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Quantitative analysis of the formation of nucleoprotein complexes between HIV-1 Gag protein and genomic RNA using transmission electron microscopy

In HIV, the polyprotein precursor Gag orchestrates the formation of the viral capsid. In the current view of this viral assembly, Gag forms low-order oligomers that bind to the viral genomic RNA triggering the formation of high-ordered ribonucleoprotein complexes. However, this assembly model was es...

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Autores principales: Durand, Stéphanie, Seigneuret, Florian, Burlaud-Gaillard, Julien, Lemoine, Roxane, Tassi, Marc-Florent, Moreau, Alain, Mougel, Marylène, Roingeard, Philippe, Tauber, Clovis, de Rocquigny, Hugues
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8760521/
https://www.ncbi.nlm.nih.gov/pubmed/34929171
http://dx.doi.org/10.1016/j.jbc.2021.101500
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author Durand, Stéphanie
Seigneuret, Florian
Burlaud-Gaillard, Julien
Lemoine, Roxane
Tassi, Marc-Florent
Moreau, Alain
Mougel, Marylène
Roingeard, Philippe
Tauber, Clovis
de Rocquigny, Hugues
author_facet Durand, Stéphanie
Seigneuret, Florian
Burlaud-Gaillard, Julien
Lemoine, Roxane
Tassi, Marc-Florent
Moreau, Alain
Mougel, Marylène
Roingeard, Philippe
Tauber, Clovis
de Rocquigny, Hugues
author_sort Durand, Stéphanie
collection PubMed
description In HIV, the polyprotein precursor Gag orchestrates the formation of the viral capsid. In the current view of this viral assembly, Gag forms low-order oligomers that bind to the viral genomic RNA triggering the formation of high-ordered ribonucleoprotein complexes. However, this assembly model was established using biochemical or imaging methods that do not describe the cellular location hosting Gag–gRNA complex nor distinguish gRNA packaging in single particles. Here, we studied the intracellular localization of these complexes by electron microscopy and monitored the distances between the two partners by morphometric analysis of gold beads specifically labeling Gag and gRNA. We found that formation of these viral clusters occurred shortly after the nuclear export of the gRNA. During their transport to the plasma membrane, the distance between Gag and gRNA decreases together with an increase of gRNA packaging. Point mutations in the zinc finger patterns of the nucleocapsid domain of Gag caused an increase in the distance between Gag and gRNA as well as a sharp decrease of gRNA packaged into virions. Finally, we show that removal of stem loop 1 of the 5′-untranslated region does not interfere with gRNA packaging, whereas combined with the removal of stem loop 3 is sufficient to decrease but not abolish Gag-gRNA cluster formation and gRNA packaging. In conclusion, this morphometric analysis of Gag-gRNA cluster formation sheds new light on HIV-1 assembly that can be used to describe at nanoscale resolution other viral assembly steps involving RNA or protein–protein interactions.
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spelling pubmed-87605212022-01-19 Quantitative analysis of the formation of nucleoprotein complexes between HIV-1 Gag protein and genomic RNA using transmission electron microscopy Durand, Stéphanie Seigneuret, Florian Burlaud-Gaillard, Julien Lemoine, Roxane Tassi, Marc-Florent Moreau, Alain Mougel, Marylène Roingeard, Philippe Tauber, Clovis de Rocquigny, Hugues J Biol Chem Research Article In HIV, the polyprotein precursor Gag orchestrates the formation of the viral capsid. In the current view of this viral assembly, Gag forms low-order oligomers that bind to the viral genomic RNA triggering the formation of high-ordered ribonucleoprotein complexes. However, this assembly model was established using biochemical or imaging methods that do not describe the cellular location hosting Gag–gRNA complex nor distinguish gRNA packaging in single particles. Here, we studied the intracellular localization of these complexes by electron microscopy and monitored the distances between the two partners by morphometric analysis of gold beads specifically labeling Gag and gRNA. We found that formation of these viral clusters occurred shortly after the nuclear export of the gRNA. During their transport to the plasma membrane, the distance between Gag and gRNA decreases together with an increase of gRNA packaging. Point mutations in the zinc finger patterns of the nucleocapsid domain of Gag caused an increase in the distance between Gag and gRNA as well as a sharp decrease of gRNA packaged into virions. Finally, we show that removal of stem loop 1 of the 5′-untranslated region does not interfere with gRNA packaging, whereas combined with the removal of stem loop 3 is sufficient to decrease but not abolish Gag-gRNA cluster formation and gRNA packaging. In conclusion, this morphometric analysis of Gag-gRNA cluster formation sheds new light on HIV-1 assembly that can be used to describe at nanoscale resolution other viral assembly steps involving RNA or protein–protein interactions. American Society for Biochemistry and Molecular Biology 2021-12-17 /pmc/articles/PMC8760521/ /pubmed/34929171 http://dx.doi.org/10.1016/j.jbc.2021.101500 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Durand, Stéphanie
Seigneuret, Florian
Burlaud-Gaillard, Julien
Lemoine, Roxane
Tassi, Marc-Florent
Moreau, Alain
Mougel, Marylène
Roingeard, Philippe
Tauber, Clovis
de Rocquigny, Hugues
Quantitative analysis of the formation of nucleoprotein complexes between HIV-1 Gag protein and genomic RNA using transmission electron microscopy
title Quantitative analysis of the formation of nucleoprotein complexes between HIV-1 Gag protein and genomic RNA using transmission electron microscopy
title_full Quantitative analysis of the formation of nucleoprotein complexes between HIV-1 Gag protein and genomic RNA using transmission electron microscopy
title_fullStr Quantitative analysis of the formation of nucleoprotein complexes between HIV-1 Gag protein and genomic RNA using transmission electron microscopy
title_full_unstemmed Quantitative analysis of the formation of nucleoprotein complexes between HIV-1 Gag protein and genomic RNA using transmission electron microscopy
title_short Quantitative analysis of the formation of nucleoprotein complexes between HIV-1 Gag protein and genomic RNA using transmission electron microscopy
title_sort quantitative analysis of the formation of nucleoprotein complexes between hiv-1 gag protein and genomic rna using transmission electron microscopy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8760521/
https://www.ncbi.nlm.nih.gov/pubmed/34929171
http://dx.doi.org/10.1016/j.jbc.2021.101500
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