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A Tripartite Efflux System Affects Flagellum Stability in Helicobacter pylori

Helicobacter pylori uses a cluster of polar, sheathed flagella for swimming motility. A search for homologs of H. pylori proteins that were conserved in Helicobacter species that possess flagellar sheaths but were underrepresented in Helicobacter species with unsheathed flagella identified several c...

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Autores principales: Gibson, Katherine, Chu, Joshua K., Zhu, Shiwei, Nguyen, Doreen, Mrázek, Jan, Liu, Jun, Hoover, Timothy R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570263/
https://www.ncbi.nlm.nih.gov/pubmed/36232924
http://dx.doi.org/10.3390/ijms231911609
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author Gibson, Katherine
Chu, Joshua K.
Zhu, Shiwei
Nguyen, Doreen
Mrázek, Jan
Liu, Jun
Hoover, Timothy R.
author_facet Gibson, Katherine
Chu, Joshua K.
Zhu, Shiwei
Nguyen, Doreen
Mrázek, Jan
Liu, Jun
Hoover, Timothy R.
author_sort Gibson, Katherine
collection PubMed
description Helicobacter pylori uses a cluster of polar, sheathed flagella for swimming motility. A search for homologs of H. pylori proteins that were conserved in Helicobacter species that possess flagellar sheaths but were underrepresented in Helicobacter species with unsheathed flagella identified several candidate proteins. Four of the identified proteins are predicted to form part of a tripartite efflux system that includes two transmembrane domains of an ABC transporter (HP1487 and HP1486), a periplasmic membrane fusion protein (HP1488), and a TolC-like outer membrane efflux protein (HP1489). Deleting hp1486/hp1487 and hp1489 homologs in H. pylori B128 resulted in reductions in motility and the number of flagella per cell. Cryo-electron tomography studies of intact motors of the Δhp1489 and Δhp1486/hp1487 mutants revealed many of the cells contained a potential flagellum disassembly product consisting of decorated L and P rings, which has been reported in other bacteria. Aberrant motors lacking specific components, including a cage-like structure that surrounds the motor, were also observed in the Δhp1489 mutant. These findings suggest a role for the H. pylori HP1486-HP1489 tripartite efflux system in flagellum stability. Three independent variants of the Δhp1486/hp1487 mutant with enhanced motility were isolated. All three motile variants had the same frameshift mutation in fliL, suggesting a role for FliL in flagellum disassembly.
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spelling pubmed-95702632022-10-17 A Tripartite Efflux System Affects Flagellum Stability in Helicobacter pylori Gibson, Katherine Chu, Joshua K. Zhu, Shiwei Nguyen, Doreen Mrázek, Jan Liu, Jun Hoover, Timothy R. Int J Mol Sci Article Helicobacter pylori uses a cluster of polar, sheathed flagella for swimming motility. A search for homologs of H. pylori proteins that were conserved in Helicobacter species that possess flagellar sheaths but were underrepresented in Helicobacter species with unsheathed flagella identified several candidate proteins. Four of the identified proteins are predicted to form part of a tripartite efflux system that includes two transmembrane domains of an ABC transporter (HP1487 and HP1486), a periplasmic membrane fusion protein (HP1488), and a TolC-like outer membrane efflux protein (HP1489). Deleting hp1486/hp1487 and hp1489 homologs in H. pylori B128 resulted in reductions in motility and the number of flagella per cell. Cryo-electron tomography studies of intact motors of the Δhp1489 and Δhp1486/hp1487 mutants revealed many of the cells contained a potential flagellum disassembly product consisting of decorated L and P rings, which has been reported in other bacteria. Aberrant motors lacking specific components, including a cage-like structure that surrounds the motor, were also observed in the Δhp1489 mutant. These findings suggest a role for the H. pylori HP1486-HP1489 tripartite efflux system in flagellum stability. Three independent variants of the Δhp1486/hp1487 mutant with enhanced motility were isolated. All three motile variants had the same frameshift mutation in fliL, suggesting a role for FliL in flagellum disassembly. MDPI 2022-10-01 /pmc/articles/PMC9570263/ /pubmed/36232924 http://dx.doi.org/10.3390/ijms231911609 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
Gibson, Katherine
Chu, Joshua K.
Zhu, Shiwei
Nguyen, Doreen
Mrázek, Jan
Liu, Jun
Hoover, Timothy R.
A Tripartite Efflux System Affects Flagellum Stability in Helicobacter pylori
title A Tripartite Efflux System Affects Flagellum Stability in Helicobacter pylori
title_full A Tripartite Efflux System Affects Flagellum Stability in Helicobacter pylori
title_fullStr A Tripartite Efflux System Affects Flagellum Stability in Helicobacter pylori
title_full_unstemmed A Tripartite Efflux System Affects Flagellum Stability in Helicobacter pylori
title_short A Tripartite Efflux System Affects Flagellum Stability in Helicobacter pylori
title_sort tripartite efflux system affects flagellum stability in helicobacter pylori
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570263/
https://www.ncbi.nlm.nih.gov/pubmed/36232924
http://dx.doi.org/10.3390/ijms231911609
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