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Updated: Jun 15, 2026

Assessing Cellular Target Engagement by SHP2 (PTPN11) Phosphatase Inhibitors
Published on: July 17, 2020
The structural insights of stem cell factor receptor (c-Kit) interaction with tyrosine phosphatase-2 (Shp-2): an in
Soumya Pati1, Gangenahalli U Gurudutta, Om P Kalra
1Stem Cell Biology Laboratory, National Institute of Immunology, New Delhi, India.
Background:
Stem cell factor (SCF) receptor c-Kit is recognized as a key signaling molecule, which transduces signals for the proliferation, differentiation and survival of stem cells. Binding of SCF to its receptor triggers transactivation, leading to the recruitment of kinases and phosphatases to the docking platforms of c-Kit catalytic domain. Tyrosine phosphatase-1 (Shp-1) deactivates/attenuates 'Kit' kinase activity. Whereas, Asp816Val mutation in the Kit activation loop transforms kinase domain to a constitutively activated state (switch off-to-on state), in a ligand-independent manner. This phenomenon completely abrogates negative regulation of Shp-1. To predict the possible molecular basis of interaction between c-Kit and Shp-1, we have performed an in silico protein-protein docking study between crystal structure of activated c-Kit (phosphorylated c-Kit) and full length crystal structure of Shp-2, a close structural counterpart of Shp-1.
Findings:
Study revealed a stretch of conserved amino acids (Lys818 to Ser821) in the Kit activation domain, which makes decisive H-bonds with N-sh2 and phosphotyrosine binding pocket residues of the phosphatase. These H-bonds may impose an inhibitory steric hindrance to the catalytic domain of c-Kit, there by blocking further interaction of the activation loop molecules with incoming kinases. We have also predicted a phosphotyrosine binding pocket in SH2 domains of Shp-1, which is found to be predominantly closer to a catalytic groove like structure in c-Kit kinase domain.
Conclusions:
This study predicts that crucial hydrogen bonding between N-sh2 domain of Shp-1 and Kit activation loop can modulate the negative regulation of c-Kit kinase by Shp-1. Thus, this finding is expected to play a significant role in designing suitable gain-of-function c-Kit mutants for inducing conditional proliferation of hematopoietic stem cells.
Insights
Protein-protein docking reveals hydrogen bonds between Shp-1 phosphatase and c-Kit receptor. These interactions modulate c-Kit kinase activity, impacting hematopoietic stem cell proliferation.
Area of Science:
- Molecular biology
- Biochemistry
- Cell signaling
Background:
- Stem cell factor (SCF) receptor c-Kit is crucial for stem cell regulation.
- Shp-1 phosphatase normally inhibits c-Kit kinase activity.
- Asp816Val mutation in c-Kit causes ligand-independent activation, bypassing Shp-1 inhibition.
Purpose of the Study:
- To predict the molecular basis of interaction between c-Kit and Shp-1.
- To understand how Shp-1 regulates c-Kit activity.
Main Methods:
- In silico protein-protein docking study.
- Utilized crystal structures of activated c-Kit and Shp-2 (Shp-1 structural counterpart).
Main Results:
- Identified conserved amino acids (Lys818-Ser821) in c-Kit forming hydrogen bonds with Shp-1's N-sh2 domain.
- These hydrogen bonds may sterically hinder c-Kit's catalytic domain, blocking kinase interactions.
- Predicted a phosphotyrosine binding pocket in Shp-1's SH2 domains near c-Kit's catalytic groove.
Conclusions:
- Crucial hydrogen bonding between Shp-1 and c-Kit modulates c-Kit kinase regulation.
- Findings may aid in designing gain-of-function c-Kit mutants for controlled hematopoietic stem cell proliferation.
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