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A bovine CD18 signal peptide variant with increased binding activity to Mannheimia hemolytica leukotoxin

Background: Mannheimia haemolytica is the major bacterial infectious agent of bovine respiratory disease complex and causes severe morbidity and mortality during lung infections. M. haemolytica secretes a protein leukotoxin (Lkt) that binds to the CD18 receptor on leukocytes, initiates lysis, induce...

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Autores principales: Workman, Aspen M., Chitko-McKown, Carol G., Smith, Timothy P. L., Bennett, Gary L., Kalbfleisch, Theodore S., Basnayake, Veronica, Heaton, Michael P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: F1000 Research Limited 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6406179/
https://www.ncbi.nlm.nih.gov/pubmed/30881690
http://dx.doi.org/10.12688/f1000research.17187.1
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author Workman, Aspen M.
Chitko-McKown, Carol G.
Smith, Timothy P. L.
Bennett, Gary L.
Kalbfleisch, Theodore S.
Basnayake, Veronica
Heaton, Michael P.
author_facet Workman, Aspen M.
Chitko-McKown, Carol G.
Smith, Timothy P. L.
Bennett, Gary L.
Kalbfleisch, Theodore S.
Basnayake, Veronica
Heaton, Michael P.
author_sort Workman, Aspen M.
collection PubMed
description Background: Mannheimia haemolytica is the major bacterial infectious agent of bovine respiratory disease complex and causes severe morbidity and mortality during lung infections. M. haemolytica secretes a protein leukotoxin (Lkt) that binds to the CD18 receptor on leukocytes, initiates lysis, induces inflammation, and causes acute fibrinous bronchopneumonia. Lkt binds the 22-amino acid CD18 signal peptide domain, which remains uncleaved in ruminant species. Our aim was to identify missense variation in the bovine CD18 signal peptide and measure the effects on Lkt binding. Methods: Missense variants in the integrin beta 2 gene ( ITGB2) encoding CD18 were identified by whole genome sequencing of 96 cattle from 19 breeds, and targeted Sanger sequencing of 1238 cattle from 46 breeds. The ability of different CD18 signal peptide variants to bind Lkt was evaluated by preincubating the toxin with synthetic peptides and applying the mixture to susceptible bovine cell cultures in cytotoxicity-blocking assays. Results: We identified 14 missense variants encoded on 15 predicted haplotypes, including a rare signal peptide variant with a cysteine at position 5 (C (5)) instead of arginine (R (5)). Preincubating Lkt with synthetic signal peptides with C (5) blocked cytotoxicity significantly better than those with R (5). The most potent synthetic peptide (C (5)PQLLLLAGLLA) had 30-fold more binding activity compared to that with R (5). Conclusions: The results suggest that missense variants in the CD18 signal peptide affect Lkt binding, and animals carrying the C (5) allele may be more susceptible to the effects of Lkt. The results also identify a potent class of non-antibiotic Lkt inhibitors that could potentially protect cattle from cytotoxic effects during acute lung infections.
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spelling pubmed-64061792019-03-15 A bovine CD18 signal peptide variant with increased binding activity to Mannheimia hemolytica leukotoxin Workman, Aspen M. Chitko-McKown, Carol G. Smith, Timothy P. L. Bennett, Gary L. Kalbfleisch, Theodore S. Basnayake, Veronica Heaton, Michael P. F1000Res Research Article Background: Mannheimia haemolytica is the major bacterial infectious agent of bovine respiratory disease complex and causes severe morbidity and mortality during lung infections. M. haemolytica secretes a protein leukotoxin (Lkt) that binds to the CD18 receptor on leukocytes, initiates lysis, induces inflammation, and causes acute fibrinous bronchopneumonia. Lkt binds the 22-amino acid CD18 signal peptide domain, which remains uncleaved in ruminant species. Our aim was to identify missense variation in the bovine CD18 signal peptide and measure the effects on Lkt binding. Methods: Missense variants in the integrin beta 2 gene ( ITGB2) encoding CD18 were identified by whole genome sequencing of 96 cattle from 19 breeds, and targeted Sanger sequencing of 1238 cattle from 46 breeds. The ability of different CD18 signal peptide variants to bind Lkt was evaluated by preincubating the toxin with synthetic peptides and applying the mixture to susceptible bovine cell cultures in cytotoxicity-blocking assays. Results: We identified 14 missense variants encoded on 15 predicted haplotypes, including a rare signal peptide variant with a cysteine at position 5 (C (5)) instead of arginine (R (5)). Preincubating Lkt with synthetic signal peptides with C (5) blocked cytotoxicity significantly better than those with R (5). The most potent synthetic peptide (C (5)PQLLLLAGLLA) had 30-fold more binding activity compared to that with R (5). Conclusions: The results suggest that missense variants in the CD18 signal peptide affect Lkt binding, and animals carrying the C (5) allele may be more susceptible to the effects of Lkt. The results also identify a potent class of non-antibiotic Lkt inhibitors that could potentially protect cattle from cytotoxic effects during acute lung infections. F1000 Research Limited 2018-12-28 /pmc/articles/PMC6406179/ /pubmed/30881690 http://dx.doi.org/10.12688/f1000research.17187.1 Text en Copyright: © 2018 Workman AM et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Workman, Aspen M.
Chitko-McKown, Carol G.
Smith, Timothy P. L.
Bennett, Gary L.
Kalbfleisch, Theodore S.
Basnayake, Veronica
Heaton, Michael P.
A bovine CD18 signal peptide variant with increased binding activity to Mannheimia hemolytica leukotoxin
title A bovine CD18 signal peptide variant with increased binding activity to Mannheimia hemolytica leukotoxin
title_full A bovine CD18 signal peptide variant with increased binding activity to Mannheimia hemolytica leukotoxin
title_fullStr A bovine CD18 signal peptide variant with increased binding activity to Mannheimia hemolytica leukotoxin
title_full_unstemmed A bovine CD18 signal peptide variant with increased binding activity to Mannheimia hemolytica leukotoxin
title_short A bovine CD18 signal peptide variant with increased binding activity to Mannheimia hemolytica leukotoxin
title_sort bovine cd18 signal peptide variant with increased binding activity to mannheimia hemolytica leukotoxin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6406179/
https://www.ncbi.nlm.nih.gov/pubmed/30881690
http://dx.doi.org/10.12688/f1000research.17187.1
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