Chemokines are key regulators of leukocyte migration and play fundamental roles in immune responses. The chemokine system includes a set of over 40 ligands which engage in a promiscuous fashion a panel of over 25 receptors belonging to a distinct family of 7 transmembrane-domain receptors (7TM) widely expressed on a variety of cells. Although responses evoked by chemokine receptors have long been considered the result of balanced activation of the G protein- and β-arrestin-dependent signaling modules, evidence is accumulating showing that these receptors are capable, as other 7TMs, to activate different signaling modules in a ligand- and cell/tissue-specific manner. This biased signaling, or functional selectivity, confers a hitherto largely uncharacterized level of complexity to the chemokine system and challenges our present understanding of its redundancy. At the same time, it also provides new insights of relevance for chemokine receptors targeting drug development plans. Here, we provide current methods to study biased signaling of chemokine receptors by dissecting G proteins and β-arrestins activation upon chemokine stimulation.

Analysis of G Protein and beta-Arrestin Activation in Chemokine Receptors Signaling / A. Vacchini, M. Busnelli, B. Chini, M. Locati, E.M. Borroni (METHODS IN ENZYMOLOGY). - In: Chemokines / [a cura di] T.M. Handel. - Amsterdam : Elsevier, 2016. - ISBN 9780128021712. - pp. 421-440

Analysis of G Protein and beta-Arrestin Activation in Chemokine Receptors Signaling

A. Vacchini
Primo
;
M. Busnelli
Secondo
;
M. Locati
Penultimo
;
E.M. Borroni
Ultimo
2016

Abstract

Chemokines are key regulators of leukocyte migration and play fundamental roles in immune responses. The chemokine system includes a set of over 40 ligands which engage in a promiscuous fashion a panel of over 25 receptors belonging to a distinct family of 7 transmembrane-domain receptors (7TM) widely expressed on a variety of cells. Although responses evoked by chemokine receptors have long been considered the result of balanced activation of the G protein- and β-arrestin-dependent signaling modules, evidence is accumulating showing that these receptors are capable, as other 7TMs, to activate different signaling modules in a ligand- and cell/tissue-specific manner. This biased signaling, or functional selectivity, confers a hitherto largely uncharacterized level of complexity to the chemokine system and challenges our present understanding of its redundancy. At the same time, it also provides new insights of relevance for chemokine receptors targeting drug development plans. Here, we provide current methods to study biased signaling of chemokine receptors by dissecting G proteins and β-arrestins activation upon chemokine stimulation.
Coupled receptors; biased-agonism; ligand bias; functional selectivity; conformational-changes; cells; recruitment; pathway; disease; roles
Settore MED/04 - Patologia Generale
2016
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/480739
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