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

Author:

Wang HanORCID,Salaipeth Lakha,Miyazaki Naoyuki,Suzuki Nobuhiro,Okamoto KentaORCID

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.

Funder

Vetenskapsrådet

Svenska Forskningsrådet Formas

the Royal Swedish Academy of Sciences

Japanese Ministry of Education, Culture, Sports, Science and Technology

the Collaborative Study Program of the National Institute for Physiological Science

the Ministry of Education, Culture, Sports, Science and Technology

Publisher

Public Library of Science (PLoS)

Subject

Virology,Genetics,Molecular Biology,Immunology,Microbiology,Parasitology

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