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Computational Modulation of the V3 Region of Glycoprotein gp125 of HIV-2

HIV-2 infection is frequently neglected in HIV/AIDS campaigns. However, a special emphasis must be given to HIV-2 as an untreated infection that also leads to AIDS and death, and for which the efficacy of most available drugs is limited against HIV-2. HIV envelope glycoproteins mediate binding to th...

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Autores principales: Serra, Patrícia A., Taveira, Nuno, Guedes, Rita C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7920276/
https://www.ncbi.nlm.nih.gov/pubmed/33669351
http://dx.doi.org/10.3390/ijms22041948
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author Serra, Patrícia A.
Taveira, Nuno
Guedes, Rita C.
author_facet Serra, Patrícia A.
Taveira, Nuno
Guedes, Rita C.
author_sort Serra, Patrícia A.
collection PubMed
description HIV-2 infection is frequently neglected in HIV/AIDS campaigns. However, a special emphasis must be given to HIV-2 as an untreated infection that also leads to AIDS and death, and for which the efficacy of most available drugs is limited against HIV-2. HIV envelope glycoproteins mediate binding to the receptor CD4 and co-receptors at the surface of the target cell, enabling fusion with the cell membrane and viral entry. Here, we developed and optimized a computer-assisted drug design approach of an important HIV-2 glycoprotein that allows us to explore and gain further insights at the molecular level into protein structures and interactions crucial for the inhibition of HIV-2 cell entry. The 3D structure of a key HIV-2ROD gp125 region was generated by a homology modeling campaign. To disclose the importance of the main structural features and compare them with experimental results, 3D-models of six mutants were also generated. These mutations revealed the selective impact on the behavior of the protein. Furthermore, molecular dynamics simulations were performed to optimize the models, and the dynamic behavior was tackled to account for structure flexibility and interactions network formation. Structurally, the mutations studied lead to a loss of aromatic features, which is very important for the establishment of π-π interactions and could induce a structural preference by a specific coreceptor. These new insights into the structure-function relationship of HIV-2 gp125 V3 and surrounding regions will help in the design of better models and the design of new small molecules capable to inhibit the attachment and binding of HIV with host cells.
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spelling pubmed-79202762021-03-02 Computational Modulation of the V3 Region of Glycoprotein gp125 of HIV-2 Serra, Patrícia A. Taveira, Nuno Guedes, Rita C. Int J Mol Sci Article HIV-2 infection is frequently neglected in HIV/AIDS campaigns. However, a special emphasis must be given to HIV-2 as an untreated infection that also leads to AIDS and death, and for which the efficacy of most available drugs is limited against HIV-2. HIV envelope glycoproteins mediate binding to the receptor CD4 and co-receptors at the surface of the target cell, enabling fusion with the cell membrane and viral entry. Here, we developed and optimized a computer-assisted drug design approach of an important HIV-2 glycoprotein that allows us to explore and gain further insights at the molecular level into protein structures and interactions crucial for the inhibition of HIV-2 cell entry. The 3D structure of a key HIV-2ROD gp125 region was generated by a homology modeling campaign. To disclose the importance of the main structural features and compare them with experimental results, 3D-models of six mutants were also generated. These mutations revealed the selective impact on the behavior of the protein. Furthermore, molecular dynamics simulations were performed to optimize the models, and the dynamic behavior was tackled to account for structure flexibility and interactions network formation. Structurally, the mutations studied lead to a loss of aromatic features, which is very important for the establishment of π-π interactions and could induce a structural preference by a specific coreceptor. These new insights into the structure-function relationship of HIV-2 gp125 V3 and surrounding regions will help in the design of better models and the design of new small molecules capable to inhibit the attachment and binding of HIV with host cells. MDPI 2021-02-16 /pmc/articles/PMC7920276/ /pubmed/33669351 http://dx.doi.org/10.3390/ijms22041948 Text en © 2021 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
Serra, Patrícia A.
Taveira, Nuno
Guedes, Rita C.
Computational Modulation of the V3 Region of Glycoprotein gp125 of HIV-2
title Computational Modulation of the V3 Region of Glycoprotein gp125 of HIV-2
title_full Computational Modulation of the V3 Region of Glycoprotein gp125 of HIV-2
title_fullStr Computational Modulation of the V3 Region of Glycoprotein gp125 of HIV-2
title_full_unstemmed Computational Modulation of the V3 Region of Glycoprotein gp125 of HIV-2
title_short Computational Modulation of the V3 Region of Glycoprotein gp125 of HIV-2
title_sort computational modulation of the v3 region of glycoprotein gp125 of hiv-2
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7920276/
https://www.ncbi.nlm.nih.gov/pubmed/33669351
http://dx.doi.org/10.3390/ijms22041948
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