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The T3SS of Shigella: Expression, Structure, Function, and Role in Vacuole Escape

Shigella spp. are one of the leading causes of infectious diarrheal diseases. They are Escherichia coli pathovars that are characterized by the harboring of a large plasmid that encodes most virulence genes, including a type III secretion system (T3SS). The archetypal element of the T3SS is the inje...

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Autores principales: Bajunaid, Waad, Haidar-Ahmad, Nathaline, Kottarampatel, Anwer Hasil, Ourida Manigat, France, Silué, Navoun, F. Tchagang, Caetanie, Tomaro, Kyle, Campbell-Valois, François-Xavier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7762205/
https://www.ncbi.nlm.nih.gov/pubmed/33291504
http://dx.doi.org/10.3390/microorganisms8121933
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author Bajunaid, Waad
Haidar-Ahmad, Nathaline
Kottarampatel, Anwer Hasil
Ourida Manigat, France
Silué, Navoun
F. Tchagang, Caetanie
Tomaro, Kyle
Campbell-Valois, François-Xavier
author_facet Bajunaid, Waad
Haidar-Ahmad, Nathaline
Kottarampatel, Anwer Hasil
Ourida Manigat, France
Silué, Navoun
F. Tchagang, Caetanie
Tomaro, Kyle
Campbell-Valois, François-Xavier
author_sort Bajunaid, Waad
collection PubMed
description Shigella spp. are one of the leading causes of infectious diarrheal diseases. They are Escherichia coli pathovars that are characterized by the harboring of a large plasmid that encodes most virulence genes, including a type III secretion system (T3SS). The archetypal element of the T3SS is the injectisome, a syringe-like nanomachine composed of approximately 20 proteins, spanning both bacterial membranes and the cell wall, and topped with a needle. Upon contact of the tip of the needle with the plasma membrane, the injectisome secretes its protein substrates into host cells. Some of these substrates act as translocators or effectors whose functions are key to the invasion of the cytosol and the cell-to-cell spread characterizing the lifestyle of Shigella spp. Here, we review the structure, assembly, function, and methods to measure the activity of the injectisome with a focus on Shigella, but complemented with data from other T3SS if required. We also present the regulatory cascade that controls the expression of T3SS genes in Shigella. Finally, we describe the function of translocators and effectors during cell-to-cell spread, particularly during escape from the vacuole, a key element of Shigella’s pathogenesis that has yet to reveal all of its secrets.
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spelling pubmed-77622052020-12-26 The T3SS of Shigella: Expression, Structure, Function, and Role in Vacuole Escape Bajunaid, Waad Haidar-Ahmad, Nathaline Kottarampatel, Anwer Hasil Ourida Manigat, France Silué, Navoun F. Tchagang, Caetanie Tomaro, Kyle Campbell-Valois, François-Xavier Microorganisms Review Shigella spp. are one of the leading causes of infectious diarrheal diseases. They are Escherichia coli pathovars that are characterized by the harboring of a large plasmid that encodes most virulence genes, including a type III secretion system (T3SS). The archetypal element of the T3SS is the injectisome, a syringe-like nanomachine composed of approximately 20 proteins, spanning both bacterial membranes and the cell wall, and topped with a needle. Upon contact of the tip of the needle with the plasma membrane, the injectisome secretes its protein substrates into host cells. Some of these substrates act as translocators or effectors whose functions are key to the invasion of the cytosol and the cell-to-cell spread characterizing the lifestyle of Shigella spp. Here, we review the structure, assembly, function, and methods to measure the activity of the injectisome with a focus on Shigella, but complemented with data from other T3SS if required. We also present the regulatory cascade that controls the expression of T3SS genes in Shigella. Finally, we describe the function of translocators and effectors during cell-to-cell spread, particularly during escape from the vacuole, a key element of Shigella’s pathogenesis that has yet to reveal all of its secrets. MDPI 2020-12-05 /pmc/articles/PMC7762205/ /pubmed/33291504 http://dx.doi.org/10.3390/microorganisms8121933 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Bajunaid, Waad
Haidar-Ahmad, Nathaline
Kottarampatel, Anwer Hasil
Ourida Manigat, France
Silué, Navoun
F. Tchagang, Caetanie
Tomaro, Kyle
Campbell-Valois, François-Xavier
The T3SS of Shigella: Expression, Structure, Function, and Role in Vacuole Escape
title The T3SS of Shigella: Expression, Structure, Function, and Role in Vacuole Escape
title_full The T3SS of Shigella: Expression, Structure, Function, and Role in Vacuole Escape
title_fullStr The T3SS of Shigella: Expression, Structure, Function, and Role in Vacuole Escape
title_full_unstemmed The T3SS of Shigella: Expression, Structure, Function, and Role in Vacuole Escape
title_short The T3SS of Shigella: Expression, Structure, Function, and Role in Vacuole Escape
title_sort t3ss of shigella: expression, structure, function, and role in vacuole escape
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7762205/
https://www.ncbi.nlm.nih.gov/pubmed/33291504
http://dx.doi.org/10.3390/microorganisms8121933
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