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Characterization of the Chemokine CXCL11-Heparin Interaction Suggests Two Different Affinities for Glycosaminoglycans
Authors:India C Severin  Jean-Philippe Gaudry  Zo? Johnson  Andreas Kungl  Ariane Jansma  Bernd Gesslbauer  Barbara Mulloy  Christine Power  Amanda E I Proudfoot  Tracy Handel
Institution:From the Merck Serono Geneva Research Centre, 9 Chemin des Mines, 1202 Geneva, Switzerland.;§ProtAffin Biotechnologie AG, A-8020 Graz, Austria.;the National Institute for Biological Standards and Control, Blanche Lane, South Mimms, Potters Bar, Hertfordshire EN6 3QG, United Kingdom, and ;the Skaggs School of Pharmacy and Pharmaceutical Science, University of California, San Diego, La Jolla, California 92093-0684
Abstract:Chemokines orchestrate the migration of leukocytes in the context of homeostasis and inflammation. In addition to interactions of chemokines with receptors on migrating cells, these processes require interactions of chemokines with glycosaminoglycans (GAGs) for cell surface localization. Most chemokines are basic proteins with Arg/Lys/His residue clusters functioning as recognition epitopes for GAGs. In this study we characterized the GAG-binding epitopes of the chemokine I-TAC/CXCL11. Four separate clusters of basic residues were mutated to alanine and tested for their ability to bind to GAGs in vitro and to activate the receptor, CXCR3. Mutation of a set of basic residues in the C-terminal helix (the 50s cluster, 57KSKQAR62) along with Lys17, significantly impaired heparin binding in vitro, identifying these residues as components of the dominant epitope. However, this GAG mutant retained nearly wild type receptor binding affinity, and its ability to induce cell migration in vitro was only mildly perturbed. Nevertheless, the mutant was unable to induce cell migration in vivo, establishing a requirement of CXCL11 for GAG binding for in vivo function. These studies also led to some interesting findings. First, CXCL11 exhibits conformational heterogeneity, as evidenced by the doubling of peaks in its HSQC spectra. Second, it exhibits more than one affinity state for both heparin and CXCR3, which may be related to its structural plasticity. Finally, although the binding affinities of chemokines for GAGs are typically weaker than interactions with receptors, the high affinity GAG binding state of CXCL11 is comparable with typical receptor binding affinities, suggesting some unique properties of this chemokine.
Keywords:Carbohydrate/Binding Protein  Cytokines/Chemokines  G Proteins/Coupled Receptors (GPCRs)  Glycoproteins  Protein  Protein/Cell Surface  Protein/Binding/Heparin  Receptors/Chemokine
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