Cargando…

The DNA sensors AIM2 and IFI16 are SLE autoantigens that bind neutrophil extracellular traps

BACKGROUND: Nucleic acid binding proteins are frequently targeted as autoantigens in systemic lupus erythematosus (SLE) and other interferon (IFN)-linked rheumatic diseases. The AIM-like receptors (ALRs) are IFN-inducible innate sensors that form supramolecular assemblies along double-stranded (ds)D...

Descripción completa

Detalles Bibliográficos
Autores principales: Antiochos, Brendan, Trejo-Zambrano, Daniela, Fenaroli, Paride, Rosenberg, Avi, Baer, Alan, Garg, Archit, Sohn, Jungsan, Li, Jessica, Petri, Michelle, Goldman, Daniel W, Mecoli, Christopher, Casciola-Rosen, Livia, Rosen, Antony
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9129876/
https://www.ncbi.nlm.nih.gov/pubmed/35608258
http://dx.doi.org/10.7554/eLife.72103
_version_ 1784712863039881216
author Antiochos, Brendan
Trejo-Zambrano, Daniela
Fenaroli, Paride
Rosenberg, Avi
Baer, Alan
Garg, Archit
Sohn, Jungsan
Li, Jessica
Petri, Michelle
Goldman, Daniel W
Mecoli, Christopher
Casciola-Rosen, Livia
Rosen, Antony
author_facet Antiochos, Brendan
Trejo-Zambrano, Daniela
Fenaroli, Paride
Rosenberg, Avi
Baer, Alan
Garg, Archit
Sohn, Jungsan
Li, Jessica
Petri, Michelle
Goldman, Daniel W
Mecoli, Christopher
Casciola-Rosen, Livia
Rosen, Antony
author_sort Antiochos, Brendan
collection PubMed
description BACKGROUND: Nucleic acid binding proteins are frequently targeted as autoantigens in systemic lupus erythematosus (SLE) and other interferon (IFN)-linked rheumatic diseases. The AIM-like receptors (ALRs) are IFN-inducible innate sensors that form supramolecular assemblies along double-stranded (ds)DNA of various origins. Here, we investigate the ALR absent in melanoma 2 (AIM2) as a novel autoantigen in SLE, with similar properties to the established ALR autoantigen interferon-inducible protein 16 (IFI16). We examined neutrophil extracellular traps (NETs) as DNA scaffolds on which these antigens might interact in a pro-immune context. METHODS: AIM2 autoantibodies were measured by immunoprecipitation in SLE and control subjects. Neutrophil extracellular traps were induced in control neutrophils and combined with purified ALR proteins in immunofluorescence and DNase protection assays. SLE renal tissues were examined for ALR-containing NETs by confocal microscopy. RESULTS: AIM2 autoantibodies were detected in 41/131 (31.3%) SLE patients and 2/49 (4.1%) controls. Our SLE cohort revealed a frequent co-occurrence of anti-AIM2, anti-IFI16, and anti-DNA antibodies, and higher clinical measures of disease activity in patients positive for antibodies against these ALRs. We found that both ALRs bind NETs in vitro and in SLE renal tissues. We demonstrate that ALR binding causes NETs to resist degradation by DNase I, suggesting a mechanism whereby extracellular ALR-NET interactions may promote sustained IFN signaling. CONCLUSIONS: Our work suggests that extracellular ALRs bind NETs, leading to DNase resistant nucleoprotein fibers that are targeted as autoantigens in SLE. FUNDING: These studies were funded by NIH R01 DE12354 (AR), P30 AR070254, R01 GM 129342 (JS), K23AR075898 (CM), K08AR077100 (BA), the Jerome L. Greene Foundation and the Rheumatology Research Foundation. Dr. Antiochos and Dr. Mecoli are Jerome L. Greene Scholars. The Hopkins Lupus Cohort is supported by NIH grant R01 AR069572. Confocal imaging performed at the Johns Hopkins Microscopy Facility was supported by NIH Grant S10 OD016374.
format Online
Article
Text
id pubmed-9129876
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher eLife Sciences Publications, Ltd
record_format MEDLINE/PubMed
spelling pubmed-91298762022-05-25 The DNA sensors AIM2 and IFI16 are SLE autoantigens that bind neutrophil extracellular traps Antiochos, Brendan Trejo-Zambrano, Daniela Fenaroli, Paride Rosenberg, Avi Baer, Alan Garg, Archit Sohn, Jungsan Li, Jessica Petri, Michelle Goldman, Daniel W Mecoli, Christopher Casciola-Rosen, Livia Rosen, Antony eLife Immunology and Inflammation BACKGROUND: Nucleic acid binding proteins are frequently targeted as autoantigens in systemic lupus erythematosus (SLE) and other interferon (IFN)-linked rheumatic diseases. The AIM-like receptors (ALRs) are IFN-inducible innate sensors that form supramolecular assemblies along double-stranded (ds)DNA of various origins. Here, we investigate the ALR absent in melanoma 2 (AIM2) as a novel autoantigen in SLE, with similar properties to the established ALR autoantigen interferon-inducible protein 16 (IFI16). We examined neutrophil extracellular traps (NETs) as DNA scaffolds on which these antigens might interact in a pro-immune context. METHODS: AIM2 autoantibodies were measured by immunoprecipitation