Cargando…

KSHV infection skews macrophage polarisation towards M2-like/TAM and activates Ire1 α-XBP1 axis up-regulating pro-tumorigenic cytokine release and PD-L1 expression

BACKGROUND: Kaposi’s Sarcoma Herpesvirus (KSHV) is a gammaherpesvirus strongly linked to human cancer. The virus is also able to induce immune suppression, effect that contributes to onset/progression of the viral-associated malignancies. As KSHV may infect macrophages and these cells abundantly inf...

Descripción completa

Detalles Bibliográficos
Autores principales: Gilardini Montani, Maria Saveria, Falcinelli, Luca, Santarelli, Roberta, Granato, Marisa, Romeo, Maria Anele, Cecere, Nives, Gonnella, Roberta, D’Orazi, Gabriella, Faggioni, Alberto, Cirone, Mara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7374093/
https://www.ncbi.nlm.nih.gov/pubmed/32418990
http://dx.doi.org/10.1038/s41416-020-0872-0
_version_ 1783561621742813184
author Gilardini Montani, Maria Saveria
Falcinelli, Luca
Santarelli, Roberta
Granato, Marisa
Romeo, Maria Anele
Cecere, Nives
Gonnella, Roberta
D’Orazi, Gabriella
Faggioni, Alberto
Cirone, Mara
author_facet Gilardini Montani, Maria Saveria
Falcinelli, Luca
Santarelli, Roberta
Granato, Marisa
Romeo, Maria Anele
Cecere, Nives
Gonnella, Roberta
D’Orazi, Gabriella
Faggioni, Alberto
Cirone, Mara
author_sort Gilardini Montani, Maria Saveria
collection PubMed
description BACKGROUND: Kaposi’s Sarcoma Herpesvirus (KSHV) is a gammaherpesvirus strongly linked to human cancer. The virus is also able to induce immune suppression, effect that contributes to onset/progression of the viral-associated malignancies. As KSHV may infect macrophages and these cells abundantly infiltrate Kaposi’s sarcoma lesions, in this study we investigated whether KSHV-infection could affect macrophage polarisation to promote tumorigenesis. METHODS: FACS analysis was used to detect macrophage markers and PD-L1 expression. KSHV infection and the molecular pathways activated were investigated by western blot analysis and by qRT-PCR while cytokine release was assessed by Multi-analyte Kit. RESULTS: We found that KSHV infection reduced macrophage survival and skewed their polarisation towards M2 like/TAM cells, based on the expression of CD163, on the activation of STAT3 and STAT6 pathways and the release of pro-tumorigenic cytokines such as IL-10, VEGF, IL-6 and IL-8. We also found that KSHV triggered Ire1 α-XBP1 axis activation in infected macrophages to increase the release of pro-tumorigenic cytokines and to up-regulate PD-L1 surface expression. CONCLUSIONS: The findings that KSHV infection of macrophages skews their polarisation towards M2/TAM and that activate Ire1 α-XBP1 to increase the release of pro-tumorigenic cytokines and the expression of PD-L1, suggest that manipulation of UPR could be exploited to prevent or improve the treatment of KSHV-associated malignancies.
format Online
Article
Text
id pubmed-7374093
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-73740932021-05-18 KSHV infection skews macrophage polarisation towards M2-like/TAM and activates Ire1 α-XBP1 axis up-regulating pro-tumorigenic cytokine release and PD-L1 expression Gilardini Montani, Maria Saveria Falcinelli, Luca Santarelli, Roberta Granato, Marisa Romeo, Maria Anele Cecere, Nives Gonnella, Roberta D’Orazi, Gabriella Faggioni, Alberto Cirone, Mara Br J Cancer Article BACKGROUND: Kaposi’s Sarcoma Herpesvirus (KSHV) is a gammaherpesvirus strongly linked to human cancer. The virus is also able to induce immune suppression, effect that contributes to onset/progression of the viral-associated malignancies. As KSHV may infect macrophages and these cells abundantly infiltrate Kaposi’s sarcoma lesions, in this study we investigated whether KSHV-infection could affect macrophage polarisation to promote tumorigenesis. METHODS: FACS analysis was used to detect macrophage markers and PD-L1 expression. KSHV infection and the molecular pathways activated were investigated by western blot analysis and by qRT-PCR while cytokine release was assessed by Multi-analyte Kit. RESULTS: We found that KSHV infection reduced macrophage survival and skewed their polarisation towards M2 like/TAM cells, based on the expression of CD163, on the activation of STAT3 and STAT6 