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Autoantibody discovery across monogenic, acquired, and COVID19-associated autoimmunity with scalable PhIP-Seq

Phage Immunoprecipitation-Sequencing (PhIP-Seq) allows for unbiased, proteome-wide autoantibody discovery across a variety of disease settings, with identification of disease-specific autoantigens providing new insight into previously poorly understood forms of immune dysregulation. Despite several...

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Autores principales: Vazquez, Sara E, Mann, Sabrina A, Bodansky, Aaron, Kung, Andrew F, Quandt, Zoe, Ferré, Elise M. N., Landegren, Nils, Eriksson, Daniel, Bastard, Paul, Zhang, Shen-Ying, Liu, Jamin, Mitchell, Anthea, Mandel-Brehm, Caleigh, Miao, Brenda, Sowa, Gavin, Zorn, Kelsey, Chan, Alice Y., Shimizu, Chisato, Tremoulet, Adriana, Lynch, Kara, Wilson, Michael R., Kampe, Olle, Dobbs, Kerry, Delmonte, Ottavia M., Notarangelo, Luigi D., Burns, Jane C., Casanova, Jean-Laurent, Lionakis, Michail S., Torgerson, Troy R., Anderson, Mark S, DeRisi, Joseph L
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8963698/
https://www.ncbi.nlm.nih.gov/pubmed/35350199
http://dx.doi.org/10.1101/2022.03.23.485509
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author Vazquez, Sara E
Mann, Sabrina A
Bodansky, Aaron
Kung, Andrew F
Quandt, Zoe
Ferré, Elise M. N.
Landegren, Nils
Eriksson, Daniel
Bastard, Paul
Zhang, Shen-Ying
Liu, Jamin
Mitchell, Anthea
Mandel-Brehm, Caleigh
Miao, Brenda
Sowa, Gavin
Zorn, Kelsey
Chan, Alice Y.
Shimizu, Chisato
Tremoulet, Adriana
Lynch, Kara
Wilson, Michael R.
Kampe, Olle
Dobbs, Kerry
Delmonte, Ottavia M.
Notarangelo, Luigi D.
Burns, Jane C.
Casanova, Jean-Laurent
Lionakis, Michail S.
Torgerson, Troy R.
Anderson, Mark S
DeRisi, Joseph L
author_facet Vazquez, Sara E
Mann, Sabrina A
Bodansky, Aaron
Kung, Andrew F
Quandt, Zoe
Ferré, Elise M. N.
Landegren, Nils
Eriksson, Daniel
Bastard, Paul
Zhang, Shen-Ying
Liu, Jamin
Mitchell, Anthea
Mandel-Brehm, Caleigh
Miao, Brenda
Sowa, Gavin
Zorn, Kelsey
Chan, Alice Y.
Shimizu, Chisato
Tremoulet, Adriana
Lynch, Kara
Wilson, Michael R.
Kampe, Olle
Dobbs, Kerry
Delmonte, Ottavia M.
Notarangelo, Luigi D.
Burns, Jane C.
Casanova, Jean-Laurent
Lionakis, Michail S.
Torgerson, Troy R.
Anderson, Mark S
DeRisi, Joseph L
author_sort Vazquez, Sara E
collection PubMed
description Phage Immunoprecipitation-Sequencing (PhIP-Seq) allows for unbiased, proteome-wide autoantibody discovery across a variety of disease settings, with identification of disease-specific autoantigens providing new insight into previously poorly understood forms of immune dysregulation. Despite several successful implementations of PhIP-Seq for autoantigen discovery, including our previous work (Vazquez et al. 2020), current protocols are inherently difficult to scale to accommodate large cohorts of cases and importantly, healthy controls. Here, we develop and validate a high throughput extension of PhIP-seq in various etiologies of autoimmune and inflammatory diseases, including APS1, IPEX, RAG1/2 deficiency, Kawasaki Disease (KD), Multisystem Inflammatory Syndrome in Children (MIS-C), and finally, mild and severe forms of COVID19. We demonstrate that these scaled datasets enable machine-learning approaches that result in robust prediction of disease status, as well as the ability to detect both known and novel autoantigens, such as PDYN in APS1 patients, and intestinally expressed proteins BEST4 and BTNL8 in IPEX patients. Remarkably, BEST4 antibodies were also found in 2 patients with RAG1/2 deficiency, one of whom had very early onset IBD. Scaled PhIP-Seq examination of both MIS-C and KD demonstrated rare, overlapping antigens, including CGNL1, as well as several strongly enriched putative pneumonia-associated antigens in severe COVID19, including the endosomal protein EEA1. Together, scaled PhIP-Seq provides a valuable tool for broadly assessing both rare and common autoantigen overlap between autoimmune diseases of varying origins and etiologies.
