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New Phosphorus Analogs of Bevirimat: Synthesis, Evaluation of Anti-HIV-1 Activity and Molecular Docking Study

Since the beginning of the human immunodeficiency virus (HIV) epidemic, many groups of drugs characterized by diverse mechanisms of action have been developed, which can suppress HIV viremia. 3-O-(3′,3′-Dimethylsuccinyl) betulinic acid, known as bevirimat (BVM), was the first compound in the class o...

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Autores principales: Chrobak, Elwira, Marciniec, Krzysztof, Dąbrowska, Aleksandra, Pęcak, Paweł, Bębenek, Ewa, Kadela-Tomanek, Monika, Bak, Andrzej, Jastrzębska, Maria, Boryczka, Stanisław
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6829466/
https://www.ncbi.nlm.nih.gov/pubmed/31640137
http://dx.doi.org/10.3390/ijms20205209
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author Chrobak, Elwira
Marciniec, Krzysztof
Dąbrowska, Aleksandra
Pęcak, Paweł
Bębenek, Ewa
Kadela-Tomanek, Monika
Bak, Andrzej
Jastrzębska, Maria
Boryczka, Stanisław
author_facet Chrobak, Elwira
Marciniec, Krzysztof
Dąbrowska, Aleksandra
Pęcak, Paweł
Bębenek, Ewa
Kadela-Tomanek, Monika
Bak, Andrzej
Jastrzębska, Maria
Boryczka, Stanisław
author_sort Chrobak, Elwira
collection PubMed
description Since the beginning of the human immunodeficiency virus (HIV) epidemic, many groups of drugs characterized by diverse mechanisms of action have been developed, which can suppress HIV viremia. 3-O-(3′,3′-Dimethylsuccinyl) betulinic acid, known as bevirimat (BVM), was the first compound in the class of HIV maturation inhibitors. In the present work, phosphate and phosphonate derivatives of 3-carboxyacylbetulinic acid were synthesized and evaluated for anti-HIV-1 activity. In vitro studies showed that 30-diethylphosphonate analog of BVM (compound 14a) has comparable effects to BVM (half maximal inhibitory concentrations (IC(50)) equal to 0.02 μM and 0.03 μM, respectively) and is also more selective (selectivity indices: 3450 and 967, respectively). To investigate the possible mechanism of antiviral effect of 14a, molecular docking was carried out on the C-terminal domain (CTD) of HIV-1 capsid (CA)–spacer peptide 1 (SP1) fragment of Gag protein, designated as CTD-SP1, which was described as a molecular target for maturation inhibitors. Compared with interactions between BVM and the protein, an increased number of strong interactions between ligand 14a and protein, generated by the phosphonate group, was observed.
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spelling pubmed-68294662019-11-18 New Phosphorus Analogs of Bevirimat: Synthesis, Evaluation of Anti-HIV-1 Activity and Molecular Docking Study Chrobak, Elwira Marciniec, Krzysztof Dąbrowska, Aleksandra Pęcak, Paweł Bębenek, Ewa Kadela-Tomanek, Monika Bak, Andrzej Jastrzębska, Maria Boryczka, Stanisław Int J Mol Sci Article Since the beginning of the human immunodeficiency virus (HIV) epidemic, many groups of drugs characterized by diverse mechanisms of action have been developed, which can suppress HIV viremia. 3-O-(3′,3′-Dimethylsuccinyl) betulinic acid, known as bevirimat (BVM), was the first compound in the class of HIV maturation inhibitors. In the present work, phosphate and phosphonate derivatives of 3-carboxyacylbetulinic acid were synthesized and evaluated for anti-HIV-1 activity. In vitro studies showed that 30-diethylphosphonate analog of BVM (compound 14a) has comparable effects to BVM (half maximal inhibitory concentrations (IC(50)) equal to 0.02 μM and 0.03 μM, respectively) and is also more selective (selectivity indices: 3450 and 967, respectively). To investigate the possible mechanism of antiviral effect of 14a, molecular docking was carried out on the C-terminal domain (CTD) of HIV-1 capsid (CA)–spacer peptide 1 (SP1) fragment of Gag protein, designated as CTD-SP1, which was described as a molecular target for maturation inhibitors. Compared with interactions between BVM and the protein, an increased number of strong interactions between ligand 14a and protein, generated by the phosphonate group, was observed. MDPI 2019-10-21 /pmc/articles/PMC6829466/ /pubmed/31640137 http://dx.doi.org/10.3390/ijms20205209 Text en © 2019 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 (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chrobak, Elwira
Marciniec, Krzysztof
Dąbrowska, Aleksandra
Pęcak, Paweł
Bębenek, Ewa
Kadela-Tomanek, Monika
Bak, Andrzej
Jastrzębska, Maria
Boryczka, Stanisław
New Phosphorus Analogs of Bevirimat: Synthesis, Evaluation of Anti-HIV-1 Activity and Molecular Docking Study
title New Phosphorus Analogs of Bevirimat: Synthesis, Evaluation of Anti-HIV-1 Activity and Molecular Docking Study
title_full New Phosphorus Analogs of Bevirimat: Synthesis, Evaluation of Anti-HIV-1 Activity and Molecular Docking Study
title_fullStr New Phosphorus Analogs of Bevirimat: Synthesis, Evaluation of Anti-HIV-1 Activity and Molecular Docking Study
title_full_unstemmed New Phosphorus Analogs of Bevirimat: Synthesis, Evaluation of Anti-HIV-1 Activity and Molecular Docking Study
title_short New Phosphorus Analogs of Bevirimat: Synthesis, Evaluation of Anti-HIV-1 Activity and Molecular Docking Study
title_sort new phosphorus analogs of bevirimat: synthesis, evaluation of anti-hiv-1 activity and molecular docking study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6829466/
https://www.ncbi.nlm.nih.gov/pubmed/31640137
http://dx.doi.org/10.3390/ijms20205209
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