pathways and the release of pro-tumorigenic cytokines such as IL-10, VEGF, IL-6 and IL-8. We also found that KSHV triggered Ire1 α-XBP1 axis activation in infected macrophages to increase the release of pro-tumorigenic cytokines and to up-regulate PD-L1 surface expression. CONCLUSIONS: The findings that KSHV infection of macrophages skews their polarisation towards M2/TAM and that activate Ire1 α-XBP1 to increase the release of pro-tumorigenic cytokines and the expression of PD-L1, suggest that manipulation of UPR could be exploited to prevent or improve the treatment of KSHV-associated malignancies. Nature Publishing Group UK 2020-05-18 2020-07-21 /pmc/articles/PMC7374093/ /pubmed/32418990 http://dx.doi.org/10.1038/s41416-020-0872-0 Text en © The Author(s), under exclusive licence to Cancer Research UK 2020 https://creativecommons.org/licenses/by/4.0/Note This work is published under the standard license to publish agreement. After 12 months the work will become freely available and the license terms will switch to a Creative Commons Attribution 4.0 International (CC BY 4.0).
spellingShingle Article
Gilardini Montani, Maria Saveria
Falcinelli, Luca
Santarelli, Roberta
Granato, Marisa
Romeo, Maria Anele
Cecere, Nives
Gonnella, Roberta
D’Orazi, Gabriella
Faggioni, Alberto
Cirone, Mara
KSHV infection skews macrophage polarisation towards M2-like/TAM and activates Ire1 α-XBP1 axis up-regulating pro-tumorigenic cytokine release and PD-L1 expression
title KSHV infection skews macrophage polarisation towards M2-like/TAM and activates Ire1 α-XBP1 axis up-regulating pro-tumorigenic cytokine release and PD-L1 expression
title_full KSHV infection skews macrophage polarisation towards M2-like/TAM and activates Ire1 α-XBP1 axis up-regulating pro-tumorigenic cytokine release and PD-L1 expression
title_fullStr KSHV infection skews macrophage polarisation towards M2-like/TAM and activates Ire1 α-XBP1 axis up-regulating pro-tumorigenic cytokine release and PD-L1 expression
title_full_unstemmed KSHV infection skews macrophage polarisation towards M2-like/TAM and activates Ire1 α-XBP1 axis up-regulating pro-tumorigenic cytokine release and PD-L1 expression
title_short KSHV infection skews macrophage polarisation towards M2-like/TAM and activates Ire1 α-XBP1 axis up-regulating pro-tumorigenic cytokine release and PD-L1 expression
title_sort kshv infection skews macrophage polarisation towards m2-like/tam and activates ire1 α-xbp1 axis up-regulating pro-tumorigenic cytokine release and pd-l1 expression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7374093/
https://www.ncbi.nlm.nih.gov/pubmed/32418990
http://dx.doi.org/10.1038/s41416-020-0872-0
work_keys_str_mv AT gilardinimontanimariasaveria kshvinfectionskewsmacrophagepolarisationtowardsm2liketamandactivatesire1axbp1axisupregulatingprotumorigeniccytokinereleaseandpdl1expression
AT falcinelliluca kshvinfectionskewsmacrophagepolarisationtowardsm2liketamandactivatesire1axbp1axisupregulatingprotumorigeniccytokinereleaseandpdl1expression
AT santarelliroberta kshvinfectionskewsmacrophagepolarisationtowardsm2liketamandactivatesire1axbp1axisupregulatingprotumorigeniccytokinereleaseandpdl1expression
AT granatomarisa kshvinfectionskewsmacrophagepolarisationtowardsm2liketamandactivatesire1axbp1axisupregulatingprotumorigeniccytokinereleaseandpdl1expression
AT romeomariaanele kshvinfectionskewsmacrophagepolarisationtowardsm2liketamandactivatesire1axbp1axisupregulatingprotumorigeniccytokinereleaseandpdl1expression
AT cecerenives kshvinfectionskewsmacrophagepolarisationtowardsm2liketamandactivatesire1axbp1axisupregulatingprotumorigeniccytokinereleaseandpdl1expression
AT gonnellaroberta kshvinfectionskewsmacrophagepolarisationtowardsm2liketamandactivatesire1axbp1axisupregulatingprotumorigeniccytokinereleaseandpdl1expression
AT dorazigabriella kshvinfectionskewsmacrophagepolarisationtowardsm2liketamandactivatesire1axbp1axisupregulatingprotumorigeniccytokinereleaseandpdl1expression
AT faggionialberto kshvinfectionskewsmacrophagepolarisationtowardsm2liketamandactivatesire1axbp1axisupregulatingprotumorigeniccytokinereleaseandpdl1expression
AT cironemara kshvinfectionskewsmacrophagepolarisationtowardsm2liketamandactivatesire1axbp1axisupregulatingprotumorigeniccytokinereleaseandpdl1expression