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Discrimination of Methionine Sulfoxide and Sulfone by Human Neutrophil Elastase

Human neutrophil elastase (HNE) is a uniquely destructive serine protease with the ability to unleash a wave of proteolytic activity by destroying the inhibitors of other proteases. Although this phenomenon forms an important part of the innate immune response to invading pathogens, it is responsibl...

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Autores principales: Leahy, Darren, Grant, Cameron, Jackson, Alex, Duff, Alex, Tardiota, Nicholas, Van Haeften, Jessica, Chen, Xingchen, Peake, Jonathan M., Kruppa, Michael D., Smith, Eliot T., Johnson, David A., Lott, William B., Harris, Jonathan M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8434204/
https://www.ncbi.nlm.nih.gov/pubmed/34500777
http://dx.doi.org/10.3390/molecules26175344
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author Leahy, Darren
Grant, Cameron
Jackson, Alex
Duff, Alex
Tardiota, Nicholas
Van Haeften, Jessica
Chen, Xingchen
Peake, Jonathan M.
Kruppa, Michael D.
Smith, Eliot T.
Johnson, David A.
Lott, William B.
Harris, Jonathan M.
author_facet Leahy, Darren
Grant, Cameron
Jackson, Alex
Duff, Alex
Tardiota, Nicholas
Van Haeften, Jessica
Chen, Xingchen
Peake, Jonathan M.
Kruppa, Michael D.
Smith, Eliot T.
Johnson, David A.
Lott, William B.
Harris, Jonathan M.
author_sort Leahy, Darren
collection PubMed
description Human neutrophil elastase (HNE) is a uniquely destructive serine protease with the ability to unleash a wave of proteolytic activity by destroying the inhibitors of other proteases. Although this phenomenon forms an important part of the innate immune response to invading pathogens, it is responsible for the collateral host tissue damage observed in chronic conditions such as chronic obstructive pulmonary disease (COPD), and in more acute disorders such as the lung injuries associated with COVID-19 infection. Previously, a combinatorially selected activity-based probe revealed an unexpected substrate preference for oxidised methionine, which suggests a link to oxidative pathogen clearance by neutrophils. Here we use oxidised model substrates and inhibitors to confirm this observation and to show that neutrophil elastase is specifically selective for the di-oxygenated methionine sulfone rather than the mono-oxygenated methionine sulfoxide. We also posit a critical role for ordered solvent in the mechanism of HNE discrimination between the two oxidised forms methionine residue. Preference for the sulfone form of oxidised methionine is especially significant. While both host and pathogens have the ability to reduce methionine sulfoxide back to methionine, a biological pathway to reduce methionine sulfone is not known. Taken together, these data suggest that the oxidative activity of neutrophils may create rapidly cleaved elastase “super substrates” that directly damage tissue, while initiating a cycle of neutrophil oxidation that increases elastase tissue damage and further neutrophil recruitment.
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spelling pubmed-84342042021-09-12 Discrimination of Methionine Sulfoxide and Sulfone by Human Neutrophil Elastase Leahy, Darren Grant, Cameron Jackson, Alex Duff, Alex Tardiota, Nicholas Van Haeften, Jessica Chen, Xingchen Peake, Jonathan M. Kruppa, Michael D. Smith, Eliot T. Johnson, David A. Lott, William B. Harris, Jonathan M. Molecules Article Human neutrophil elastase (HNE) is a uniquely destructive serine protease with the ability to unleash a wave of proteolytic activity by destroying the inhibitors of other proteases. Although this phenomenon forms an important part of the innate immune response to invading pathogens, it is responsible for the collateral host tissue damage observed in chronic conditions such as chronic obstructive pulmonary disease (COPD), and in more acute disorders such as the lung injuries associated with COVID-19 infection. Previously, a combinatorially selected activity-based probe revealed an unexpected substrate preference for oxidised methionine, which suggests a link to oxidative pathogen clearance by neutrophils. Here we use oxidised model substrates and inhibitors to confirm this observation and to show that neutrophil elastase is specifically selective for the di-oxygenated methionine sulfone rather than the mono-oxygenated methionine sulfoxide. We also posit a critical role for ordered solvent in the mechanism of HNE discrimination between the two oxidised forms methionine residue. Preference for the sulfone form of oxidised methionine is especially significant. While both host and pathogens have the ability to reduce methionine sulfoxide back to methionine, a biological pathway to reduce methionine sulfone is not known. Taken together, these data suggest that the oxidative activity of neutrophils may create rapidly cleaved elastase “super substrates” that directly damage tissue, while initiating a cycle of neutrophil oxidation that increases elastase tissue damage and further neutrophil recruitment. MDPI 2021-09-02 /pmc/articles/PMC8434204/ /pubmed/34500777 http://dx.doi.org/10.3390/molecules26175344 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Leahy, Darren
Grant, Cameron
Jackson, Alex
Duff, Alex
Tardiota, Nicholas
Van Haeften, Jessica
Chen, Xingchen
Peake, Jonathan M.
Kruppa, Michael D.
Smith, Eliot T.
Johnson, David A.
Lott, William B.
Harris, Jonathan M.
Discrimination of Methionine Sulfoxide and Sulfone by Human Neutrophil Elastase
title Discrimination of Methionine Sulfoxide and Sulfone by Human Neutrophil Elastase
title_full Discrimination of Methionine Sulfoxide and Sulfone by Human Neutrophil Elastase
title_fullStr Discrimination of Methionine Sulfoxide and Sulfone by Human Neutrophil Elastase
title_full_unstemmed Discrimination of Methionine Sulfoxide and Sulfone by Human Neutrophil Elastase
title_short Discrimination of Methionine Sulfoxide and Sulfone by Human Neutrophil Elastase
title_sort discrimination of methionine sulfoxide and sulfone by human neutrophil elastase
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8434204/
https://www.ncbi.nlm.nih.gov/pubmed/34500777
http://dx.doi.org/10.3390/molecules26175344
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