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Defining the Interactions and Role of DCAF1/VPRBP in the DDB1-Cullin4A E3 Ubiquitin Ligase Complex Engaged by HIV-1 Vpr to Induce a G(2) Cell Cycle Arrest

HIV viral protein R (Vpr) induces a cell cycle arrest at the G(2)/M phase by activating the ATR DNA damage/replication stress signalling pathway through engagement of the DDB1-CUL4A-DCAF1 E3 ubiquitin ligase via a direct binding to the substrate specificity receptor DCAF1. Since no high resolution s...

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Autores principales: Gérard, Francine C. A., Yang, Ruifeng, Romani, Bizhan, Poisson, Alexis, Belzile, Jean-Philippe, Rougeau, Nicole, Cohen, Éric A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3928422/
https://www.ncbi.nlm.nih.gov/pubmed/24558487
http://dx.doi.org/10.1371/journal.pone.0089195
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author Gérard, Francine C. A.
Yang, Ruifeng
Romani, Bizhan
Poisson, Alexis
Belzile, Jean-Philippe
Rougeau, Nicole
Cohen, Éric A.
author_facet Gérard, Francine C. A.
Yang, Ruifeng
Romani, Bizhan
Poisson, Alexis
Belzile, Jean-Philippe
Rougeau, Nicole
Cohen, Éric A.
author_sort Gérard, Francine C. A.
collection PubMed
description HIV viral protein R (Vpr) induces a cell cycle arrest at the G(2)/M phase by activating the ATR DNA damage/replication stress signalling pathway through engagement of the DDB1-CUL4A-DCAF1 E3 ubiquitin ligase via a direct binding to the substrate specificity receptor DCAF1. Since no high resolution structures of the DDB1-DCAF1-Vpr substrate recognition module currently exist, we used a mutagenesis approach to better define motifs in DCAF1 that are crucial for Vpr and DDB1 binding. Herein, we show that the minimal domain of DCAF1 that retained the ability to bind Vpr and DDB1 was mapped to residues 1041 to 1393 (DCAF1 WD). Mutagenic analyses identified an α-helical H-box motif and F/YxxF/Y motifs located in the N-terminal domain of DCAF1 WD that are involved in exclusive binding to DDB1. While we could not identify elements specifically involved in Vpr binding, overall, the mutagenesis data suggest that the predicted β-propeller conformation of DCAF1 is likely to be critical for Vpr association. Importantly, we provide evidence that binding of Vpr to DCAF1 appears to modulate the formation of a DDB1/DCAF1 complex. Lastly, we show that expression of DCAF1 WD in the absence of endogenous DCAF1 was not sufficient to enable Vpr-mediated G(2) arrest activity. Overall, our results reveal that Vpr and DDB1 binding on DCAF1 can be genetically separated and further suggest that DCAF1 contains determinants in addition to the Vpr and DDB1 minimal binding domain, which are required for Vpr to enable the induction of a G(2) arrest.
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spelling pubmed-39284222014-02-20 Defining the Interactions and Role of DCAF1/VPRBP in the DDB1-Cullin4A E3 Ubiquitin Ligase Complex Engaged by HIV-1 Vpr to Induce a G(2) Cell Cycle Arrest Gérard, Francine C. A. Yang, Ruifeng Romani, Bizhan Poisson, Alexis Belzile, Jean-Philippe Rougeau, Nicole Cohen, Éric A. PLoS One Research Article HIV viral protein R (Vpr) induces a cell cycle arrest at the G(2)/M phase by activating the ATR DNA damage/replication stress signalling pathway through engagement of the DDB1-CUL4A-DCAF1 E3 ubiquitin ligase via a direct binding to the substrate specificity receptor DCAF1. Since no high resolution structures of the DDB1-DCAF1-Vpr substrate recognition module currently exist, we used a mutagenesis approach to better define motifs in DCAF1 that are crucial for Vpr and DDB1 binding. Herein, we show that the minimal domain of DCAF1 that retained the ability to bind Vpr and DDB1 was mapped to residues 1041 to 1393 (DCAF1 WD). Mutagenic analyses identified an α-helical H-box motif and F/YxxF/Y motifs located in the N-terminal domain of DCAF1 WD that are involved in exclusive binding to DDB1. While we could not identify elements specifically involved in Vpr binding, overall, the mutagenesis data suggest that the predicted β-propeller conformation of DCAF1 is likely to be critical for Vpr association. Importantly, we provide evidence that binding of Vpr to DCAF1 appears to modulate the formation of a DDB1/DCAF1 complex. Lastly, we show that expression of DCAF1 WD in the absence of endogenous DCAF1 was not sufficient to enable Vpr-mediated G(2) arrest activity. Overall, our results reveal that Vpr and DDB1 binding on DCAF1 can be genetically separated and further suggest that DCAF1 contains determinants in addition to the Vpr and DDB1 minimal binding domain, which are required for Vpr to enable the induction of a G(2) arrest. Public Library of Science 2014-02-18 /pmc/articles/PMC3928422/ /pubmed/24558487 http://dx.doi.org/10.1371/journal.pone.0089195 Text en © 2014 Gérard et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Gérard, Francine C. A.
Yang, Ruifeng
Romani, Bizhan
Poisson, Alexis
Belzile, Jean-Philippe
Rougeau, Nicole
Cohen, Éric A.
Defining the Interactions and Role of DCAF1/VPRBP in the DDB1-Cullin4A E3 Ubiquitin Ligase Complex Engaged by HIV-1 Vpr to Induce a G(2) Cell Cycle Arrest
title Defining the Interactions and Role of DCAF1/VPRBP in the DDB1-Cullin4A E3 Ubiquitin Ligase Complex Engaged by HIV-1 Vpr to Induce a G(2) Cell Cycle Arrest
title_full Defining the Interactions and Role of DCAF1/VPRBP in the DDB1-Cullin4A E3 Ubiquitin Ligase Complex Engaged by HIV-1 Vpr to Induce a G(2) Cell Cycle Arrest
title_fullStr Defining the Interactions and Role of DCAF1/VPRBP in the DDB1-Cullin4A E3 Ubiquitin Ligase Complex Engaged by HIV-1 Vpr to Induce a G(2) Cell Cycle Arrest
title_full_unstemmed Defining the Interactions and Role of DCAF1/VPRBP in the DDB1-Cullin4A E3 Ubiquitin Ligase Complex Engaged by HIV-1 Vpr to Induce a G(2) Cell Cycle Arrest
title_short Defining the Interactions and Role of DCAF1/VPRBP in the DDB1-Cullin4A E3 Ubiquitin Ligase Complex Engaged by HIV-1 Vpr to Induce a G(2) Cell Cycle Arrest
title_sort defining the interactions and role of dcaf1/vprbp in the ddb1-cullin4a e3 ubiquitin ligase complex engaged by hiv-1 vpr to induce a g(2) cell cycle arrest
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3928422/
https://www.ncbi.nlm.nih.gov/pubmed/24558487
http://dx.doi.org/10.1371/journal.pone.0089195
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