Cargando…

Cathelicidin-mediated lipopolysaccharide signaling via intracellular TLR4 in colonic epithelial cells evokes CXCL8 production

We hypothesized that the antimicrobial peptide cathelicidin has a physiological role in regulating gut inflammatory homeostasis. We determined that cathelicidin synergizes with LPS to facilitate its internalization and signaling via endosomic TLR4 in colonic epithelium, evoking synthesis of the huma...

Descripción completa

Detalles Bibliográficos
Autores principales: Holani, Ravi, Babbar, Anshu, Blyth, Graham A. D., Lopes, Fernando, Jijon, Humberto, McKay, Derek M., Hollenberg, Morley D., Cobo, Eduardo R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7524372/
https://www.ncbi.nlm.nih.gov/pubmed/32658599
http://dx.doi.org/10.1080/19490976.2020.1785802
_version_ 1783588537987235840
author Holani, Ravi
Babbar, Anshu
Blyth, Graham A. D.
Lopes, Fernando
Jijon, Humberto
McKay, Derek M.
Hollenberg, Morley D.
Cobo, Eduardo R.
author_facet Holani, Ravi
Babbar, Anshu
Blyth, Graham A. D.
Lopes, Fernando
Jijon, Humberto
McKay, Derek M.
Hollenberg, Morley D.
Cobo, Eduardo R.
author_sort Holani, Ravi
collection PubMed
description We hypothesized that the antimicrobial peptide cathelicidin has a physiological role in regulating gut inflammatory homeostasis. We determined that cathelicidin synergizes with LPS to facilitate its internalization and signaling via endosomic TLR4 in colonic epithelium, evoking synthesis of the human neutrophil chemoattractant, CXCL8 (or murine homolog, CXCL1). Interaction of cathelicidin with LPS in the control of CXCL8/CXCL1 synthesis was assessed in human colon epithelial cells, murine colonoids and cathelicidin-null mice (Camp(−/-)). Mechanistically, human cathelicidin (LL-37), as an extracellular complex with LPS, interacted with lipid raft-associated GM1 gangliosides to internalize and activate intracellular TLR4. Two signaling pathways converged on CXCL8/CXCL1 production: (1) a p38MAPK-dependent pathway regulated by Src-EGFR kinases; and, (2) a p38MAPK-independent, NF-κB-dependent pathway, regulated by MEK1/2-MAPK. Increased cathelicidin-dependent CXCL8 secretion in the colonic mucosa activated human blood-derived neutrophils. These cathelicidin effects occurred in vitro at concentrations well below those needed for microbicidal function. The important immunomodulatory role of cathelicidins was evident in cathelicidin-null/Camp(−/-) mice, which had diminished colonic CXCL1 secretion, decreased neutrophil recruitment-activation and reduced bacterial clearance when challenged with the colitis-inducing murine pathogen, Citrobacter rodentium. We conclude that in addition to its known microbicidal action, cathelicidin has a unique pathogen-sensing role, facilitating LPS-mediated intestinal responses, including the production of CXCL8/CXCL1 that would contribute to an integrated tissue response to recruit neutrophils during colitis.
format Online
Article
Text
id pubmed-7524372
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Taylor & Francis
record_format MEDLINE/PubMed
spelling pubmed-75243722020-10-06 Cathelicidin-mediated lipopolysaccharide signaling via intracellular TLR4 in colonic epithelial cells evokes CXCL8 production Holani, Ravi Babbar, Anshu Blyth, Graham A. D. Lopes, Fernando Jijon, Humberto McKay, Derek M. Hollenberg, Morley D. Cobo, Eduardo R. Gut Microbes Research Paper We hypothesized that the antimicrobial peptide cathelicidin has a physiological role in regulating gut inflammatory homeostasis. We determined that cathelicidin synergizes with LPS to facilitate its internalization and signaling via endosomic TLR4 in colonic epithelium, evoking synthesis of the human neutrophil chemoattractant, CXCL8 (or murine homolog, CXCL1). Interaction of cathelicidin with LPS in the control of CXCL8/CXCL1 synthesis was assessed in human colon epithelial