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A candidate anti-HIV reservoir compound, auranofin, exerts a selective ‘anti-memory' effect by exploiting the baseline oxidative status of lymphocytes

Central memory (T(CM)) and transitional memory (T(TM)) CD4(+) T cells are known to be the major cellular reservoirs for HIV, as these cells can harbor a transcriptionally silent form of viral DNA that is not targeted by either the immune system or current antiretroviral drug regimens. In the present...

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Autores principales: Chirullo, B, Sgarbanti, R, Limongi, D, Shytaj, I L, Alvarez, D, Das, B, Boe, A, DaFonseca, S, Chomont, N, Liotta, L, III Petricoin, E, Norelli, S, Pelosi, E, Garaci, E, Savarino, A, Palamara, A T
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3877546/
https://www.ncbi.nlm.nih.gov/pubmed/24309931
http://dx.doi.org/10.1038/cddis.2013.473
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author Chirullo, B
Sgarbanti, R
Limongi, D
Shytaj, I L
Alvarez, D
Das, B
Boe, A
DaFonseca, S
Chomont, N
Liotta, L
III Petricoin, E
Norelli, S
Pelosi, E
Garaci, E
Savarino, A
Palamara, A T
author_facet Chirullo, B
Sgarbanti, R
Limongi, D
Shytaj, I L
Alvarez, D
Das, B
Boe, A
DaFonseca, S
Chomont, N
Liotta, L
III Petricoin, E
Norelli, S
Pelosi, E
Garaci, E
Savarino, A
Palamara, A T
author_sort Chirullo, B
collection PubMed
description Central memory (T(CM)) and transitional memory (T(TM)) CD4(+) T cells are known to be the major cellular reservoirs for HIV, as these cells can harbor a transcriptionally silent form of viral DNA that is not targeted by either the immune system or current antiretroviral drug regimens. In the present study, we explored the molecular bases of the anti-HIV reservoir effects of auranofin (AF), a pro-oxidant gold-based drug and a candidate compound for a cure of AIDS. We here show that T(CM) and T(TM) lymphocytes have lower baseline antioxidant defenses as compared with their naive counterpart. These differences are mirrored by the effects exerted by AF on T-lymphocytes: AF was able to exert a pro-differentiating and pro-apoptotic effect, which was more pronounced in the memory subsets. AF induced an early activation of the p38 mitogen-activated protein kinase (p38 MAPK) followed by mitochondrial depolarization and a final burst in intracellular peroxides. The pro-differentiating effect was characterized by a downregulation of the CD27 marker expression. Interestingly, AF-induced apoptosis was inhibited by pyruvate, a well-known peroxide scavenger, but pyruvate did not inhibit the pro-differentiating effect of AF, indicating that the pro-apoptotic and pro-differentiating effects involve different pathways. In conclusion, our results demonstrate that AF selectively targets the T(CM)/T(TM) lymphocyte subsets, which encompass the HIV reservoir, by affecting redox-sensitive cell death pathways.
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spelling pubmed-38775462014-01-02 A candidate anti-HIV reservoir compound, auranofin, exerts a selective ‘anti-memory' effect by exploiting the baseline oxidative status of lymphocytes Chirullo, B Sgarbanti, R Limongi, D Shytaj, I L Alvarez, D Das, B Boe, A DaFonseca, S Chomont, N Liotta, L III Petricoin, E Norelli, S Pelosi, E Garaci, E Savarino, A Palamara, A T Cell Death Dis Original Article Central memory (T(CM)) and transitional memory (T(TM)) CD4(+) T cells are known to be the major cellular reservoirs for HIV, as these cells can harbor a transcriptionally silent form of viral DNA that is not targeted by either the immune system or current antiretroviral drug regimens. In the present study, we explored the molecular bases of the anti-HIV reservoir effects of auranofin (AF), a pro-oxidant gold-based drug and a candidate compound for a cure of AIDS. We here show that T(CM) and T(TM) lymphocytes have lower baseline antioxidant defenses as compared with their naive counterpart. These differences are mirrored by the effects exerted by AF on T-lymphocytes: AF was able to exert a pro-differentiating and pro-apoptotic effect, which was more pronounced in the memory subsets. AF induced an early activation of the p38 mitogen-activated protein kinase (p38 MAPK) followed by mitochondrial depolarization and a final burst in intracellular peroxides. The pro-differentiating effect was characterized by a downregulation of the CD27 marker expression. Interestingly, AF-induced apoptosis was inhibited by pyruvate, a well-known peroxide scavenger, but pyruvate did not inhibit the pro-differentiating effect of AF, indicating that the pro-apoptotic and pro-differentiating effects involve different pathways. In conclusion, our results demonstrate that AF selectively targets the T(CM)/T(TM) lymphocyte subsets, which encompass the HIV reservoir, by affecting redox-sensitive cell death pathways. Nature Publishing Group 2013-12 2013-12-05 /pmc/articles/PMC3877546/ /pubmed/24309931 http://dx.doi.org/10.1038/cddis.2013.473 Text en Copyright © 2013 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Original Article
Chirullo, B
Sgarbanti, R
Limongi, D
Shytaj, I L
Alvarez, D
Das, B
Boe, A
DaFonseca, S
Chomont, N
Liotta, L
III Petricoin, E
Norelli, S
Pelosi, E
Garaci, E
Savarino, A
Palamara, A T
A candidate anti-HIV reservoir compound, auranofin, exerts a selective ‘anti-memory' effect by exploiting the baseline oxidative status of lymphocytes
title A candidate anti-HIV reservoir compound, auranofin, exerts a selective ‘anti-memory' effect by exploiting the baseline oxidative status of lymphocytes
title_full A candidate anti-HIV reservoir compound, auranofin, exerts a selective ‘anti-memory' effect by exploiting the baseline oxidative status of lymphocytes
title_fullStr A candidate anti-HIV reservoir compound, auranofin, exerts a selective ‘anti-memory' effect by exploiting the baseline oxidative status of lymphocytes
title_full_unstemmed A candidate anti-HIV reservoir compound, auranofin, exerts a selective ‘anti-memory' effect by exploiting the baseline oxidative status of lymphocytes
title_short A candidate anti-HIV reservoir compound, auranofin, exerts a selective ‘anti-memory' effect by exploiting the baseline oxidative status of lymphocytes
title_sort candidate anti-hiv reservoir compound, auranofin, exerts a selective ‘anti-memory' effect by exploiting the baseline oxidative status of lymphocytes
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3877546/
https://www.ncbi.nlm.nih.gov/pubmed/24309931
http://dx.doi.org/10.1038/cddis.2013.473
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