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HIV-1 Gp120 clade B/C induces a GRP78 driven cytoprotective mechanism in astrocytoma

HIV-1 clades are known to be one of the key factors implicated in modulating HIV-associated neurocognitive disorders. HIV-1 B and C clades account for the majority of HIV-1 infections, clade B being the most neuropathogenic. The mechanisms behind HIV-mediated neuropathogenesis remain the subject of...

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Autores principales: López, Sheila N., Rodríguez-Valentín, Madeline, Rivera, Mariela, Rodríguez, Maridaliz, Babu, Mohan, Cubano, Luis A., Xiong, Huangui, Wang, Guangdi, Kucheryavykh, Lilia, Boukli, Nawal M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5620267/
https://www.ncbi.nlm.nih.gov/pubmed/28978127
http://dx.doi.org/10.18632/oncotarget.19474
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author López, Sheila N.
Rodríguez-Valentín, Madeline
Rivera, Mariela
Rodríguez, Maridaliz
Babu, Mohan
Cubano, Luis A.
Xiong, Huangui
Wang, Guangdi
Kucheryavykh, Lilia
Boukli, Nawal M.
author_facet López, Sheila N.
Rodríguez-Valentín, Madeline
Rivera, Mariela
Rodríguez, Maridaliz
Babu, Mohan
Cubano, Luis A.
Xiong, Huangui
Wang, Guangdi
Kucheryavykh, Lilia
Boukli, Nawal M.
author_sort López, Sheila N.
collection PubMed
description HIV-1 clades are known to be one of the key factors implicated in modulating HIV-associated neurocognitive disorders. HIV-1 B and C clades account for the majority of HIV-1 infections, clade B being the most neuropathogenic. The mechanisms behind HIV-mediated neuropathogenesis remain the subject of active research. We hypothesized that HIV-1 gp120 clade B and C proteins may exert differential proliferation, cell survival and NeuroAIDS effects in human astrocytoma cells via the Unfolded Protein Response, an endoplasmic reticulum- based cytoprotective mechanism. The differential effect of gp120 clade B and C was evaluated using for the first time a Tandem Mass Tag isobaric labeling quantitative proteomic approach. Flow cytometry analyses were performed for cell cycle and cell death identification. Among the proteins differentiated by HIV-1 gp120 proteins figure cytoskeleton, oxidative stress, UPR markers and numerous glycolytic metabolism enzymes. Our results demonstrate that HIV-1 gp120 B induced migration, proliferative and protective responses granted by the expression of GRP78, while HIV-1 gp120 C induced the expression of key inflammatory and pro-apoptotic markers. These novel findings put forward the first evidence that GRP78 is a key player in HIV-1 clade B and C neuropathogenic discrepancies and can be used as a novel target for immunotherapies.
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spelling pubmed-56202672017-10-03 HIV-1 Gp120 clade B/C induces a GRP78 driven cytoprotective mechanism in astrocytoma López, Sheila N. Rodríguez-Valentín, Madeline Rivera, Mariela Rodríguez, Maridaliz Babu, Mohan Cubano, Luis A. Xiong, Huangui Wang, Guangdi Kucheryavykh, Lilia Boukli, Nawal M. Oncotarget Research Paper HIV-1 clades are known to be one of the key factors implicated in modulating HIV-associated neurocognitive disorders. HIV-1 B and C clades account for the majority of HIV-1 infections, clade B being the most neuropathogenic. The mechanisms behind HIV-mediated neuropathogenesis remain the subject of active research. We hypothesized that HIV-1 gp120 clade B and C proteins may exert differential proliferation, cell survival and NeuroAIDS effects in human astrocytoma cells via the Unfolded Protein Response, an endoplasmic reticulum- based cytoprotective mechanism. The differential effect of gp120 clade B and C was evaluated using for the first time a Tandem Mass Tag isobaric labeling quantitative proteomic approach. Flow cytometry analyses were performed for cell cycle and cell death identification. Among the proteins differentiated by HIV-1 gp120 proteins figure cytoskeleton, oxidative stress, UPR markers and numerous glycolytic metabolism enzymes. Our results demonstrate that HIV-1 gp120 B induced migration, proliferative and protective responses granted by the expression of GRP78, while HIV-1 gp120 C induced the expression of key inflammatory and pro-apoptotic markers. These novel findings put forward the first evidence that GRP78 is a key player in HIV-1 clade B and C neuropathogenic discrepancies and can be used as a novel target for immunotherapies. Impact Journals LLC 2017-07-22 /pmc/articles/PMC5620267/ /pubmed/28978127 http://dx.doi.org/10.18632/oncotarget.19474 Text en Copyright: © 2017 López et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
López, Sheila N.
Rodríguez-Valentín, Madeline
Rivera, Mariela
Rodríguez, Maridaliz
Babu, Mohan
Cubano, Luis A.
Xiong, Huangui
Wang, Guangdi
Kucheryavykh, Lilia
Boukli, Nawal M.
HIV-1 Gp120 clade B/C induces a GRP78 driven cytoprotective mechanism in astrocytoma
title HIV-1 Gp120 clade B/C induces a GRP78 driven cytoprotective mechanism in astrocytoma
title_full HIV-1 Gp120 clade B/C induces a GRP78 driven cytoprotective mechanism in astrocytoma
title_fullStr HIV-1 Gp120 clade B/C induces a GRP78 driven cytoprotective mechanism in astrocytoma
title_full_unstemmed HIV-1 Gp120 clade B/C induces a GRP78 driven cytoprotective mechanism in astrocytoma
title_short HIV-1 Gp120 clade B/C induces a GRP78 driven cytoprotective mechanism in astrocytoma
title_sort hiv-1 gp120 clade b/c induces a grp78 driven cytoprotective mechanism in astrocytoma
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5620267/
https://www.ncbi.nlm.nih.gov/pubmed/28978127
http://dx.doi.org/10.18632/oncotarget.19474
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