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NAD(+)-Glycohydrolase Promotes Intracellular Survival of Group A Streptococcus

A global increase in invasive infections due to group A Streptococcus (S. pyogenes or GAS) has been observed since the 1980s, associated with emergence of a clonal group of strains of the M1T1 serotype. Among other virulence attributes, the M1T1 clone secretes NAD(+)-glycohydrolase (NADase). When GA...

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Autores principales: Sharma, Onkar, O’Seaghdha, Maghnus, Velarde, Jorge J., Wessels, Michael R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4777570/
https://www.ncbi.nlm.nih.gov/pubmed/26938870
http://dx.doi.org/10.1371/journal.ppat.1005468
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author Sharma, Onkar
O’Seaghdha, Maghnus
Velarde, Jorge J.
Wessels, Michael R.
author_facet Sharma, Onkar
O’Seaghdha, Maghnus
Velarde, Jorge J.
Wessels, Michael R.
author_sort Sharma, Onkar
collection PubMed
description A global increase in invasive infections due to group A Streptococcus (S. pyogenes or GAS) has been observed since the 1980s, associated with emergence of a clonal group of strains of the M1T1 serotype. Among other virulence attributes, the M1T1 clone secretes NAD(+)-glycohydrolase (NADase). When GAS binds to epithelial cells in vitro, NADase is translocated into the cytosol in a process mediated by streptolysin O (SLO), and expression of these two toxins is associated with enhanced GAS intracellular survival. Because SLO is required for NADase translocation, it has been difficult to distinguish pathogenic effects of NADase from those of SLO. To resolve the effects of the two proteins, we made use of anthrax toxin as an alternative means to deliver NADase to host cells, independently of SLO. We developed a novel method for purification of enzymatically active NADase fused to an amino-terminal fragment of anthrax toxin lethal factor (LFn-NADase) that exploits the avid, reversible binding of NADase to its endogenous inhibitor. LFn-NADase was translocated across a synthetic lipid bilayer in vitro in the presence of anthrax toxin protective antigen in a pH-dependent manner. Exposure of human oropharyngeal keratinocytes to LFn-NADase in the presence of protective antigen resulted in cytosolic delivery of NADase activity, inhibition of protein synthesis, and cell death, whereas a similar construct of an enzymatically inactive point mutant had no effect. Anthrax toxin-mediated delivery of NADase in an amount comparable to that observed during in vitro infection with live GAS rescued the defective intracellular survival of NADase-deficient GAS and increased the survival of SLO-deficient GAS. Confocal microscopy demonstrated that delivery of LFn-NADase prevented intracellular trafficking of NADase-deficient GAS to lysosomes. We conclude that NADase mediates cytotoxicity and promotes intracellular survival of GAS in host cells.
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spelling pubmed-47775702016-03-10 NAD(+)-Glycohydrolase Promotes Intracellular Survival of Group A Streptococcus Sharma, Onkar O’Seaghdha, Maghnus Velarde, Jorge J. Wessels, Michael R. PLoS Pathog Research Article A global increase in invasive infections due to group A Streptococcus (S. pyogenes or GAS) has been observed since the 1980s, associated with emergence of a clonal group of strains of the M1T1 serotype. Among other virulence attributes, the M1T1 clone secretes NAD(+)-glycohydrolase (NADase). When GAS binds to epithelial cells in vitro, NADase is translocated into the cytosol in a process mediated by streptolysin O (SLO), and expression of these two toxins is associated with enhanced GAS intracellular survival. Because SLO is required for NADase translocation, it has been difficult to distinguish pathogenic effects of NADase from those of SLO. To resolve the effects of the two proteins, we made use of anthrax toxin as an alternative means to deliver NADase to host cells, independently of SLO. We developed a novel method for purification of enzymatically active NADase fused to an amino-terminal fragment of anthrax toxin lethal factor (LFn-NADase) that exploits the avid, reversible binding of NADase to its endogenous inhibitor. LFn-NADase was translocated across a synthetic lipid bilayer in vitro in the presence of anthrax toxin protective antigen in a pH-dependent manner. Exposure of human oropharyngeal keratinocytes to LFn-NADase in the presence of protective antigen resulted in cytosolic delivery of NADase activity, inhibition of protein synthesis, and cell death, whereas a similar construct of an enzymatically inactive point mutant had no effect. Anthrax toxin-mediated delivery of NADase in an amount comparable to that observed during in vitro infection with live GAS rescued the defective intracellular survival of NADase-deficient GAS and increased the survival of SLO-deficient GAS. Confocal microscopy demonstrated that delivery of LFn-NADase prevented intracellular trafficking of NADase-deficient GAS to lysosomes. We conclude that NADase mediates cytotoxicity and promotes intracellular survival of GAS in host cells. Public Library of Science 2016-03-03 /pmc/articles/PMC4777570/ /pubmed/26938870 http://dx.doi.org/10.1371/journal.ppat.1005468 Text en © 2016 Sharma et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sharma, Onkar
O’Seaghdha, Maghnus
Velarde, Jorge J.
Wessels, Michael R.
NAD(+)-Glycohydrolase Promotes Intracellular Survival of Group A Streptococcus
title NAD(+)-Glycohydrolase Promotes Intracellular Survival of Group A Streptococcus
title_full NAD(+)-Glycohydrolase Promotes Intracellular Survival of Group A Streptococcus
title_fullStr NAD(+)-Glycohydrolase Promotes Intracellular Survival of Group A Streptococcus
title_full_unstemmed NAD(+)-Glycohydrolase Promotes Intracellular Survival of Group A Streptococcus
title_short NAD(+)-Glycohydrolase Promotes Intracellular Survival of Group A Streptococcus
title_sort nad(+)-glycohydrolase promotes intracellular survival of group a streptococcus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4777570/
https://www.ncbi.nlm.nih.gov/pubmed/26938870
http://dx.doi.org/10.1371/journal.ppat.1005468
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AT wesselsmichaelr nadglycohydrolasepromotesintracellularsurvivalofgroupastreptococcus