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Structure of the Large Extracellular Loop of FtsX and Its Interaction with the Essential Peptidoglycan Hydrolase PcsB in Streptococcus pneumoniae

Streptococcus pneumoniae is a leading killer of infants and immunocompromised adults and has become increasingly resistant to major antibiotics. Therefore, the development of new antibiotic strategies is desperately needed. Targeting bacterial cell division is one such strategy, specifically by targ...

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Autores principales: Rued, Britta E., Alcorlo, Martín, Edmonds, Katherine A., Martínez-Caballero, Siseth, Straume, Daniel, Fu, Yue, Bruce, Kevin E., Wu, Hongwei, Håvarstein, Leiv S., Hermoso, Juan A., Winkler, Malcolm E., Giedroc, David P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6355983/
https://www.ncbi.nlm.nih.gov/pubmed/30696736
http://dx.doi.org/10.1128/mBio.02622-18
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author Rued, Britta E.
Alcorlo, Martín
Edmonds, Katherine A.
Martínez-Caballero, Siseth
Straume, Daniel
Fu, Yue
Bruce, Kevin E.
Wu, Hongwei
Håvarstein, Leiv S.
Hermoso, Juan A.
Winkler, Malcolm E.
Giedroc, David P.
author_facet Rued, Britta E.
Alcorlo, Martín
Edmonds, Katherine A.
Martínez-Caballero, Siseth
Straume, Daniel
Fu, Yue
Bruce, Kevin E.
Wu, Hongwei
Håvarstein, Leiv S.
Hermoso, Juan A.
Winkler, Malcolm E.
Giedroc, David P.
author_sort Rued, Britta E.
collection PubMed
description Streptococcus pneumoniae is a leading killer of infants and immunocompromised adults and has become increasingly resistant to major antibiotics. Therefore, the development of new antibiotic strategies is desperately needed. Targeting bacterial cell division is one such strategy, specifically by targeting proteins that are essential for the synthesis and breakdown of peptidoglycan. One complex important to this process is FtsEX. FtsEX comprises a cell division-regulating integral membrane protein (FtsX) and a cytoplasmic ATPase (FtsE) that resembles an ATP-binding cassette (ABC) transporter. Here, we present nuclear magnetic resonance (NMR) solution structural and crystallographic models of the large extracellular domain of FtsX, denoted extracellular loop 1 (ECL1). The structure of ECL1 reveals an upper extended β-hairpin and a lower α-helical lobe, each extending from a mixed α-β core. The helical lobe mediates a physical interaction with the peptidoglycan hydrolase PcsB via the coiled-coil domain of PcsB (PscB(CC)). Characterization of S. pneumoniae strain D39-derived strains harboring mutations in the α-helical lobe shows that this subdomain is essential for cell viability and required for proper cell division of S. pneumoniae.
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spelling pubmed-63559832019-02-01 Structure of the Large Extracellular Loop of FtsX and Its Interaction with the Essential Peptidoglycan Hydrolase PcsB in Streptococcus pneumoniae Rued, Britta E. Alcorlo, Martín Edmonds, Katherine A. Martínez-Caballero, Siseth Straume, Daniel Fu, Yue Bruce, Kevin E. Wu, Hongwei Håvarstein, Leiv S. Hermoso, Juan A. Winkler, Malcolm E. Giedroc, David P. mBio Research Article Streptococcus pneumoniae is a leading killer of infants and immunocompromised adults and has become increasingly resistant to major antibiotics. Therefore, the development of new antibiotic strategies is desperately needed. Targeting bacterial cell division is one such strategy, specifically by targeting proteins that are essential for the synthesis and breakdown of peptidoglycan. One complex important to this process is FtsEX. FtsEX comprises a cell division-regulating integral membrane protein (FtsX) and a cytoplasmic ATPase (FtsE) that resembles an ATP-binding cassette (ABC) transporter. Here, we present nuclear magnetic resonance (NMR) solution structural and crystallographic models of the large extracellular domain of FtsX, denoted extracellular loop 1 (ECL1). The structure of ECL1 reveals an upper extended β-hairpin and a lower α-helical lobe, each extending from a mixed α-β core. The helical lobe mediates a physical interaction with the peptidoglycan hydrolase PcsB via the coiled-coil domain of PcsB (PscB(CC)). Characterization of S. pneumoniae strain D39-derived strains harboring mutations in the α-helical lobe shows that this subdomain is essential for cell viability and required for proper cell division of S. pneumoniae. American Society for Microbiology 2019-01-29 /pmc/articles/PMC6355983/ /pubmed/30696736 http://dx.doi.org/10.1128/mBio.02622-18 Text en Copyright © 2019 Rued et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Rued, Britta E.
Alcorlo, Martín
Edmonds, Katherine A.
Martínez-Caballero, Siseth
Straume, Daniel
Fu, Yue
Bruce, Kevin E.
Wu, Hongwei
Håvarstein, Leiv S.
Hermoso, Juan A.
Winkler, Malcolm E.
Giedroc, David P.
Structure of the Large Extracellular Loop of FtsX and Its Interaction with the Essential Peptidoglycan Hydrolase PcsB in Streptococcus pneumoniae
title Structure of the Large Extracellular Loop of FtsX and Its Interaction with the Essential Peptidoglycan Hydrolase PcsB in Streptococcus pneumoniae
title_full Structure of the Large Extracellular Loop of FtsX and Its Interaction with the Essential Peptidoglycan Hydrolase PcsB in Streptococcus pneumoniae
title_fullStr Structure of the Large Extracellular Loop of FtsX and Its Interaction with the Essential Peptidoglycan Hydrolase PcsB in Streptococcus pneumoniae
title_full_unstemmed Structure of the Large Extracellular Loop of FtsX and Its Interaction with the Essential Peptidoglycan Hydrolase PcsB in Streptococcus pneumoniae
title_short Structure of the Large Extracellular Loop of FtsX and Its Interaction with the Essential Peptidoglycan Hydrolase PcsB in Streptococcus pneumoniae
title_sort structure of the large extracellular loop of ftsx and its interaction with the essential peptidoglycan hydrolase pcsb in streptococcus pneumoniae
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6355983/
https://www.ncbi.nlm.nih.gov/pubmed/30696736
http://dx.doi.org/10.1128/mBio.02622-18
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