Cargando…

Bacterial lipoproteins and other factors released by Francisella tularensis modulate human neutrophil lifespan: Effects of a TLR1 SNP on apoptosis inhibition

Francisella tularensis infects several cell types including neutrophils, and aberrant neutrophil accumulation contributes to tissue destruction during tularaemia. We demonstrated previously that F. tularensis strains Schu S4 and live vaccine strain markedly delay human neutrophil apoptosis and there...

Descripción completa

Detalles Bibliográficos
Autores principales: Kinkead, Lauren C., Whitmore, Laura C., McCracken, Jenna M., Fletcher, Joshua R., Ketelsen, Brandi B., Kaufman, Justin W., Jones, Bradley D., Weiss, David S., Barker, Jason H., Allen, Lee‐Ann H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5764820/
https://www.ncbi.nlm.nih.gov/pubmed/29063667
http://dx.doi.org/10.1111/cmi.12795
_version_ 1783292104468856832
author Kinkead, Lauren C.
Whitmore, Laura C.
McCracken, Jenna M.
Fletcher, Joshua R.
Ketelsen, Brandi B.
Kaufman, Justin W.
Jones, Bradley D.
Weiss, David S.
Barker, Jason H.
Allen, Lee‐Ann H.
author_facet Kinkead, Lauren C.
Whitmore, Laura C.
McCracken, Jenna M.
Fletcher, Joshua R.
Ketelsen, Brandi B.
Kaufman, Justin W.
Jones, Bradley D.
Weiss, David S.
Barker, Jason H.
Allen, Lee‐Ann H.
author_sort Kinkead, Lauren C.
collection PubMed
description Francisella tularensis infects several cell types including neutrophils, and aberrant neutrophil accumulation contributes to tissue destruction during tularaemia. We demonstrated previously that F. tularensis strains Schu S4 and live vaccine strain markedly delay human neutrophil apoptosis and thereby prolong cell lifespan, but the bacterial factors that mediate this aspect of virulence are undefined. Herein, we demonstrate that bacterial conditioned medium (CM) can delay apoptosis in the absence of direct infection. Biochemical analyses show that CM contained F. tularensis surface factors as well as outer membrane components. Our previous studies excluded roles for lipopolysaccharide and capsule in apoptosis inhibition, and current studies of [(14)C] acetate‐labelled bacteria argue against a role for other bacterial lipids in this process. At the same time, studies of isogenic mutants indicate that TolC and virulence factors whose expression requires FevR or MglA were also dispensable, demonstrating that apoptosis inhibition does not require Type I or Type VI secretion. Instead, we identified bacterial lipoproteins (BLPs) as active factors in CM. Additional studies of isolated BLPs demonstrated dose‐dependent neutrophil apoptosis inhibition via a TLR2‐dependent mechanism that is significantly influenced by a common polymorphism, rs5743618, in human TLR1. These data provide fundamental new insight into pathogen manipulation of neutrophil lifespan and BLP function.
format Online
Article
Text
id pubmed-5764820
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-57648202018-03-20 Bacterial lipoproteins and other factors released by Francisella tularensis modulate human neutrophil lifespan: Effects of a TLR1 SNP on apoptosis inhibition Kinkead, Lauren C. Whitmore, Laura C. McCracken, Jenna M. Fletcher, Joshua R. Ketelsen, Brandi B. Kaufman, Justin W. Jones, Bradley D. Weiss, David S. Barker, Jason H. Allen, Lee‐Ann H. Cell Microbiol Research Articles Francisella tularensis infects several cell types including neutrophils, and aberrant neutrophil accumulation contributes to tissue destruction during tularaemia. We demonstrated previously that F. tularensis strains Schu S4 and live vaccine strain markedly delay human neutrophil apoptosis and thereby prolong cell lifespan, but the bacterial factors that mediate this aspect of virulence are undefined. Herein, we demonstrate that bacterial conditioned medium (CM) can delay apoptosis in the absence of direct infection. Biochemical analyses show that CM contained F. tularensis surface factors as well as outer membrane components. Our previous studies excluded roles for lipopolysaccharide and capsule in apoptosis inhibition, and current studies of [(14)C] acetate‐labelled