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A predicted Francisella tularensis DXD-motif glycosyltransferase blocks immune activation

Pathogens enhance their survival during infections by manipulating host defenses. Francisella tularensis evades innate immune responses, which we have found to be dependent on an understudied gene ybeX (FTL_0883/FTT_0615c). To understand the function of YbeX, we sought protein interactors in F. tula...

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Autores principales: Nau, Gerard J., Horzempa, Joseph, O’Dee, Dawn, Brown, Matthew J., Russo, Brian C., Hernandez, Ana, Dillon, Simon T., Cheng, Jing, Kane, Lawrence P., Sanker, Subramaniam, Hukriede, Neil A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6650193/
https://www.ncbi.nlm.nih.gov/pubmed/31314675
http://dx.doi.org/10.1080/21505594.2019.1631662
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author Nau, Gerard J.
Horzempa, Joseph
O’Dee, Dawn
Brown, Matthew J.
Russo, Brian C.
Hernandez, Ana
Dillon, Simon T.
Cheng, Jing
Kane, Lawrence P.
Sanker, Subramaniam
Hukriede, Neil A.
author_facet Nau, Gerard J.
Horzempa, Joseph
O’Dee, Dawn
Brown, Matthew J.
Russo, Brian C.
Hernandez, Ana
Dillon, Simon T.
Cheng, Jing
Kane, Lawrence P.
Sanker, Subramaniam
Hukriede, Neil A.
author_sort Nau, Gerard J.
collection PubMed
description Pathogens enhance their survival during infections by manipulating host defenses. Francisella tularensis evades innate immune responses, which we have found to be dependent on an understudied gene ybeX (FTL_0883/FTT_0615c). To understand the function of YbeX, we sought protein interactors in F. tularensis subsp. holarctica live vaccine strain (LVS). An unstudied Francisella protein co-immunoprecipitated with recombinant YbeX, which is a predicted glycosyltransferase with a DXD-motif. There are up to four genomic copies of this gene with identical sequence in strains of F. tularensis pathogenic to humans, despite ongoing genome decay. Disruption mutations were generated by intron insertion into all three copies of this glycosyltransferase domain containing gene in LVS, gdcA(1-3). The resulting strains stimulated more cytokines from macrophages in vitro than wild-type LVS and were attenuated in two in vivo infection models. GdcA was released from LVS during culture and was sufficient to block NF-κB activation when expressed in eukaryotic cells. When co-expressed in zebrafish, GdcA and YbeX were synergistically lethal to embryo development. Glycosyltransferases with DXD-motifs are found in a variety of pathogens including NleB, an Escherichia coli type-III secretion system effector that inhibits NF-κB by antagonizing death receptor signaling. To our knowledge, GdcA is the first DXD-motif glycosyltransferase that inhibits NF-κB in immune cells. Together, these findings suggest DXD-motif glycosyltransferases may be a conserved virulence mechanism used by pathogenic bacteria to remodel host defenses.
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spelling pubmed-66501932019-08-05 A predicted Francisella tularensis DXD-motif glycosyltransferase blocks immune activation Nau, Gerard J. Horzempa, Joseph O’Dee, Dawn Brown, Matthew J. Russo, Brian C. Hernandez, Ana Dillon, Simon T. Cheng, Jing Kane, Lawrence P. Sanker, Subramaniam Hukriede, Neil A. Virulence Research Paper Pathogens enhance their survival during infections by manipulating host defenses. Francisella tularensis evades innate immune responses, which we have found to be dependent on an understudied gene ybeX (FTL_0883/FTT_0615c). To understand the function of YbeX, we sought protein interactors in F. tularensis subsp. holarctica live vaccine strain (LVS). An unstudied Francisella protein co-immunoprecipitated with recombinant YbeX, which is a predicted glycosyltransferase with a DXD-motif. There are up to four genomic copies of this gene with identical sequence in strains of F. tularensis pathogenic to humans, despite ongoing genome decay. Disruption mutations were generated by intron insertion into all three copies of this glycosyltransferase domain containing gene in LVS, gdcA(1-3). The resulting strains stimulated more cytokines from macrophages in vitro than wild-type LVS and were attenuated in two in vivo infection models. GdcA was released from LVS during culture and was sufficient to block NF-κB activation when expressed in eukaryotic cells. When co-expressed in zebrafish, GdcA and YbeX were synergistically lethal to embryo development. Glycosyltransferases with DXD-motifs are found in a variety of pathogens including NleB, an Escherichia coli type-III secretion system effector that inhibits NF-κB by antagonizing death receptor signaling. To our knowledge, GdcA is the first DXD-motif glycosyltransferase that inhibits NF-κB in immune cells. Together, these findings suggest DXD-motif glycosyltransferases may be a conserved virulence mechanism used by pathogenic bacteria to remodel host defenses. Taylor & Francis 2019-07-17 /pmc/articles/PMC6650193/ /pubmed/31314675 http://dx.doi.org/10.1080/21505594.2019.1631662 Text en © 2019 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Nau, Gerard J.
Horzempa, Joseph
O’Dee, Dawn
Brown, Matthew J.
Russo, Brian C.
Hernandez, Ana
Dillon, Simon T.
Cheng, Jing
Kane, Lawrence P.
Sanker, Subramaniam
Hukriede, Neil A.
A predicted Francisella tularensis DXD-motif glycosyltransferase blocks immune activation
title A predicted Francisella tularensis DXD-motif glycosyltransferase blocks immune activation
title_full A predicted Francisella tularensis DXD-motif glycosyltransferase blocks immune activation
title_fullStr A predicted Francisella tularensis DXD-motif glycosyltransferase blocks immune activation
title_full_unstemmed A predicted Francisella tularensis DXD-motif glycosyltransferase blocks immune activation
title_short A predicted Francisella tularensis DXD-motif glycosyltransferase blocks immune activation
title_sort predicted francisella tularensis dxd-motif glycosyltransferase blocks immune activation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6650193/
https://www.ncbi.nlm.nih.gov/pubmed/31314675
http://dx.doi.org/10.1080/21505594.2019.1631662
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