Distinct conformations of the chemokine receptor CCR4 with implications for its targeting in allergy
Jonathan M Viney1, David P Andrew, Rhian M Phillips
1Leukocyte Biology Section, Medical Research Council-Asthma UK Centre in Allergic Mechanisms of Asthma, National Heart and Lung Institute Division, Faculty of Medicine, Imperial College London, London SW7 2AZ, United Kingdom;
Abstract:
CC chemokine receptor 4 (CCR4) is expressed by Th2 and regulatory T cells and directs their migration along gradients of the chemokines CCL17 and CCL22. Both chemokines and receptor are upregulated in allergic disease, making CCR4 a therapeutic target for the treatment of allergy. We set out to assess the mechanisms underlying a previous report that CCL22 is a dominant ligand of CCR4, which may have implications for its therapeutic targeting. Human T cells expressing endogenous CCR4 and transfectants engineered to express CCR4 were assessed for receptor function, using assays of calcium release, chemotaxis, receptor endocytosis, and ligand binding. Despite the two ligands having equal potency in calcium flux and chemotaxis assays, CCL22 showed dominance in both receptor endocytosis assays and heterologous competitive binding assays. Using two different CCR4-specific Abs, we showed that CCR4 exists in at least two distinct conformations, which are differentially activated by ligand. A major population is activated by both CCL17 and CCL22, whereas a minor population is activated only by CCL22. Mutation of a single C-terminal residue K310 within a putative CCR4 antagonist binding site ablated activation of CCR4 by CCL17, but not by CCL22, despite having no effect on the binding of either ligand. We conclude that CCL17 and CCL22 are conformationally selective ligands of CCR4 and interact with the receptor by substantially different mechanisms. This finding suggests that the selective blockade of CCR4 in allergy may be feasible when one CCR4 ligand dominates, allowing the inhibition of Th2 signaling via one ligand while sparing regulatory T cell recruitment via another.
Insights
Chemokine ligand CCL22 dominates CC chemokine receptor 4 (CCR4) signaling over CCL17, impacting therapeutic strategies for allergic diseases. This suggests selective CCR4 targeting may be possible.
Area of Science:
- Immunology
- Molecular Biology
- Allergy Research
Background:
- CC chemokine receptor 4 (CCR4) directs Th2 and regulatory T cell migration via CCL17 and CCL22 chemokines.
- CCR4 and its ligands are upregulated in allergic diseases, presenting a therapeutic target.
- Previous studies suggested CCL22 is the dominant CCR4 ligand, with implications for therapeutic targeting.
Purpose of the Study:
- To investigate the mechanisms underlying CCL22's dominance as a CC chemokine receptor 4 (CCR4) ligand.
- To explore the conformational selectivity of CCR4 activation by CCL17 and CCL22.
- To assess the potential for selective CCR4 blockade in treating allergic diseases.
Main Methods:
- Assessed CCR4 function in human T cells and transfectants using calcium release, chemotaxis, endocytosis, and ligand binding assays.
- Utilized CCR4-specific antibodies to identify distinct receptor conformations.
- Performed site-directed mutagenesis (K310) to probe ligand-receptor interactions.
Main Results:
- CCL17 and CCL22 exhibited equal potency in calcium flux and chemotaxis assays.
- CCL22 demonstrated dominance in receptor endocytosis and competitive binding assays.
- CCR4 exists in distinct conformations, differentially activated by CCL17 and CCL22, with a minor population uniquely activated by CCL22.
Conclusions:
- CCL17 and CCL22 are conformationally selective ligands for CC chemokine receptor 4 (CCR4), interacting via distinct mechanisms.
- CCR4 activation is ligand-dependent and conformationally selective.
- Selective blockade of CCR4 may be feasible for treating allergies, potentially inhibiting Th2 signaling while preserving regulatory T cell recruitment.
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