cells, murine colonoids and cathelicidin-null mice (Camp(−/-)). Mechanistically, human cathelicidin (LL-37), as an extracellular complex with LPS, interacted with lipid raft-associated GM1 gangliosides to internalize and activate intracellular TLR4. Two signaling pathways converged on CXCL8/CXCL1 production: (1) a p38MAPK-dependent pathway regulated by Src-EGFR kinases; and, (2) a p38MAPK-independent, NF-κB-dependent pathway, regulated by MEK1/2-MAPK. Increased cathelicidin-dependent CXCL8 secretion in the colonic mucosa activated human blood-derived neutrophils. These cathelicidin effects occurred in vitro at concentrations well below those needed for microbicidal function. The important immunomodulatory role of cathelicidins was evident in cathelicidin-null/Camp(−/-) mice, which had diminished colonic CXCL1 secretion, decreased neutrophil recruitment-activation and reduced bacterial clearance when challenged with the colitis-inducing murine pathogen, Citrobacter rodentium. We conclude that in addition to its known microbicidal action, cathelicidin has a unique pathogen-sensing role, facilitating LPS-mediated intestinal responses, including the production of CXCL8/CXCL1 that would contribute to an integrated tissue response to recruit neutrophils during colitis. Taylor & Francis 2020-07-13 /pmc/articles/PMC7524372/ /pubmed/32658599 http://dx.doi.org/10.1080/19490976.2020.1785802 Text en © 2020 The Author(s). Published with license by Taylor & Francis Group, LLC. https://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/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Holani, Ravi
Babbar, Anshu
Blyth, Graham A. D.
Lopes, Fernando
Jijon, Humberto
McKay, Derek M.
Hollenberg, Morley D.
Cobo, Eduardo R.
Cathelicidin-mediated lipopolysaccharide signaling via intracellular TLR4 in colonic epithelial cells evokes CXCL8 production
title Cathelicidin-mediated lipopolysaccharide signaling via intracellular TLR4 in colonic epithelial cells evokes CXCL8 production
title_full Cathelicidin-mediated lipopolysaccharide signaling via intracellular TLR4 in colonic epithelial cells evokes CXCL8 production
title_fullStr Cathelicidin-mediated lipopolysaccharide signaling via intracellular TLR4 in colonic epithelial cells evokes CXCL8 production
title_full_unstemmed Cathelicidin-mediated lipopolysaccharide signaling via intracellular TLR4 in colonic epithelial cells evokes CXCL8 production
title_short Cathelicidin-mediated lipopolysaccharide signaling via intracellular TLR4 in colonic epithelial cells evokes CXCL8 production
title_sort cathelicidin-mediated lipopolysaccharide signaling via intracellular tlr4 in colonic epithelial cells evokes cxcl8 production
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7524372/
https://www.ncbi.nlm.nih.gov/pubmed/32658599
http://dx.doi.org/10.1080/19490976.2020.1785802
work_keys_str_mv AT holaniravi cathelicidinmediatedlipopolysaccharidesignalingviaintracellulartlr4incolonicepithelialcellsevokescxcl8production
AT babbaranshu cathelicidinmediatedlipopolysaccharidesignalingviaintracellulartlr4incolonicepithelialcellsevokescxcl8production
AT blythgrahamad cathelicidinmediatedlipopolysaccharidesignalingviaintracellulartlr4incolonicepithelialcellsevokescxcl8production
AT lopesfernando cathelicidinmediatedlipopolysaccharidesignalingviaintracellulartlr4incolonicepithelialcellsevokescxcl8production
AT jijonhumberto cathelicidinmediatedlipopolysaccharidesignalingviaintracellulartlr4incolonicepithelialcellsevokescxcl8production
AT mckayderekm cathelicidinmediatedlipopolysaccharidesignalingviaintracellulartlr4incolonicepithelialcellsevokescxcl8production
AT hollenbergmorleyd cathelicidinmediatedlipopolysaccharidesignalingviaintracellulartlr4incolonicepithelialcellsevokescxcl8production
AT coboeduardor cathelicidinmediatedlipopolysaccharidesignalingviaintracellulartlr4incolonicepithelialcellsevokescxcl8production