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Updated: Aug 14, 2026

Imaging Denatured Collagen Strands In vivo and Ex vivo via Photo-triggered Hybridization of Caged Collagen Mimetic Peptides
Published on: January 31, 2014
Exploring the collagen-binding site of the DDR1 tyrosine kinase receptor
Rahim Abdulhussein1, Catherine McFadden, Pablo Fuentes-Prior
1Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, Ontario M5S 1A8, Canada.
Abstract:
Discoidin domain receptors 1 and 2 (DDR1 and DDR2) are tyrosine kinase receptors activated by triple-helical collagens. Aberrant expression and signaling of these receptors have been implicated in several human diseases linked to accelerated matrix degradation and remodeling including tumor invasion, atherosclerosis and liver fibrosis. The objective of this study is to characterize the collagen-binding sites in the discoidin domains of DDR1 and DDR2 at a molecular level. We expressed glutathione S-transferase fusion proteins containing the discoidin and extracellular domains of DDR1 and DDR2 in insect cells and subjected them to a solid-phase collagen-binding assay. We found high affinity binding of the DDR extracellular domains to immobilized type I collagen and confirmed the discoidin-collagen interaction with an enzyme-linked immunosorbent assay-based read-out. Furthermore, we created a three-dimensional model of the DDR1 discoidin domain based on the related domains of blood coagulation factors V and VIII. This model predicts the presence of four neighboring, surface-exposed loops that are topologically equivalent to a major phospholipid-binding site in factors V and VIII. To test the involvement of these loops in collagen binding, we mutated individual amino acid residues to alanine or deleted short sequence stretches within these loops. We found that several residues within loop 1 (Ser-52-Thr-57) and loop 3 (Arg-105-Lys-112) as well as Ser-175 in loop 4 are critically involved in collagen binding. Our structure-function analysis of the DDR discoidin domains provides new insights into this non-integrin-mediated collagen-signaling mechanism and may ultimately lead to the design of small molecule inhibitors that interfere with aberrant DDR function.
Insights
Discoidin domain receptors (DDR1/DDR2) bind collagen via specific sites in their discoidin domains. Identifying these collagen-binding sites offers new therapeutic targets for diseases involving matrix remodeling.
Area of Science:
- Molecular biology
- Biochemistry
- Structural biology
Background:
- Discoidin domain receptors (DDR1 and DDR2) are tyrosine kinase receptors activated by collagens.
- Aberrant DDR signaling is linked to diseases like cancer, atherosclerosis, and fibrosis.
Purpose of the Study:
- To characterize the collagen-binding sites within the discoidin domains of DDR1 and DDR2 at a molecular level.
Main Methods:
- Expressed glutathione S-transferase fusion proteins of DDR1/DDR2 extracellular domains.
- Performed solid-phase collagen-binding assays and ELISAs.
- Utilized 3D modeling and site-directed mutagenesis (alanine scanning, loop deletions).
Main Results:
- Confirmed high-affinity binding of DDR extracellular domains to type I collagen.
- Identified specific residues in loops 1, 3, and 4 of the DDR discoidin domain crucial for collagen binding.
- Mutagenesis studies pinpointed Ser-52 to Thr-57, Arg-105 to Lys-112, and Ser-175 as key collagen-interacting sites.
Conclusions:
- Structure-function analysis reveals critical collagen-binding sites in DDR discoidin domains.
- Provides insights into non-integrin collagen-signaling mechanisms.
- Findings may facilitate the development of inhibitors targeting aberrant DDR function in disease.
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