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Assessing Cellular Target Engagement by SHP2 (PTPN11) Phosphatase Inhibitors
Published on: July 17, 2020
Discovery of a novel shp2 protein tyrosine phosphatase inhibitor
Liwei Chen1, Shen-Shu Sung, M L Richard Yip
1Molecular Oncology Program, SRB-3, H. Lee Moffitt Cancer Center and Research Institute, 12902 Magnolia Drive, Tampa, FL 33612, USA.
Abstract:
Shp2 is a nonreceptor protein tyrosine phosphatase (PTP) encoded by the PTPN11 gene. It is involved in growth factorinduced activation of mitogen-activated protein (MAP) kinases Erk1 and Erk2 (Erk1/2) and has been implicated in the pathogenicity of the oncogenic bacterium Helicobacter pylori. Moreover, gain-of-function Shp2 mutations have been found in childhood leukemias and Noonan syndrome. Thus, small molecule Shp2 PTP inhibitors are much needed reagents for evaluation of Shp2 as a therapeutic target and for chemical biology studies of Shp2 function. By screening the National Cancer Institute (NCI) Diversity Set chemical library, we identified 8-hydroxy-7-(6-sulfonaphthalen-2-yl)diazenyl-quinoline-5-sulfonic acid (NSC-87877) as a potent Shp2 PTP inhibitor. Molecular modeling and site-directed mutagenesis studies suggested that NSC-87877 binds to the catalytic cleft of Shp2 PTP. NSC-87877 cross-inhibited Shp1 in vitro, but it was selective for Shp2 over other PTPs (PTP1B, HePTP, DEP1, CD45, and LAR). It is noteworthy that NSC-87877 inhibited epidermal growth factor (EGF)-induced activation of Shp2 PTP, Ras, and Erk1/2 in cell cultures but did not block EGF-induced Gab1 tyrosine phosphorylation or Gab1-Shp2 association. Furthermore, NSC-87877 inhibited Erk1/2 activation by a Gab1-Shp2 chimera but did not affect the Shp2-independent Erk1/2 activation by phorbol 12-myristate 13-acetate. These results identified NSC-87877 as the first PTP inhibitor capable of inhibiting Shp2 PTP in cell cultures without a detectable off-target effect. Our study also provides the first pharmacological evidence that Shp2 mediates EGF-induced Erk1/2 MAP kinase activation.
Insights
Researchers identified NSC-87877, a novel small molecule inhibitor, that selectively targets Shp2 protein tyrosine phosphatase (PTP). This compound effectively inhibits Shp2 activity in cell cultures, offering a valuable tool for studying its role in diseases like leukemia.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Shp2 (PTPN11) is a nonreceptor protein tyrosine phosphatase crucial for growth factor signaling.
- Dysregulated Shp2 activity is linked to oncogenesis, childhood leukemias, and Noonan syndrome.
- Targeted inhibition of Shp2 is essential for therapeutic development and chemical biology research.
Purpose of the Study:
- To identify and characterize novel small molecule inhibitors of Shp2 protein tyrosine phosphatase (PTP).
- To evaluate the potential of identified inhibitors as chemical probes for Shp2 function and as therapeutic leads.
Main Methods:
- Screening of the National Cancer Institute (NCI) Diversity Set chemical library.
- In vitro biochemical assays for PTP inhibition and selectivity profiling.
- Molecular modeling and site-directed mutagenesis for mechanism of action studies.
- Cell-based assays to assess inhibition of signaling pathways (e.g., EGF-induced Erk1/2 activation).
Main Results:
- NSC-87877 was identified as a potent Shp2 PTP inhibitor.
- Molecular modeling indicated NSC-87877 binds to the catalytic cleft of Shp2.
- NSC-87877 demonstrated selectivity for Shp2 over other PTPs in vitro.
- NSC-87877 inhibited EGF-induced Erk1/2 activation in cells, providing pharmacological evidence for Shp2's role in this pathway.
Conclusions:
- NSC-87877 is the first reported PTP inhibitor to selectively inhibit Shp2 in cell cultures with no detectable off-target effects.
- This study provides crucial pharmacological validation for Shp2 as a mediator of EGF-induced Erk1/2 MAP kinase activation.
- NSC-87877 serves as a valuable chemical tool for further investigation of Shp2's biological functions and therapeutic potential.
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