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Mutation of the Highly Conserved Ser-40 of the HIV-1 p6 Gag Protein to Phe Causes the Formation of a Hydrophobic Patch, Enhances Membrane Association, and Polyubiquitination of Gag

The HIV-1 p6 Gag protein contains two late assembly (l-) domains that recruit proteins of the endosomal sorting complex required for transport (ESCRT) pathway to mediate membrane fission between the nascent virion and the cell membrane. It was recently demonstrated that mutation of the highly conser...

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Autores principales: Hahn, Friedrich, Setz, Christian, Friedrich, Melanie, Rauch, Pia, Solbak, Sara Marie, Frøystein, Nils Åge, Henklein, Petra, Votteler, Jörg, Fossen, Torgils, Schubert, Ulrich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4213559/
https://www.ncbi.nlm.nih.gov/pubmed/25279819
http://dx.doi.org/10.3390/v6103738
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author Hahn, Friedrich
Setz, Christian
Friedrich, Melanie
Rauch, Pia
Solbak, Sara Marie
Frøystein, Nils Åge
Henklein, Petra
Votteler, Jörg
Fossen, Torgils
Schubert, Ulrich
author_facet Hahn, Friedrich
Setz, Christian
Friedrich, Melanie
Rauch, Pia
Solbak, Sara Marie
Frøystein, Nils Åge
Henklein, Petra
Votteler, Jörg
Fossen, Torgils
Schubert, Ulrich
author_sort Hahn, Friedrich
collection PubMed
description The HIV-1 p6 Gag protein contains two late assembly (l-) domains that recruit proteins of the endosomal sorting complex required for transport (ESCRT) pathway to mediate membrane fission between the nascent virion and the cell membrane. It was recently demonstrated that mutation of the highly conserved Ser-40 to Phe (S40F) disturbs CA-SP1 processing, virus morphogenesis, and infectivity. It also causes the formation of filopodia-like structures, while virus release remains unaffected. Here, we show that the mutation S40F, but not the conservative mutation to Asp (S40D) or Asn (S40N), augments membrane association, K48-linked polyubiquitination, entry into the 26S proteasome, and, consequently, enhances MHC-I antigen presentation of Gag derived epitopes. Nuclear magnetic resonance (NMR) structure analyses revealed that the newly introduced Phe-40, together with Tyr-36, causes the formation of a hydrophobic patch at the C-terminal α-helix of p6, providing a molecular rationale for the enhanced membrane association of Gag observed in vitro and in HIV-1 expressing cells. The extended exposure of the S40F mutant to unidentified membrane-resident ubiquitin E3-ligases might trigger the polyubiquitination of Gag. The cumulative data support a previous model of a so far undefined property of p6, which, in addition to MA, acts as membrane targeting domain of Gag.
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spelling pubmed-42135592014-10-31 Mutation of the Highly Conserved Ser-40 of the HIV-1 p6 Gag Protein to Phe Causes the Formation of a Hydrophobic Patch, Enhances Membrane Association, and Polyubiquitination of Gag Hahn, Friedrich Setz, Christian Friedrich, Melanie Rauch, Pia Solbak, Sara Marie Frøystein, Nils Åge Henklein, Petra Votteler, Jörg Fossen, Torgils Schubert, Ulrich Viruses Article The HIV-1 p6 Gag protein contains two late assembly (l-) domains that recruit proteins of the endosomal sorting complex required for transport (ESCRT) pathway to mediate membrane fission between the nascent virion and the cell membrane. It was recently demonstrated that mutation of the highly conserved Ser-40 to Phe (S40F) disturbs CA-SP1 processing, virus morphogenesis, and infectivity. It also causes the formation of filopodia-like structures, while virus release remains unaffected. Here, we show that the mutation S40F, but not the conservative mutation to Asp (S40D) or Asn (S40N), augments membrane association, K48-linked polyubiquitination, entry into the 26S proteasome, and, consequently, enhances MHC-I antigen presentation of Gag derived epitopes. Nuclear magnetic resonance (NMR) structure analyses revealed that the newly introduced Phe-40, together with Tyr-36, causes the formation of a hydrophobic patch at the C-terminal α-helix of p6, providing a molecular rationale for the enhanced membrane association of Gag observed in vitro and in HIV-1 expressing cells. The extended exposure of the S40F mutant to unidentified membrane-resident ubiquitin E3-ligases might trigger the polyubiquitination of Gag. The cumulative data support a previous model of a so far undefined property of p6, which, in addition to MA, acts as membrane targeting domain of Gag. MDPI 2014-10-02 /pmc/articles/PMC4213559/ /pubmed/25279819 http://dx.doi.org/10.3390/v6103738 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hahn, Friedrich
Setz, Christian
Friedrich, Melanie
Rauch, Pia
Solbak, Sara Marie
Frøystein, Nils Åge
Henklein, Petra
Votteler, Jörg
Fossen, Torgils
Schubert, Ulrich
Mutation of the Highly Conserved Ser-40 of the HIV-1 p6 Gag Protein to Phe Causes the Formation of a Hydrophobic Patch, Enhances Membrane Association, and Polyubiquitination of Gag
title Mutation of the Highly Conserved Ser-40 of the HIV-1 p6 Gag Protein to Phe Causes the Formation of a Hydrophobic Patch, Enhances Membrane Association, and Polyubiquitination of Gag
title_full Mutation of the Highly Conserved Ser-40 of the HIV-1 p6 Gag Protein to Phe Causes the Formation of a Hydrophobic Patch, Enhances Membrane Association, and Polyubiquitination of Gag
title_fullStr Mutation of the Highly Conserved Ser-40 of the HIV-1 p6 Gag Protein to Phe Causes the Formation of a Hydrophobic Patch, Enhances Membrane Association, and Polyubiquitination of Gag
title_full_unstemmed Mutation of the Highly Conserved Ser-40 of the HIV-1 p6 Gag Protein to Phe Causes the Formation of a Hydrophobic Patch, Enhances Membrane Association, and Polyubiquitination of Gag
title_short Mutation of the Highly Conserved Ser-40 of the HIV-1 p6 Gag Protein to Phe Causes the Formation of a Hydrophobic Patch, Enhances Membrane Association, and Polyubiquitination of Gag
title_sort mutation of the highly conserved ser-40 of the hiv-1 p6 gag protein to phe causes the formation of a hydrophobic patch, enhances membrane association, and polyubiquitination of gag
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4213559/
https://www.ncbi.nlm.nih.gov/pubmed/25279819
http://dx.doi.org/10.3390/v6103738
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