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Crystal Structures of a Piscine Betanodavirus: Mechanisms of Capsid Assembly and Viral Infection

Betanodaviruses cause massive mortality in marine fish species with viral nervous necrosis. The structure of a T = 3 Grouper nervous necrosis virus-like particle (GNNV-LP) is determined by the ab initio method with non-crystallographic symmetry averaging at 3.6 Å resolution. Each capsid protein (CP)...

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Autores principales: Chen, Nai-Chi, Yoshimura, Masato, Guan, Hong-Hsiang, Wang, Ting-Yu, Misumi, Yuko, Lin, Chien-Chih, Chuankhayan, Phimonphan, Nakagawa, Atsushi, Chan, Sunney I., Tsukihara, Tomitake, Chen, Tzong-Yueh, Chen, Chun-Jung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4619592/
https://www.ncbi.nlm.nih.gov/pubmed/26491970
http://dx.doi.org/10.1371/journal.ppat.1005203
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author Chen, Nai-Chi
Yoshimura, Masato
Guan, Hong-Hsiang
Wang, Ting-Yu
Misumi, Yuko
Lin, Chien-Chih
Chuankhayan, Phimonphan
Nakagawa, Atsushi
Chan, Sunney I.
Tsukihara, Tomitake
Chen, Tzong-Yueh
Chen, Chun-Jung
author_facet Chen, Nai-Chi
Yoshimura, Masato
Guan, Hong-Hsiang
Wang, Ting-Yu
Misumi, Yuko
Lin, Chien-Chih
Chuankhayan, Phimonphan
Nakagawa, Atsushi
Chan, Sunney I.
Tsukihara, Tomitake
Chen, Tzong-Yueh
Chen, Chun-Jung
author_sort Chen, Nai-Chi
collection PubMed
description Betanodaviruses cause massive mortality in marine fish species with viral nervous necrosis. The structure of a T = 3 Grouper nervous necrosis virus-like particle (GNNV-LP) is determined by the ab initio method with non-crystallographic symmetry averaging at 3.6 Å resolution. Each capsid protein (CP) shows three major domains: (i) the N-terminal arm, an inter-subunit extension at the inner surface; (ii) the shell domain (S-domain), a jelly-roll structure; and (iii) the protrusion domain (P-domain) formed by three-fold trimeric protrusions. In addition, we have determined structures of the T = 1 subviral particles (SVPs) of (i) the delta-P-domain mutant (residues 35−217) at 3.1 Å resolution; and (ii) the N-ARM deletion mutant (residues 35−338) at 7 Å resolution; and (iii) the structure of the individual P-domain (residues 214−338) at 1.2 Å resolution. The P-domain reveals a novel DxD motif asymmetrically coordinating two Ca(2+) ions, and seems to play a prominent role in the calcium-mediated trimerization of the GNNV CPs during the initial capsid assembly process. The flexible N-ARM (N-terminal arginine-rich motif) appears to serve as a molecular switch for T = 1 or T = 3 assembly. Finally, we find that polyethylene glycol, which is incorporated into the P-domain during the crystallization process, enhances GNNV infection. The present structural studies together with the biological assays enhance our understanding of the role of the P-domain of GNNV in the capsid assembly and viral infection by this betanodavirus.
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spelling pubmed-46195922015-10-29 Crystal Structures of a Piscine Betanodavirus: Mechanisms of Capsid Assembly and Viral Infection Chen, Nai-Chi Yoshimura, Masato Guan, Hong-Hsiang Wang, Ting-Yu Misumi, Yuko Lin, Chien-Chih Chuankhayan, Phimonphan Nakagawa, Atsushi Chan, Sunney I. Tsukihara, Tomitake Chen, Tzong-Yueh Chen, Chun-Jung PLoS Pathog Research Article Betanodaviruses cause massive mortality in marine fish species with viral nervous necrosis. The structure of a T = 3 Grouper nervous necrosis virus-like particle (GNNV-LP) is determined by the ab initio method with non-crystallographic symmetry averaging at 3.6 Å resolution. Each capsid protein (CP) shows three major domains: (i) the N-terminal arm, an inter-subunit extension at the inner surface; (ii) the shell domain (S-domain), a jelly-roll structure; and (iii) the protrusion domain (P-domain) formed by three-fold trimeric protrusions. In addition, we have determined structures of the T = 1 subviral particles (SVPs) of (i) the delta-P-domain mutant (residues 35−217) at 3.1 Å resolution; and (ii) the N-ARM deletion mutant (residues 35−338) at 7 Å resolution; and (iii) the structure of the individual P-domain (residues 214−338) at 1.2 Å resolution. The P-domain reveals a novel DxD motif asymmetrically coordinating two Ca(2+) ions, and seems to play a prominent role in the calcium-mediated trimerization of the GNNV CPs during the initial capsid assembly process. The flexible N-ARM (N-terminal arginine-rich motif) appears to serve as a molecular switch for T = 1 or T = 3 assembly. Finally, we find that polyethylene glycol, which is incorporated into the P-domain during the crystallization process, enhances GNNV infection. The present structural studies together with the biological assays enhance our understanding of the role of the P-domain of GNNV in the capsid assembly and viral infection by this betanodavirus. Public Library of Science 2015-10-22 /pmc/articles/PMC4619592/ /pubmed/26491970 http://dx.doi.org/10.1371/journal.ppat.1005203 Text en © 2015 Chen et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Chen, Nai-Chi
Yoshimura, Masato
Guan, Hong-Hsiang
Wang, Ting-Yu
Misumi, Yuko
Lin, Chien-Chih
Chuankhayan, Phimonphan
Nakagawa, Atsushi
Chan, Sunney I.
Tsukihara, Tomitake
Chen, Tzong-Yueh
Chen, Chun-Jung
Crystal Structures of a Piscine Betanodavirus: Mechanisms of Capsid Assembly and Viral Infection
title Crystal Structures of a Piscine Betanodavirus: Mechanisms of Capsid Assembly and Viral Infection
title_full Crystal Structures of a Piscine Betanodavirus: Mechanisms of Capsid Assembly and Viral Infection
title_fullStr Crystal Structures of a Piscine Betanodavirus: Mechanisms of Capsid Assembly and Viral Infection
title_full_unstemmed Crystal Structures of a Piscine Betanodavirus: Mechanisms of Capsid Assembly and Viral Infection
title_short Crystal Structures of a Piscine Betanodavirus: Mechanisms of Capsid Assembly and Viral Infection
title_sort crystal structures of a piscine betanodavirus: mechanisms of capsid assembly and viral infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4619592/
https://www.ncbi.nlm.nih.gov/pubmed/26491970
http://dx.doi.org/10.1371/journal.ppat.1005203
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