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IgM N-glycosylation correlates with COVID-19 severity and rate of complement deposition

The glycosylation of IgG plays a critical role during human SARS-CoV-2, activating immune cells and inducing cytokine production. However, the role of IgM N-glycosylation has not been studied during acute viral infection in humans. In vitro evidence suggests that the glycosylation of IgM inhibits T...

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Autores principales: Haslund-Gourley, Benjamin, Woloszcuk, Kyra, Hou, Jintong, Connors, Jennifer, Cusimano, Gina, Bell, Mathew, Taramangalam, Bhavani, Fourati, Slim, Mege, Nathan, Bernui, Mariana, Altman, Matthew, Krammer, Florian, van Bakel, Harm, Maecker, Holden, Wigdahl, Brian, Cairns, Charles, Haddad, Elias, Comunale, Mary
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Journal Experts 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10312960/
https://www.ncbi.nlm.nih.gov/pubmed/37398192
http://dx.doi.org/10.21203/rs.3.rs-2939468/v1
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author Haslund-Gourley, Benjamin
Woloszcuk, Kyra
Hou, Jintong
Connors, Jennifer
Cusimano, Gina
Bell, Mathew
Taramangalam, Bhavani
Fourati, Slim
Mege, Nathan
Bernui, Mariana
Altman, Matthew
Krammer, Florian
van Bakel, Harm
Maecker, Holden
Wigdahl, Brian
Cairns, Charles
Haddad, Elias
Comunale, Mary
author_facet Haslund-Gourley, Benjamin
Woloszcuk, Kyra
Hou, Jintong
Connors, Jennifer
Cusimano, Gina
Bell, Mathew
Taramangalam, Bhavani
Fourati, Slim
Mege, Nathan
Bernui, Mariana
Altman, Matthew
Krammer, Florian
van Bakel, Harm
Maecker, Holden
Wigdahl, Brian
Cairns, Charles
Haddad, Elias
Comunale, Mary
author_sort Haslund-Gourley, Benjamin
collection PubMed
description The glycosylation of IgG plays a critical role during human SARS-CoV-2, activating immune cells and inducing cytokine production. However, the role of IgM N-glycosylation has not been studied during acute viral infection in humans. In vitro evidence suggests that the glycosylation of IgM inhibits T cell proliferation and alters complement activation rates. The analysis of IgM N-glycosylation from healthy controls and hospitalized COVID-19 patients reveals that mannosylation and sialyation levels associate with COVID-19 severity. Specifically, we find increased di- and tri-sialylated glycans and altered mannose glycans in total serum IgM in severe COVID-19 patients when compared to moderate COVID-19 patients. This is in direct contrast with the decrease of sialic acid found on the serum IgG from the same cohorts. Moreover, the degree of mannosylation and sialylation correlated significantly with markers of disease severity: D-dimer, BUN, creatinine, potassium, and early anti-COVID-19 amounts of IgG, IgA, and IgM. Further, IL-16 and IL-18 cytokines showed similar trends with the amount of mannose and sialic acid present on IgM, implicating these cytokines’ potential to impact glycosyltransferase expression during IgM production. When examining PBMC mRNA transcripts, we observe a decrease in the expression of Golgi mannosidases that correlates with the overall reduction in mannose processing we detect in the IgM N-glycosylation profile. Importantly, we found that IgM contains alpha-2,3 linked sialic acids in addition to the previously reported alpha-2,6 linkage. We also report that antigen-specific IgM antibody-dependent complement deposition is elevated in severe COVID-19 patients. Taken together, this work links the immunoglobulin M N-glycosylation with COVID-19 severity and highlights the need to understand the connection between IgM glycosylation and downstream immune function during human disease.
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spelling pubmed-103129602023-07-01 IgM N-glycosylation correlates with COVID-19 severity and rate of complement deposition Haslund-Gourley, Benjamin Woloszcuk, Kyra Hou, Jintong Connors, Jennifer Cusimano, Gina Bell, Mathew Taramangalam, Bhavani Fourati, Slim Mege, Nathan Bernui, Mariana Altman, Matthew Krammer, Florian van Bakel, Harm Maecker, Holden Wigdahl, Brian Cairns, Charles Haddad, Elias Comunale, Mary Res Sq Article The glycosylation of IgG plays a critical role during human SARS-CoV-2, activating immune cells and inducing cytokine production. However, the role of IgM N-glycosylation has not been studied during acute viral infection in humans. In vitro evidence suggests that the glycosylation of IgM inhibits T cell proliferation and alters complement activation rates. The analysis of IgM N-glycosylation from healthy controls and hospitalized COVID-19 patients reveals that mannosylation and sialyation levels associate with COVID-19 severity. Specifically, we find increased di- and tri-sialylated glycans and altered mannose glycans in total serum IgM in severe COVID-19 patients when compared to moderate COVID-19 patients. This is in direct contrast with the decrease of sialic acid found on the serum IgG from the same cohorts. Moreover, the degree of mannosylation and sialylation correlated significantly with markers of disease severity: D-dimer, BUN, creatinine, potassium, and early anti-COVID-19 amounts of IgG, IgA, and IgM. Further, IL-16 and IL-18 cytokines showed similar trends with the amount of mannose and sialic acid present on IgM, implicating these cytokines’ potential to impact glycosyltransferase expression during IgM production. When examining PBMC mRNA transcripts, we observe a decrease in the expression of Golgi mannosidases that correlates with the overall reduction in mannose processing we detect in the IgM N-glycosylation profile. Importantly, we found that IgM contains alpha-2,3 linked sialic acids in addition to the previously reported alpha-2,6 linkage. We also report that antigen-specific IgM antibody-dependent complement deposition is elevated in severe COVID-19 patients. Taken together, this work links the immunoglobulin M N-glycosylation with COVID-19 severity and highlights the need to understand the connection between IgM glycosylation and downstream immune function during human disease. American Journal Experts 2023-06-02 /pmc/articles/PMC10312960/ /pubmed/37398192 http://dx.doi.org/10.21203/rs.3.rs-2939468/v1 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
Haslund-Gourley, Benjamin
Woloszcuk, Kyra
Hou, Jintong
Connors, Jennifer
Cusimano, Gina
Bell, Mathew
Taramangalam, Bhavani
Fourati, Slim
Mege, Nathan
Bernui, Mariana
Altman, Matthew
Krammer, Florian
van Bakel, Harm
Maecker, Holden
Wigdahl, Brian
Cairns, Charles
Haddad, Elias
Comunale, Mary
IgM N-glycosylation correlates with COVID-19 severity and rate of complement deposition
title IgM N-glycosylation correlates with COVID-19 severity and rate of complement deposition
title_full IgM N-glycosylation correlates with COVID-19 severity and rate of complement deposition
title_fullStr IgM N-glycosylation correlates with COVID-19 severity and rate of complement deposition
title_full_unstemmed IgM N-glycosylation correlates with COVID-19 severity and rate of complement deposition
title_short IgM N-glycosylation correlates with COVID-19 severity and rate of complement deposition
title_sort igm n-glycosylation correlates with covid-19 severity and rate of complement deposition
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10312960/
https://www.ncbi.nlm.nih.gov/pubmed/37398192
http://dx.doi.org/10.21203/rs.3.rs-2939468/v1
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