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Formyl peptide derived lipopeptides disclose differences between the receptors in mouse and men and call the pepducin concept in question

A pepducin is a lipopeptide containing a peptide sequence that is identical to one of the intracellular domains of the G-protein coupled receptor (GPCR) assumed to be the target. Neutrophils express two closely related formyl peptide receptors belonging to the family of GPCRs; FPR1 and FPR2 in human...

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Autores principales: Winther, Malene, Holdfeldt, André, Sundqvist, Martina, Rajabkhani, Zahra, Gabl, Michael, Bylund, Johan, Dahlgren, Claes, Forsman, Huamei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5608352/
https://www.ncbi.nlm.nih.gov/pubmed/28934373
http://dx.doi.org/10.1371/journal.pone.0185132
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author Winther, Malene
Holdfeldt, André
Sundqvist, Martina
Rajabkhani, Zahra
Gabl, Michael
Bylund, Johan
Dahlgren, Claes
Forsman, Huamei
author_facet Winther, Malene
Holdfeldt, André
Sundqvist, Martina
Rajabkhani, Zahra
Gabl, Michael
Bylund, Johan
Dahlgren, Claes
Forsman, Huamei
author_sort Winther, Malene
collection PubMed
description A pepducin is a lipopeptide containing a peptide sequence that is identical to one of the intracellular domains of the G-protein coupled receptor (GPCR) assumed to be the target. Neutrophils express two closely related formyl peptide receptors belonging to the family of GPCRs; FPR1 and FPR2 in human and their respective orthologue Fpr1 and Fpr2 in mouse. By applying the pepducin concept, we have earlier identified FPR2 activating pepducins generated from the third intracellular loop of FPR2. The third intracellular loop of FPR2 differs in two amino acids from that of FPR1, seven from Fpr2 and three from Fpr1. Despite this, we found that pepducins generated from FPR1, FPR2, Fpr1 and Fpr2 all targeted FPR2 in human neutrophils and Fpr2 in mouse, but with different modulating outcomes. Whereas the FPR1/Fpr1 derived pepducins inhibited the FPR2 function in human neutrophils, they activated Fpr2 in mouse. The FPR2 derived pepducin activated FPR2/Fpr2, whereas the pepducin generated from Fpr2 inhibited both FPR2 and Fpr2. In summary, our data demonstrate that pepducins generated from the third intracellular loop of human FPR1/2 and mouse Fpr1/2, all targeted FPR2 in human and Fpr2 in mouse. With respect to the modulating outcomes, pepducin inhibitors identified for FPR2 are in fact activators for Fpr2 in mouse neutrophils. Our data thus questions the validity of pepducin concept regarding their receptor selectivity but supports the notion that FPR2/Fpr2 may recognize a lipopeptide molecular pattern, and highlight the differences in ligand recognition profile between FPR2 and its mouse orthologue Fpr2.
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spelling pubmed-56083522017-10-09 Formyl peptide derived lipopeptides disclose differences between the receptors in mouse and men and call the pepducin concept in question Winther, Malene Holdfeldt, André Sundqvist, Martina Rajabkhani, Zahra Gabl, Michael Bylund, Johan Dahlgren, Claes Forsman, Huamei PLoS One Research Article A pepducin is a lipopeptide containing a peptide sequence that is identical to one of the intracellular domains of the G-protein coupled receptor (GPCR) assumed to be the target. Neutrophils express two closely related formyl peptide receptors belonging to the family of GPCRs; FPR1 and FPR2 in human and their respective orthologue Fpr1 and Fpr2 in mouse. By applying the pepducin concept, we have earlier identified FPR2 activating pepducins generated from the third intracellular loop of FPR2. The third intracellular loop of FPR2 differs in two amino acids from that of FPR1, seven from Fpr2 and three from Fpr1. Despite this, we found that pepducins generated from FPR1, FPR2, Fpr1 and Fpr2 all targeted FPR2 in human neutrophils and Fpr2 in mouse, but with different modulating outcomes. Whereas the FPR1/Fpr1 derived pepducins inhibited the FPR2 function in human neutrophils, they activated Fpr2 in mouse. The FPR2 derived pepducin activated FPR2/Fpr2, whereas the pepducin generated from Fpr2 inhibited both FPR2 and Fpr2. In summary, our data demonstrate that pepducins generated from the third intracellular loop of human FPR1/2 and mouse Fpr1/2, all targeted FPR2 in human and Fpr2 in mouse. With respect to the modulating outcomes, pepducin inhibitors identified for FPR2 are in fact activators for Fpr2 in mouse neutrophils. Our data thus questions the validity of pepducin concept regarding their receptor selectivity but supports the notion that FPR2/Fpr2 may recognize a lipopeptide molecular pattern, and highlight the differences in ligand recognition profile between FPR2 and its mouse orthologue Fpr2. Public Library of Science 2017-09-21 /pmc/articles/PMC5608352/ /pubmed/28934373 http://dx.doi.org/10.1371/journal.pone.0185132 Text en © 2017 Winther et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Winther, Malene
Holdfeldt, André
Sundqvist, Martina
Rajabkhani, Zahra
Gabl, Michael
Bylund, Johan
Dahlgren, Claes
Forsman, Huamei
Formyl peptide derived lipopeptides disclose differences between the receptors in mouse and men and call the pepducin concept in question
title Formyl peptide derived lipopeptides disclose differences between the receptors in mouse and men and call the pepducin concept in question
title_full Formyl peptide derived lipopeptides disclose differences between the receptors in mouse and men and call the pepducin concept in question
title_fullStr Formyl peptide derived lipopeptides disclose differences between the receptors in mouse and men and call the pepducin concept in question
title_full_unstemmed Formyl peptide derived lipopeptides disclose differences between the receptors in mouse and men and call the pepducin concept in question
title_short Formyl peptide derived lipopeptides disclose differences between the receptors in mouse and men and call the pepducin concept in question
title_sort formyl peptide derived lipopeptides disclose differences between the receptors in mouse and men and call the pepducin concept in question
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5608352/
https://www.ncbi.nlm.nih.gov/pubmed/28934373
http://dx.doi.org/10.1371/journal.pone.0185132
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