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Integrative omics identifies conserved and pathogen-specific responses of sepsis-causing bacteria

Even in the setting of optimal resuscitation in high-income countries severe sepsis and septic shock have a mortality of 20–40%, with antibiotic resistance dramatically increasing this mortality risk. To develop a reference dataset enabling the identification of common bacterial targets for therapeu...

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Autores principales: Mu, Andre, Klare, William P., Baines, Sarah L., Ignatius Pang, C. N., Guérillot, Romain, Harbison-Price, Nichaela, Keller, Nadia, Wilksch, Jonathan, Nhu, Nguyen Thi Khanh, Phan, Minh-Duy, Keller, Bernhard, Nijagal, Brunda, Tull, Dedreia, Dayalan, Saravanan, Chua, Hwa Huat Charlie, Skoneczny, Dominik, Koval, Jason, Hachani, Abderrahman, Shah, Anup D., Neha, Nitika, Jadhav, Snehal, Partridge, Sally R., Cork, Amanda J., Peters, Kate, Bertolla, Olivia, Brouwer, Stephan, Hancock, Steven J., Álvarez-Fraga, Laura, De Oliveira, David M. P., Forde, Brian, Dale, Ashleigh, Mujchariyakul, Warasinee, Walsh, Calum J., Monk, Ian, Fitzgerald, Anna, Lum, Mabel, Correa-Ospina, Carolina, Roy Chowdhury, Piklu, Parton, Robert G., De Voss, James, Beckett, James, Monty, Francois, McKinnon, Jessica, Song, Xiaomin, Stephen, John R., Everest, Marie, Bellgard, Matt I., Tinning, Matthew, Leeming, Michael, Hocking, Dianna, Jebeli, Leila, Wang, Nancy, Ben Zakour, Nouri, Yasar, Serhat A., Vecchiarelli, Stefano, Russell, Tonia, Zaw, Thiri, Chen, Tyrone, Teng, Don, Kassir, Zena, Lithgow, Trevor, Jenney, Adam, Cole, Jason N., Nizet, Victor, Sorrell, Tania C., Peleg, Anton Y., Paterson, David L., Beatson, Scott A., Wu, Jemma, Molloy, Mark P., Syme, Anna E., Goode, Robert J. A., Hunter, Adam A., Bowland, Grahame, West, Nicholas P., Wilkins, Marc R., Djordjevic, Steven P., Davies, Mark R., Seemann, Torsten, Howden, Benjamin P., Pascovici, Dana, Tyagi, Sonika, Schittenhelm, Ralf B., De Souza, David P., McConville, Malcolm J., Iredell, Jonathan R., Cordwell, Stuart J., Strugnell, Richard A., Stinear, Timothy P., Schembri, Mark A., Walker, Mark J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10024524/
https://www.ncbi.nlm.nih.gov/pubmed/36934086
http://dx.doi.org/10.1038/s41467-023-37200-w
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author Mu, Andre
Klare, William P.
Baines, Sarah L.
Ignatius Pang, C. N.
Guérillot, Romain
Harbison-Price, Nichaela
Keller, Nadia
Wilksch, Jonathan
Nhu, Nguyen Thi Khanh
Phan, Minh-Duy
Keller, Bernhard
Nijagal, Brunda
Tull, Dedreia
Dayalan, Saravanan
Chua, Hwa Huat Charlie
Skoneczny, Dominik
Koval, Jason
Hachani, Abderrahman
Shah, Anup D.
Neha, Nitika
Jadhav, Snehal
Partridge, Sally R.
Cork, Amanda J.
Peters, Kate
Bertolla, Olivia
Brouwer, Stephan
Hancock, Steven J.
Álvarez-Fraga, Laura
De Oliveira, David M. P.
Forde, Brian
Dale, Ashleigh
Mujchariyakul, Warasinee
Walsh, Calum J.
