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The HIV-1 Nucleocapsid Regulates Its Own Condensation by Phase-Separated Activity-Enhancing Sequestration of the Viral Protease during Maturation

A growing number of studies indicate that mRNAs and long ncRNAs can affect protein populations by assembling dynamic ribonucleoprotein (RNP) granules. These phase-separated molecular ‘sponges’, stabilized by quinary (transient and weak) interactions, control proteins involved in numerous biological...

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Autores principales: Lyonnais, Sébastien, Sadiq, S. Kashif, Lorca-Oró, Cristina, Dufau, Laure, Nieto-Marquez, Sara, Escribà, Tuixent, Gabrielli, Natalia, Tan, Xiao, Ouizougun-Oubari, Mohamed, Okoronkwo, Josephine, Reboud-Ravaux, Michèle, Gatell, José Maria, Marquet, Roland, Paillart, Jean-Christophe, Meyerhans, Andreas, Tisné, Carine, Gorelick, Robert J., Mirambeau, Gilles
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8625067/
https://www.ncbi.nlm.nih.gov/pubmed/34835118
http://dx.doi.org/10.3390/v13112312
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author Lyonnais, Sébastien
Sadiq, S. Kashif
Lorca-Oró, Cristina
Dufau, Laure
Nieto-Marquez, Sara
Escribà, Tuixent
Gabrielli, Natalia
Tan, Xiao
Ouizougun-Oubari, Mohamed
Okoronkwo, Josephine
Reboud-Ravaux, Michèle
Gatell, José Maria
Marquet, Roland
Paillart, Jean-Christophe
Meyerhans, Andreas
Tisné, Carine
Gorelick, Robert J.
Mirambeau, Gilles
author_facet Lyonnais, Sébastien
Sadiq, S. Kashif
Lorca-Oró, Cristina
Dufau, Laure
Nieto-Marquez, Sara
Escribà, Tuixent
Gabrielli, Natalia
Tan, Xiao
Ouizougun-Oubari, Mohamed
Okoronkwo, Josephine
Reboud-Ravaux, Michèle
Gatell, José Maria
Marquet, Roland
Paillart, Jean-Christophe
Meyerhans, Andreas
Tisné, Carine
Gorelick, Robert J.
Mirambeau, Gilles
author_sort Lyonnais, Sébastien
collection PubMed
description A growing number of studies indicate that mRNAs and long ncRNAs can affect protein populations by assembling dynamic ribonucleoprotein (RNP) granules. These phase-separated molecular ‘sponges’, stabilized by quinary (transient and weak) interactions, control proteins involved in numerous biological functions. Retroviruses such as HIV-1 form by self-assembly when their genomic RNA (gRNA) traps Gag and GagPol polyprotein precursors. Infectivity requires extracellular budding of the particle followed by maturation, an ordered processing of ∼2400 Gag and ∼120 GagPol by the viral protease (PR). This leads to a condensed gRNA-NCp7 nucleocapsid and a CAp24-self-assembled capsid surrounding the RNP. The choreography by which all of these components dynamically interact during virus maturation is one of the missing milestones to fully depict the HIV life cycle. Here, we describe how HIV-1 has evolved a dynamic RNP granule with successive weak–strong–moderate quinary NC-gRNA networks during the sequential processing of the GagNC domain. We also reveal two palindromic RNA-binding triads on NC, KxxFxxQ and QxxFxxK, that provide quinary NC-gRNA interactions. Consequently, the nucleocapsid complex appears properly aggregated for capsid reassembly and reverse transcription, mandatory processes for viral infectivity. We show that PR is sequestered within this RNP and drives its maturation/condensation within minutes, this process being most effective at the end of budding. We anticipate such findings will stimulate further investigations of quinary interactions and emergent mechanisms in crowded environments throughout the wide and growing array of RNP granules.
