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PMID: 11371192 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Structural and functional analysis of the RANTES-glycosaminoglycans interactions.

Biochemistry ·Vol. 40 ·No. 21 ·2001-05-29 ·Pages 6303-18

Martin L, Blanpain C, Garnier P, Wittamer V, Parmentier M, Vita C

Abstract

Chemokines mediate their biological activity through activation of G protein coupled receptors, but most chemokines, including RANTES, are also able to bind glycosaminoglycans (GAGs). Here, we have investigated, by site-directed mutagenesis and chemical acetylation, the role of RANTES basic residues in the interaction with GAGs using surface plasmon resonance kinetic analysis. Our results indicate that (i) RANTES exhibited selectivity in GAGs binding with highest affinity (K(d) = 32.1 nM) for heparin, (ii) RANTES uses the side chains of residues R44, K45, and R47 for heparin binding, and blocking these residues in combination abolished heparin binding. The biological relevance of RANTES-GAGs interaction was investigated in CHO-K1 cells expressing CCR5, CCR1, or CCR3 and the various GAGs that bind RANTES. Our results indicate that the heparin binding site, defined as the 40s loop, is only marginally involved in CCR5 binding and activation, but largely overlaps the CCR1 and CCR3 binding and activation domain in RANTES. In addition, enzymatic removal of cell surface GAGs by glycosidases did not affect CCR5 binding and Ca(2+) response. Furthermore, addition of soluble GAGs inhibited both CCR5 binding and functional response, with a rank of potency similar to that found in surface plasmon resonance experiments. Thus, cell surface GAGs is not a prerequisite for receptor binding or signaling, but soluble GAGs can inhibit the binding and the functional response of RANTES to CCR5 expressing cells. However, the marked selectivity of RANTES for different GAGs may serve, in vivo, to control the concentration of specific chemokines in inflammatory situations and locations.

MeSH Terms
Acetylation Amino Acid Sequence Amino Acid Substitution/genetics Animals Arginine/metabolism Binding, Competitive/genetics CHO Cells Carrier Proteins/metabolism Chemokine CCL5/chemical synthesis,chemistry,genetics,physiology Cricetinae Glycoproteins/metabolism Glycosaminoglycans/chemistry,metabolism,physiology Glycoside Hydrolases/pharmacology Heparin/metabolism LDL-Receptor Related Protein-Associated Protein Lysine/metabolism Molecular Sequence Data Protein Binding/genetics Receptors, CCR1 Receptors, CCR3 Receptors, CCR5/metabolism,physiology Receptors, Chemokine/metabolism,physiology Solubility Structure-Activity Relationship Surface Plasmon Resonance Ultracentrifugation
Chemicals
Carrier Proteins Chemokine CCL5 Glycoproteins Glycosaminoglycans LDL-Receptor Related Protein-Associated Protein Receptors, CCR1 Receptors, CCR3 Receptors, CCR5 Receptors, Chemokine Heparin Arginine Glycoside Hydrolases Lysine
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Martin L
CEA (Commissariat à l'Energie Atomique) Saclay, Département d'Ingénierie et d'Etudes des Protéines, F-91191 Gif-sur-Yvette, France.
Blanpain C
Garnier P
Wittamer V
Parmentier M
Vita C
Article Info
Journal
Biochemistry
Abbr.
Biochemistry
ISSN
0006-2960
Published
2001-05-29
Pages
6303-18
Language
English
Region
United States
NLM ID
0370623
Subset
IM
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