Aureusimines in Staphylococcus aureus are not involved in virulence.

Recently, dipeptide aureusimines were reported to activate expression of staphylococcal virulence genes, such as alpha-hemolysin, and increase S. aureus virulence. Surprisingly, most of the virulence genes affected by aureusimines form part of the regulon of the SaeRS two component system (TCS), rai...

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Main Authors: Fei Sun, Hoonsik Cho, Do-Won Jeong, Chunling Li, Chuan He, Taeok Bae
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-12-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3012096?pdf=render
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author Fei Sun
Hoonsik Cho
Do-Won Jeong
Chunling Li
Chuan He
Taeok Bae
author_facet Fei Sun
Hoonsik Cho
Do-Won Jeong
Chunling Li
Chuan He
Taeok Bae
author_sort Fei Sun
collection DOAJ
description Recently, dipeptide aureusimines were reported to activate expression of staphylococcal virulence genes, such as alpha-hemolysin, and increase S. aureus virulence. Surprisingly, most of the virulence genes affected by aureusimines form part of the regulon of the SaeRS two component system (TCS), raising the possibility that SaeRS might be directly or indirectly involved in the aureusimine-dependent signaling process.Using HPLC analyses, we confirmed that a transposon mutant of ausA, the gene encoding the aureusimine dipeptide synthesis enzyme, does not produce dipeptides. However, the transposon mutant showed normal hemolysis activity and alpha-hemolysin/SaeP production. Furthermore, the P1 promoter of the sae operon, one of the targets of the SaeRS TCS, showed normal transcription activity. Moreover, in contrast to the original report, the ausA transposon mutant did not exhibit attenuated virulence in an animal infection model. DNA sequencing revealed that the ausA deletion mutant used in the original study has an 83 nt-duplication in saeS. Hemolysis activity of the original mutant was restored by a plasmid carrying the sae operon. A mutant of the sae operon showed elevated resistance to chloramphenicol and erythromycin, two antibiotics widely used during staphylococcal mutagenesis. At 43°C in the presence of erythromycin and aeration, the conditions typically employed for staphylococcal mutagenesis, an saeR transposon mutant grew much faster than a control mutant and the saeR mutant was highly enriched in a mixed culture experiment.Our results show that the previously reported roles of aureusimines in staphylococcal gene regulation and virulence were due to an unintended mutation in saeS, which was likely selected due to elevated resistance of the mutant to environmental stresses. Thus, there is no evidence indicating that the dipeptide aureusimines play a role in sae-mediated virulence factor production or contribute to staphylococcal virulence.
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spelling doaj.art-1c5372913f4f49c5a14a2eb1077b53322022-12-22T01:11:56ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-12-01512e1570310.1371/journal.pone.0015703Aureusimines in Staphylococcus aureus are not involved in virulence.Fei SunHoonsik ChoDo-Won JeongChunling LiChuan HeTaeok BaeRecently, dipeptide aureusimines were reported to activate expression of staphylococcal virulence genes, such as alpha-hemolysin, and increase S. aureus virulence. Surprisingly, most of the virulence genes affected by aureusimines form part of the regulon of the SaeRS two component system (TCS), raising the possibility that SaeRS might be directly or indirectly involved in the aureusimine-dependent signaling process.Using HPLC analyses, we confirmed that a transposon mutant of ausA, the gene encoding the aureusimine dipeptide synthesis enzyme, does not produce dipeptides. However, the transposon mutant showed normal hemolysis activity and alpha-hemolysin/SaeP production. Furthermore, the P1 promoter of the sae operon, one of the targets of the SaeRS TCS, showed normal transcription activity. Moreover, in contrast to the original report, the ausA transposon mutant did not exhibit attenuated virulence in an animal infection model. DNA sequencing revealed that the ausA deletion mutant used in the original study has an 83 nt-duplication in saeS. Hemolysis activity of the original mutant was restored by a plasmid carrying the sae operon. A mutant of the sae operon showed elevated resistance to chloramphenicol and erythromycin, two antibiotics widely used during staphylococcal mutagenesis. At 43°C in the presence of erythromycin and aeration, the conditions typically employed for staphylococcal mutagenesis, an saeR transposon mutant grew much faster than a control mutant and the saeR mutant was highly enriched in a mixed culture experiment.Our results show that the previously reported roles of aureusimines in staphylococcal gene regulation and virulence were due to an unintended mutation in saeS, which was likely selected due to elevated resistance of the mutant to environmental stresses. Thus, there is no evidence indicating that the dipeptide aureusimines play a role in sae-mediated virulence factor production or contribute to staphylococcal virulence.http://europepmc.org/articles/PMC3012096?pdf=render
spellingShingle Fei Sun
Hoonsik Cho
Do-Won Jeong
Chunling Li
Chuan He
Taeok Bae
Aureusimines in Staphylococcus aureus are not involved in virulence.
PLoS ONE
title Aureusimines in Staphylococcus aureus are not involved in virulence.
title_full Aureusimines in Staphylococcus aureus are not involved in virulence.
title_fullStr Aureusimines in Staphylococcus aureus are not involved in virulence.
title_full_unstemmed Aureusimines in Staphylococcus aureus are not involved in virulence.
title_short Aureusimines in Staphylococcus aureus are not involved in virulence.
title_sort aureusimines in staphylococcus aureus are not involved in virulence
url http://europepmc.org/articles/PMC3012096?pdf=render
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AT dowonjeong aureusiminesinstaphylococcusaureusarenotinvolvedinvirulence
AT chunlingli aureusiminesinstaphylococcusaureusarenotinvolvedinvirulence
AT chuanhe aureusiminesinstaphylococcusaureusarenotinvolvedinvirulence
AT taeokbae aureusiminesinstaphylococcusaureusarenotinvolvedinvirulence