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Updated: Jul 8, 2025

Assessing Cellular Target Engagement by SHP2 PTPN11 Phosphatase Inhibitors
Published on: July 17, 2020
SHP2 inhibitors maintain TGFβ signalling through SMURF2 inhibition
Xianning Lai1,2,3, Sarah Kit Leng Lui1, Hiu Yan Lam2,3
1Cancer Science Institute of Singapore, National University of Singapore, Singapore, 117599, Singapore.
Abstract:
Despite the promising antitumor activity of SHP2 inhibitors in RAS-dependent tumours, overall responses have been limited by their narrow therapeutic window. Like with all MAPK pathway inhibitors, this is likely the result of compensatory pathway activation mechanisms. However, the underlying mechanisms of resistance to SHP2 inhibition remain unknown. The E3 ligase SMURF2 limits TGFβ activity by ubiquitinating and targeting the TGFβ receptor for proteosome degradation. Using a functional RNAi screen targeting all known phosphatases, we identify that the tyrosine phosphatase SHP2 is a critical regulator of TGFβ activity. Specifically, SHP2 dephosphorylates two key residues on SMURF2, resulting in activation of the enzyme. Conversely, SHP2 depletion maintains SMURF2 in an inactive state, resulting in the maintenance of TGFβ activity. Furthermore, we demonstrate that depleting SHP2 has significant implications on TGFβ-mediated migration, senescence, and cell survival. These effects can be overcome through the use of TGFβ-targeted therapies. Consequently, our findings provide a rationale for combining SHP2 and TGFβ inhibitors to enhance tumour responses leading to improved patient outcomes.
Insights
SHP2 inhibitors show promise in cancer treatment but have limited efficacy. This study reveals SHP2 regulates TGFβ activity, suggesting combining SHP2 and TGFβ inhibitors may improve patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Signal Transduction
Background:
- SHP2 inhibitors show antitumor activity in RAS-dependent tumors but have limited therapeutic windows.
- Compensatory pathway activation mechanisms are suspected but resistance mechanisms to SHP2 inhibition are unknown.
Purpose of the Study:
- To identify mechanisms of resistance to SHP2 inhibition.
- To investigate the role of SHP2 in regulating TGFβ activity and its implications in cancer.
Main Methods:
- Functional RNAi screen targeting phosphatases.
- Investigated the interaction between SHP2 and SMURF2.
- Assessed TGFβ-mediated cellular processes.
Main Results:
- SHP2 dephosphorylates and activates the E3 ligase SMURF2, a negative regulator of TGFβ.
- SHP2 depletion leads to sustained TGFβ activity, impacting cell migration, senescence, and survival.
- TGFβ-targeted therapies can overcome SHP2 inhibition resistance.
Conclusions:
- SHP2 is a critical regulator of TGFβ activity by modulating SMURF2.
- Combining SHP2 and TGFβ inhibitors offers a potential strategy to enhance antitumor responses and improve patient outcomes.
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