Biophysical characterization of the feline immunodeficiency virus p24 capsid protein conformation and in vitro capsid assembly.

The Feline Immunodeficiency Virus (FIV) capsid protein p24 oligomerizes to form a closed capsid that protects the viral genome. Because of its crucial role in the virion, FIV p24 is an interesting target for the development of therapeutic strategies, although little is known about its structure and...

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Main Authors: Jennifer Serrière, Daphna Fenel, Guy Schoehn, Patrice Gouet, Christophe Guillon
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3574121?pdf=render
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spelling doaj-e2aa89ace57748369db0588f6338488d2020-11-25T00:42:29ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0182e5642410.1371/journal.pone.0056424Biophysical characterization of the feline immunodeficiency virus p24 capsid protein conformation and in vitro capsid assembly.Jennifer SerrièreDaphna FenelGuy SchoehnPatrice GouetChristophe GuillonThe Feline Immunodeficiency Virus (FIV) capsid protein p24 oligomerizes to form a closed capsid that protects the viral genome. Because of its crucial role in the virion, FIV p24 is an interesting target for the development of therapeutic strategies, although little is known about its structure and assembly. We defined and optimized a protocol to overexpress recombinant FIV capsid protein in a bacterial system. Circular dichroism and isothermal titration calorimetry experiments showed that the structure of the purified FIV p24 protein was comprised mainly of α-helices. Dynamic light scattering (DLS) and cross-linking experiments demonstrated that p24 was monomeric at low concentration and dimeric at high concentration. We developed a protocol for the in vitro assembly of the FIV capsid. As with HIV, an increased ionic strength resulted in FIV p24 assembly in vitro. Assembly appeared to be dependent on temperature, salt concentration, and protein concentration. The FIV p24 assembly kinetics was monitored by DLS. A limit end-point diameter suggested assembly into objects of definite shapes. This was confirmed by electron microscopy, where FIV p24 assembled into spherical particles. Comparison of FIV p24 with other retroviral capsid proteins showed that FIV assembly is particular and requires further specific study.http://europepmc.org/articles/PMC3574121?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jennifer Serrière
Daphna Fenel
Guy Schoehn
Patrice Gouet
Christophe Guillon
spellingShingle Jennifer Serrière
Daphna Fenel
Guy Schoehn
Patrice Gouet
Christophe Guillon
Biophysical characterization of the feline immunodeficiency virus p24 capsid protein conformation and in vitro capsid assembly.
PLoS ONE
author_facet Jennifer Serrière
Daphna Fenel
Guy Schoehn
Patrice Gouet
Christophe Guillon
author_sort Jennifer Serrière
title Biophysical characterization of the feline immunodeficiency virus p24 capsid protein conformation and in vitro capsid assembly.
title_short Biophysical characterization of the feline immunodeficiency virus p24 capsid protein conformation and in vitro capsid assembly.
title_full Biophysical characterization of the feline immunodeficiency virus p24 capsid protein conformation and in vitro capsid assembly.
title_fullStr Biophysical characterization of the feline immunodeficiency virus p24 capsid protein conformation and in vitro capsid assembly.
title_full_unstemmed Biophysical characterization of the feline immunodeficiency virus p24 capsid protein conformation and in vitro capsid assembly.
title_sort biophysical characterization of the feline immunodeficiency virus p24 capsid protein conformation and in vitro capsid assembly.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description The Feline Immunodeficiency Virus (FIV) capsid protein p24 oligomerizes to form a closed capsid that protects the viral genome. Because of its crucial role in the virion, FIV p24 is an interesting target for the development of therapeutic strategies, although little is known about its structure and assembly. We defined and optimized a protocol to overexpress recombinant FIV capsid protein in a bacterial system. Circular dichroism and isothermal titration calorimetry experiments showed that the structure of the purified FIV p24 protein was comprised mainly of α-helices. Dynamic light scattering (DLS) and cross-linking experiments demonstrated that p24 was monomeric at low concentration and dimeric at high concentration. We developed a protocol for the in vitro assembly of the FIV capsid. As with HIV, an increased ionic strength resulted in FIV p24 assembly in vitro. Assembly appeared to be dependent on temperature, salt concentration, and protein concentration. The FIV p24 assembly kinetics was monitored by DLS. A limit end-point diameter suggested assembly into objects of definite shapes. This was confirmed by electron microscopy, where FIV p24 assembled into spherical particles. Comparison of FIV p24 with other retroviral capsid proteins showed that FIV assembly is particular and requires further specific study.
url http://europepmc.org/articles/PMC3574121?pdf=render
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