Target intelligence / Profile preview

Discoidin domain-containing receptor 2 (DDR2) (DDR2)

Target
DDR2
Molecular classification
Receptor tyrosine kinase, Discoidin domain receptor family
01

Overview

Discoidin domain-containing receptor 2 (DDR2) is a unique member of the receptor tyrosine kinase (RTK) family that is activated by fibrillar collagens, particularly Type I collagen, rather than soluble growth factors (UniProt: P36888). In tenocytes, DDR2 serves as a critical sensor of the extracellular matrix (ECM) environment, mediating cellular responses to mechanical stress and injury (PubMed: 21633954). Upon activation, DDR2 triggers signaling cascades that regulate the expression of matrix metalloproteinases (MMPs), which are essential for the remodeling of the collagenous matrix. Dysregulation of the DDR2-collagen axis is a significant factor in the development of tendinopathy and other fibroproliferative diseases, where it contributes to pathological matrix degradation and fibrosis (PubMed: 28938308). Furthermore, DDR2 is implicated in cancer progression, specifically in promoting tumor cell invasion and metastasis through its interaction with the surrounding collagen-rich stroma. Therapeutic strategies targeting DDR2 often utilize small-molecule kinase inhibitors like dasatinib, which compete for the ATP-binding site of the receptor to block its signaling activity (DrugBank: DB01254). Understanding the specific role of DDR2 on tenocytes provides insights into potential treatments for chronic tendon injuries and age-related degenerative conditions.

Other names
CD167 antigen-like family member BTyrosine-protein kinase TKTTyrosine kinase orphan receptor 10Neurotrophic tyrosine kinase receptor-related 3CD167bDiscoidin domain receptor 2
02

Mechanism of action

Small molecule inhibition of the intracellular tyrosine kinase domain, which prevents collagen-induced autophosphorylation and subsequent downstream signaling pathways such as Shc and MAPK (DrugBank: DB01254).

03

Biological functions

Signal transductionCell adhesionExtracellular matrix organizationCell proliferationCell migrationMechanotransduction
04

Disease associations

FibrosisOsteoarthritisCancerTendinopathyRheumatoid arthritis
05

Safety considerations

CardiotoxicityPleural effusion (associated with dasatinib)MyelosuppressionPotential impairment of physiological wound healingOff-target effects due to multi-kinase inhibition (DrugBank: DB01254)
06

Interacting drugs

Dasatinib

4 more in the full profile.

07

Biomarkers

DDR2 protein expressionPhosphorylated DDR2 (p-DDR2)MMP-1 expression levelsType I collagen degradation fragments (PubMed: 21633954)

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