bacteria argue against a role for other bacterial lipids in this process. At the same time, studies of isogenic mutants indicate that TolC and virulence factors whose expression requires FevR or MglA were also dispensable, demonstrating that apoptosis inhibition does not require Type I or Type VI secretion. Instead, we identified bacterial lipoproteins (BLPs) as active factors in CM. Additional studies of isolated BLPs demonstrated dose‐dependent neutrophil apoptosis inhibition via a TLR2‐dependent mechanism that is significantly influenced by a common polymorphism, rs5743618, in human TLR1. These data provide fundamental new insight into pathogen manipulation of neutrophil lifespan and BLP function. John Wiley and Sons Inc. 2017-11-21 2018-02 /pmc/articles/PMC5764820/ /pubmed/29063667 http://dx.doi.org/10.1111/cmi.12795 Text en © 2017 The Authors Cellular Microbiology Published by John Wiley & Sons Ltd This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial‐NoDerivs (http://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Kinkead, Lauren C.
Whitmore, Laura C.
McCracken, Jenna M.
Fletcher, Joshua R.
Ketelsen, Brandi B.
Kaufman, Justin W.
Jones, Bradley D.
Weiss, David S.
Barker, Jason H.
Allen, Lee‐Ann H.
Bacterial lipoproteins and other factors released by Francisella tularensis modulate human neutrophil lifespan: Effects of a TLR1 SNP on apoptosis inhibition
title Bacterial lipoproteins and other factors released by Francisella tularensis modulate human neutrophil lifespan: Effects of a TLR1 SNP on apoptosis inhibition
title_full Bacterial lipoproteins and other factors released by Francisella tularensis modulate human neutrophil lifespan: Effects of a TLR1 SNP on apoptosis inhibition
title_fullStr Bacterial lipoproteins and other factors released by Francisella tularensis modulate human neutrophil lifespan: Effects of a TLR1 SNP on apoptosis inhibition
title_full_unstemmed Bacterial lipoproteins and other factors released by Francisella tularensis modulate human neutrophil lifespan: Effects of a TLR1 SNP on apoptosis inhibition
title_short Bacterial lipoproteins and other factors released by Francisella tularensis modulate human neutrophil lifespan: Effects of a TLR1 SNP on apoptosis inhibition
title_sort bacterial lipoproteins and other factors released by francisella tularensis modulate human neutrophil lifespan: effects of a tlr1 snp on apoptosis inhibition
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5764820/
https://www.ncbi.nlm.nih.gov/pubmed/29063667
http://dx.doi.org/10.1111/cmi.12795
work_keys_str_mv AT kinkeadlaurenc bacteriallipoproteinsandotherfactorsreleasedbyfrancisellatularensismodulatehumanneutrophillifespaneffectsofatlr1snponapoptosisinhibition
AT whitmorelaurac bacteriallipoproteinsandotherfactorsreleasedbyfrancisellatularensismodulatehumanneutrophillifespaneffectsofatlr1snponapoptosisinhibition
AT mccrackenjennam bacteriallipoproteinsandotherfactorsreleasedbyfrancisellatularensismodulatehumanneutrophillifespaneffectsofatlr1snponapoptosisinhibition
AT fletcherjoshuar bacteriallipoproteinsandotherfactorsreleasedbyfrancisellatularensismodulatehumanneutrophillifespaneffectsofatlr1snponapoptosisinhibition
AT ketelsenbrandib bacteriallipoproteinsandotherfactorsreleasedbyfrancisellatularensismodulatehumanneutrophillifespaneffectsofatlr1snponapoptosisinhibition
AT kaufmanjustinw bacteriallipoproteinsandotherfactorsreleasedbyfrancisellatularensismodulatehumanneutrophillifespaneffectsofatlr1snponapoptosisinhibition
AT jonesbradleyd bacteriallipoproteinsandotherfactorsreleasedbyfrancisellatularensismodulatehumanneutrophillifespaneffectsofatlr1snponapoptosisinhibition
AT weissdavids bacteriallipoproteinsandotherfactorsreleasedbyfrancisellatularensismodulatehumanneutrophillifespaneffectsofatlr1snponapoptosisinhibition
AT barkerjasonh bacteriallipoproteinsandotherfactorsreleasedbyfrancisellatularensismodulatehumanneutrophillifespaneffectsofatlr1snponapoptosisinhibition
AT allenleeannh bacteriallipoproteinsandotherfactorsreleasedbyfrancisellatularensismodulatehumanneutrophillifespaneffectsofatlr1snponapoptosisinhibition