Capsid structure of a fungal dsRNA megabirnavirus reveals its previously unidentified surface architecture

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Author listHan Wang, Lakha Salaipeth, Naoyuki Miyazaki , Nobuhiro Suzuki , Kenta Okamoto

PublisherPublic Library of Science

Publication year2023

Journal acronymPLoS Pathog.

Volume number19

Issue number2

Start pagee1011162

ISSN1553-7366

eISSN1553-7374

URLhttps://journals.plos.org/plospathogens/article?id=10.1371/journal.ppat.1011162

LanguagesEnglish-United States (EN-US)


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Abstract

Rosellinia necatrix megabirnavirus 1-W779 (RnMBV1) is a non-enveloped icosahedral double-stranded (ds)RNA virus that infects the ascomycete fungus Rosellinia necatrix, a causative agent that induces a lethal plant disease white root rot. Herein, we have first resolved the atomic structure of the RnMBV1 capsid at 3.2 Å resolution using cryo-electron microscopy (cryo-EM) single-particle analysis. Compared with other non-enveloped icosahedral dsRNA viruses, the RnMBV1 capsid protein structure exhibits an extra-long C-terminal arm and a surface protrusion domain. In addition, the previously unrecognized crown proteins are identified in a symmetry-expanded cryo-EM model and are present over the 3-fold axes. These exclusive structural features of the RnMBV1 capsid could have been acquired for playing essential roles in transmission and/or particle assembly of the megabirnaviruses. Our findings, therefore, will reinforce the understanding of how the structural and molecular machineries of the megabirnaviruses influence the virulence of the disease-related ascomycete fungus.


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Last updated on 2023-03-10 at 07:37