Monk, Ian
Fitzgerald, Anna
Lum, Mabel
Correa-Ospina, Carolina
Roy Chowdhury, Piklu
Parton, Robert G.
De Voss, James
Beckett, James
Monty, Francois
McKinnon, Jessica
Song, Xiaomin
Stephen, John R.
Everest, Marie
Bellgard, Matt I.
Tinning, Matthew
Leeming, Michael
Hocking, Dianna
Jebeli, Leila
Wang, Nancy
Ben Zakour, Nouri
Yasar, Serhat A.
Vecchiarelli, Stefano
Russell, Tonia
Zaw, Thiri
Chen, Tyrone
Teng, Don
Kassir, Zena
Lithgow, Trevor
Jenney, Adam
Cole, Jason N.
Nizet, Victor
Sorrell, Tania C.
Peleg, Anton Y.
Paterson, David L.
Beatson, Scott A.
Wu, Jemma
Molloy, Mark P.
Syme, Anna E.
Goode, Robert J. A.
Hunter, Adam A.
Bowland, Grahame
West, Nicholas P.
Wilkins, Marc R.
Djordjevic, Steven P.
Davies, Mark R.
Seemann, Torsten
Howden, Benjamin P.
Pascovici, Dana
Tyagi, Sonika
Schittenhelm, Ralf B.
De Souza, David P.
McConville, Malcolm J.
Iredell, Jonathan R.
Cordwell, Stuart J.
Strugnell, Richard A.
Stinear, Timothy P.
Schembri, Mark A.
Walker, Mark J.
author_facet Mu, Andre
Klare, William P.
Baines, Sarah L.
Ignatius Pang, C. N.
Guérillot, Romain
Harbison-Price, Nichaela
Keller, Nadia
Wilksch, Jonathan
Nhu, Nguyen Thi Khanh
Phan, Minh-Duy
Keller, Bernhard
Nijagal, Brunda
Tull, Dedreia
Dayalan, Saravanan
Chua, Hwa Huat Charlie
Skoneczny, Dominik
Koval, Jason
Hachani, Abderrahman
Shah, Anup D.
Neha, Nitika
Jadhav, Snehal
Partridge, Sally R.
Cork, Amanda J.
Peters, Kate
Bertolla, Olivia
Brouwer, Stephan
Hancock, Steven J.
Álvarez-Fraga, Laura
De Oliveira, David M. P.
Forde, Brian
Dale, Ashleigh
Mujchariyakul, Warasinee
Walsh, Calum J.
Monk, Ian
Fitzgerald, Anna
Lum, Mabel
Correa-Ospina, Carolina
Roy Chowdhury, Piklu
Parton, Robert G.
De Voss, James
Beckett, James
Monty, Francois
McKinnon, Jessica
Song, Xiaomin
Stephen, John R.
Everest, Marie
Bellgard, Matt I.
Tinning, Matthew
Leeming, Michael
Hocking, Dianna
Jebeli, Leila
Wang, Nancy
Ben Zakour, Nouri
Yasar, Serhat A.
Vecchiarelli, Stefano
Russell, Tonia
Zaw, Thiri
Chen, Tyrone
Teng, Don
Kassir, Zena
Lithgow, Trevor
Jenney, Adam
Cole, Jason N.
Nizet, Victor
Sorrell, Tania C.
Peleg, Anton Y.
Paterson, David L.
Beatson, Scott A.
Wu, Jemma
Molloy, Mark P.
Syme, Anna E.
Goode, Robert J. A.
Hunter, Adam A.
Bowland, Grahame
West, Nicholas P.
Wilkins, Marc R.
Djordjevic, Steven P.
Davies, Mark R.
Seemann, Torsten
Howden, Benjamin P.
Pascovici, Dana
Tyagi, Sonika
Schittenhelm, Ralf B.
De Souza, David P.
McConville, Malcolm J.
Iredell, Jonathan R.
Cordwell, Stuart J.
