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The ability of TNPO3-depleted cells to inhibit HIV-1 infection requires CPSF6

BACKGROUND: Expression of the cellular karyopherin TNPO3/transportin-SR2/Tnp3 is necessary for HIV-1 infection. Depletion of TNPO3 expression in mammalian cells inhibits HIV-1 infection after reverse transcription but prior to integration. RESULTS: This work explores the role of cleavage and polyade...

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Autores principales: Fricke, Thomas, Valle-Casuso, Jose Carlos, White, Tommy E, Brandariz-Nuñez, Alberto, Bosche, William J, Reszka, Natalia, Gorelick, Robert, Diaz-Griffero, Felipe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3695788/
https://www.ncbi.nlm.nih.gov/pubmed/23622145
http://dx.doi.org/10.1186/1742-4690-10-46
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author Fricke, Thomas
Valle-Casuso, Jose Carlos
White, Tommy E
Brandariz-Nuñez, Alberto
Bosche, William J
Reszka, Natalia
Gorelick, Robert
Diaz-Griffero, Felipe
author_facet Fricke, Thomas
Valle-Casuso, Jose Carlos
White, Tommy E
Brandariz-Nuñez, Alberto
Bosche, William J
Reszka, Natalia
Gorelick, Robert
Diaz-Griffero, Felipe
author_sort Fricke, Thomas
collection PubMed
description BACKGROUND: Expression of the cellular karyopherin TNPO3/transportin-SR2/Tnp3 is necessary for HIV-1 infection. Depletion of TNPO3 expression in mammalian cells inhibits HIV-1 infection after reverse transcription but prior to integration. RESULTS: This work explores the role of cleavage and polyadenylation specificity factor subunit 6 (CPSF6) in the ability of TNPO3-depleted cells to inhibit HIV-1 infection. Our findings showed that depletion of TNPO3 expression inhibits HIV-1 infection, while the simultaneous depletion of TNPO3 and CPSF6 expression rescues HIV-1 infection. Several experiments to understand the rescue of infectivity by CPSF6 were performed. Our experiments revealed that the HIV-1 capsid binding ability of the endogenously expressed CPSF6 from TNPO3-depleted cells does not change when compared to CPSF6 from wild type cells. In agreement with our previous results, depletion of TNPO3 did not change the nuclear localization of CPSF6. Studies on the formation of 2-LRT circles during HIV-1 infection revealed that TNPO3-depleted cells are impaired in the integration process or exhibit a defect in the formation of 2-LTR circles. To understand whether the cytosolic fraction of CPSF6 is responsible for the inhibition of HIV-1 in TNPO3-depleted cells, we tested the ability of a cytosolic full-length CPSF6 to block HIV-1 infection. These results demonstrated that overexpression of a cytosolic full-length CPSF6 blocks HIV-1 infection at the nuclear import step. Fate of the capsid assays revealed that cytosolic expression of CPSF6 enhances stability of the HIV-1 core during infection. CONCLUSIONS: These results suggested that inhibition of HIV-1 by TNPO3-depleted cells requires CPSF6.
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spelling pubmed-36957882013-06-29 The ability of TNPO3-depleted cells to inhibit HIV-1 infection requires CPSF6 Fricke, Thomas Valle-Casuso, Jose Carlos White, Tommy E Brandariz-Nuñez, Alberto Bosche, William J Reszka, Natalia Gorelick, Robert Diaz-Griffero, Felipe Retrovirology Research BACKGROUND: Expression of the cellular karyopherin TNPO3/transportin-SR2/Tnp3 is necessary for HIV-1 infection. Depletion of TNPO3 expression in mammalian cells inhibits HIV-1 infection after reverse transcription but prior to integration. RESULTS: This work explores the role of cleavage and polyadenylation specificity factor subunit 6 (CPSF6) in the ability of TNPO3-depleted cells to inhibit HIV-1 infection. Our findings showed that depletion of TNPO3 expression inhibits HIV-1 infection, while the simultaneous depletion of TNPO3 and CPSF6 expression rescues HIV-1 infection. Several experiments to understand the rescue of infectivity by CPSF6 were performed. Our experiments revealed that the HIV-1 capsid binding ability of the endogenously expressed CPSF6 from TNPO3-depleted cells does not change when compared to CPSF6 from wild type cells. In agreement with our previous results, depletion of TNPO3 did not change the nuclear localization of CPSF6. Studies on the formation of 2-LRT circles during HIV-1 infection revealed that TNPO3-depleted cells are impaired in the integration process or exhibit a defect in the formation of 2-LTR circles. To understand whether the cytosolic fraction of CPSF6 is responsible for the inhibition of HIV-1 in TNPO3-depleted cells, we tested the ability of a cytosolic full-length CPSF6 to block HIV-1 infection. These results demonstrated that overexpression of a cytosolic full-length CPSF6 blocks HIV-1 infection at the nuclear import step. Fate of the capsid assays revealed that cytosolic expression of CPSF6 enhances stability of the HIV-1 core during infection. CONCLUSIONS: These results suggested that inhibition of HIV-1 by TNPO3-depleted cells requires CPSF6. BioMed Central 2013-04-26 /pmc/articles/PMC3695788/ /pubmed/23622145 http://dx.doi.org/10.1186/1742-4690-10-46 Text en Copyright © 2013 Fricke et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Fricke, Thomas
Valle-Casuso, Jose Carlos
White, Tommy E
Brandariz-Nuñez, Alberto
Bosche, William J
Reszka, Natalia
Gorelick, Robert
Diaz-Griffero, Felipe
The ability of TNPO3-depleted cells to inhibit HIV-1 infection requires CPSF6
title The ability of TNPO3-depleted cells to inhibit HIV-1 infection requires CPSF6
title_full The ability of TNPO3-depleted cells to inhibit HIV-1 infection requires CPSF6
title_fullStr The ability of TNPO3-depleted cells to inhibit HIV-1 infection requires CPSF6
title_full_unstemmed The ability of TNPO3-depleted cells to inhibit HIV-1 infection requires CPSF6
title_short The ability of TNPO3-depleted cells to inhibit HIV-1 infection requires CPSF6
title_sort ability of tnpo3-depleted cells to inhibit hiv-1 infection requires cpsf6
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3695788/
https://www.ncbi.nlm.nih.gov/pubmed/23622145
http://dx.doi.org/10.1186/1742-4690-10-46
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