Cargando…

Th17 cell master transcription factor RORC2 regulates HIV-1 gene expression and viral outgrowth

Among CD4(+) T cells, T helper 17 (Th17) cells are particularly susceptible to HIV-1 infection and are depleted from mucosal sites, which causes damage to the gut barrier, resulting in a microbial translocation-induced systemic inflammation, a hallmark of disease progression. Furthermore, a proporti...

Descripción completa

Detalles Bibliográficos
Autores principales: Wiche Salinas, Tomas Raul, Zhang, Yuwei, Sarnello, Daniele, Zhyvoloup, Alexander, Marchand, Laurence Raymond, Fert, Augustine, Planas, Delphine, Lodha, Manivel, Chatterjee, Debashree, Karwacz, Katarzyna, Oxenford, Sally, Routy, Jean-Pierre, Irlbeck, David, Amrine-Madsen, Heather, Ancuta, Petronela, Fassati, Ariberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8640723/
https://www.ncbi.nlm.nih.gov/pubmed/34819367
http://dx.doi.org/10.1073/pnas.2105927118
_version_ 1784609389547618304
author Wiche Salinas, Tomas Raul
Zhang, Yuwei
Sarnello, Daniele
Zhyvoloup, Alexander
Marchand, Laurence Raymond
Fert, Augustine
Planas, Delphine
Lodha, Manivel
Chatterjee, Debashree
Karwacz, Katarzyna
Oxenford, Sally
Routy, Jean-Pierre
Irlbeck, David
Amrine-Madsen, Heather
Ancuta, Petronela
Fassati, Ariberto
author_facet Wiche Salinas, Tomas Raul
Zhang, Yuwei
Sarnello, Daniele
Zhyvoloup, Alexander
Marchand, Laurence Raymond
Fert, Augustine
Planas, Delphine
Lodha, Manivel
Chatterjee, Debashree
Karwacz, Katarzyna
Oxenford, Sally
Routy, Jean-Pierre
Irlbeck, David
Amrine-Madsen, Heather
Ancuta, Petronela
Fassati, Ariberto
author_sort Wiche Salinas, Tomas Raul
collection PubMed
description Among CD4(+) T cells, T helper 17 (Th17) cells are particularly susceptible to HIV-1 infection and are depleted from mucosal sites, which causes damage to the gut barrier, resulting in a microbial translocation-induced systemic inflammation, a hallmark of disease progression. Furthermore, a proportion of latently infected Th17 cells persist long term in the gastrointestinal lymphatic tract where a low-level HIV-1 transcription is observed. This residual viremia contributes to chronic immune activation. Thus, Th17 cells are key players in HIV pathogenesis and viral persistence. It is, however, unclear why these cells are highly susceptible to HIV-1 infection. Th17 cell differentiation depends on the expression of the master transcriptional regulator RORC2, a retinoic acid-related nuclear hormone receptor that regulates specific transcriptional programs by binding to promoter/enhancer DNA. Here, we report that RORC2 is a key host cofactor for HIV replication in Th17 cells. We found that specific inhibitors that bind to the RORC2 ligand-binding domain reduced HIV replication in CD4(+) T cells. The depletion of RORC2 inhibited HIV-1 infection, whereas its overexpression enhanced it. RORC2 was also found to promote HIV-1 gene expression by binding to the nuclear receptor responsive element in the HIV-1 long terminal repeats (LTR). In treated HIV-1 patients, RORC2(+) CD4 T cells contained more proviral DNA than RORC2(−) cells. Pharmacological inhibition of RORC2 potently reduced HIV-1 outgrowth in CD4(+) T cells from antiretroviral-treated patients. Altogether, these results provide an explanation as to why Th17 cells are highly susceptible to HIV-1 infection and suggest that RORC2 may be a cell-specific target for HIV-1 therapy.
format Online
Article
Text
id pubmed-8640723
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher National Academy of Sciences
record_format MEDLINE/PubMed
spelling pubmed-86407232021-12-13 Th17 cell master transcription factor RORC2 regulates HIV-1 gene expression and viral outgrowth Wiche Salinas, Tomas Raul Zhang, Yuwei Sarnello, Daniele Zhyvoloup, Alexander Marchand, Laurence Raymond Fert, Augustine Planas, Delphine Lodha, Manivel Chatterjee, Debashree Karwacz, Katarzyna Oxenford, Sally Routy, Jean-Pierre Irlbeck, David Amrine-Madsen, Heather Ancuta, Petronela Fassati, Ariberto Proc Natl Acad Sci U S A Biological Sciences Among CD4(+) T cells, T helper 17 (Th17) cells are particularly susceptible to HIV-1 infection and are depleted from mucosal sites, which causes damage to the gut