Recombinant Collagen Engineered to Bind to Discoidin Domain Receptors Functions as a Receptor Inhibitor
File(s)J. Biol. Chem.-2016-An-4343-55.pdf (1.95 MB)
Published version
Author(s)
Type
Journal Article
Abstract
A bacterial collagen-like protein Scl2 has been developed as a recombinant collagen model system to host human collagen ligand binding sequences, with the goal of generating biomaterials with selective collagen bioactivities. Defined binding sites in human collagen for integrins, fibronectin, heparin, and MMP-1 have been introduced into the triple-helical domain of the bacterial collagen and led to the expected biological activities. The modular insertion of activities is extended here to the discoidin domain receptors (DDRs), which are collagen activated receptor tyrosine kinases. Insertion of the DDR binding sequence from human collagen III into bacterial collagen led to specific receptor binding. However, even at the highest testable concentrations, the construct was unable to stimulate DDR autophosphorylation. The recombinant collagen expressed in E. coli does not contain hydroxyproline (Hyp), and complementary synthetic peptide studies showed that replacement of Hyp by Pro at the critical Gly-Val-Met-Gly-Phe-Hyp position decreased the DDR binding affinity and consequently required a higher concentration for the induction of receptor activation. The ability of the recombinant bacterial collagen to bind the DDRs without inducing kinase activation suggested it could interfere with the interactions between animal collagen and the DDRs, and such an inhibitory role was confirmed in vitro and with a cell migration assay. This study illustrates that recombinant collagen can complement synthetic peptides in investigating structure-activity relationships, and this system has the potential for the introduction or inhibition of specific biological activities.
Date Issued
2015-12-23
Date Acceptance
2015-12-23
Citation
Journal of Biological Chemistry, 2015, 291, pp.4343-4355
ISSN
1083-351X
Publisher
American Society for Biochemistry and Molecular Biology
Start Page
4343
End Page
4355
Journal / Book Title
Journal of Biological Chemistry
Volume
291
Copyright Statement
© 2016 by The American Society for Biochemistry and Molecular Biology, Inc. Creative Commons CC-BY license.
Sponsor
Medical Research Council (MRC)
Biotechnology and Biological Sciences Research Council (BBSRC)
Grant Number
G0701121
BB/I011226/1
Subjects
Discoidin domain receptor
binding
collagen
inhibition mechanism
peptides
protein chimera
recombinant protein expression
triple-helix
Biochemistry & Molecular Biology
06 Biological Sciences
11 Medical And Health Sciences
03 Chemical Sciences
Publication Status
Published