Related Experiment Video
Updated: Aug 28, 2025

Assessing Cellular Target Engagement by SHP2 PTPN11 Phosphatase Inhibitors
Published on: July 17, 2020
SHP2 inhibition improves celastrol-induced growth suppression of colorectal cancer
Linxi Zhang1,2, Xuefei Hu1, Qingying Meng3
1Department of Navy Environmental and Occupational Health, Faculty of Naval Medicine, Navy Military Medical University, Shanghai, China.
Abstract:
This study aimed to explore novel targets for celastrol sensitization in colorectal cancer (CRC) based on differentially regulated signals in response to high- or low-dose celastrol. Targeting signals were investigated using Western blotting or phosphorylated receptor tyrosine kinase (RTK) arrays. Corresponding inhibitors for the signals were individually combined with low-dose celastrol for the assessment of combined anti-CRC effects, based on proliferation, apoptosis, colony assays, and xenograft models. The potential mechanism for the combination of celastrol and SHP2 inhibition was further examined. Low-dose celastrol (<1 µM) did not effectively suppress AKT and ERK signals in CRC cells compared to high-dose celastrol (>1 µM). However, when combined with an AKT or ERK inhibitor, low-dose celastrol could cooperatively suppress CRC proliferation. Furthermore, failed AKT or ERK inhibition by low-dose celastrol may be due to reactivated RTK-SHP2 signaling with negative feedback. The combination of celastrol and the SHP2 inhibitor resulted in greatly reduced AKT and ERK signals, as well as greater inhibition of CRC growth than celastrol alone. Moreover, the mechanism underlying combination suppression was also involved in the activation of immune cell infiltration (mainly for CD8+ cells) in CRC tissues. Failure to inhibit RTK-SHP2-AKT/ERK signaling contributed to the lack of CRC growth suppression by low-dose celastrol. However, the combination of celastrol and the SHP2 inhibitor resulted in synergistic inhibition of CRC growth and provided a promising therapeutic target.
Insights
Low-dose celastrol combined with SHP2 inhibitors synergistically inhibits colorectal cancer (CRC) growth by reactivating AKT/ERK signals and enhancing immune cell infiltration. This combination offers a promising therapeutic strategy for CRC.
Area of Science:
- Oncology
- Cancer Biology
- Pharmacology
Background:
- Celastrol shows potential in colorectal cancer (CRC) treatment, but its efficacy is dose-dependent.
- Understanding celastrol's signaling pathways is crucial for optimizing its therapeutic application in CRC.
Purpose of the Study:
- To identify novel targets for enhancing celastrol's anti-CRC effects.
- To investigate the synergistic effects of combining celastrol with specific inhibitors in CRC models.
Main Methods:
- Western blotting and phosphorylated receptor tyrosine kinase (RTK) arrays were used to analyze signaling pathways.
- Combinations of low-dose celastrol with AKT, ERK, or SHP2 inhibitors were tested in CRC cell lines and xenograft models.
- Proliferation, apoptosis, colony formation, and immune cell infiltration were assessed.
Main Results:
- Low-dose celastrol (<1 µM) did not effectively inhibit AKT and ERK signaling, unlike high-dose celastrol (>1 µM).
- Combining low-dose celastrol with AKT or ERK inhibitors enhanced anti-CRC effects.
- Reactivated RTK-SHP2 signaling was identified as a mechanism limiting low-dose celastrol efficacy.
- The combination of celastrol and a SHP2 inhibitor synergistically inhibited CRC growth, reduced AKT/ERK signaling, and increased CD8+ T cell infiltration.
Conclusions:
- SHP2 inhibition is a key strategy to overcome resistance to low-dose celastrol in colorectal cancer.
- The combination of celastrol and SHP2 inhibitors demonstrates significant anti-CRC activity through multiple mechanisms.
- This combination represents a promising therapeutic approach for colorectal cancer treatment.
Related Concept Videos
Inhibition of Cdk Activity
Drugs that Stabilize Microtubules
Abnormal Proliferation

