Cargando…

Interferon-α alters host glycosylation machinery during treated HIV infection

BACKGROUND: A comprehensive understanding of host factors modulated by the antiviral cytokine interferon-α (IFNα) is imperative for harnessing its beneficial effects while avoiding its detrimental side-effects during HIV infection. Cytokines modulate host glycosylation which plays a critical role in...

Descripción completa

Detalles Bibliográficos
Autores principales: Giron, Leila B., Colomb, Florent, Papasavvas, Emmanouil, Azzoni, Livio, Yin, Xiangfan, Fair, Matthew, Anzurez, Alitzel, Damra, Mohammad, Mounzer, Karam, Kostman, Jay R., Tebas, Pablo, O'Doherty, Una, Tateno, Hiroaki, Liu, Qin, Betts, Michael R., Montaner, Luis J., Abdel-Mohsen, Mohamed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7452630/
https://www.ncbi.nlm.nih.gov/pubmed/32827942
http://dx.doi.org/10.1016/j.ebiom.2020.102945
_version_ 1783575196334030848
author Giron, Leila B.
Colomb, Florent
Papasavvas, Emmanouil
Azzoni, Livio
Yin, Xiangfan
Fair, Matthew
Anzurez, Alitzel
Damra, Mohammad
Mounzer, Karam
Kostman, Jay R.
Tebas, Pablo
O'Doherty, Una
Tateno, Hiroaki
Liu, Qin
Betts, Michael R.
Montaner, Luis J.
Abdel-Mohsen, Mohamed
author_facet Giron, Leila B.
Colomb, Florent
Papasavvas, Emmanouil
Azzoni, Livio
Yin, Xiangfan
Fair, Matthew
Anzurez, Alitzel
Damra, Mohammad
Mounzer, Karam
Kostman, Jay R.
Tebas, Pablo
O'Doherty, Una
Tateno, Hiroaki
Liu, Qin
Betts, Michael R.
Montaner, Luis J.
Abdel-Mohsen, Mohamed
author_sort Giron, Leila B.
collection PubMed
description BACKGROUND: A comprehensive understanding of host factors modulated by the antiviral cytokine interferon-α (IFNα) is imperative for harnessing its beneficial effects while avoiding its detrimental side-effects during HIV infection. Cytokines modulate host glycosylation which plays a critical role in mediating immunological functions. However, the impact of IFNα on host glycosylation has never been characterized. METHODS: We assessed the impact of pegylated IFNα2a on IgG glycome, as well as CD8(+) T and NK cell-surface glycomes, of 18 HIV-infected individuals on suppressive antiretroviral therapy. We linked these glycomic signatures to changes in inflammation, CD8(+) T and NK cell phenotypes, and HIV DNA. FINDINGS: We identified significant interactions that support a model in which a) IFNα increases the proportion of pro-inflammatory, bisecting GlcNAc glycans (known to enhance FcγR binding) within the IgG glycome, which in turn b) increases inflammation, which c) leads to poor CD8(+) T cell phenotypes and poor IFNα-mediated reduction of HIV DNA. Examining cell-surface glycomes, IFNα increases levels of the immunosuppressive GalNAc-containing glycans (T/Tn antigens) on CD8(+) T cells. This induction is associated with lower HIV-gag-specific CD8(+) T cell functions. Last, IFNα increases levels of fucose on NK cells. This induction is associated with higher NK functions upon K562 stimulation. INTERPRETATION: IFNα causes host glycomic alterations that are known to modulate immunological responses. These alterations are associated with both detrimental and beneficial consequences of IFNα. Manipulating host glycomic interactions may represent a strategy for enhancing the positive effects of IFNα while avoiding its detrimental side-effects. FUNDING: NIH grants R21AI143385, U01AI110434.
format Online
Article
Text
id pubmed-7452630
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-74526302020-09-02 Interferon-α alters host glycosylation machinery during treated HIV infection Giron, Leila B. Colomb, Florent Papasavvas, Emmanouil Azzoni, Livio Yin, Xiangfan Fair, Matthew Anzurez, Alitzel Damra, Mohammad Mounzer, Karam Kostman, Jay R. Tebas, Pablo O'Doherty, Una Tateno, Hiroaki Liu, Qin Betts, Michael R. Montaner, Luis J. Abdel-Mohsen, Mohamed EBioMedicine Research paper BACKGROUND: A comprehensive understanding of host factors modulated by the antiviral cytokine interferon-α (IFNα) is imperative for harnessing its beneficial effects while avoiding its detrimental side-effects during HIV