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spelling pubmed-86250672021-11-27 The HIV-1 Nucleocapsid Regulates Its Own Condensation by Phase-Separated Activity-Enhancing Sequestration of the Viral Protease during Maturation Lyonnais, Sébastien Sadiq, S. Kashif Lorca-Oró, Cristina Dufau, Laure Nieto-Marquez, Sara Escribà, Tuixent Gabrielli, Natalia Tan, Xiao Ouizougun-Oubari, Mohamed Okoronkwo, Josephine Reboud-Ravaux, Michèle Gatell, José Maria Marquet, Roland Paillart, Jean-Christophe Meyerhans, Andreas Tisné, Carine Gorelick, Robert J. Mirambeau, Gilles Viruses Article A growing number of studies indicate that mRNAs and long ncRNAs can affect protein populations by assembling dynamic ribonucleoprotein (RNP) granules. These phase-separated molecular ‘sponges’, stabilized by quinary (transient and weak) interactions, control proteins involved in numerous biological functions. Retroviruses such as HIV-1 form by self-assembly when their genomic RNA (gRNA) traps Gag and GagPol polyprotein precursors. Infectivity requires extracellular budding of the particle followed by maturation, an ordered processing of ∼2400 Gag and ∼120 GagPol by the viral protease (PR). This leads to a condensed gRNA-NCp7 nucleocapsid and a CAp24-self-assembled capsid surrounding the RNP. The choreography by which all of these components dynamically interact during virus maturation is one of the missing milestones to fully depict the HIV life cycle. Here, we describe how HIV-1 has evolved a dynamic RNP granule with successive weak–strong–moderate quinary NC-gRNA networks during the sequential processing of the GagNC domain. We also reveal two palindromic RNA-binding triads on NC, KxxFxxQ and QxxFxxK, that provide quinary NC-gRNA interactions. Consequently, the nucleocapsid complex appears properly aggregated for capsid reassembly and reverse transcription, mandatory processes for viral infectivity. We show that PR is sequestered within this RNP and drives its maturation/condensation within minutes, this process being most effective at the end of budding. We anticipate such findings will stimulate further investigations of quinary interactions and emergent mechanisms in crowded environments throughout the wide and growing array of RNP granules. MDPI 2021-11-19 /pmc/articles/PMC8625067/ /pubmed/34835118 http://dx.doi.org/10.3390/v13112312 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lyonnais, Sébastien
Sadiq, S. Kashif
Lorca-Oró, Cristina
Dufau, Laure
Nieto-Marquez, Sara
Escribà, Tuixent
Gabrielli, Natalia
Tan, Xiao
Ouizougun-Oubari, Mohamed
Okoronkwo, Josephine
Reboud-Ravaux, Michèle
Gatell, José Maria
Marquet, Roland
Paillart, Jean-Christophe
Meyerhans, Andreas
Tisné, Carine
Gorelick, Robert J.
Mirambeau, Gilles
The HIV-1 Nucleocapsid Regulates Its Own Condensation by Phase-Separated Activity-Enhancing Sequestration of the Viral Protease during Maturation
title The HIV-1 Nucleocapsid Regulates Its Own Condensation by Phase-Separated Activity-Enhancing Sequestration of the Viral Protease during Maturation
title_full The HIV-1 Nucleocapsid Regulates Its Own Condensation by Phase-Separated Activity-Enhancing Sequestration of the Viral Protease during Maturation
title_fullStr The HIV-1 Nucleocapsid Regulates Its Own Condensation by Phase-Separated Activity-Enhancing Sequestration of the Viral Protease during Maturation
title_full_unstemmed The HIV-1 Nucleocapsid Regulates Its Own Condensation by Phase-Separated Activity-Enhancing Sequestration of the Viral Protease during Maturation
title_short The HIV-1 Nucleocapsid Regulates Its Own Condensation by Phase-Separated Activity-Enhancing Sequestration of the Viral Protease during Maturation
title_sort hiv-1 nucleocapsid regulates its own condensation by phase-separated activity-enhancing sequestration of the viral protease during maturation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8625067/
https://www.ncbi.nlm.nih.gov/pubmed/34835118
http://dx.doi.org/10.3390/v13112312
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