Cargando…

The Loss of focA Gene Increases the Ability of Salmonella Enteritidis to Exit from Macrophages and Boosts Early Extraintestinal Spread for Systemic Infection in a Mouse Model

Salmonella Enteritidis (SE) can spread from the intestines to cause systemic infection, mainly involving macrophages. Intramacrophage Salmonella exits and reinfects neighboring cells, leading to severe disease. Salmonella genes involved in exiting from macrophages are not well understood or fully id...

Descripción completa

Detalles Bibliográficos
Autores principales: Gao, Ran, Zhang, Jian, Geng, Haoyu, Wang, Yaonan, Kang, Xilong, Geng, Shizhong, Jiao, Xin’an, Barrow, Paul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9414335/
https://www.ncbi.nlm.nih.gov/pubmed/36013975
http://dx.doi.org/10.3390/microorganisms10081557
_version_ 1784775962228948992
author Gao, Ran
Zhang, Jian
Geng, Haoyu
Wang, Yaonan
Kang, Xilong
Geng, Shizhong
Jiao, Xin’an
Barrow, Paul
author_facet Gao, Ran
Zhang, Jian
Geng, Haoyu
Wang, Yaonan
Kang, Xilong
Geng, Shizhong
Jiao, Xin’an
Barrow, Paul
author_sort Gao, Ran
collection PubMed
description Salmonella Enteritidis (SE) can spread from the intestines to cause systemic infection, mainly involving macrophages. Intramacrophage Salmonella exits and reinfects neighboring cells, leading to severe disease. Salmonella genes involved in exiting from macrophages are not well understood or fully identified. A focA::Tn5 mutant was identified by an in vitro assay, with increased ability to exit from macrophages. A defined SEΔfocA mutant and its complemented derivative strain, SEΔfocA::focA, were constructed to confirm this phenotype. Although the lethal ability of focA mutants was similar to that of the parental SE in mice, it was isolated earlier from the liver and spleen than the parental SE. focA mutants induced higher levels of proinflammatory IL-12 and TNF-α compared with the parental SE and SEΔfocA::focA. focA mutants showed higher cytotoxicity and lower formate concentrations than SE and SEΔfocA::focA, whereas there was no change in pyroptosis, apoptosis and flagella formation ability. These current data suggest that the focA gene plays an important role in regulating intramacrophage Salmonella exiting and extraintestinal spread in mice, although the specific mechanism requires further in-depth studies.
format Online
Article
Text
id pubmed-9414335
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-94143352022-08-27 The Loss of focA Gene Increases the Ability of Salmonella Enteritidis to Exit from Macrophages and Boosts Early Extraintestinal Spread for Systemic Infection in a Mouse Model Gao, Ran Zhang, Jian Geng, Haoyu Wang, Yaonan Kang, Xilong Geng, Shizhong Jiao, Xin’an Barrow, Paul Microorganisms Article Salmonella Enteritidis (SE) can spread from the intestines to cause systemic infection, mainly involving macrophages. Intramacrophage Salmonella exits and reinfects neighboring cells, leading to severe disease. Salmonella genes involved in exiting from macrophages are not well understood or fully identified. A focA::Tn5 mutant was identified by an in vitro assay, with increased ability to exit from macrophages. A defined SEΔfocA mutant and its complemented derivative strain, SEΔfocA::focA, were constructed to confirm this phenotype. Although the lethal ability of focA mutants was similar to that of the parental SE in mice, it was isolated earlier from the liver and spleen than the parental SE. focA mutants induced higher levels of proinflammatory IL-12 and TNF-α compared with the parental SE and SEΔfocA::focA. focA mutants showed higher cytotoxicity and lower formate concentrations than SE and SEΔfocA::focA, whereas there was no change in pyroptosis, apoptosis and flagella formation ability. These current data suggest that the focA gene plays an important role in regulating intramacrophage Salmonella exiting and extraintestinal spread in mice, although the specific mechanism requires further in-depth studies. MDPI 2022-08-02 /pmc/articles/PMC9414335/ /pubmed/36013975 http://dx.doi.org/10.3390/microorganisms10081557 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gao, Ran
Zhang, Jian
Geng, Haoyu
Wang, Yaonan
Kang, Xilong
Geng, Shizhong
Jiao, Xin’an
Barrow, Paul
The Loss of focA Gene Increases the Ability of Salmonella Enteritidis to Exit from Macrophages and Boosts Early Extraintestinal Spread for Systemic Infection in a Mouse Model
title The Loss of focA Gene Increases the Ability of Salmonella Enteritidis to Exit from Macrophages and Boosts Early Extraintestinal Spread for Systemic Infection in a Mouse Model
title_full The Loss of focA Gene Increases the Ability of Salmonella Enteritidis to Exit from Macrophages and Boosts Early Extraintestinal Spread for Systemic Infection in a Mouse Model
title_fullStr The Loss of focA Gene Increases the Ability of Salmonella Enteritidis to Exit from Macrophages and Boosts Early Extraintestinal Spread for Systemic Infection in a Mouse Model
title_full_unstemmed The Loss of focA Gene Increases the Ability of Salmonella Enteritidis to Exit from Macrophages and Boosts Early Extraintestinal Spread for Systemic Infection in a Mouse Model
title_short The Loss of focA Gene Increases the Ability of Salmonella Enteritidis to Exit from Macrophages and Boosts Early Extraintestinal Spread for Systemic Infection in a Mouse Model
title_sort loss of foca gene increases the ability of salmonella enteritidis to exit from macrophages and boosts early extraintestinal spread for systemic infection in a mouse model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9414335/
https://www.ncbi.nlm.nih.gov/pubmed/36013975
http://dx.doi.org/10.3390/microorganisms10081557
work_keys_str_mv AT gaoran thelossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT zhangjian thelossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT genghaoyu thelossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT wangyaonan thelossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT kangxilong thelossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT gengshizhong thelossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT jiaoxinan thelossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT barrowpaul thelossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT gaoran lossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT zhangjian lossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT genghaoyu lossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT wangyaonan lossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT kangxilong lossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT gengshizhong lossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT jiaoxinan lossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel
AT barrowpaul lossoffocageneincreasestheabilityofsalmonellaenteritidistoexitfrommacrophagesandboostsearlyextraintestinalspreadforsystemicinfectioninamousemodel