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spelling pubmed-89636982022-03-30 Autoantibody discovery across monogenic, acquired, and COVID19-associated autoimmunity with scalable PhIP-Seq Vazquez, Sara E Mann, Sabrina A Bodansky, Aaron Kung, Andrew F Quandt, Zoe Ferré, Elise M. N. Landegren, Nils Eriksson, Daniel Bastard, Paul Zhang, Shen-Ying Liu, Jamin Mitchell, Anthea Mandel-Brehm, Caleigh Miao, Brenda Sowa, Gavin Zorn, Kelsey Chan, Alice Y. Shimizu, Chisato Tremoulet, Adriana Lynch, Kara Wilson, Michael R. Kampe, Olle Dobbs, Kerry Delmonte, Ottavia M. Notarangelo, Luigi D. Burns, Jane C. Casanova, Jean-Laurent Lionakis, Michail S. Torgerson, Troy R. Anderson, Mark S DeRisi, Joseph L bioRxiv Article Phage Immunoprecipitation-Sequencing (PhIP-Seq) allows for unbiased, proteome-wide autoantibody discovery across a variety of disease settings, with identification of disease-specific autoantigens providing new insight into previously poorly understood forms of immune dysregulation. Despite several successful implementations of PhIP-Seq for autoantigen discovery, including our previous work (Vazquez et al. 2020), current protocols are inherently difficult to scale to accommodate large cohorts of cases and importantly, healthy controls. Here, we develop and validate a high throughput extension of PhIP-seq in various etiologies of autoimmune and inflammatory diseases, including APS1, IPEX, RAG1/2 deficiency, Kawasaki Disease (KD), Multisystem Inflammatory Syndrome in Children (MIS-C), and finally, mild and severe forms of COVID19. We demonstrate that these scaled datasets enable machine-learning approaches that result in robust prediction of disease status, as well as the ability to detect both known and novel autoantigens, such as PDYN in APS1 patients, and intestinally expressed proteins BEST4 and BTNL8 in IPEX patients. Remarkably, BEST4 antibodies were also found in 2 patients with RAG1/2 deficiency, one of whom had very early onset IBD. Scaled PhIP-Seq examination of both MIS-C and KD demonstrated rare, overlapping antigens, including CGNL1, as well as several strongly enriched putative pneumonia-associated antigens in severe COVID19, including the endosomal protein EEA1. Together, scaled PhIP-Seq provides a valuable tool for broadly assessing both rare and common autoantigen overlap between autoimmune diseases of varying origins and etiologies. Cold Spring Harbor Laboratory 2022-03-24 /pmc/articles/PMC8963698/ /pubmed/35350199 http://dx.doi.org/10.1101/2022.03.23.485509 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , 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
Vazquez, Sara E
Mann, Sabrina A
Bodansky, Aaron
Kung, Andrew F
Quandt, Zoe
Ferré, Elise M. N.
Landegren, Nils
Eriksson, Daniel
Bastard, Paul
Zhang, Shen-Ying
Liu, Jamin
Mitchell, Anthea
Mandel-Brehm, Caleigh
Miao, Brenda
Sowa, Gavin
Zorn, Kelsey
Chan, Alice Y.
Shimizu, Chisato
Tremoulet, Adriana
Lynch, Kara
Wilson, Michael R.
Kampe, Olle
Dobbs, Kerry
Delmonte, Ottavia M.
Notarangelo, Luigi D.
Burns, Jane C.
Casanova, Jean-Laurent
Lionakis, Michail S.
Torgerson, Troy R.
Anderson, Mark S
DeRisi, Joseph L
Autoantibody discovery across monogenic, acquired, and COVID19-associated autoimmunity with scalable PhIP-Seq
title Autoantibody discovery across monogenic, acquired, and COVID19-associated autoimmunity with scalable PhIP-Seq
title_full Autoantibody discovery across monogenic, acquired, and COVID19-associated autoimmunity with scalable PhIP-Seq
title_fullStr Autoantibody discovery across monogenic, acquired, and COVID19-associated autoimmunity with scalable PhIP-Seq
title_full_unstemmed Autoantibody discovery across monogenic, acquired, and COVID19-associated autoimmunity with scalable PhIP-Seq
title_short Autoantibody discovery across monogenic, acquired, and COVID19-associated autoimmunity with scalable PhIP-Seq
title_sort autoantibody discovery across monogenic, acquired, and covid19-associated autoimmunity with scalable phip-seq
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8963698/
https://www.ncbi.nlm.nih.gov/pubmed/35350199
http://dx.doi.org/10.1101/2022.03.23.485509
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