The atomic structures of shrimp nodaviruses reveal new dimeric spike structures and particle polymorphism

虾诺达病毒的原子结构揭示了新的二聚体刺突结构和颗粒多态性

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作者:Nai-Chi Chen, Masato Yoshimura, Naoyuki Miyazaki, Hong-Hsiang Guan, Phimonphan Chuankhayan, Chien-Chih Lin, Shao-Kang Chen, Pei-Ju Lin, Yen-Chieh Huang, Kenji Iwasaki, Atsushi Nakagawa, Sunney I Chan, Chun-Jung Chen0

Abstract

Shrimp nodaviruses, including Penaeus vannamei (PvNV) and Macrobrachium rosenbergii nodaviruses (MrNV), cause white-tail disease in shrimps, with high mortality. The viral capsid structure determines viral assembly and host specificity during infections. Here, we show cryo-EM structures of T = 3 and T = 1 PvNV-like particles (PvNV-LPs), crystal structures of the protrusion-domains (P-domains) of PvNV and MrNV, and the crystal structure of the ∆N-ARM-PvNV shell-domain (S-domain) in T = 1 subviral particles. The capsid protein of PvNV reveals five domains: the P-domain with a new jelly-roll structure forming cuboid-like spikes; the jelly-roll S-domain with two calcium ions; the linker between the S- and P-domains exhibiting new cross and parallel conformations; the N-arm interacting with nucleotides organized along icosahedral two-fold axes; and a disordered region comprising the basic N-terminal arginine-rich motif (N-ARM) interacting with RNA. The N-ARM controls T = 3 and T = 1 assemblies. Increasing the N/C-termini flexibility leads to particle polymorphism. Linker flexibility may influence the dimeric-spike arrangement.

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