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Disease-causing mutations in the XIAP BIR2 domain impair NOD2-dependent immune signalling

X-linked Inhibitor of Apoptosis (XIAP) is an essential ubiquitin ligase for pro-inflammatory signalling downstream of the nucleotide-binding oligomerization domain containing (NOD)-1 and -2 pattern recognition receptors. Mutations in XIAP cause X-linked lymphoproliferative syndrome type-2 (XLP2), an...

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Autores principales: Damgaard, Rune Busk, Fiil, Berthe Katrine, Speckmann, Carsten, Yabal, Monica, zur Stadt, Udo, Bekker-Jensen, Simon, Jost, Philipp J, Ehl, Stephan, Mailand, Niels, Gyrd-Hansen, Mads
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Science Inc 2013
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3944466/
https://www.ncbi.nlm.nih.gov/pubmed/23818254
http://dx.doi.org/10.1002/emmm.201303090
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author Damgaard, Rune Busk
Fiil, Berthe Katrine
Speckmann, Carsten
Yabal, Monica
zur Stadt, Udo
Bekker-Jensen, Simon
Jost, Philipp J
Ehl, Stephan
Mailand, Niels
Gyrd-Hansen, Mads
author_facet Damgaard, Rune Busk
Fiil, Berthe Katrine
Speckmann, Carsten
Yabal, Monica
zur Stadt, Udo
Bekker-Jensen, Simon
Jost, Philipp J
Ehl, Stephan
Mailand, Niels
Gyrd-Hansen, Mads
author_sort Damgaard, Rune Busk
collection PubMed
description X-linked Inhibitor of Apoptosis (XIAP) is an essential ubiquitin ligase for pro-inflammatory signalling downstream of the nucleotide-binding oligomerization domain containing (NOD)-1 and -2 pattern recognition receptors. Mutations in XIAP cause X-linked lymphoproliferative syndrome type-2 (XLP2), an immunodeficiency associated with a potentially fatal deregulation of the immune system, whose aetiology is not well understood. Here, we identify the XIAP baculovirus IAP repeat (BIR)2 domain as a hotspot for missense mutations in XLP2. We demonstrate that XLP2-BIR2 mutations severely impair NOD1/2-dependent immune signalling in primary cells from XLP2 patients and in reconstituted XIAP-deficient cell lines. XLP2-BIR2 mutations abolish the XIAP-RIPK2 interaction resulting in impaired ubiquitylation of RIPK2 and recruitment of linear ubiquitin chain assembly complex (LUBAC) to the NOD2-complex. We show that the RIPK2 binding site in XIAP overlaps with the BIR2 IBM-binding pocket and find that a bivalent Smac mimetic compound (SMC) potently antagonises XIAP function downstream of NOD2 to limit signalling. These findings suggest that impaired immune signalling in response to NOD1/2 stimulation is a general defect in XLP2 and demonstrate that the XIAP BIR2-RIPK2 interaction may be targeted pharmacologically to modulate inflammatory signalling. The X-linked lymphoproliferative syndrome type-2 is an immunodeficiency disease caused by mutations in the XIAP gene. BIR2 domain mutations in patients impair RIPK2 binding and NOD2-dependent innate immune signaling, explaining some of the pathology.
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spelling pubmed-39444662014-03-07 Disease-causing mutations in the XIAP BIR2 domain impair NOD2-dependent immune signalling Damgaard, Rune Busk Fiil, Berthe Katrine Speckmann, Carsten Yabal, Monica zur Stadt, Udo Bekker-Jensen, Simon Jost, Philipp J Ehl, Stephan Mailand, Niels Gyrd-Hansen, Mads EMBO Mol Med X-linked Inhibitor of Apoptosis (XIAP) is an essential ubiquitin ligase for pro-inflammatory signalling downstream of the nucleotide-binding oligomerization domain containing (NOD)-1 and -2 pattern recognition receptors. Mutations in XIAP cause X-linked lymphoproliferative syndrome type-2 (XLP2), an immunodeficiency associated with a potentially fatal deregulation of the immune system, whose aetiology is not well understood. Here, we identify the XIAP baculovirus IAP repeat (BIR)2 domain as a hotspot for missense mutations in XLP2. We demonstrate that XLP2-BIR2 mutations severely impair NOD1/2-dependent immune signalling in primary cells from XLP2 patients and in reconstituted XIAP-deficient cell lines. XLP2-BIR2 mutations abolish the XIAP-RIPK2 interaction resulting in impaired ubiquitylation of RIPK2 and recruitment of linear ubiquitin chain assembly complex (LUBAC) to the NOD2-complex. We show that the RIPK2 binding site in XIAP overlaps with the BIR2 IBM-binding pocket and find that a bivalent Smac mimetic compound (SMC) potently antagonises XIAP function downstream of NOD2 to limit signalling. These findings suggest that impaired immune signalling in response to NOD1/2 stimulation is a general defect in XLP2 and demonstrate that the XIAP BIR2-RIPK2 interaction may be targeted pharmacologically to modulate inflammatory signalling. The X-linked lymphoproliferative syndrome type-2 is an immunodeficiency disease caused by mutations in the XIAP gene. BIR2 domain mutations in patients impair RIPK2 binding and NOD2-dependent innate immune signaling, explaining some of the pathology. Blackwell Science Inc 2013-08 2013-07-01 /pmc/articles/PMC3944466/ /pubmed/23818254 http://dx.doi.org/10.1002/emmm.201303090 Text en © 2013 The Authors. Published by John Wiley and Sons, Ltd on behalf of EMBO http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Damgaard, Rune Busk
Fiil, Berthe Katrine
Speckmann, Carsten
Yabal, Monica
zur Stadt, Udo
Bekker-Jensen, Simon
Jost, Philipp J
Ehl, Stephan
Mailand, Niels
Gyrd-Hansen, Mads
Disease-causing mutations in the XIAP BIR2 domain impair NOD2-dependent immune signalling
title Disease-causing mutations in the XIAP BIR2 domain impair NOD2-dependent immune signalling
title_full Disease-causing mutations in the XIAP BIR2 domain impair NOD2-dependent immune signalling
title_fullStr Disease-causing mutations in the XIAP BIR2 domain impair NOD2-dependent immune signalling
title_full_unstemmed Disease-causing mutations in the XIAP BIR2 domain impair NOD2-dependent immune signalling
title_short Disease-causing mutations in the XIAP BIR2 domain impair NOD2-dependent immune signalling
title_sort disease-causing mutations in the xiap bir2 domain impair nod2-dependent immune signalling
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3944466/
https://www.ncbi.nlm.nih.gov/pubmed/23818254
http://dx.doi.org/10.1002/emmm.201303090
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