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Irreversible inactivation of ISG15 by a viral leader protease enables alternative infection detection strategies

In response to viral infection, cells mount a potent inflammatory response that relies on ISG15 and ubiquitin posttranslational modifications. Many viruses use deubiquitinases and deISGylases that reverse these modifications and antagonize host signaling processes. We here reveal that the leader pro...

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Autores principales: Swatek, Kirby N., Aumayr, Martina, Pruneda, Jonathan N., Visser, Linda J., Berryman, Stephen, Kueck, Anja F., Geurink, Paul P., Ovaa, Huib, van Kuppeveld, Frank J. M., Tuthill, Tobias J., Skern, Tim, Komander, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5877979/
https://www.ncbi.nlm.nih.gov/pubmed/29463763
http://dx.doi.org/10.1073/pnas.1710617115
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author Swatek, Kirby N.
Aumayr, Martina
Pruneda, Jonathan N.
Visser, Linda J.
Berryman, Stephen
Kueck, Anja F.
Geurink, Paul P.
Ovaa, Huib
van Kuppeveld, Frank J. M.
Tuthill, Tobias J.
Skern, Tim
Komander, David
author_facet Swatek, Kirby N.
Aumayr, Martina
Pruneda, Jonathan N.
Visser, Linda J.
Berryman, Stephen
Kueck, Anja F.
Geurink, Paul P.
Ovaa, Huib
van Kuppeveld, Frank J. M.
Tuthill, Tobias J.
Skern, Tim
Komander, David
author_sort Swatek, Kirby N.
collection PubMed
description In response to viral infection, cells mount a potent inflammatory response that relies on ISG15 and ubiquitin posttranslational modifications. Many viruses use deubiquitinases and deISGylases that reverse these modifications and antagonize host signaling processes. We here reveal that the leader protease, Lb(pro), from foot-and-mouth disease virus (FMDV) targets ISG15 and to a lesser extent, ubiquitin in an unprecedented manner. Unlike canonical deISGylases that hydrolyze the isopeptide linkage after the C-terminal GlyGly motif, Lb(pro) cleaves the peptide bond preceding the GlyGly motif. Consequently, the GlyGly dipeptide remains attached to the substrate Lys, and cleaved ISG15 is rendered incompetent for reconjugation. A crystal structure of Lb(pro) bound to an engineered ISG15 suicide probe revealed the molecular basis for ISG15 proteolysis. Importantly, anti-GlyGly antibodies, developed for ubiquitin proteomics, are able to detect Lb(pro) cleavage products during viral infection. This opens avenues for infection detection of FMDV based on an immutable, host-derived epitope.
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spelling pubmed-58779792018-04-02 Irreversible inactivation of ISG15 by a viral leader protease enables alternative infection detection strategies Swatek, Kirby N. Aumayr, Martina Pruneda, Jonathan N. Visser, Linda J. Berryman, Stephen Kueck, Anja F. Geurink, Paul P. Ovaa, Huib van Kuppeveld, Frank J. M. Tuthill, Tobias J. Skern, Tim Komander, David Proc Natl Acad Sci U S A Biological Sciences In response to viral infection, cells mount a potent inflammatory response that relies on ISG15 and ubiquitin posttranslational modifications. Many viruses use deubiquitinases and deISGylases that reverse these modifications and antagonize host signaling processes. We here reveal that the leader protease, Lb(pro), from foot-and-mouth disease virus (FMDV) targets ISG15 and to a lesser extent, ubiquitin in an unprecedented manner. Unlike canonical deISGylases that hydrolyze the isopeptide linkage after the C-terminal GlyGly motif, Lb(pro) cleaves the peptide bond preceding the GlyGly motif. Consequently, the GlyGly dipeptide remains attached to the substrate Lys, and cleaved ISG15 is rendered incompetent for reconjugation. A crystal structure of Lb(pro) bound to an engineered ISG15 suicide probe revealed the molecular basis for ISG15 proteolysis. Importantly, anti-GlyGly antibodies, developed for ubiquitin proteomics, are able to detect Lb(pro) cleavage products during viral infection. This opens avenues for infection detection of FMDV based on an immutable, host-derived epitope. National Academy of Sciences 2018-03-06 2018-02-20 /pmc/articles/PMC5877979/ /pubmed/29463763 http://dx.doi.org/10.1073/pnas.1710617115 Text en Copyright © 2018 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Swatek, Kirby N.
Aumayr, Martina
Pruneda, Jonathan N.
Visser, Linda J.
Berryman, Stephen
Kueck, Anja F.
Geurink, Paul P.
Ovaa, Huib
van Kuppeveld, Frank J. M.
Tuthill, Tobias J.
Skern, Tim
Komander, David
Irreversible inactivation of ISG15 by a viral leader protease enables alternative infection detection strategies
title Irreversible inactivation of ISG15 by a viral leader protease enables alternative infection detection strategies
title_full Irreversible inactivation of ISG15 by a viral leader protease enables alternative infection detection strategies
title_fullStr Irreversible inactivation of ISG15 by a viral leader protease enables alternative infection detection strategies
title_full_unstemmed Irreversible inactivation of ISG15 by a viral leader protease enables alternative infection detection strategies
title_short Irreversible inactivation of ISG15 by a viral leader protease enables alternative infection detection strategies
title_sort irreversible inactivation of isg15 by a viral leader protease enables alternative infection detection strategies
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5877979/
https://www.ncbi.nlm.nih.gov/pubmed/29463763
http://dx.doi.org/10.1073/pnas.1710617115
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