barrier, resulting in a microbial translocation-induced systemic inflammation, a hallmark of disease progression. Furthermore, a proportion of latently infected Th17 cells persist long term in the gastrointestinal lymphatic tract where a low-level HIV-1 transcription is observed. This residual viremia contributes to chronic immune activation. Thus, Th17 cells are key players in HIV pathogenesis and viral persistence. It is, however, unclear why these cells are highly susceptible to HIV-1 infection. Th17 cell differentiation depends on the expression of the master transcriptional regulator RORC2, a retinoic acid-related nuclear hormone receptor that regulates specific transcriptional programs by binding to promoter/enhancer DNA. Here, we report that RORC2 is a key host cofactor for HIV replication in Th17 cells. We found that specific inhibitors that bind to the RORC2 ligand-binding domain reduced HIV replication in CD4(+) T cells. The depletion of RORC2 inhibited HIV-1 infection, whereas its overexpression enhanced it. RORC2 was also found to promote HIV-1 gene expression by binding to the nuclear receptor responsive element in the HIV-1 long terminal repeats (LTR). In treated HIV-1 patients, RORC2(+) CD4 T cells contained more proviral DNA than RORC2(−) cells. Pharmacological inhibition of RORC2 potently reduced HIV-1 outgrowth in CD4(+) T cells from antiretroviral-treated patients. Altogether, these results provide an explanation as to why Th17 cells are highly susceptible to HIV-1 infection and suggest that RORC2 may be a cell-specific target for HIV-1 therapy. National Academy of Sciences 2021-11-24 2021-11-30 /pmc/articles/PMC8640723/ /pubmed/34819367 http://dx.doi.org/10.1073/pnas.2105927118 Text en Copyright © 2021 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Wiche Salinas, Tomas Raul
Zhang, Yuwei
Sarnello, Daniele
Zhyvoloup, Alexander
Marchand, Laurence Raymond
Fert, Augustine
Planas, Delphine
Lodha, Manivel
Chatterjee, Debashree
Karwacz, Katarzyna
Oxenford, Sally
Routy, Jean-Pierre
Irlbeck, David
Amrine-Madsen, Heather
Ancuta, Petronela
Fassati, Ariberto
Th17 cell master transcription factor RORC2 regulates HIV-1 gene expression and viral outgrowth
title Th17 cell master transcription factor RORC2 regulates HIV-1 gene expression and viral outgrowth
title_full Th17 cell master transcription factor RORC2 regulates HIV-1 gene expression and viral outgrowth
title_fullStr Th17 cell master transcription factor RORC2 regulates HIV-1 gene expression and viral outgrowth
title_full_unstemmed Th17 cell master transcription factor RORC2 regulates HIV-1 gene expression and viral outgrowth
title_short Th17 cell master transcription factor RORC2 regulates HIV-1 gene expression and viral outgrowth
title_sort th17 cell master transcription factor rorc2 regulates hiv-1 gene expression and viral outgrowth
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8640723/
https://www.ncbi.nlm.nih.gov/pubmed/34819367
http://dx.doi.org/10.1073/pnas.2105927118
work_keys_str_mv AT wichesalinastomasraul th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT zhangyuwei th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT sarnellodaniele th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT zhyvoloupalexander th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT marchandlaurenceraymond th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT fertaugustine th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT planasdelphine th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT lodhamanivel th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT chatterjeedebashree th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT karwaczkatarzyna th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT oxenfordsally th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT routyjeanpierre th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT irlbeckdavid th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT amrinemadsenheather th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT ancutapetronela th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth
AT fassatiariberto th17cellmastertranscriptionfactorrorc2regulateshiv1geneexpressionandviraloutgrowth