Strugnell, Richard A.
Stinear, Timothy P.
Schembri, Mark A.
Walker, Mark J.
author_sort Mu, Andre
collection PubMed
description Even in the setting of optimal resuscitation in high-income countries severe sepsis and septic shock have a mortality of 20–40%, with antibiotic resistance dramatically increasing this mortality risk. To develop a reference dataset enabling the identification of common bacterial targets for therapeutic intervention, we applied a standardized genomic, transcriptomic, proteomic and metabolomic technological framework to multiple clinical isolates of four sepsis-causing pathogens: Escherichia coli, Klebsiella pneumoniae species complex, Staphylococcus aureus and Streptococcus pyogenes. Exposure to human serum generated a sepsis molecular signature containing global increases in fatty acid and lipid biosynthesis and metabolism, consistent with cell envelope remodelling and nutrient adaptation for osmoprotection. In addition, acquisition of cholesterol was identified across the bacterial species. This detailed reference dataset has been established as an open resource to support discovery and translational research.
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spelling pubmed-100245242023-03-20 Integrative omics identifies conserved and pathogen-specific responses of sepsis-causing bacteria Mu, Andre Klare, William P. Baines, Sarah L. Ignatius Pang, C. N. Guérillot, Romain Harbison-Price, Nichaela Keller, Nadia Wilksch, Jonathan Nhu, Nguyen Thi Khanh Phan, Minh-Duy Keller, Bernhard Nijagal, Brunda Tull, Dedreia Dayalan, Saravanan Chua, Hwa Huat Charlie Skoneczny, Dominik Koval, Jason Hachani, Abderrahman Shah, Anup D. Neha, Nitika Jadhav, Snehal Partridge, Sally R. Cork, Amanda J. Peters, Kate Bertolla, Olivia Brouwer, Stephan Hancock, Steven J. Álvarez-Fraga, Laura De Oliveira, David M. P. Forde, Brian Dale, Ashleigh Mujchariyakul, Warasinee Walsh, Calum J. Monk, Ian Fitzgerald, Anna Lum, Mabel Correa-Ospina, Carolina Roy Chowdhury, Piklu Parton, Robert G. De Voss, James Beckett, James Monty, Francois McKinnon, Jessica Song, Xiaomin Stephen, John R. Everest, Marie Bellgard, Matt I. Tinning, Matthew Leeming, Michael Hocking, Dianna Jebeli, Leila Wang, Nancy Ben Zakour, Nouri Yasar, Serhat A. Vecchiarelli, Stefano Russell, Tonia Zaw, Thiri Chen, Tyrone Teng, Don Kassir, Zena Lithgow, Trevor Jenney, Adam Cole, Jason N. Nizet, Victor Sorrell, Tania C. Peleg, Anton Y. Paterson, David L. Beatson, Scott A. Wu, Jemma Molloy, Mark P. Syme, Anna E. Goode, Robert J. A. Hunter, Adam A. Bowland, Grahame West, Nicholas P. Wilkins, Marc R. Djordjevic, Steven P. Davies, Mark R. Seemann, Torsten Howden, Benjamin P. Pascovici, Dana Tyagi, Sonika Schittenhelm, Ralf B. De Souza, David P. McConville, Malcolm J. Iredell, Jonathan R. Cordwell, Stuart J. Strugnell, Richard A. Stinear, Timothy P. Schembri, Mark A. Walker, Mark J. Nat Commun Article Even in the setting of optimal resuscitation in high-income countries severe sepsis and septic shock have a mortality of 20–40%, with antibiotic resistance dramatically increasing this mortality risk. To develop a reference dataset enabling the identification of common bacterial targets for therapeutic intervention, we applied a standardized genomic, transcriptomic, proteomic and metabolomic technological framework to multiple clinical isolates of four sepsis-causing pathogens: Escherichia coli, Klebsiella pneumoniae species complex, Staphylococcus aureus and Streptococcus pyogenes. Exposure to human serum generated a sepsis molecular signature containing global increases in fatty acid and lipid biosynthesis and metabolism, consistent with cell envelope remodelling and nutrient adaptation for osmoprotection. In addition, acquisition of cholesterol was identified across the bacterial species. This detailed reference dataset has been established as an open resource to support discovery and translational research. Nature Publishing Group UK 2023-03-18 /pmc/articles/PMC10024524/ /pubmed/36934086 http://dx.doi.org/10.1038/s41467-023-37200-w Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Mu, Andre
Klare, William P.
