Glutathionylation of Yersinia pestis LcrV and Its Effects on Plague Pathogenesis
Glutathionylation, the formation of reversible mixed disulfides between glutathione and protein cysteine residues, is a posttranslational modification previously observed for intracellular proteins of bacteria. Here we show that Yersinia pestis LcrV, a secreted protein capping the type III secretion...
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2017-05-01
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doaj-7f4db352cea44e98ae0fc668e5218c7a2021-07-02T06:42:04ZengAmerican Society for MicrobiologymBio2150-75112017-05-0183e00646-1710.1128/mBio.00646-17Glutathionylation of Yersinia pestis LcrV and Its Effects on Plague PathogenesisAnthony MitchellChristina TamDerek ElliThomas CharltonPatrick Osei-OwusuFarbod FazlollahiKym F. FaullOlaf SchneewindSamuel I. MillerGlutathionylation, the formation of reversible mixed disulfides between glutathione and protein cysteine residues, is a posttranslational modification previously observed for intracellular proteins of bacteria. Here we show that Yersinia pestis LcrV, a secreted protein capping the type III secretion machine, is glutathionylated at Cys273 and that this modification promotes association with host ribosomal protein S3 (RPS3), moderates Y. pestis type III effector transport and killing of macrophages, and enhances bubonic plague pathogenesis in mice and rats. Secreted LcrV was purified and analyzed by mass spectrometry to reveal glutathionylation, a modification that is abolished by the codon substitution Cys273Ala in lcrV. Moreover, the lcrVC273A mutation enhanced the survival of animals in models of bubonic plague. Investigating the molecular mechanism responsible for these virulence attributes, we identified macrophage RPS3 as a ligand of LcrV, an association that is perturbed by the Cys273Ala substitution. Furthermore, macrophages infected by the lcrVC273A variant displayed accelerated apoptotic death and diminished proinflammatory cytokine release. Deletion of gshB, which encodes glutathione synthetase of Y. pestis, resulted in undetectable levels of intracellular glutathione, and we used a Y. pestis ΔgshB mutant to characterize the biochemical pathway of LcrV glutathionylation, establishing that LcrV is modified after its transport to the type III needle via disulfide bond formation with extracellular oxidized glutathione.http://mbio.asm.org/cgi/content/full/8/3/e00646-17 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Anthony Mitchell Christina Tam Derek Elli Thomas Charlton Patrick Osei-Owusu Farbod Fazlollahi Kym F. Faull Olaf Schneewind Samuel I. Miller |
spellingShingle |
Anthony Mitchell Christina Tam Derek Elli Thomas Charlton Patrick Osei-Owusu Farbod Fazlollahi Kym F. Faull Olaf Schneewind Samuel I. Miller Glutathionylation of Yersinia pestis LcrV and Its Effects on Plague Pathogenesis mBio |
author_facet |
Anthony Mitchell Christina Tam Derek Elli Thomas Charlton Patrick Osei-Owusu Farbod Fazlollahi Kym F. Faull Olaf Schneewind Samuel I. Miller |
author_sort |
Anthony Mitchell |
title |
Glutathionylation of Yersinia pestis LcrV and Its Effects on Plague Pathogenesis |
title_short |
Glutathionylation of Yersinia pestis LcrV and Its Effects on Plague Pathogenesis |
title_full |
Glutathionylation of Yersinia pestis LcrV and Its Effects on Plague Pathogenesis |
title_fullStr |
Glutathionylation of Yersinia pestis LcrV and Its Effects on Plague Pathogenesis |
title_full_unstemmed |
Glutathionylation of Yersinia pestis LcrV and Its Effects on Plague Pathogenesis |
title_sort |
glutathionylation of yersinia pestis lcrv and its effects on plague pathogenesis |
publisher |
American Society for Microbiology |
series |
mBio |
issn |
2150-7511 |
publishDate |
2017-05-01 |
description |
Glutathionylation, the formation of reversible mixed disulfides between glutathione and protein cysteine residues, is a posttranslational modification previously observed for intracellular proteins of bacteria. Here we show that Yersinia pestis LcrV, a secreted protein capping the type III secretion machine, is glutathionylated at Cys273 and that this modification promotes association with host ribosomal protein S3 (RPS3), moderates Y. pestis type III effector transport and killing of macrophages, and enhances bubonic plague pathogenesis in mice and rats. Secreted LcrV was purified and analyzed by mass spectrometry to reveal glutathionylation, a modification that is abolished by the codon substitution Cys273Ala in lcrV. Moreover, the lcrVC273A mutation enhanced the survival of animals in models of bubonic plague. Investigating the molecular mechanism responsible for these virulence attributes, we identified macrophage RPS3 as a ligand of LcrV, an association that is perturbed by the Cys273Ala substitution. Furthermore, macrophages infected by the lcrVC273A variant displayed accelerated apoptotic death and diminished proinflammatory cytokine release. Deletion of gshB, which encodes glutathione synthetase of Y. pestis, resulted in undetectable levels of intracellular glutathione, and we used a Y. pestis ΔgshB mutant to characterize the biochemical pathway of LcrV glutathionylation, establishing that LcrV is modified after its transport to the type III needle via disulfide bond formation with extracellular oxidized glutathione. |
url |
http://mbio.asm.org/cgi/content/full/8/3/e00646-17 |
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