Cargando…
High titers and low fucosylation of early human anti-SARS-CoV-2 IgG promote inflammation by alveolar macrophages
Patients diagnosed with coronavirus disease 2019 (COVID-19) become critically ill primarily around the time of activation of the adaptive immune response. Here, we provide evidence that antibodies play a role in the worsening of disease at the time of seroconversion. We show that early phase severe...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Association for the Advancement of Science
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8158960/ https://www.ncbi.nlm.nih.gov/pubmed/33979301 http://dx.doi.org/10.1126/scitranslmed.abf8654 |
_version_ | 1783699979011883008 |
---|---|
author | Hoepel, Willianne Chen, Hung-Jen Geyer, Chiara E. Allahverdiyeva, Sona Manz, Xue D. de Taeye, Steven W. Aman, Jurjan Mes, Lynn Steenhuis, Maurice Griffith, Guillermo R. Bonta, Peter I. Brouwer, Philip J.M. Caniels, Tom G. van der Straten, Karlijn Golebski, Korneliusz Jonkers, René E. Larsen, Mads D. Linty, Federica Nouta, Jan van Roomen, Cindy P.A.A. van Baarle, Frank E.H.P. van Drunen, Cornelis M. Wolbink, Gertjan Vlaar, Alexander P.J. de Bree, Godelieve J. Sanders, Rogier W. Willemsen, Lisa Neele, Annette E. van de Beek, Diederik Rispens, Theo Wuhrer, Manfred Bogaard, Harm Jan van Gils, Marit J. Vidarsson, Gestur de Winther, Menno den Dunnen, Jeroen |
author_facet | Hoepel, Willianne Chen, Hung-Jen Geyer, Chiara E. Allahverdiyeva, Sona Manz, Xue D. de Taeye, Steven W. Aman, Jurjan Mes, Lynn Steenhuis, Maurice Griffith, Guillermo R. Bonta, Peter I. Brouwer, Philip J.M. Caniels, Tom G. van der Straten, Karlijn Golebski, Korneliusz Jonkers, René E. Larsen, Mads D. Linty, Federica Nouta, Jan van Roomen, Cindy P.A.A. van Baarle, Frank E.H.P. van Drunen, Cornelis M. Wolbink, Gertjan Vlaar, Alexander P.J. de Bree, Godelieve J. Sanders, Rogier W. Willemsen, Lisa Neele, Annette E. van de Beek, Diederik Rispens, Theo Wuhrer, Manfred Bogaard, Harm Jan van Gils, Marit J. Vidarsson, Gestur de Winther, Menno den Dunnen, Jeroen |
author_sort | Hoepel, Willianne |
collection | PubMed |
description | Patients diagnosed with coronavirus disease 2019 (COVID-19) become critically ill primarily around the time of activation of the adaptive immune response. Here, we provide evidence that antibodies play a role in the worsening of disease at the time of seroconversion. We show that early phase severe acute respiratory distress syndrome coronavirus 2 (SARS-CoV-2) spike protein-specific IgG in serum of critically ill COVID-19 patients induces excessive inflammatory responses by human alveolar macrophages. We identified that this excessive inflammatory response is dependent on two antibody features that are specific for patients with severe COVID-19. First, inflammation is driven by high titers of anti-spike IgG, a hallmark of severe disease. Second, we found that anti-spike IgG from patients with severe COVID-19 is intrinsically more pro-inflammatory because of different glycosylation, particularly low fucosylation, of the antibody Fc tail. Notably, low fucosylation of anti-spike IgG was normalized in a few weeks after initial infection with SARS-CoV-2, indicating that the increased antibody-dependent inflammation mainly occurs at the time of seroconversion. We identified Fcγ Receptor (FcγR) IIa and FcγRIII as the two primary IgG receptors that are responsible for the induction of key COVID-19-associated cytokines such as interleukin-6 and tumor necrosis factor. In addition, we show that anti-spike IgG-activated human macrophages can subsequently break pulmonary endothelial barrier integrity and induce microvascular thrombosis in vitro. Finally, we demonstrate that the inflammatory response induced by anti-spike IgG can be specifically counteracted by fostamatinib, an FDA- and EMA-approved therapeutic small molecule inhibitor of Syk kinase. |
format | Online Article Text |
id | pubmed-8158960 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | American Association for the Advancement of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-81589602021-05-28 High titers and low fucosylation of early human anti-SARS-CoV-2 IgG promote inflammation by alveolar macrophages Hoepel, Willianne Chen, Hung-Jen Geyer, Chiara E. Allahverdiyeva, Sona Manz, Xue D. de Taeye, Steven W. Aman, Jurjan Mes, Lynn Steenhuis, Maurice Griffith, Guillermo R. Bonta, Peter I. Brouwer, Philip J.M. Caniels, Tom G. van der Straten, Karlijn Golebski, Korneliusz Jonkers, René E. Larsen, Mads D. Linty, Federica Nouta, Jan van Roomen, Cindy P.A.A. van Baarle, Frank E.H.P. van Drunen, Cornelis M. Wolbink, Gertjan Vlaar, Alexander P.J. de Bree, Godelieve J. Sanders, Rogier W. Willemsen, Lisa Neele, Annette E. van de Beek, Diederik Rispens, Theo Wuhrer, Manfred Bogaard, Harm Jan van Gils, Marit J. Vidarsson, Gestur de Winther, Menno den Dunnen, Jeroen Sci Transl Med Research Articles Patients diagnosed with coronavirus disease 2019 (COVID-19) become critically ill primarily around the time of activation of the adaptive immune response. Here, we provide evidence that antibodies play a role in the worsening of disease at the time of seroconversion. We show that early phase severe acute respiratory distress syndrome coronavirus 2 (SARS-CoV-2) spike protein-specific IgG in serum of critically ill COVID-19 patients induces excessive inflammatory responses by human alveolar macrophages. We identified that this excessive inflammatory response is dependent on two antibody features that are specific for patients with severe COVID-19. First, inflammation is driven by high titers of anti-spike IgG, a hallmark of severe disease. Second, we found that