in SLE and control subjects. Neutrophil extracellular traps were induced in control neutrophils and combined with purified ALR proteins in immunofluorescence and DNase protection assays. SLE renal tissues were examined for ALR-containing NETs by confocal microscopy. RESULTS: AIM2 autoantibodies were detected in 41/131 (31.3%) SLE patients and 2/49 (4.1%) controls. Our SLE cohort revealed a frequent co-occurrence of anti-AIM2, anti-IFI16, and anti-DNA antibodies, and higher clinical measures of disease activity in patients positive for antibodies against these ALRs. We found that both ALRs bind NETs in vitro and in SLE renal tissues. We demonstrate that ALR binding causes NETs to resist degradation by DNase I, suggesting a mechanism whereby extracellular ALR-NET interactions may promote sustained IFN signaling. CONCLUSIONS: Our work suggests that extracellular ALRs bind NETs, leading to DNase resistant nucleoprotein fibers that are targeted as autoantigens in SLE. FUNDING: These studies were funded by NIH R01 DE12354 (AR), P30 AR070254, R01 GM 129342 (JS), K23AR075898 (CM), K08AR077100 (BA), the Jerome L. Greene Foundation and the Rheumatology Research Foundation. Dr. Antiochos and Dr. Mecoli are Jerome L. Greene Scholars. The Hopkins Lupus Cohort is supported by NIH grant R01 AR069572. Confocal imaging performed at the Johns Hopkins Microscopy Facility was supported by NIH Grant S10 OD016374. eLife Sciences Publications, Ltd 2022-05-24 /pmc/articles/PMC9129876/ /pubmed/35608258 http://dx.doi.org/10.7554/eLife.72103 Text en © 2022, Antiochos et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Immunology and Inflammation
Antiochos, Brendan
Trejo-Zambrano, Daniela
Fenaroli, Paride
Rosenberg, Avi
Baer, Alan
Garg, Archit
Sohn, Jungsan
Li, Jessica
Petri, Michelle
Goldman, Daniel W
Mecoli, Christopher
Casciola-Rosen, Livia
Rosen, Antony
The DNA sensors AIM2 and IFI16 are SLE autoantigens that bind neutrophil extracellular traps
title The DNA sensors AIM2 and IFI16 are SLE autoantigens that bind neutrophil extracellular traps
title_full The DNA sensors AIM2 and IFI16 are SLE autoantigens that bind neutrophil extracellular traps
title_fullStr The DNA sensors AIM2 and IFI16 are SLE autoantigens that bind neutrophil extracellular traps
title_full_unstemmed The DNA sensors AIM2 and IFI16 are SLE autoantigens that bind neutrophil extracellular traps
title_short The DNA sensors AIM2 and IFI16 are SLE autoantigens that bind neutrophil extracellular traps
title_sort dna sensors aim2 and ifi16 are sle autoantigens that bind neutrophil extracellular traps
topic Immunology and Inflammation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9129876/
https://www.ncbi.nlm.nih.gov/pubmed/35608258
http://dx.doi.org/10.7554/eLife.72103
work_keys_str_mv AT antiochosbrendan thednasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT trejozambranodaniela thednasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT fenaroliparide thednasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT rosenbergavi thednasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT baeralan thednasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT gargarchit thednasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT sohnjungsan thednasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT lijessica thednasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT petrimichelle thednasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT goldmandanielw thednasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT mecolichristopher thednasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT casciolarosenlivia thednasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT rosenantony thednasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT antiochosbrendan dnasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT trejozambranodaniela dnasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT fenaroliparide dnasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT rosenbergavi dnasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT baeralan dnasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT gargarchit dnasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT sohnjungsan dnasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT lijessica dnasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT petrimichelle dnasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT goldmandanielw dnasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT mecolichristopher dnasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT casciolarosenlivia dnasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps
AT rosenantony dnasensorsaim2andifi16aresleautoantigensthatbindneutrophilextracellulartraps