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Tytuł pozycji:

Multiple ligand recognition sites in free fatty acid receptor 2 (FFA2R) direct distinct neutrophil activation patterns.

Tytuł:
Multiple ligand recognition sites in free fatty acid receptor 2 (FFA2R) direct distinct neutrophil activation patterns.
Autorzy:
Lind S; Department of Rheumatology and Inflammation Research, Institute of Medicine, Sahlgrenska Academy, University of Gothenburg, Sweden.
Holdfeldt A; Department of Rheumatology and Inflammation Research, Institute of Medicine, Sahlgrenska Academy, University of Gothenburg, Sweden.
Mårtensson J; Department of Rheumatology and Inflammation Research, Institute of Medicine, Sahlgrenska Academy, University of Gothenburg, Sweden; Unit of Rheumatology, Sahlgrenska University Hospital, Gothenburg, Sweden.
Granberg KL; Medicinal Chemistry, Research and Early Development, Cardiovascular, Renal and Metabolism (CVRM), BioPharmaceuticals R&D, AstraZeneca, Gothenburg, Sweden.
Forsman H; Department of Rheumatology and Inflammation Research, Institute of Medicine, Sahlgrenska Academy, University of Gothenburg, Sweden.
Dahlgren C; Department of Rheumatology and Inflammation Research, Institute of Medicine, Sahlgrenska Academy, University of Gothenburg, Sweden. Electronic address: .
Źródło:
Biochemical pharmacology [Biochem Pharmacol] 2021 Nov; Vol. 193, pp. 114762. Date of Electronic Publication: 2021 Sep 06.
Typ publikacji:
Journal Article; Research Support, Non-U.S. Gov't
Język:
English
Imprint Name(s):
Publication: Oxford : Elsevier Science
Original Publication: Oxford, New York [etc.] Paragamon Press.
MeSH Terms:
Guanidines/*pharmacology
Isoquinolines/*pharmacology
Neutrophils/*physiology
Receptors, Cell Surface/*agonists
Receptors, Cell Surface/*metabolism
Calcium/metabolism ; Drug Discovery ; Gene Expression Regulation/drug effects ; Guanidines/chemistry ; Humans ; Isoquinolines/chemistry ; Ligands ; Molecular Structure ; NADPH Oxidases ; Structure-Activity Relationship
Contributed Indexing:
Keywords: Biased signaling; Free fatty acid; G protein-coupled receptor; NADPH-oxidase; Neutrophil
Substance Nomenclature:
0 (FFA2R protein, human)
0 (G 1617)
0 (Guanidines)
0 (Isoquinolines)
0 (Ligands)
0 (Receptors, Cell Surface)
EC 1.6.3.- (NADPH Oxidases)
SY7Q814VUP (Calcium)
Entry Date(s):
Date Created: 20210909 Date Completed: 20220106 Latest Revision: 20220106
Update Code:
20240105
DOI:
10.1016/j.bcp.2021.114762
PMID:
34499871
Czasopismo naukowe
The allosteric modulating free fatty acid receptor 2 ligands Cmp58 and AZ1729, increased the activity induced by orthosteric receptor agonists mediating a rise in intracellular calcium ions and activation of the neutrophil NADPH-oxidase. Together, the two modulators triggered an orthosteric-agonist-independent activation of the oxidase without any rise in the concentration of intracellular calcium ions. In this study, structurally diverse compounds presumed to be ligands for free fatty acid receptor 2 were used to gain additional insights into receptor-modulation/signaling. We identified two molecules that activate neutrophils on their own and we classified one as allosteric agonist and the other as orthosteric agonist. Ten compounds were classified as allosteric FFA2R modulators. Of these, one activated neutrophils when combined with AZ1729; the nine remaining compounds activated neutrophils solely when combined with Cmp58. The activation signals were primarily biased when stimulated by two allosteric modulators interacting with different binding sites, such that two complementary modulators together triggered an activation of the NADPH-oxidase but no increase in the intracellular concentration of calcium ions. No neutrophil activation was induced when allosteric receptor modulators suggested to be recognized by the same binding site were combined, results in agreement with our proposed model for activation, in which the receptor has two different sites that selectively bind allosteric modulators. The down-stream signaling mediated by cross-sensitizing allosteric receptor modulators, occurring independent of any orthosteric agonist, represent a new mechanism for activation of the neutrophil NADPH oxidase.
(Copyright © 2021 The Author(s). Published by Elsevier Inc. All rights reserved.)

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