anti-spike IgG from patients with severe COVID-19 is intrinsically more pro-inflammatory because of different glycosylation, particularly low fucosylation, of the antibody Fc tail. Notably, low fucosylation of anti-spike IgG was normalized in a few weeks after initial infection with SARS-CoV-2, indicating that the increased antibody-dependent inflammation mainly occurs at the time of seroconversion. We identified Fcγ Receptor (FcγR) IIa and FcγRIII as the two primary IgG receptors that are responsible for the induction of key COVID-19-associated cytokines such as interleukin-6 and tumor necrosis factor. In addition, we show that anti-spike IgG-activated human macrophages can subsequently break pulmonary endothelial barrier integrity and induce microvascular thrombosis in vitro. Finally, we demonstrate that the inflammatory response induced by anti-spike IgG can be specifically counteracted by fostamatinib, an FDA- and EMA-approved therapeutic small molecule inhibitor of Syk kinase. American Association for the Advancement of Science 2021-05-11 /pmc/articles/PMC8158960/ /pubmed/33979301 http://dx.doi.org/10.1126/scitranslmed.abf8654 Text en Copyright © , American Association for the Advancement of Science https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution license (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Articles Hoepel, Willianne Chen, Hung-Jen Geyer, Chiara E. Allahverdiyeva, Sona Manz, Xue D. de Taeye, Steven W. Aman, Jurjan Mes, Lynn Steenhuis, Maurice Griffith, Guillermo R. Bonta, Peter I. Brouwer, Philip J.M. Caniels, Tom G. van der Straten, Karlijn Golebski, Korneliusz Jonkers, René E. Larsen, Mads D. Linty, Federica Nouta, Jan van Roomen, Cindy P.A.A. van Baarle, Frank E.H.P. van Drunen, Cornelis M. Wolbink, Gertjan Vlaar, Alexander P.J. de Bree, Godelieve J. Sanders, Rogier W. Willemsen, Lisa Neele, Annette E. van de Beek, Diederik Rispens, Theo Wuhrer, Manfred Bogaard, Harm Jan van Gils, Marit J. Vidarsson, Gestur de Winther, Menno den Dunnen, Jeroen High titers and low fucosylation of early human anti-SARS-CoV-2 IgG promote inflammation by alveolar macrophages |
title | High titers and low fucosylation of early human anti-SARS-CoV-2 IgG promote inflammation by alveolar macrophages |
title_full | High titers and low fucosylation of early human anti-SARS-CoV-2 IgG promote inflammation by alveolar macrophages |
title_fullStr | High titers and low fucosylation of early human anti-SARS-CoV-2 IgG promote inflammation by alveolar macrophages |
title_full_unstemmed | High titers and low fucosylation of early human anti-SARS-CoV-2 IgG promote inflammation by alveolar macrophages |
title_short | High titers and low fucosylation of early human anti-SARS-CoV-2 IgG promote inflammation by alveolar macrophages |
title_sort | high titers and low fucosylation of early human anti-sars-cov-2 igg promote inflammation by alveolar macrophages |
topic | Research Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8158960/ https://www.ncbi.nlm.nih.gov/pubmed/33979301 http://dx.doi.org/10.1126/scitranslmed.abf8654 |
work_keys_str_mv | AT hoepelwillianne hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT chenhungjen hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT geyerchiarae hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT allahverdiyevasona hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT manzxued hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT detaeyestevenw hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT amanjurjan hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT meslynn hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT steenhuismaurice hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT griffithguillermor hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT bontapeteri hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT brouwerphilipjm hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT canielstomg hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT vanderstratenkarlijn hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT golebskikorneliusz hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT jonkersrenee hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT larsenmadsd hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT lintyfederica hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT noutajan hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT vanroomencindypaa hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT vanbaarlefrankehp hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT vandrunencornelism hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT wolbinkgertjan hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT vlaaralexanderpj hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT debreegodelievej hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT sandersrogierw hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT willemsenlisa hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT neeleannettee hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT vandebeekdiederik hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT rispenstheo hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT wuhrermanfred hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT bogaardharmjan hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT vangilsmaritj hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT vidarssongestur hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT dewinthermenno hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages AT dendunnenjeroen hightitersandlowfucosylationofearlyhumanantisarscov2iggpromoteinflammationbyalveolarmacrophages |