Publication:
Heparin-induced cis- and trans-Dimerization Modes of the Thrombospondin-1 N-terminal Domain

No Thumbnail Available

Date

2008

Published Version

Journal Title

Journal ISSN

Volume Title

Publisher

American Society for Biochemistry and Molecular Biology
The Harvard community has made this article openly available. Please share how this access benefits you.

Research Projects

Organizational Units

Journal Issue

Citation

Tan, Kemin, Mark Duquette, Jin-huan Liu, Kumaran Shanmugasundaram, Andrzej Joachimiak, John T. Gallagher, Alan C. Rigby, Jia-huai Wang, and Jack Lawler. 2007. “Heparin-Inducedcis- Andtrans-Dimerization Modes of the Thrombospondin-1 N-Terminal Domain.” Journal of Biological Chemistry 283 (7): 3932–41. https://doi.org/10.1074/jbc.m705203200.

Research Data

Abstract

Through its interactions with proteins and proteoglycans, thrombospondin-1 (TSP-1) functions at the interface of the cell membrane and the extracellular matrix to regulate matrix structure and cellular phenotype. We have previously determined the structure of the high affinity heparin-binding domain of TSP-1, designated TSPN-1, in association with the synthetic heparin, Arixtra. To establish that the binding of TSPN-1 to Arixtra is representative of the association with naturally occurring heparins, we have determined the structures of TSPN-1 in complex with heparin oligosaccharides containing eight (dp8) and ten (dp10) subunits, by x-ray crystallography. We have found that dp8 and dp10 bind to TSPN-1 in a manner similar to Arixtra and that dp8 and dp10 induce the formation of trans and cis TSPN-1 dimers, respectively. In silico docking calculations partnered with our crystal structures support the importance of arginine residues in positions 29, 42, and 77 in binding sulfate groups of the dp8 and dp10 forms of heparin. The ability of several TSPN-1 domains to bind to glycosaminoglycans simultaneously probably increases the affinity of binding through multivalent interactions. The formation of cis and trans dimers of the TSPN-1 domain with relatively short segments of heparin further enhances the ability of TSP-1 to participate in high affinity binding to glycosaminoglycans. Dimer formation may also involve TSPN-1 domains from two separate TSP-1 molecules. This association would enable glycosaminoglycans to cluster TSP-1.

Description

Other Available Sources

Keywords

Terms of Use

This article is made available under the terms and conditions applicable to Other Posted Material (LAA), as set forth at Terms of Service

Endorsement

Review

Supplemented By

Referenced By

Related Stories