylated probes and AlphaScreen assays for validation
  • Performed molecular dynamics simulations to confirm dual-target engagement
  • SDUY127 achieved an IC50 of 16 nM, a 3-fold increase in potency compared to parent compounds
  • Demonstrated improved antiproliferative efficacy against MV4–11 cells through sustained MAPK signaling suppression
  • Identified SDUY127 as the first bivalent SHP2 inhibitor with enhanced therapeutic potential

Abstract

SHP2 is an attractive anticancer target due to its pivotal role in oncogenic signaling. Although combination therapies involving SHP2 inhibition are promising, none have yet advanced to clinical approval, highlighting the need for innovative SHP2-targeted approaches. Herein, we developed a series of bivalent allosteric inhibitors by linking two distinct ligands targeting the tunnel and latch sites. SDUY127 demonstrated the most potent enzymatic inhibition (IC50 = 16 nM), representing a 3-fold improvement over the parent compounds. We developed new site-specific biotinylated probes and AlphaScreen-based assays to confirm the dual engagement of both allosteric pockets. Molecular dynamics simulations further established that SDUY127 stably occupied both sites in a 1:1 stoichiometry. Additionally, SDUY127 exhibited improved antiproliferative efficacy against MV4–11 cells through more sustained suppression of MAPK signaling compared to monotherapy or combination treatments. This work identifies SDUY127 as the first bivalent SHP2 inhibitor and presents a framework for designing and validating dual-site small-molecule modulators of phosphatases.

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Cite This Study

Zhu et al. (2026) studied this question.

synapsesocial.com/papers/6a095ac47880e6d24efe0927https://doi.org/10.1021/acs.jmedchem.5c03184
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