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A genetic IFN/STAT1/FAS axis determines CD4 T stem cell memory levels and apoptosis in healthy controls and Adult T-cell Leukemia patients

Adult T-cell leukemia (ATL) is an aggressive, chemotherapy-resistant CD4(+)CD25(+) leukemia caused by HTLV-1 infection, which usually develops in a minority of patients several decades after infection. IFN + AZT combination therapy has shown clinical benefit in ATL, although its mechanism of action...

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Autores principales: Khouri, Ricardo, Silva-Santos, Gilvanéia, Dierckx, Tim, Menezes, Soraya Maria, Decanine, Daniele, Theys, Kristof, Silva, Aline Clara, Farré, Lourdes, Bittencourt, Achiléa, Mangino, Massimo, Roederer, Mario, Vandamme, Anne-Mieke, Van Weyenbergh, Johan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5927537/
https://www.ncbi.nlm.nih.gov/pubmed/29721391
http://dx.doi.org/10.1080/2162402X.2018.1426423
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author Khouri, Ricardo
Silva-Santos, Gilvanéia
Dierckx, Tim
Menezes, Soraya Maria
Decanine, Daniele
Theys, Kristof
Silva, Aline Clara
Farré, Lourdes
Bittencourt, Achiléa
Mangino, Massimo
Roederer, Mario
Vandamme, Anne-Mieke
Van Weyenbergh, Johan
author_facet Khouri, Ricardo
Silva-Santos, Gilvanéia
Dierckx, Tim
Menezes, Soraya Maria
Decanine, Daniele
Theys, Kristof
Silva, Aline Clara
Farré, Lourdes
Bittencourt, Achiléa
Mangino, Massimo
Roederer, Mario
Vandamme, Anne-Mieke
Van Weyenbergh, Johan
author_sort Khouri, Ricardo
collection PubMed
description Adult T-cell leukemia (ATL) is an aggressive, chemotherapy-resistant CD4(+)CD25(+) leukemia caused by HTLV-1 infection, which usually develops in a minority of patients several decades after infection. IFN + AZT combination therapy has shown clinical benefit in ATL, although its mechanism of action remains unclear. We have previously shown that an IFN-responsive FAS promoter polymorphism in a STAT1 binding site (rs1800682) is associated to ATL susceptibility and survival. Recently, CD4 T stem cell memory (T(SCM)) Fas(hi) cells have been identified as the hierarchical cellular apex of ATL, but a possible link between FAS, apoptosis, proliferation and IFN response in ATL has not been studied. In this study, we found significant ex vivo antiproliferative, antiviral and immunomodulatory effects of IFN-α treatment in short-term culture of primary mononuclear cells from ATL patients (n = 25). Bayesian Network analysis allowed us to integrate ex vivo IFN-α response with clinical, genetic and immunological data from ATL patients, thereby revealing a central role for FAS -670 polymorphism and apoptosis in the coordinated mechanism of action of IFN-α. FAS genotype-dependence of IFN-induced apoptosis was experimentally validated in an independent cohort of healthy controls (n = 20). The same FAS -670 polymorphism also determined CD4 T(SCM) levels in a genome-wide twin study (p = 7 × 10(−11), n = 460), confirming a genetic link between apoptosis and T(SCM) levels. Transcriptomic analysis and cell type deconvolution confirmed the FAS genotype/T(SCM) link and IFN-α-induced downregulation of CD4 T(SCM)-specific genes in ATL patient cells. In conclusion, ex vivo IFN-α treatment exerts a pleiotropic effect on primary ATL cells, with a genetic IFN/STAT1/Fas axis determining apoptosis vs. proliferation and underscoring the CD4 T(SCM) model of ATL leukemogenesis.
