Cargando…

A Multi-Omic View of Host-Pathogen-Commensal Interplay in Salmonella-Mediated Intestinal Infection

The potential for commensal microorganisms indigenous to a host (the ‘microbiome’ or ‘microbiota’) to alter infection outcome by influencing host-pathogen interplay is largely unknown. We used a multi-omics “systems” approach, incorporating proteomics, metabolomics, glycomics, and metagenomics, to e...

Descripción completa

Detalles Bibliográficos
Autores principales: Deatherage Kaiser, Brooke L., Li, Jie, Sanford, James A., Kim, Young-Mo, Kronewitter, Scott R., Jones, Marcus B., Peterson, Christine T., Peterson, Scott N., Frank, Bryan C., Purvine, Samuel O., Brown, Joseph N., Metz, Thomas O., Smith, Richard D., Heffron, Fred, Adkins, Joshua N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3694140/
https://www.ncbi.nlm.nih.gov/pubmed/23840608
http://dx.doi.org/10.1371/journal.pone.0067155
_version_ 1782274817020395520
author Deatherage Kaiser, Brooke L.
Li, Jie
Sanford, James A.
Kim, Young-Mo
Kronewitter, Scott R.
Jones, Marcus B.
Peterson, Christine T.
Peterson, Scott N.
Frank, Bryan C.
Purvine, Samuel O.
Brown, Joseph N.
Metz, Thomas O.
Smith, Richard D.
Heffron, Fred
Adkins, Joshua N.
author_facet Deatherage Kaiser, Brooke L.
Li, Jie
Sanford, James A.
Kim, Young-Mo
Kronewitter, Scott R.
Jones, Marcus B.
Peterson, Christine T.
Peterson, Scott N.
Frank, Bryan C.
Purvine, Samuel O.
Brown, Joseph N.
Metz, Thomas O.
Smith, Richard D.
Heffron, Fred
Adkins, Joshua N.
author_sort Deatherage Kaiser, Brooke L.
collection PubMed
description The potential for commensal microorganisms indigenous to a host (the ‘microbiome’ or ‘microbiota’) to alter infection outcome by influencing host-pathogen interplay is largely unknown. We used a multi-omics “systems” approach, incorporating proteomics, metabolomics, glycomics, and metagenomics, to explore the molecular interplay between the murine host, the pathogen Salmonella enterica serovar Typhimurium (S. Typhimurium), and commensal gut microorganisms during intestinal infection with S. Typhimurium. We find proteomic evidence that S. Typhimurium thrives within the infected 129/SvJ mouse gut without antibiotic pre-treatment, inducing inflammation and disrupting the intestinal microbiome (e.g., suppressing Bacteroidetes and Firmicutes while promoting growth of Salmonella and Enterococcus). Alteration of the host microbiome population structure was highly correlated with gut environmental changes, including the accumulation of metabolites normally consumed by commensal microbiota. Finally, the less characterized phase of S. Typhimurium’s lifecycle was investigated, and both proteomic and glycomic evidence suggests S. Typhimurium may take advantage of increased fucose moieties to metabolize fucose while growing in the gut. The application of multiple omics measurements to Salmonella-induced intestinal inflammation provides insights into complex molecular strategies employed during pathogenesis between host, pathogen, and the microbiome.
format Online
Article
Text
id pubmed-3694140
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-36941402013-07-09 A Multi-Omic View of Host-Pathogen-Commensal Interplay in Salmonella-Mediated Intestinal Infection Deatherage Kaiser, Brooke L. Li, Jie Sanford, James A. Kim, Young-Mo Kronewitter, Scott R. Jones, Marcus B. Peterson, Christine T. Peterson, Scott N. Frank, Bryan C. Purvine, Samuel O. Brown, Joseph N. Metz, Thomas O. Smith, Richard D. Heffron, Fred Adkins, Joshua N. PLoS One Research Article The potential for commensal microorganisms indigenous to a host (the ‘microbiome’ or ‘microbiota’) to alter infection outcome by influencing host-pathogen interplay is largely unknown. We used a multi-omics “systems” approach, incorporating proteomics, metabolomics, glycomics, and metagenomics, to explore the molecular interplay between the murine host, the pathogen Salmonella enterica serovar Typhimurium (S. Typhimurium), and commensal gut microorganisms during intestinal infection with S. Typhimurium. We find proteomic evidence that S. Typhimurium thrives within the infected 129/SvJ mouse gut without antibiotic pre-treatment, inducing inflammation and disrupting the intestinal microbiome (e.g., suppressing Bacteroidetes and Firmicutes while promoting growth of Salmonella and Enterococcus). Alteration of the host microbiome population structure was highly correlated with gut environmental changes, including the accumulation of metabolites normally consumed by commensal microbiota. Finally, the less characterized phase of S. Typhimurium’s lifecycle was investigated, and both proteomic and glycomic evidence suggests S. Typhimurium may take advantage of increased fucose moieties to metabolize fucose while growing in the gut. The application of multiple omics measurements to Salmonella-induced intestinal inflammation provides insights into complex molecular strategies employed during pathogenesis between host, pathogen, and the microbiome. Public Library of Science 2013-06-26 /pmc/articles/PMC3694140/ /pubmed/23840608 http://dx.doi.org/10.1371/journal.pone.0067155 Text en © 2013 Deatherage Kaiser 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Deatherage Kaiser, Brooke L.
Li, Jie
Sanford, James A.
Kim, Young-Mo
Kronewitter, Scott R.
Jones, Marcus B.
Peterson, Christine T.
Peterson, Scott N.
Frank, Bryan C.
Purvine, Samuel O.
Brown, Joseph N.
Metz, Thomas O.
Smith, Richard D.
Heffron, Fred
Adkins, Joshua N.
A Multi-Omic View of Host-Pathogen-Commensal Interplay in Salmonella-Mediated Intestinal Infection
title A Multi-Omic View of Host-Pathogen-Commensal Interplay in Salmonella-Mediated Intestinal Infection
title_full A Multi-Omic View of Host-Pathogen-Commensal Interplay in Salmonella-Mediated Intestinal Infection
title_fullStr A Multi-Omic View of Host-Pathogen-Commensal Interplay in Salmonella-Mediated Intestinal Infection
title_full_unstemmed A Multi-Omic View of Host-Pathogen-Commensal Interplay in Salmonella-Mediated Intestinal Infection
title_short A Multi-Omic View of Host-Pathogen-Commensal Interplay in Salmonella-Mediated Intestinal Infection
title_sort multi-omic view of host-pathogen-commensal interplay in salmonella-mediated intestinal infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3694140/
https://www.ncbi.nlm.nih.gov/pubmed/23840608
http://dx.doi.org/10.1371/journal.pone.0067155
work_keys_str_mv AT deatheragekaiserbrookel amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT lijie amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT sanfordjamesa amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT kimyoungmo amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT kronewitterscottr amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT jonesmarcusb amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT petersonchristinet amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT petersonscottn amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT frankbryanc amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT purvinesamuelo amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT brownjosephn amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT metzthomaso amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT smithrichardd amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT heffronfred amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT adkinsjoshuan amultiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT deatheragekaiserbrookel multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT lijie multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT sanfordjamesa multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT kimyoungmo multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT kronewitterscottr multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT jonesmarcusb multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT petersonchristinet multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT petersonscottn multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT frankbryanc multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT purvinesamuelo multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT brownjosephn multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT metzthomaso multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT smithrichardd multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT heffronfred multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection
AT adkinsjoshuan multiomicviewofhostpathogencommensalinterplayinsalmonellamediatedintestinalinfection