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HIV-1 protease with leucine zipper fused at N-terminus exhibits enhanced linker amino acid-dependent activity

BACKGROUND: HIV-1 protease (PR) activation is triggered by Gag-Pol dimerization. Premature PR activation results in reduced virion yields due to enhanced Gag cleavage. A p6* transframe peptide located directly upstream of protease is believed to play a modulating role in PR activation. Previous repo...

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Autores principales: Yu, Fu-Hsien, Wang, Chin-Tien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5899837/
https://www.ncbi.nlm.nih.gov/pubmed/29655366
http://dx.doi.org/10.1186/s12977-018-0413-6
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author Yu, Fu-Hsien
Wang, Chin-Tien
author_facet Yu, Fu-Hsien
Wang, Chin-Tien
author_sort Yu, Fu-Hsien
collection PubMed
description BACKGROUND: HIV-1 protease (PR) activation is triggered by Gag-Pol dimerization. Premature PR activation results in reduced virion yields due to enhanced Gag cleavage. A p6* transframe peptide located directly upstream of protease is believed to play a modulating role in PR activation. Previous reports indicate that the C-terminal p6* tetra-peptide prevents premature PR activation triggered by a leucine zipper (LZ) dimerization motif inserted in the deleted p6* region. To clarify the involvement of C-terminal p6* residues in mitigating enhanced LZ-incurred Gag processing, we engineered constructs containing C-terminal p6* residue substitutions with and without a mutation blocking the p6*/PR cleavage site, and created other Gag or p6* domain-removing constructs. The capabilities of these constructs to mediate virus maturation were assessed by Western blotting and single-cycle infection assays. RESULTS: p6*-PR cleavage blocking did not significantly reduce the LZ enhancement effect on Gag cleavage when only four amino acid residues were present between the p6* and PR. This suggests that the potent LZ dimerization motif may enhance PR activation by facilitating PR dimer formation, and that PR precursors may trigger sufficient enzymatic activity without breaking off from the PR N-terminus. Enhanced LZ-induced activation of PR embedded in Gag-Pol was found to be independent of the Gag assembly domain. In contrast, the LZ enhancement effect was markedly reduced when six amino acids were present at the p6*-PR junction, in part due to impaired PR maturation by substitution mutations. We also observed that a proline substitution at the P3 position eliminated the ability of p6*-deleted Gag-Pol to mediate virus maturation, thus emphasizing the importance of C-terminal p6* residues to modulating PR activation. CONCLUSIONS: The ability of HIV-1 C-terminal p6* amino acid residues to modulate PR activation contributes, at least in part, to their ability to counteract enhanced Gag cleavage induced by a leucine zipper substituted for a deleted p6*. Changes in C-terminal p6* residues between LZ and PR may affect PR-mediated virus maturation, thus providing a possible method for assessing HIV-1 protease precursor activation in the context of virus assembly.
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spelling pubmed-58998372018-04-23 HIV-1 protease with leucine zipper fused at N-terminus exhibits enhanced linker amino acid-dependent activity Yu, Fu-Hsien Wang, Chin-Tien Retrovirology Research BACKGROUND: HIV-1 protease (PR) activation is triggered by Gag-Pol dimerization. Premature PR activation results in reduced virion yields due to enhanced Gag cleavage. A p6* transframe peptide located directly upstream of protease is believed to play a modulating role in PR activation. Previous reports indicate that the C-terminal p6* tetra-peptide prevents premature PR activation triggered by a leucine zipper (LZ) dimerization motif inserted in the deleted p6* region. To clarify the involvement of C-terminal p6* residues in mitigating enhanced LZ-incurred Gag processing, we engineered constructs containing C-terminal p6* residue substitutions with and without a mutation blocking the p6*/PR cleavage site, and created other Gag or p6* domain-removing constructs. The capabilities of these constructs to mediate virus maturation were assessed by Western blotting and single-cycle infection assays. RESULTS: p6*-PR cleavage blocking did not significantly reduce the LZ enhancement effect on Gag cleavage when only four amino acid residues were present between the p6* and PR. This suggests that the potent LZ dimerization motif may enhance PR activation by facilitating PR dimer formation, and that PR precursors may trigger sufficient enzymatic activity without breaking off from the PR N-terminus. Enhanced LZ-induced activation of PR embedded in Gag-Pol was found to be independent of the Gag assembly domain. In contrast, the LZ enhancement effect was markedly reduced when six amino acids were present at the p6*-PR junction, in part due to impaired PR maturation by substitution mutations. We also observed that a proline substitution at the P3 position eliminated the ability of p6*-deleted Gag-Pol to mediate virus maturation, thus emphasizing the importance of C-terminal p6* residues to modulating PR activation. CONCLUSIONS: The ability of HIV-1 C-terminal p6* amino acid residues to modulate PR activation contributes, at least in part, to their ability to counteract enhanced Gag cleavage induced by a leucine zipper substituted for a deleted p6*. Changes in C-terminal p6* residues between LZ and PR may affect PR-mediated virus maturation, thus providing a possible method for assessing HIV-1 protease precursor activation in the context of virus assembly. BioMed Central 2018-04-14 /pmc/articles/PMC5899837/ /pubmed/29655366 http://dx.doi.org/10.1186/s12977-018-0413-6 Text en © The Author(s) 2018 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Yu, Fu-Hsien
Wang, Chin-Tien
HIV-1 protease with leucine zipper fused at N-terminus exhibits enhanced linker amino acid-dependent activity
title HIV-1 protease with leucine zipper fused at N-terminus exhibits enhanced linker amino acid-dependent activity
title_full HIV-1 protease with leucine zipper fused at N-terminus exhibits enhanced linker amino acid-dependent activity
title_fullStr HIV-1 protease with leucine zipper fused at N-terminus exhibits enhanced linker amino acid-dependent activity
title_full_unstemmed HIV-1 protease with leucine zipper fused at N-terminus exhibits enhanced linker amino acid-dependent activity
title_short HIV-1 protease with leucine zipper fused at N-terminus exhibits enhanced linker amino acid-dependent activity
title_sort hiv-1 protease with leucine zipper fused at n-terminus exhibits enhanced linker amino acid-dependent activity
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5899837/
https://www.ncbi.nlm.nih.gov/pubmed/29655366
http://dx.doi.org/10.1186/s12977-018-0413-6
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