RNA control of HIV-1 particle size polydispersity.
HIV-1, an enveloped RNA virus, produces viral particles that are known to be much more heterogeneous in size than is typical of non-enveloped viruses. We present here a novel strategy to study HIV-1 Viral Like Particles (VLP) assembly by measuring the size distribution of these purified VLPs and sub...
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doaj-77d0354e7ae74569b156763665f9eb762020-11-25T02:15:31ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0191e8387410.1371/journal.pone.0083874RNA control of HIV-1 particle size polydispersity.Cendrine Faivre-MoskalenkoJulien BernaudAudrey ThomasKevin TartourYvonne BeckMaksym IazykovJohn DanialMorgane LourdinDelphine MuriauxMartin CastelnovoHIV-1, an enveloped RNA virus, produces viral particles that are known to be much more heterogeneous in size than is typical of non-enveloped viruses. We present here a novel strategy to study HIV-1 Viral Like Particles (VLP) assembly by measuring the size distribution of these purified VLPs and subsequent viral cores thanks to Atomic Force Microscopy imaging and statistical analysis. This strategy allowed us to identify whether the presence of viral RNA acts as a modulator for VLPs and cores size heterogeneity in a large population of particles. These results are analyzed in the light of a recently proposed statistical physics model for the self-assembly process. In particular, our results reveal that the modulation of size distribution by the presence of viral RNA is qualitatively reproduced, suggesting therefore an entropic origin for the modulation of RNA uptake by the nascent VLP.http://europepmc.org/articles/PMC3901647?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Cendrine Faivre-Moskalenko Julien Bernaud Audrey Thomas Kevin Tartour Yvonne Beck Maksym Iazykov John Danial Morgane Lourdin Delphine Muriaux Martin Castelnovo |
spellingShingle |
Cendrine Faivre-Moskalenko Julien Bernaud Audrey Thomas Kevin Tartour Yvonne Beck Maksym Iazykov John Danial Morgane Lourdin Delphine Muriaux Martin Castelnovo RNA control of HIV-1 particle size polydispersity. PLoS ONE |
author_facet |
Cendrine Faivre-Moskalenko Julien Bernaud Audrey Thomas Kevin Tartour Yvonne Beck Maksym Iazykov John Danial Morgane Lourdin Delphine Muriaux Martin Castelnovo |
author_sort |
Cendrine Faivre-Moskalenko |
title |
RNA control of HIV-1 particle size polydispersity. |
title_short |
RNA control of HIV-1 particle size polydispersity. |
title_full |
RNA control of HIV-1 particle size polydispersity. |
title_fullStr |
RNA control of HIV-1 particle size polydispersity. |
title_full_unstemmed |
RNA control of HIV-1 particle size polydispersity. |
title_sort |
rna control of hiv-1 particle size polydispersity. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2014-01-01 |
description |
HIV-1, an enveloped RNA virus, produces viral particles that are known to be much more heterogeneous in size than is typical of non-enveloped viruses. We present here a novel strategy to study HIV-1 Viral Like Particles (VLP) assembly by measuring the size distribution of these purified VLPs and subsequent viral cores thanks to Atomic Force Microscopy imaging and statistical analysis. This strategy allowed us to identify whether the presence of viral RNA acts as a modulator for VLPs and cores size heterogeneity in a large population of particles. These results are analyzed in the light of a recently proposed statistical physics model for the self-assembly process. In particular, our results reveal that the modulation of size distribution by the presence of viral RNA is qualitatively reproduced, suggesting therefore an entropic origin for the modulation of RNA uptake by the nascent VLP. |
url |
http://europepmc.org/articles/PMC3901647?pdf=render |
work_keys_str_mv |
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