Cargando…

The Accessory Gene saeP of the SaeR/S Two-Component Gene Regulatory System Impacts Staphylococcus aureus Virulence During Neutrophil Interaction

Staphylococcus aureus (S. aureus) causes a range of diseases ranging from superficial skin and soft-tissue infections to invasive and life-threatening conditions (Klevens et al., 2007; Kobayashi et al., 2015). S. aureus utilizes the Sae sensory system to adapt to neutrophil challenge. Although the r...

Descripción completa

Detalles Bibliográficos
Autores principales: Collins, Madison M., Behera, Ranjan K., Pallister, Kyler B., Evans, Tyler J., Burroughs, Owen, Flack, Caralyn, Guerra, Fermin E., Pullman, Willis, Cone, Brock, Dankoff, Jennifer G., Nygaard, Tyler K., Brinsmade, Shaun R., Voyich, Jovanka M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7189620/
https://www.ncbi.nlm.nih.gov/pubmed/32390958
http://dx.doi.org/10.3389/fmicb.2020.00561
_version_ 1783527535705849856
author Collins, Madison M.
Behera, Ranjan K.
Pallister, Kyler B.
Evans, Tyler J.
Burroughs, Owen
Flack, Caralyn
Guerra, Fermin E.
Pullman, Willis
Cone, Brock
Dankoff, Jennifer G.
Nygaard, Tyler K.
Brinsmade, Shaun R.
Voyich, Jovanka M.
author_facet Collins, Madison M.
Behera, Ranjan K.
Pallister, Kyler B.
Evans, Tyler J.
Burroughs, Owen
Flack, Caralyn
Guerra, Fermin E.
Pullman, Willis
Cone, Brock
Dankoff, Jennifer G.
Nygaard, Tyler K.
Brinsmade, Shaun R.
Voyich, Jovanka M.
author_sort Collins, Madison M.
collection PubMed
description Staphylococcus aureus (S. aureus) causes a range of diseases ranging from superficial skin and soft-tissue infections to invasive and life-threatening conditions (Klevens et al., 2007; Kobayashi et al., 2015). S. aureus utilizes the Sae sensory system to adapt to neutrophil challenge. Although the roles of the SaeR response regulator and its cognate sensor kinase SaeS have been demonstrated to be critical for surviving neutrophil interaction and for causing infection, the roles for the accessory proteins SaeP and SaeQ remain incompletely defined. To characterize the functional role of these proteins during innate immune interaction, we generated isogenic deletion mutants lacking these accessory genes in USA300 (USA300ΔsaeP and USA300ΔsaeQ). S. aureus survival was increased following phagocytosis of USA300ΔsaeP compared to USA300 by neutrophils. Additionally, secreted extracellular proteins produced by USA300ΔsaeP cells caused significantly more plasma membrane damage to human neutrophils than extracellular proteins produced by USA300 cells. Deletion of saeQ resulted in a similar phenotype, but effects did not reach significance during neutrophil interaction. The enhanced cytotoxicity of USA300ΔsaeP cells toward human neutrophils correlated with an increased expression of bi-component leukocidins known to target these immune cells. A saeP and saeQ double mutant (USA300ΔsaePQ) showed a significant increase in survival following neutrophil phagocytosis that was comparable to the USA300ΔsaeP single mutant and increased the virulence of USA300 during murine bacteremia. These data provide evidence that SaeP modulates the Sae-mediated response of S. aureus against human neutrophils and suggest that saeP and saeQ together impact pathogenesis in vivo.
format Online
Article
Text
id pubmed-7189620
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-71896202020-05-08 The Accessory Gene saeP of the SaeR/S Two-Component Gene Regulatory System Impacts Staphylococcus aureus Virulence During Neutrophil Interaction Collins, Madison M. Behera, Ranjan K. Pallister, Kyler B. Evans, Tyler J. Burroughs, Owen Flack, Caralyn Guerra, Fermin E. Pullman, Willis Cone, Brock Dankoff, Jennifer G. Nygaard, Tyler K. Brinsmade, Shaun R. Voyich, Jovanka M. Front Microbiol Microbiology Staphylococcus aureus (S. aureus) causes a range of diseases ranging from superficial skin and soft-tissue infections to invasive and life-threatening conditions (Klevens et al., 2007; Kobayashi et al., 2015). S. aureus utilizes the Sae sensory system to adapt to neutrophil challenge. Although the roles of the SaeR response regulator and its cognate sensor kinase SaeS have been demonstrated to be critical for surviving neutrophil interaction and for causing infection, the roles for the accessory proteins SaeP and SaeQ remain incompletely defined. To characterize the functional role of these proteins during innate immune interaction, we generated isogenic deletion mutants lacking these accessory genes in USA300 (USA300ΔsaeP and USA300ΔsaeQ). S. aureus survival was increased following phagocytosis of USA300ΔsaeP compared to USA300 by neutrophils. Additionally, secreted extracellular proteins produced by USA300ΔsaeP