The in vivo ISGylome links ISG15 to metabolic pathways and autophagy upon Listeria monocytogenes infection

ISG15 is a ubiquitin-like modifier that can be upregulated in response to bacterial infections. Here, the authors use proteomics to identify endogenous ISGylation substrates in the liver of Listeria monocytogenes infected mice and show that ISGylation alters basal and infection-induced autophagy.

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Autores principales: Yifeng Zhang, Fabien Thery, Nicholas C. Wu, Emma K. Luhmann, Olivier Dussurget, Mariko Foecke, Clara Bredow, Daniel Jiménez-Fernández, Kevin Leandro, Antje Beling, Klaus-Peter Knobeloch, Francis Impens, Pascale Cossart, Lilliana Radoshevich
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/3ec566daad4b41d8b8622180c6d91133
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spelling oai:doaj.org-article:3ec566daad4b41d8b8622180c6d911332021-12-02T15:35:29ZThe in vivo ISGylome links ISG15 to metabolic pathways and autophagy upon Listeria monocytogenes infection10.1038/s41467-019-13393-x2041-1723https://doaj.org/article/3ec566daad4b41d8b8622180c6d911332019-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13393-xhttps://doaj.org/toc/2041-1723ISG15 is a ubiquitin-like modifier that can be upregulated in response to bacterial infections. Here, the authors use proteomics to identify endogenous ISGylation substrates in the liver of Listeria monocytogenes infected mice and show that ISGylation alters basal and infection-induced autophagy.Yifeng ZhangFabien TheryNicholas C. WuEmma K. LuhmannOlivier DussurgetMariko FoeckeClara BredowDaniel Jiménez-FernándezKevin LeandroAntje BelingKlaus-Peter KnobelochFrancis ImpensPascale CossartLilliana RadoshevichNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-15 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Yifeng Zhang
Fabien Thery
Nicholas C. Wu
Emma K. Luhmann
Olivier Dussurget
Mariko Foecke
Clara Bredow
Daniel Jiménez-Fernández
Kevin Leandro
Antje Beling
Klaus-Peter Knobeloch
Francis Impens
Pascale Cossart
Lilliana Radoshevich
The in vivo ISGylome links ISG15 to metabolic pathways and autophagy upon Listeria monocytogenes infection
description ISG15 is a ubiquitin-like modifier that can be upregulated in response to bacterial infections. Here, the authors use proteomics to identify endogenous ISGylation substrates in the liver of Listeria monocytogenes infected mice and show that ISGylation alters basal and infection-induced autophagy.
format article
author Yifeng Zhang
Fabien Thery
Nicholas C. Wu
Emma K. Luhmann
Olivier Dussurget
Mariko Foecke
Clara Bredow
Daniel Jiménez-Fernández
Kevin Leandro
Antje Beling
Klaus-Peter Knobeloch
Francis Impens
Pascale Cossart
Lilliana Radoshevich
author_facet Yifeng Zhang
Fabien Thery
Nicholas C. Wu
Emma K. Luhmann
Olivier Dussurget
Mariko Foecke
Clara Bredow
Daniel Jiménez-Fernández
Kevin Leandro
Antje Beling
Klaus-Peter Knobeloch
Francis Impens
Pascale Cossart
Lilliana Radoshevich
author_sort Yifeng Zhang
title The in vivo ISGylome links ISG15 to metabolic pathways and autophagy upon Listeria monocytogenes infection
title_short The in vivo ISGylome links ISG15 to metabolic pathways and autophagy upon Listeria monocytogenes infection
title_full The in vivo ISGylome links ISG15 to metabolic pathways and autophagy upon Listeria monocytogenes infection
title_fullStr The in vivo ISGylome links ISG15 to metabolic pathways and autophagy upon Listeria monocytogenes infection
title_full_unstemmed The in vivo ISGylome links ISG15 to metabolic pathways and autophagy upon Listeria monocytogenes infection
title_sort in vivo isgylome links isg15 to metabolic pathways and autophagy upon listeria monocytogenes infection
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/3ec566daad4b41d8b8622180c6d91133
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