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spelling pubmed-59275372018-05-02 A genetic IFN/STAT1/FAS axis determines CD4 T stem cell memory levels and apoptosis in healthy controls and Adult T-cell Leukemia patients Khouri, Ricardo Silva-Santos, Gilvanéia Dierckx, Tim Menezes, Soraya Maria Decanine, Daniele Theys, Kristof Silva, Aline Clara Farré, Lourdes Bittencourt, Achiléa Mangino, Massimo Roederer, Mario Vandamme, Anne-Mieke Van Weyenbergh, Johan Oncoimmunology Original Research Adult T-cell leukemia (ATL) is an aggressive, chemotherapy-resistant CD4(+)CD25(+) leukemia caused by HTLV-1 infection, which usually develops in a minority of patients several decades after infection. IFN + AZT combination therapy has shown clinical benefit in ATL, although its mechanism of action remains unclear. We have previously shown that an IFN-responsive FAS promoter polymorphism in a STAT1 binding site (rs1800682) is associated to ATL susceptibility and survival. Recently, CD4 T stem cell memory (T(SCM)) Fas(hi) cells have been identified as the hierarchical cellular apex of ATL, but a possible link between FAS, apoptosis, proliferation and IFN response in ATL has not been studied. In this study, we found significant ex vivo antiproliferative, antiviral and immunomodulatory effects of IFN-α treatment in short-term culture of primary mononuclear cells from ATL patients (n = 25). Bayesian Network analysis allowed us to integrate ex vivo IFN-α response with clinical, genetic and immunological data from ATL patients, thereby revealing a central role for FAS -670 polymorphism and apoptosis in the coordinated mechanism of action of IFN-α. FAS genotype-dependence of IFN-induced apoptosis was experimentally validated in an independent cohort of healthy controls (n = 20). The same FAS -670 polymorphism also determined CD4 T(SCM) levels in a genome-wide twin study (p = 7 × 10(−11), n = 460), confirming a genetic link between apoptosis and T(SCM) levels. Transcriptomic analysis and cell type deconvolution confirmed the FAS genotype/T(SCM) link and IFN-α-induced downregulation of CD4 T(SCM)-specific genes in ATL patient cells. In conclusion, ex vivo IFN-α treatment exerts a pleiotropic effect on primary ATL cells, with a genetic IFN/STAT1/Fas axis determining apoptosis vs. proliferation and underscoring the CD4 T(SCM) model of ATL leukemogenesis. Taylor & Francis 2018-02-13 /pmc/articles/PMC5927537/ /pubmed/29721391 http://dx.doi.org/10.1080/2162402X.2018.1426423 Text en © 2018 The Author(s). Published with license by Taylor & Francis Group, LLC http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License (http://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited, and is not altered, transformed, or built upon in any way.
spellingShingle Original Research
Khouri, Ricardo
Silva-Santos, Gilvanéia
Dierckx, Tim
Menezes, Soraya Maria
Decanine, Daniele
Theys, Kristof
Silva, Aline Clara
Farré, Lourdes
Bittencourt, Achiléa
Mangino, Massimo
Roederer, Mario
Vandamme, Anne-Mieke
Van Weyenbergh, Johan
A genetic IFN/STAT1/FAS axis determines CD4 T stem cell memory levels and apoptosis in healthy controls and Adult T-cell Leukemia patients
title A genetic IFN/STAT1/FAS axis determines CD4 T stem cell memory levels and apoptosis in healthy controls and Adult T-cell Leukemia patients
title_full A genetic IFN/STAT1/FAS axis determines CD4 T stem cell memory levels and apoptosis in healthy controls and Adult T-cell Leukemia patients
title_fullStr A genetic IFN/STAT1/FAS axis determines CD4 T stem cell memory levels and apoptosis in healthy controls and Adult T-cell Leukemia patients
title_full_unstemmed A genetic IFN/STAT1/FAS axis determines CD4 T stem cell memory levels and apoptosis in healthy controls and Adult T-cell Leukemia patients
title_short A genetic IFN/STAT1/FAS axis determines CD4 T stem cell memory levels and apoptosis in healthy controls and Adult T-cell Leukemia patients
title_sort genetic ifn/stat1/fas axis determines cd4 t stem cell memory levels and apoptosis in healthy controls and adult t-cell leukemia patients
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5927537/
https://www.ncbi.nlm.nih.gov/pubmed/29721391
http://dx.doi.org/10.1080/2162402X.2018.1426423
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