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ISG15 deficiency and increased viral resistance in humans but not mice
by
García-Sastre, Adolfo
, Mansouri, Nahal
, Rubino, Erminia
, Hermann, Mark
, Lenschow, Deborah J.
, Speer, Scott D.
, Sanal, Ozden
, Bogunovic, Dusan
, Vigant, Frederic
, Rodriguez, Marisela R.
, Qian, Li
, Tabarsi, Payam
, Duehr, James
, Payelle-Brogard, Béatrice
, Mansouri, Davood
, Lee, Benhur
, Li, Zhi
, Tortorella, Domenico
, Francois-Newton, Véronique
, Pellegrini, Sandra
, Wedeking, Tim
, Piehler, Jacob
, Freiberg, Alexander N.
, Buta, Sofija
, Tezcan, Ilhan
, Gardner, Thomas J.
, Daussy, Coralie F.
in
13/95
/ 38/39
/ 631/250/1933
/ 631/250/255/2514
/ 631/80/86
/ 64/110
/ 96/21
/ Animals
/ Cell Line
/ Cytokines
/ Dengue fever
/ Ebola virus
/ Enzymes
/ Female
/ Gene Expression Regulation
/ Genetics
/ Hepatitis C
/ Herpes viruses
/ Humanities and Social Sciences
/ Humans
/ Immunology
/ Infections
/ Interferon
/ Interferons
/ Life Sciences
/ Mice
/ multidisciplinary
/ Primary Cell Culture
/ Science
/ Science (multidisciplinary)
/ Ubiquitin Thiolesterase
/ Ubiquitins
/ Viral infections
/ Virus Diseases
2016
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ISG15 deficiency and increased viral resistance in humans but not mice
by
García-Sastre, Adolfo
, Mansouri, Nahal
, Rubino, Erminia
, Hermann, Mark
, Lenschow, Deborah J.
, Speer, Scott D.
, Sanal, Ozden
, Bogunovic, Dusan
, Vigant, Frederic
, Rodriguez, Marisela R.
, Qian, Li
, Tabarsi, Payam
, Duehr, James
, Payelle-Brogard, Béatrice
, Mansouri, Davood
, Lee, Benhur
, Li, Zhi
, Tortorella, Domenico
, Francois-Newton, Véronique
, Pellegrini, Sandra
, Wedeking, Tim
, Piehler, Jacob
, Freiberg, Alexander N.
, Buta, Sofija
, Tezcan, Ilhan
, Gardner, Thomas J.
, Daussy, Coralie F.
in
13/95
/ 38/39
/ 631/250/1933
/ 631/250/255/2514
/ 631/80/86
/ 64/110
/ 96/21
/ Animals
/ Cell Line
/ Cytokines
/ Dengue fever
/ Ebola virus
/ Enzymes
/ Female
/ Gene Expression Regulation
/ Genetics
/ Hepatitis C
/ Herpes viruses
/ Humanities and Social Sciences
/ Humans
/ Immunology
/ Infections
/ Interferon
/ Interferons
/ Life Sciences
/ Mice
/ multidisciplinary
/ Primary Cell Culture
/ Science
/ Science (multidisciplinary)
/ Ubiquitin Thiolesterase
/ Ubiquitins
/ Viral infections
/ Virus Diseases
2016
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ISG15 deficiency and increased viral resistance in humans but not mice
by
García-Sastre, Adolfo
, Mansouri, Nahal
, Rubino, Erminia
, Hermann, Mark
, Lenschow, Deborah J.
, Speer, Scott D.
, Sanal, Ozden
, Bogunovic, Dusan
, Vigant, Frederic
, Rodriguez, Marisela R.
, Qian, Li
, Tabarsi, Payam
, Duehr, James
, Payelle-Brogard, Béatrice
, Mansouri, Davood
, Lee, Benhur
, Li, Zhi
, Tortorella, Domenico
, Francois-Newton, Véronique
, Pellegrini, Sandra
, Wedeking, Tim
, Piehler, Jacob
, Freiberg, Alexander N.
, Buta, Sofija
, Tezcan, Ilhan
, Gardner, Thomas J.
, Daussy, Coralie F.
in
13/95
/ 38/39
/ 631/250/1933
/ 631/250/255/2514
/ 631/80/86
/ 64/110
/ 96/21
/ Animals
/ Cell Line
/ Cytokines
/ Dengue fever
/ Ebola virus
/ Enzymes
/ Female
/ Gene Expression Regulation
/ Genetics
/ Hepatitis C
/ Herpes viruses
/ Humanities and Social Sciences
/ Humans
/ Immunology
/ Infections
/ Interferon
/ Interferons
/ Life Sciences
/ Mice
/ multidisciplinary
/ Primary Cell Culture
/ Science
/ Science (multidisciplinary)
/ Ubiquitin Thiolesterase
/ Ubiquitins
/ Viral infections
/ Virus Diseases
2016
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ISG15 deficiency and increased viral resistance in humans but not mice
Journal Article
ISG15 deficiency and increased viral resistance in humans but not mice
2016
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Overview
ISG15 is an interferon (IFN)-α/β-induced ubiquitin-like protein. It exists as a free molecule, intracellularly and extracellularly, and conjugated to target proteins. Studies in mice have demonstrated a role for Isg15 in antiviral immunity. By contrast, human ISG15 was shown to have critical immune functions, but not in antiviral immunity. Namely, free extracellular ISG15 is crucial in IFN-γ-dependent antimycobacterial immunity, while free intracellular ISG15 is crucial for USP18-mediated downregulation of IFN-α/β signalling. Here we describe
ISG15
-deficient patients who display no enhanced susceptibility to viruses
in vivo
, in stark contrast to
Isg15
-deficient mice. Furthermore, fibroblasts derived from
ISG15
-deficient patients display enhanced antiviral protection, and expression of ISG15 attenuates viral resistance to WT control levels. The species-specific gain-of-function in antiviral immunity observed in ISG15 deficiency is explained by the requirement of ISG15 to sustain USP18 levels in humans, a mechanism not operating in mice.
ISG15 is a ubiquitin-like protein which has important immune-related functions in mice and humans. Here the authors demonstrate that, unlike in mice, human ISG15 stabilizes UPS18 and that ISG15-deficient human cells are more resistant to viral infection.
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