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A conserved oligomerization domain in the disordered linker of coronavirus nucleocapsid proteins.
Zhao, Huaying; Wu, Di; Hassan, Sergio A; Nguyen, Ai; Chen, Jiji; Piszczek, Grzegorz; Schuck, Peter.
  • Zhao H; Laboratory of Dynamics of Macromolecular Assembly, National Institute of Biomedical Imaging and Bioengineering, National Institutes of Health, Bethesda, MD 20892, USA.
  • Wu D; Biophysics Core Facility, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD 20892, USA.
  • Hassan SA; Bioinformatics and Computational Biosciences Branch, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892, USA.
  • Nguyen A; Laboratory of Dynamics of Macromolecular Assembly, National Institute of Biomedical Imaging and Bioengineering, National Institutes of Health, Bethesda, MD 20892, USA.
  • Chen J; Advanced Imaging and Microscopy Resource, National Institute of Biomedical Imaging and Bioengineering, National Institutes of Health, Bethesda, MD 20892, USA.
  • Piszczek G; Biophysics Core Facility, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD 20892, USA.
  • Schuck P; Laboratory of Dynamics of Macromolecular Assembly, National Institute of Biomedical Imaging and Bioengineering, National Institutes of Health, Bethesda, MD 20892, USA.
Sci Adv ; 9(14): eadg6473, 2023 04 05.
Article in English | MEDLINE | ID: covidwho-2288754
ABSTRACT
The nucleocapsid (N-)protein of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has a key role in viral assembly and scaffolding of the viral RNA. It promotes liquid-liquid phase separation (LLPS), forming dense droplets that support the assembly of ribonucleoprotein particles with as-of-yet unknown macromolecular architecture. Combining biophysical experiments, molecular dynamics simulations, and analysis of the mutational landscape, we describe a heretofore unknown oligomerization site that contributes to LLPS, is required for the assembly of higher-order protein-nucleic acid complexes, and is coupled to large-scale conformational changes of N-protein upon nucleic acid binding. The self-association interface is located in a leucine-rich sequence of the intrinsically disordered linker between N-protein folded domains and formed by transient helices assembling into trimeric coiled-coils. Critical residues stabilizing hydrophobic and electrostatic interactions between adjacent helices are highly protected against mutations in viable SARS-CoV-2 genomes, and the oligomerization motif is conserved across related coronaviruses, thus presenting a target for antiviral therapeutics.
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Full text: Available Collection: International databases Database: MEDLINE Main subject: Coronavirus Nucleocapsid Proteins / COVID-19 Limits: Humans Language: English Journal: Sci Adv Year: 2023 Document Type: Article Affiliation country: Sciadv.adg6473

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Full text: Available Collection: International databases Database: MEDLINE Main subject: Coronavirus Nucleocapsid Proteins / COVID-19 Limits: Humans Language: English Journal: Sci Adv Year: 2023 Document Type: Article Affiliation country: Sciadv.adg6473