infection. Cytokines modulate host glycosylation which plays a critical role in mediating immunological functions. However, the impact of IFNα on host glycosylation has never been characterized. METHODS: We assessed the impact of pegylated IFNα2a on IgG glycome, as well as CD8(+) T and NK cell-surface glycomes, of 18 HIV-infected individuals on suppressive antiretroviral therapy. We linked these glycomic signatures to changes in inflammation, CD8(+) T and NK cell phenotypes, and HIV DNA. FINDINGS: We identified significant interactions that support a model in which a) IFNα increases the proportion of pro-inflammatory, bisecting GlcNAc glycans (known to enhance FcγR binding) within the IgG glycome, which in turn b) increases inflammation, which c) leads to poor CD8(+) T cell phenotypes and poor IFNα-mediated reduction of HIV DNA. Examining cell-surface glycomes, IFNα increases levels of the immunosuppressive GalNAc-containing glycans (T/Tn antigens) on CD8(+) T cells. This induction is associated with lower HIV-gag-specific CD8(+) T cell functions. Last, IFNα increases levels of fucose on NK cells. This induction is associated with higher NK functions upon K562 stimulation. INTERPRETATION: IFNα causes host glycomic alterations that are known to modulate immunological responses. These alterations are associated with both detrimental and beneficial consequences of IFNα. Manipulating host glycomic interactions may represent a strategy for enhancing the positive effects of IFNα while avoiding its detrimental side-effects. FUNDING: NIH grants R21AI143385, U01AI110434. Elsevier 2020-08-19 /pmc/articles/PMC7452630/ /pubmed/32827942 http://dx.doi.org/10.1016/j.ebiom.2020.102945 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Giron, Leila B.
Colomb, Florent
Papasavvas, Emmanouil
Azzoni, Livio
Yin, Xiangfan
Fair, Matthew
Anzurez, Alitzel
Damra, Mohammad
Mounzer, Karam
Kostman, Jay R.
Tebas, Pablo
O'Doherty, Una
Tateno, Hiroaki
Liu, Qin
Betts, Michael R.
Montaner, Luis J.
Abdel-Mohsen, Mohamed
Interferon-α alters host glycosylation machinery during treated HIV infection
title Interferon-α alters host glycosylation machinery during treated HIV infection
title_full Interferon-α alters host glycosylation machinery during treated HIV infection
title_fullStr Interferon-α alters host glycosylation machinery during treated HIV infection
title_full_unstemmed Interferon-α alters host glycosylation machinery during treated HIV infection
title_short Interferon-α alters host glycosylation machinery during treated HIV infection
title_sort interferon-α alters host glycosylation machinery during treated hiv infection
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7452630/
https://www.ncbi.nlm.nih.gov/pubmed/32827942
http://dx.doi.org/10.1016/j.ebiom.2020.102945
work_keys_str_mv AT gironleilab interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT colombflorent interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT papasavvasemmanouil interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT azzonilivio interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT yinxiangfan interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT fairmatthew interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT anzurezalitzel interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT damramohammad interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT mounzerkaram interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT kostmanjayr interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT tebaspablo interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT odohertyuna interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT tatenohiroaki interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT liuqin interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT bettsmichaelr interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT montanerluisj interferonaaltershostglycosylationmachineryduringtreatedhivinfection
AT abdelmohsenmohamed interferonaaltershostglycosylationmachineryduringtreatedhivinfection