Baines, Sarah L.
Ignatius Pang, C. N.
Guérillot, Romain
Harbison-Price, Nichaela
Keller, Nadia
Wilksch, Jonathan
Nhu, Nguyen Thi Khanh
Phan, Minh-Duy
Keller, Bernhard
Nijagal, Brunda
Tull, Dedreia
Dayalan, Saravanan
Chua, Hwa Huat Charlie
Skoneczny, Dominik
Koval, Jason
Hachani, Abderrahman
Shah, Anup D.
Neha, Nitika
Jadhav, Snehal
Partridge, Sally R.
Cork, Amanda J.
Peters, Kate
Bertolla, Olivia
Brouwer, Stephan
Hancock, Steven J.
Álvarez-Fraga, Laura
De Oliveira, David M. P.
Forde, Brian
Dale, Ashleigh
Mujchariyakul, Warasinee
Walsh, Calum J.
Monk, Ian
Fitzgerald, Anna
Lum, Mabel
Correa-Ospina, Carolina
Roy Chowdhury, Piklu
Parton, Robert G.
De Voss, James
Beckett, James
Monty, Francois
McKinnon, Jessica
Song, Xiaomin
Stephen, John R.
Everest, Marie
Bellgard, Matt I.
Tinning, Matthew
Leeming, Michael
Hocking, Dianna
Jebeli, Leila
Wang, Nancy
Ben Zakour, Nouri
Yasar, Serhat A.
Vecchiarelli, Stefano
Russell, Tonia
Zaw, Thiri
Chen, Tyrone
Teng, Don
Kassir, Zena
Lithgow, Trevor
Jenney, Adam
Cole, Jason N.
Nizet, Victor
Sorrell, Tania C.
Peleg, Anton Y.
Paterson, David L.
Beatson, Scott A.
Wu, Jemma
Molloy, Mark P.
Syme, Anna E.
Goode, Robert J. A.
Hunter, Adam A.
Bowland, Grahame
West, Nicholas P.
Wilkins, Marc R.
Djordjevic, Steven P.
Davies, Mark R.
Seemann, Torsten
Howden, Benjamin P.
Pascovici, Dana
Tyagi, Sonika
Schittenhelm, Ralf B.
De Souza, David P.
McConville, Malcolm J.
Iredell, Jonathan R.
Cordwell, Stuart J.
Strugnell, Richard A.
Stinear, Timothy P.
Schembri, Mark A.
Walker, Mark J.
Integrative omics identifies conserved and pathogen-specific responses of sepsis-causing bacteria
title Integrative omics identifies conserved and pathogen-specific responses of sepsis-causing bacteria
title_full Integrative omics identifies conserved and pathogen-specific responses of sepsis-causing bacteria
title_fullStr Integrative omics identifies conserved and pathogen-specific responses of sepsis-causing bacteria
title_full_unstemmed Integrative omics identifies conserved and pathogen-specific responses of sepsis-causing bacteria
title_short Integrative omics identifies conserved and pathogen-specific responses of sepsis-causing bacteria
title_sort integrative omics identifies conserved and pathogen-specific responses of sepsis-causing bacteria
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10024524/
https://www.ncbi.nlm.nih.gov/pubmed/36934086
http://dx.doi.org/10.1038/s41467-023-37200-w
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