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HIV-1 Nucleocapsid Protein Binds Double-Stranded DNA in Multiple Modes to Regulate Compaction and Capsid Uncoating

The HIV-1 nucleocapsid protein (NC) is a multi-functional protein necessary for viral replication. Recent studies have demonstrated reverse transcription occurs inside the fully intact viral capsid and that the timing of reverse transcription and uncoating are correlated. How a nearly 10 kbp viral D...

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Autores principales: Gien, Helena, Morse, Michael, McCauley, Micah J., Kitzrow, Jonathan P., Musier-Forsyth, Karin, Gorelick, Robert J., Rouzina, Ioulia, Williams, Mark C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879225/
https://www.ncbi.nlm.nih.gov/pubmed/35215829
http://dx.doi.org/10.3390/v14020235
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author Gien, Helena
Morse, Michael
McCauley, Micah J.
Kitzrow, Jonathan P.
Musier-Forsyth, Karin
Gorelick, Robert J.
Rouzina, Ioulia
Williams, Mark C.
author_facet Gien, Helena
Morse, Michael
McCauley, Micah J.
Kitzrow, Jonathan P.
Musier-Forsyth, Karin
Gorelick, Robert J.
Rouzina, Ioulia
Williams, Mark C.
author_sort Gien, Helena
collection PubMed
description The HIV-1 nucleocapsid protein (NC) is a multi-functional protein necessary for viral replication. Recent studies have demonstrated reverse transcription occurs inside the fully intact viral capsid and that the timing of reverse transcription and uncoating are correlated. How a nearly 10 kbp viral DNA genome is stably contained within a narrow capsid with diameter similar to the persistence length of double-stranded (ds) DNA, and the role of NC in this process, are not well understood. In this study, we use optical tweezers, fluorescence imaging, and atomic force microscopy to observe NC binding a single long DNA substrate in multiple modes. We find that NC binds and saturates the DNA substrate in a non-specific binding mode that triggers uniform DNA self-attraction, condensing the DNA into a tight globule at a constant force up to 10 pN. When NC is removed from solution, the globule dissipates over time, but specifically-bound NC maintains long-range DNA looping that is less compact but highly stable. Both binding modes are additionally observed using AFM imaging. These results suggest multiple binding modes of NC compact DNA into a conformation compatible with reverse transcription, regulating the genomic pressure on the capsid and preventing premature uncoating.
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spelling pubmed-88792252022-02-26 HIV-1 Nucleocapsid Protein Binds Double-Stranded DNA in Multiple Modes to Regulate Compaction and Capsid Uncoating Gien, Helena Morse, Michael McCauley, Micah J. Kitzrow, Jonathan P. Musier-Forsyth, Karin Gorelick, Robert J. Rouzina, Ioulia Williams, Mark C. Viruses Article The HIV-1 nucleocapsid protein (NC) is a multi-functional protein necessary for viral replication. Recent studies have demonstrated reverse transcription occurs inside the fully intact viral capsid and that the timing of reverse transcription and uncoating are correlated. How a nearly 10 kbp viral DNA genome is stably contained within a narrow capsid with diameter similar to the persistence length of double-stranded (ds) DNA, and the role of NC in this process, are not well understood. In this study, we use optical tweezers, fluorescence imaging, and atomic force microscopy to observe NC binding a single long DNA substrate in multiple modes. We find that NC binds and saturates the DNA substrate in a non-specific binding mode that triggers uniform DNA self-attraction, condensing the DNA into a tight globule at a constant force up to 10 pN. When NC is removed from solution, the globule dissipates over time, but specifically-bound NC maintains long-range DNA looping that is less compact but highly stable. Both binding modes are additionally observed using AFM imaging. These results suggest multiple binding modes of NC compact DNA into a conformation compatible with reverse transcription, regulating the genomic pressure on the capsid and preventing premature uncoating. MDPI 2022-01-25 /pmc/articles/PMC8879225/ /pubmed/35215829 http://dx.doi.org/10.3390/v14020235 Text en © 2022 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
Gien, Helena
Morse, Michael
McCauley, Micah J.
Kitzrow, Jonathan P.
Musier-Forsyth, Karin
Gorelick, Robert J.
Rouzina, Ioulia
Williams, Mark C.
HIV-1 Nucleocapsid Protein Binds Double-Stranded DNA in Multiple Modes to Regulate Compaction and Capsid Uncoating
title HIV-1 Nucleocapsid Protein Binds Double-Stranded DNA in Multiple Modes to Regulate Compaction and Capsid Uncoating
title_full HIV-1 Nucleocapsid Protein Binds Double-Stranded DNA in Multiple Modes to Regulate Compaction and Capsid Uncoating
title_fullStr HIV-1 Nucleocapsid Protein Binds Double-Stranded DNA in Multiple Modes to Regulate Compaction and Capsid Uncoating
title_full_unstemmed HIV-1 Nucleocapsid Protein Binds Double-Stranded DNA in Multiple Modes to Regulate Compaction and Capsid Uncoating
title_short HIV-1 Nucleocapsid Protein Binds Double-Stranded DNA in Multiple Modes to Regulate Compaction and Capsid Uncoating
title_sort hiv-1 nucleocapsid protein binds double-stranded dna in multiple modes to regulate compaction and capsid uncoating
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8879225/
https://www.ncbi.nlm.nih.gov/pubmed/35215829
http://dx.doi.org/10.3390/v14020235
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