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Updated: Feb 10, 2026

Assessing Cellular Target Engagement by SHP2 PTPN11 Phosphatase Inhibitors
Published on: July 17, 2020
Mutant KRAS-driven cancers depend on PTPN11/SHP2 phosphatase
Dietrich A Ruess1,2, Guus J Heynen3, Katrin J Ciecielski1
1Mildred-Scheel-Chair of Tumor Metabolism, Internal Medicine II, Klinikum rechts der Isar, Technische Universität München, Munich, Germany.
Abstract:
The ubiquitously expressed non-receptor protein tyrosine phosphatase SHP2, encoded by PTPN11, is involved in signal transduction downstream of multiple growth factor, cytokine and integrin receptors1. Its requirement for complete RAS-MAPK activation and its role as a negative regulator of JAK-STAT signaling have established SHP2 as an essential player in oncogenic signaling pathways1-7. Recently, a novel potent allosteric SHP2 inhibitor was presented as a viable therapeutic option for receptor tyrosine kinase-driven cancers, but was shown to be ineffective in KRAS-mutant tumor cell lines in vitro8. Here, we report a central and indispensable role for SHP2 in oncogenic KRAS-driven tumors. Genetic deletion of Ptpn11 profoundly inhibited tumor development in mutant KRAS-driven murine models of pancreatic ductal adenocarcinoma and non-small-cell lung cancer. We provide evidence for a critical dependence of mutant KRAS on SHP2 during carcinogenesis. Deletion or inhibition of SHP2 in established tumors delayed tumor progression but was not sufficient to achieve tumor regression. However, SHP2 was necessary for resistance mechanisms upon blockade of MEK. Synergy was observed when both SHP2 and MEK were targeted, resulting in sustained tumor growth control in murine and human patient-derived organoids and xenograft models of pancreatic ductal adenocarcinoma and non-small-cell lung cancer. Our data indicate the clinical utility of dual SHP2/MEK inhibition as a targeted therapy approach for KRAS-mutant cancers.
Insights
SHP2 is essential for KRAS-driven cancers. Combining SHP2 and MEK inhibitors offers a promising targeted therapy for pancreatic and lung cancers, improving tumor growth control.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- SHP2 (PTPN11) is a protein tyrosine phosphatase crucial for signaling pathways.
- SHP2 is implicated in oncogenic signaling but its role in KRAS-mutant cancers was unclear.
- Previous SHP2 inhibitors were ineffective against KRAS-mutant tumors.
Purpose of the Study:
- To investigate the role of SHP2 in oncogenic KRAS-driven tumors.
- To evaluate the therapeutic potential of targeting SHP2 in KRAS-mutant cancers.
- To explore combination therapies involving SHP2 and MEK inhibition.
Main Methods:
- Genetic deletion of Ptpn11 in murine models of pancreatic ductal adenocarcinoma (PDAC) and non-small-cell lung cancer (NSCLC).
- Inhibition of SHP2 and MEK in established tumors, organoids, and xenograft models.
- Assessment of tumor development, progression, and resistance mechanisms.
Main Results:
- SHP2 is indispensable for KRAS-driven tumor development and progression.
- SHP2 deletion or inhibition delayed tumor growth but did not cause regression.
- SHP2 is critical for resistance to MEK blockade; dual SHP2/MEK inhibition achieved sustained tumor control.
Conclusions:
- SHP2 plays a central role in KRAS-driven oncogenesis.
- Targeting SHP2 is a viable strategy for KRAS-mutant cancers.
- Combined SHP2 and MEK inhibition demonstrates significant therapeutic potential for PDAC and NSCLC.
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