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Encephalitis and poor neuronal death-mediated control of herpes simplex virus in human inherited RIPK3 deficiency

Inborn errors of TLR3-dependent type I IFN immunity in cortical neurons underlie forebrain herpes simplex virus-1 (HSV-1) encephalitis (HSE) due to uncontrolled viral growth and subsequent cell death. We report an otherwise healthy patient with HSE who was compound heterozygous for nonsense (R422*)...

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Autores principales: Liu, Zhiyong, Garcia Reino, Eduardo J., Harschnitz, Oliver, Guo, Hongyan, Chan, Yi-Hao, Khobrekar, Noopur, Hasek, Mary L., Dobbs, Kerry, Rinchai, Darawan, Materna, Marie, Matuozzo, Daniela, Lee, Danyel, Bastard, Paul, Chen, Jie, Lee, Yoon Seung, Kim, Seong K., Zhao, Shuxiang, Amin, Param, Lorenzo, Lazaro, Seeleuthner, Yoann, Chevalier, Remi, Mazzola, Laure, Gay, Claire, Stephan, Jean-Louis, Milisavljevic, Baptiste, Boucherit, Soraya, Rozenberg, Flore, Perez de Diego, Rebeca, Dix, Richard D., Marr, Nico, Béziat, Vivien, Cobat, Aurelie, Aubart, Mélodie, Abel, Laurent, Chabrier, Stephane, Smith, Gregory A., Notarangelo, Luigi D., Mocarski, Edward S., Studer, Lorenz, Casanova, Jean-Laurent, Zhang, Shen-Ying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10337828/
https://www.ncbi.nlm.nih.gov/pubmed/37083451
http://dx.doi.org/10.1126/sciimmunol.ade2860
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author Liu, Zhiyong
Garcia Reino, Eduardo J.
Harschnitz, Oliver
Guo, Hongyan
Chan, Yi-Hao
Khobrekar, Noopur
Hasek, Mary L.
Dobbs, Kerry
Rinchai, Darawan
Materna, Marie
Matuozzo, Daniela
Lee, Danyel
Bastard, Paul
Chen, Jie
Lee, Yoon Seung
Kim, Seong K.
Zhao, Shuxiang
Amin, Param
Lorenzo, Lazaro
Seeleuthner, Yoann
Chevalier, Remi
Mazzola, Laure
Gay, Claire
Stephan, Jean-Louis
Milisavljevic, Baptiste
Boucherit, Soraya
Rozenberg, Flore
Perez de Diego, Rebeca
Dix, Richard D.
Marr, Nico
Béziat, Vivien
Cobat, Aurelie
Aubart, Mélodie
Abel, Laurent
Chabrier, Stephane
Smith, Gregory A.
Notarangelo, Luigi D.
Mocarski, Edward S.
Studer, Lorenz
Casanova, Jean-Laurent
Zhang, Shen-Ying
author_facet Liu, Zhiyong
Garcia Reino, Eduardo J.
Harschnitz, Oliver
Guo, Hongyan
Chan, Yi-Hao
Khobrekar, Noopur
Hasek, Mary L.
Dobbs, Kerry
Rinchai, Darawan
Materna, Marie
Matuozzo, Daniela
Lee, Danyel
Bastard, Paul
Chen, Jie
Lee, Yoon Seung
Kim, Seong K.
Zhao, Shuxiang
Amin, Param
Lorenzo, Lazaro
Seeleuthner, Yoann
Chevalier, Remi
Mazzola, Laure
Gay, Claire
Stephan, Jean-Louis
Milisavljevic, Baptiste
Boucherit, Soraya
Rozenberg, Flore
Perez de Diego, Rebeca
Dix, Richard D.
Marr, Nico
Béziat, Vivien
Cobat, Aurelie
Aubart, Mélodie
Abel, Laurent
Chabrier, Stephane
Smith, Gregory A.
Notarangelo, Luigi D.
Mocarski, Edward S.
Studer, Lorenz
Casanova, Jean-Laurent
Zhang, Shen-Ying
author_sort Liu, Zhiyong
collection PubMed
description Inborn errors of TLR3-dependent type I IFN immunity in cortical neurons underlie forebrain herpes simplex virus-1 (HSV-1) encephalitis (HSE) due to uncontrolled viral growth and subsequent cell death. We report an otherwise healthy patient with HSE who was compound heterozygous for nonsense (R422*) and frameshift (P493fs9*) RIPK3 variants. Receptor interacting protein kinase 3 (RIPK3) is a ubiquitous cytoplasmic kinase regulating cell death outcomes, including apoptosis and necroptosis. In vitro, the R422* and P493fs9* RIPK3 proteins impaired cellular apoptosis and necroptosis upon TLR3, TLR4 or TNFR1 stimulation, and ZBP1/DAI-mediated necroptotic cell death following HSV-1 infection. The patient’s fibroblasts displayed no detectable RIPK3 expression. Following TNFR1 or TLR3 stimulation, the patient’s cells did not undergo apoptosis or necroptosis. Following HSV-1 infection, the cells supported excessive viral growth despite normal induction of antiviral IFN-β and interferon-stimulated genes (ISGs). This phenotype was, nevertheless, rescued by application of exogenous type I IFN. The patient’s human pluripotent stem cell (hPSC)-derived cortical neurons displayed impaired cell death and enhanced viral growth following HSV-1 infection, as did isogenic RIPK3-knockout hPSC-derived cortical neurons. Inherited RIPK3 deficiency therefore confers a predisposition to HSE, by impairing the cell death-dependent control of HSV-1 in cortical neurons independently of type I IFN immunity.
