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A Putative Bacterial ABC Transporter Circumvents the Essentiality of Signal Peptidase

The type I signal peptidase of Staphylococcus aureus, SpsB, is an attractive antibacterial target because it is essential for viability and extracellularly accessible. We synthesized compound 103, a novel arylomycin-derived inhibitor of SpsB with significant potency against various clinical S. aureu...

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Autores principales: Morisaki, J. Hiroshi, Smith, Peter A., Date, Shailesh V., Kajihara, Kimberly K., Truong, Chau Linda, Modrusan, Zora, Yan, Donghong, Kang, Jing, Xu, Min, Shah, Ishita M., Mintzer, Robert, Kofoed, Eric M., Cheung, Tommy K., Arnott, David, Koehler, Michael F. T., Heise, Christopher E., Brown, Eric J., Tan, Man-Wah, Hazenbos, Wouter L. W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5013292/
https://www.ncbi.nlm.nih.gov/pubmed/27601569
http://dx.doi.org/10.1128/mBio.00412-16
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author Morisaki, J. Hiroshi
Smith, Peter A.
Date, Shailesh V.
Kajihara, Kimberly K.
Truong, Chau Linda
Modrusan, Zora
Yan, Donghong
Kang, Jing
Xu, Min
Shah, Ishita M.
Mintzer, Robert
Kofoed, Eric M.
Cheung, Tommy K.
Arnott, David
Koehler, Michael F. T.
Heise, Christopher E.
Brown, Eric J.
Tan, Man-Wah
Hazenbos, Wouter L. W.
author_facet Morisaki, J. Hiroshi
Smith, Peter A.
Date, Shailesh V.
Kajihara, Kimberly K.
Truong, Chau Linda
Modrusan, Zora
Yan, Donghong
Kang, Jing
Xu, Min
Shah, Ishita M.
Mintzer, Robert
Kofoed, Eric M.
Cheung, Tommy K.
Arnott, David
Koehler, Michael F. T.
Heise, Christopher E.
Brown, Eric J.
Tan, Man-Wah
Hazenbos, Wouter L. W.
author_sort Morisaki, J. Hiroshi
collection PubMed
description The type I signal peptidase of Staphylococcus aureus, SpsB, is an attractive antibacterial target because it is essential for viability and extracellularly accessible. We synthesized compound 103, a novel arylomycin-derived inhibitor of SpsB with significant potency against various clinical S. aureus strains (MIC of ~1 µg/ml). The predominant clinical strain USA300 developed spontaneous resistance to compound 103 with high frequency, resulting from single point mutations inside or immediately upstream of cro/cI, a homolog of the lambda phage transcriptional repressor cro. These cro/cI mutations led to marked (>50-fold) overexpression of three genes encoding a putative ABC transporter. Overexpression of this ABC transporter was both necessary and sufficient for resistance and, notably, circumvented the essentiality of SpsB during in vitro culture. Mutation of its predicted ATPase gene abolished resistance, suggesting a possible role for active transport; in these bacteria, resistance to compound 103 occurred with low frequency and through mutations in spsB. Bacteria overexpressing the ABC transporter and lacking SpsB were capable of secreting a subset of proteins that are normally cleaved by SpsB and instead were cleaved at a site distinct from the canonical signal peptide. These bacteria secreted reduced levels of virulence-associated proteins and were unable to establish infection in mice. This study reveals the mechanism of resistance to a novel arylomycin derivative and demonstrates that the nominal essentiality of the S. aureus signal peptidase can be circumvented by the upregulation of a putative ABC transporter in vitro but not in vivo.
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spelling pubmed-50132922016-09-16 A Putative Bacterial ABC Transporter Circumvents the Essentiality of Signal Peptidase Morisaki, J. Hiroshi Smith, Peter A. Date, Shailesh V. Kajihara, Kimberly K. Truong, Chau Linda Modrusan, Zora Yan, Donghong Kang, Jing Xu, Min Shah, Ishita M. Mintzer, Robert Kofoed, Eric M. Cheung, Tommy K. Arnott, David Koehler, Michael F. T. Heise, Christopher E. Brown, Eric J. Tan, Man-Wah Hazenbos, Wouter L. W. mBio Research Article The type I signal peptidase of Staphylococcus aureus, SpsB, is an attractive antibacterial target because it is essential for viability and extracellularly accessible. We synthesized compound 103, a novel arylomycin-derived inhibitor of SpsB with significant potency against various clinical S. aureus strains (MIC of ~1 µg/ml). The predominant clinical strain USA300 developed spontaneous resistance to compound 103 with high frequency, resulting from single point mutations inside or immediately upstream of cro/cI, a homolog of the lambda phage transcriptional repressor cro. These cro/cI mutations led to marked (>50-fold) overexpression of three genes encoding a putative ABC transporter. Overexpression of this ABC transporter was both necessary and sufficient for resistance and, notably, circumvented the essentiality of SpsB during in vitro culture. Mutation of its predicted ATPase gene abolished resistance, suggesting a possible role for active transport; in these bacteria, resistance to compound 103 occurred with low frequency and through mutations in spsB. Bacteria overexpressing the ABC transporter and lacking SpsB were capable of secreting a subset of proteins that are normally cleaved by SpsB and instead were cleaved at a site distinct from the canonical signal peptide. These bacteria secreted reduced levels of virulence-associated proteins and were unable to establish infection in mice. This study reveals the mechanism of resistance to a novel arylomycin derivative and demonstrates that the nominal essentiality of the S. aureus signal peptidase can be circumvented by the upregulation of a putative ABC transporter in vitro but not in vivo. American Society for Microbiology 2016-09-06 /pmc/articles/PMC5013292/ /pubmed/27601569 http://dx.doi.org/10.1128/mBio.00412-16 Text en Copyright © 2016 Morisaki et al. http://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 (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Morisaki, J. Hiroshi
Smith, Peter A.
Date, Shailesh V.
Kajihara, Kimberly K.
Truong, Chau Linda
Modrusan, Zora
Yan, Donghong
Kang, Jing
Xu, Min
Shah, Ishita M.
Mintzer, Robert
Kofoed, Eric M.
Cheung, Tommy K.
Arnott, David
Koehler, Michael F. T.
Heise, Christopher E.
Brown, Eric J.
Tan, Man-Wah
Hazenbos, Wouter L. W.
A Putative Bacterial ABC Transporter Circumvents the Essentiality of Signal Peptidase
title A Putative Bacterial ABC Transporter Circumvents the Essentiality of Signal Peptidase
title_full A Putative Bacterial ABC Transporter Circumvents the Essentiality of Signal Peptidase
title_fullStr A Putative Bacterial ABC Transporter Circumvents the Essentiality of Signal Peptidase
title_full_unstemmed A Putative Bacterial ABC Transporter Circumvents the Essentiality of Signal Peptidase
title_short A Putative Bacterial ABC Transporter Circumvents the Essentiality of Signal Peptidase
title_sort putative bacterial abc transporter circumvents the essentiality of signal peptidase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5013292/
https://www.ncbi.nlm.nih.gov/pubmed/27601569
http://dx.doi.org/10.1128/mBio.00412-16
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