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Cupric Yersiniabactin Is a Virulence-Associated Superoxide Dismutase Mimic

[Image: see text] Many Gram-negative bacteria interact with extracellular metal ions by expressing one or more siderophore types. Among these, the virulence-associated siderophore yersiniabactin (Ybt) is an avid copper chelator, forming stable cupric (Cu(II)-Ybt) complexes that are detectable in inf...

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Autores principales: Chaturvedi, Kaveri S., Hung, Chia S., Giblin, Daryl E., Urushidani, Saki, Austin, Anthony M., Dinauer, Mary C., Henderson, Jeffrey P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2013
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3934373/
https://www.ncbi.nlm.nih.gov/pubmed/24283977
http://dx.doi.org/10.1021/cb400658k
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author Chaturvedi, Kaveri S.
Hung, Chia S.
Giblin, Daryl E.
Urushidani, Saki
Austin, Anthony M.
Dinauer, Mary C.
Henderson, Jeffrey P.
author_facet Chaturvedi, Kaveri S.
Hung, Chia S.
Giblin, Daryl E.
Urushidani, Saki
Austin, Anthony M.
Dinauer, Mary C.
Henderson, Jeffrey P.
author_sort Chaturvedi, Kaveri S.
collection PubMed
description [Image: see text] Many Gram-negative bacteria interact with extracellular metal ions by expressing one or more siderophore types. Among these, the virulence-associated siderophore yersiniabactin (Ybt) is an avid copper chelator, forming stable cupric (Cu(II)-Ybt) complexes that are detectable in infected patients. Here we show that Ybt-expressing E. coli are protected from intracellular killing within copper-replete phagocytic cells. This survival advantage is highly dependent upon the phagocyte respiratory burst, during which superoxide is generated by the NADPH oxidase complex. Chemical fractionation links this phenotype to a previously unappreciated superoxide dismutase (SOD)-like activity of Cu(II)-Ybt. Unlike previously described synthetic copper-salicylate (Cu(II)-SA) SOD mimics, the salicylate-based natural product Cu(II)-Ybt retains catalytic activity at physiologically plausible protein concentrations. These results reveal a new virulence-associated adaptation based upon spontaneous assembly of a non-protein catalyst.
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spelling pubmed-39343732014-02-25 Cupric Yersiniabactin Is a Virulence-Associated Superoxide Dismutase Mimic Chaturvedi, Kaveri S. Hung, Chia S. Giblin, Daryl E. Urushidani, Saki Austin, Anthony M. Dinauer, Mary C. Henderson, Jeffrey P. ACS Chem Biol [Image: see text] Many Gram-negative bacteria interact with extracellular metal ions by expressing one or more siderophore types. Among these, the virulence-associated siderophore yersiniabactin (Ybt) is an avid copper chelator, forming stable cupric (Cu(II)-Ybt) complexes that are detectable in infected patients. Here we show that Ybt-expressing E. coli are protected from intracellular killing within copper-replete phagocytic cells. This survival advantage is highly dependent upon the phagocyte respiratory burst, during which superoxide is generated by the NADPH oxidase complex. Chemical fractionation links this phenotype to a previously unappreciated superoxide dismutase (SOD)-like activity of Cu(II)-Ybt. Unlike previously described synthetic copper-salicylate (Cu(II)-SA) SOD mimics, the salicylate-based natural product Cu(II)-Ybt retains catalytic activity at physiologically plausible protein concentrations. These results reveal a new virulence-associated adaptation based upon spontaneous assembly of a non-protein catalyst. American Chemical Society 2013-11-27 2014-02-21 /pmc/articles/PMC3934373/ /pubmed/24283977 http://dx.doi.org/10.1021/cb400658k Text en Copyright © 2013 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Chaturvedi, Kaveri S.
Hung, Chia S.
Giblin, Daryl E.
Urushidani, Saki
Austin, Anthony M.
Dinauer, Mary C.
Henderson, Jeffrey P.
Cupric Yersiniabactin Is a Virulence-Associated Superoxide Dismutase Mimic
title Cupric Yersiniabactin Is a Virulence-Associated Superoxide Dismutase Mimic
title_full Cupric Yersiniabactin Is a Virulence-Associated Superoxide Dismutase Mimic
title_fullStr Cupric Yersiniabactin Is a Virulence-Associated Superoxide Dismutase Mimic
title_full_unstemmed Cupric Yersiniabactin Is a Virulence-Associated Superoxide Dismutase Mimic
title_short Cupric Yersiniabactin Is a Virulence-Associated Superoxide Dismutase Mimic
title_sort cupric yersiniabactin is a virulence-associated superoxide dismutase mimic
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3934373/
https://www.ncbi.nlm.nih.gov/pubmed/24283977
http://dx.doi.org/10.1021/cb400658k
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