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spelling pubmed-103378282023-07-21 Encephalitis and poor neuronal death-mediated control of herpes simplex virus in human inherited RIPK3 deficiency Liu, Zhiyong Garcia Reino, Eduardo J. Harschnitz, Oliver Guo, Hongyan Chan, Yi-Hao Khobrekar, Noopur Hasek, Mary L. Dobbs, Kerry Rinchai, Darawan Materna, Marie Matuozzo, Daniela Lee, Danyel Bastard, Paul Chen, Jie Lee, Yoon Seung Kim, Seong K. Zhao, Shuxiang Amin, Param Lorenzo, Lazaro Seeleuthner, Yoann Chevalier, Remi Mazzola, Laure Gay, Claire Stephan, Jean-Louis Milisavljevic, Baptiste Boucherit, Soraya Rozenberg, Flore Perez de Diego, Rebeca Dix, Richard D. Marr, Nico Béziat, Vivien Cobat, Aurelie Aubart, Mélodie Abel, Laurent Chabrier, Stephane Smith, Gregory A. Notarangelo, Luigi D. Mocarski, Edward S. Studer, Lorenz Casanova, Jean-Laurent Zhang, Shen-Ying Sci Immunol Article Inborn errors of TLR3-dependent type I IFN immunity in cortical neurons underlie forebrain herpes simplex virus-1 (HSV-1) encephalitis (HSE) due to uncontrolled viral growth and subsequent cell death. We report an otherwise healthy patient with HSE who was compound heterozygous for nonsense (R422*) and frameshift (P493fs9*) RIPK3 variants. Receptor interacting protein kinase 3 (RIPK3) is a ubiquitous cytoplasmic kinase regulating cell death outcomes, including apoptosis and necroptosis. In vitro, the R422* and P493fs9* RIPK3 proteins impaired cellular apoptosis and necroptosis upon TLR3, TLR4 or TNFR1 stimulation, and ZBP1/DAI-mediated necroptotic cell death following HSV-1 infection. The patient’s fibroblasts displayed no detectable RIPK3 expression. Following TNFR1 or TLR3 stimulation, the patient’s cells did not undergo apoptosis or necroptosis. Following HSV-1 infection, the cells supported excessive viral growth despite normal induction of antiviral IFN-β and interferon-stimulated genes (ISGs). This phenotype was, nevertheless, rescued by application of exogenous type I IFN. The patient’s human pluripotent stem cell (hPSC)-derived cortical neurons displayed impaired cell death and enhanced viral growth following HSV-1 infection, as did isogenic RIPK3-knockout hPSC-derived cortical neurons. Inherited RIPK3 deficiency therefore confers a predisposition to HSE, by impairing the cell death-dependent control of HSV-1 in cortical neurons independently of type I IFN immunity. 2023-04-21 2023-04-21 /pmc/articles/PMC10337828/ /pubmed/37083451 http://dx.doi.org/10.1126/sciimmunol.ade2860 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License, which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Liu, Zhiyong
Garcia Reino, Eduardo J.
Harschnitz, Oliver
Guo, Hongyan
Chan, Yi-Hao
Khobrekar, Noopur
Hasek, Mary L.
Dobbs, Kerry
Rinchai, Darawan
Materna, Marie
Matuozzo, Daniela
Lee, Danyel
Bastard, Paul
Chen, Jie
Lee, Yoon Seung
Kim, Seong K.
Zhao, Shuxiang
Amin, Param
Lorenzo, Lazaro
Seeleuthner, Yoann
Chevalier, Remi
Mazzola, Laure
Gay, Claire
Stephan, Jean-Louis
Milisavljevic, Baptiste
Boucherit, Soraya
Rozenberg, Flore
Perez de Diego, Rebeca
Dix, Richard D.
Marr, Nico
Béziat, Vivien
Cobat, Aurelie
Aubart, Mélodie
Abel, Laurent
Chabrier, Stephane
Smith, Gregory A.
Notarangelo, Luigi D.
Mocarski, Edward S.
Studer, Lorenz
Casanova, Jean-Laurent
Zhang, Shen-Ying
Encephalitis and poor neuronal death-mediated control of herpes simplex virus in human inherited RIPK3 deficiency
title Encephalitis and poor neuronal death-mediated control of herpes simplex virus in human inherited RIPK3 deficiency
title_full Encephalitis and poor neuronal death-mediated control of herpes simplex virus in human inherited RIPK3 deficiency
title_fullStr Encephalitis and poor neuronal death-mediated control of herpes simplex virus in human inherited RIPK3 deficiency
title_full_unstemmed Encephalitis and poor neuronal death-mediated control of herpes simplex virus in human inherited RIPK3 deficiency
title_short Encephalitis and poor neuronal death-mediated control of herpes simplex virus in human inherited RIPK3 deficiency
title_sort encephalitis and poor neuronal death-mediated control of herpes simplex virus in human inherited ripk3 deficiency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10337828/
https://www.ncbi.nlm.nih.gov/pubmed/37083451
http://dx.doi.org/10.1126/sciimmunol.ade2860
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