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Updated: Aug 29, 2025

Assessing Cellular Target Engagement by SHP2 PTPN11 Phosphatase Inhibitors
Published on: July 17, 2020
A comprehensive review of SHP2 and its role in cancer
Moges Dessale Asmamaw1, Xiao-Jing Shi2, Li-Rong Zhang3
1Department of Pharmacology, School of Basic Medical Sciences, State Key Laboratory for Esophageal Cancer Prevention and Treatment, Zhengzhou University, Zhengzhou, Henan Province, 450001, People's Republic of China.
Abstract:
Src homology 2-containing protein tyrosine phosphatase 2 (SHP2) is a non-receptor protein tyrosine phosphatase ubiquitously expressed mainly in the cytoplasm of several tissues. SHP2 modulates diverse cell signaling events that control metabolism, cell growth, differentiation, cell migration, transcription and oncogenic transformation. It interacts with diverse molecules in the cell, and regulates key signaling events including RAS/ERK, PI3K/AKT, JAK/STAT and PD-1 pathways downstream of several receptor tyrosine kinases (RTKs) upon stimulation by growth factors and cytokines. SHP2 acts as both a phosphatase and a scaffold, and plays prominently oncogenic functions but can be tumor suppressor in a context-dependent manner. It typically acts as a positive regulator of RTKs signaling with some inhibitory functions reported as well. SHP2 expression and activity is regulated by such factors as allosteric autoinhibition, microRNAs, ubiquitination and SUMOylation. Dysregulation of SHP2 expression or activity causes many developmental diseases, and hematological and solid tumors. Moreover, upregulated SHP2 expression or activity also decreases sensitivity of cancer cells to anticancer drugs. SHP2 is now considered as a compelling anticancer drug target and several classes of SHP2 inhibitors with different mode of action are developed with some already in clinical trial phases. Moreover, novel SHP2 substrates and functions are rapidly growing both in cell and cancer. In view of this, we comprehensively and thoroughly reviewed literatures about SHP2 regulatory mechanisms, substrates and binding partners, biological functions, roles in human cancers, and different classes of small molecule inhibitors target this oncoprotein in cancer.
Insights
Src homology 2-containing protein tyrosine phosphatase 2 (SHP2) is a key regulator of cell signaling implicated in cancer. This review details SHP2
Area of Science:
- Molecular Biology
- Cellular Signaling
- Oncology
Background:
- SHP2 (Src homology 2-containing protein tyrosine phosphatase 2) is a vital cytoplasmic phosphatase involved in numerous cellular processes.
- It regulates critical signaling pathways such as RAS/ERK, PI3K/AKT, and JAK/STAT, influencing cell growth, differentiation, and migration.
- SHP2's dual role as an oncogene and context-dependent tumor suppressor highlights its complex involvement in cancer.
Purpose of the Study:
- To comprehensively review the regulatory mechanisms, substrates, and binding partners of SHP2.
- To elucidate the biological functions and roles of SHP2 in human cancers.
- To summarize various classes of small molecule inhibitors targeting SHP2 for cancer therapy.
Main Methods:
- Literature review of scientific publications on SHP2.
- Analysis of SHP2's involvement in cell signaling pathways.
- Compilation of data on SHP2's role in different cancer types and its therapeutic targeting.
Main Results:
- SHP2 acts as a scaffold and phosphatase, positively regulating receptor tyrosine kinase (RTK) signaling.
- Dysregulation of SHP2 is linked to developmental diseases and various cancers, often decreasing sensitivity to anticancer drugs.
- Several classes of SHP2 inhibitors are under development, with some in clinical trials, targeting SHP2's oncogenic functions.
Conclusions:
- SHP2 is a critical regulator of cell signaling with significant implications in cancer development and progression.
- Understanding SHP2's complex roles and regulatory mechanisms is crucial for developing effective targeted therapies.
- SHP2 inhibitors represent a promising therapeutic strategy for various cancers, warranting continued research and clinical investigation.
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