cells caused significantly more plasma membrane damage to human neutrophils than extracellular proteins produced by USA300 cells. Deletion of saeQ resulted in a similar phenotype, but effects did not reach significance during neutrophil interaction. The enhanced cytotoxicity of USA300ΔsaeP cells toward human neutrophils correlated with an increased expression of bi-component leukocidins known to target these immune cells. A saeP and saeQ double mutant (USA300ΔsaePQ) showed a significant increase in survival following neutrophil phagocytosis that was comparable to the USA300ΔsaeP single mutant and increased the virulence of USA300 during murine bacteremia. These data provide evidence that SaeP modulates the Sae-mediated response of S. aureus against human neutrophils and suggest that saeP and saeQ together impact pathogenesis in vivo. Frontiers Media S.A. 2020-04-22 /pmc/articles/PMC7189620/ /pubmed/32390958 http://dx.doi.org/10.3389/fmicb.2020.00561 Text en Copyright © 2020 Collins, Behera, Pallister, Evans, Burroughs, Flack, Guerra, Pullman, Cone, Dankoff, Nygaard, Brinsmade and Voyich. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Collins, Madison M.
Behera, Ranjan K.
Pallister, Kyler B.
Evans, Tyler J.
Burroughs, Owen
Flack, Caralyn
Guerra, Fermin E.
Pullman, Willis
Cone, Brock
Dankoff, Jennifer G.
Nygaard, Tyler K.
Brinsmade, Shaun R.
Voyich, Jovanka M.
The Accessory Gene saeP of the SaeR/S Two-Component Gene Regulatory System Impacts Staphylococcus aureus Virulence During Neutrophil Interaction
title The Accessory Gene saeP of the SaeR/S Two-Component Gene Regulatory System Impacts Staphylococcus aureus Virulence During Neutrophil Interaction
title_full The Accessory Gene saeP of the SaeR/S Two-Component Gene Regulatory System Impacts Staphylococcus aureus Virulence During Neutrophil Interaction
title_fullStr The Accessory Gene saeP of the SaeR/S Two-Component Gene Regulatory System Impacts Staphylococcus aureus Virulence During Neutrophil Interaction
title_full_unstemmed The Accessory Gene saeP of the SaeR/S Two-Component Gene Regulatory System Impacts Staphylococcus aureus Virulence During Neutrophil Interaction
title_short The Accessory Gene saeP of the SaeR/S Two-Component Gene Regulatory System Impacts Staphylococcus aureus Virulence During Neutrophil Interaction
title_sort accessory gene saep of the saer/s two-component gene regulatory system impacts staphylococcus aureus virulence during neutrophil interaction
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7189620/
https://www.ncbi.nlm.nih.gov/pubmed/32390958
http://dx.doi.org/10.3389/fmicb.2020.00561
work_keys_str_mv AT collinsmadisonm theaccessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT beheraranjank theaccessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT pallisterkylerb theaccessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT evanstylerj theaccessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT burroughsowen theaccessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT flackcaralyn theaccessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT guerrafermine theaccessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT pullmanwillis theaccessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT conebrock theaccessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT dankoffjenniferg theaccessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT nygaardtylerk theaccessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT brinsmadeshaunr theaccessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT voyichjovankam theaccessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT collinsmadisonm accessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT beheraranjank accessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT pallisterkylerb accessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT evanstylerj accessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT burroughsowen accessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT flackcaralyn accessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT guerrafermine accessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT pullmanwillis accessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT conebrock accessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT dankoffjenniferg accessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT nygaardtylerk accessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT brinsmadeshaunr accessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction
AT voyichjovankam accessorygenesaepofthesaerstwocomponentgeneregulatorysystemimpactsstaphylococcusaureusvirulenceduringneutrophilinteraction