HIV p24 as scaffold for presenting conformational HIV Env antigens.

Heterologous protein scaffolds engrafted with structurally defined HIV Env epitopes recognized by broadly neutralizing monoclonal antibodies (MAbs) represent a promising strategy to elicit broad neutralizing antibodies. In such regards, a protein scaffold based on the HIV p24 CA protein is a highly...

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Main Authors: Maria Tagliamonte, Daniela Marasco, Alessia Ruggiero, Angelo De Stradis, Maria Lina Tornesello, Maxim Totrov, Franco Maria Buonaguro, Luigi Buonaguro
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3422313?pdf=render
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spelling doaj-ef44cdfe4fc14238928fe23ddaa398432020-11-24T21:26:04ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0178e4331810.1371/journal.pone.0043318HIV p24 as scaffold for presenting conformational HIV Env antigens.Maria TagliamonteDaniela MarascoAlessia RuggieroAngelo De StradisMaria Lina TorneselloMaxim TotrovFranco Maria BuonaguroLuigi BuonaguroHeterologous protein scaffolds engrafted with structurally defined HIV Env epitopes recognized by broadly neutralizing monoclonal antibodies (MAbs) represent a promising strategy to elicit broad neutralizing antibodies. In such regards, a protein scaffold based on the HIV p24 CA protein is a highly attractive approach, providing also Gag epitopes for eliciting HIV non-neutralizing protective antibodies and specific CD4(+) and CD8(+) T cell responses. In the present study, computational techniques were employed to verify the presence of acceptor sites for conformational HIV Env epitopes and, as proof of concept, the analysis of HIV p24 CA-based scaffolds using a complete V3 loop in a MAb-bound conformation is presented. The V3-p24 epitope-scaffold proteins show the formation of capsomers made of hexamers similarly to the p24 wild type protein. Moreover, the conformational V3 loop presented on p24 scaffold is recognized by a panel of anti-V3 MAbs. The results suggest that HIV p24 CA protein has suitable acceptor sites for engrafting foreign epitopes, without disrupting the formation of capsomer hexamer structures, and that the V3 epitope does retain its antibody-bound conformation. This strongly support the feasibility of developing a scaffolding strategy based on p24 CA proteins displaying conformational minimal structural, antigenic HIV Env epitopes.http://europepmc.org/articles/PMC3422313?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Maria Tagliamonte
Daniela Marasco
Alessia Ruggiero
Angelo De Stradis
Maria Lina Tornesello
Maxim Totrov
Franco Maria Buonaguro
Luigi Buonaguro
spellingShingle Maria Tagliamonte
Daniela Marasco
Alessia Ruggiero
Angelo De Stradis
Maria Lina Tornesello
Maxim Totrov
Franco Maria Buonaguro
Luigi Buonaguro
HIV p24 as scaffold for presenting conformational HIV Env antigens.
PLoS ONE
author_facet Maria Tagliamonte
Daniela Marasco
Alessia Ruggiero
Angelo De Stradis
Maria Lina Tornesello
Maxim Totrov
Franco Maria Buonaguro
Luigi Buonaguro
author_sort Maria Tagliamonte
title HIV p24 as scaffold for presenting conformational HIV Env antigens.
title_short HIV p24 as scaffold for presenting conformational HIV Env antigens.
title_full HIV p24 as scaffold for presenting conformational HIV Env antigens.
title_fullStr HIV p24 as scaffold for presenting conformational HIV Env antigens.
title_full_unstemmed HIV p24 as scaffold for presenting conformational HIV Env antigens.
title_sort hiv p24 as scaffold for presenting conformational hiv env antigens.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Heterologous protein scaffolds engrafted with structurally defined HIV Env epitopes recognized by broadly neutralizing monoclonal antibodies (MAbs) represent a promising strategy to elicit broad neutralizing antibodies. In such regards, a protein scaffold based on the HIV p24 CA protein is a highly attractive approach, providing also Gag epitopes for eliciting HIV non-neutralizing protective antibodies and specific CD4(+) and CD8(+) T cell responses. In the present study, computational techniques were employed to verify the presence of acceptor sites for conformational HIV Env epitopes and, as proof of concept, the analysis of HIV p24 CA-based scaffolds using a complete V3 loop in a MAb-bound conformation is presented. The V3-p24 epitope-scaffold proteins show the formation of capsomers made of hexamers similarly to the p24 wild type protein. Moreover, the conformational V3 loop presented on p24 scaffold is recognized by a panel of anti-V3 MAbs. The results suggest that HIV p24 CA protein has suitable acceptor sites for engrafting foreign epitopes, without disrupting the formation of capsomer hexamer structures, and that the V3 epitope does retain its antibody-bound conformation. This strongly support the feasibility of developing a scaffolding strategy based on p24 CA proteins displaying conformational minimal structural, antigenic HIV Env epitopes.
url http://europepmc.org/articles/PMC3422313?pdf=render
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