Structure of anellovirus-like particles reveal a mechanism for immune evasion

Author:

Liou Shu-hao,Boggavarapu Rajendra,Cohen Noah R.,Zhang YueORCID,Sharma Ishwari,Zeheb Lynn,Mukund Acharekar Nidhi,Rodgers Hillary D.,Islam Saadman,Pitts Jared,Arze CesarORCID,Swaminathan Harish,Yozwiak Nathan,Ong Tuyen,Hajjar Roger J.,Chang Yong,Swanson Kurt A.ORCID,Delagrave SimonORCID

Abstract

AbstractAnelloviruses are nonpathogenic viruses that comprise a major portion of the human virome. Despite being ubiquitous in the human population, anelloviruses (ANVs) remain poorly understood. Basic features of the virus, such as the identity of its capsid protein and the structure of the viral particle, have been unclear until now. Here, we use cryogenic electron microscopy to describe the first structure of an ANV-like particle. The particle, formed by 60 jelly roll domain-containing ANV capsid proteins, forms an icosahedral particle core from which spike domains extend to form a salient part of the particle surface. The spike domains come together around the 5-fold symmetry axis to form crown-like features. The base of the spike domain, the P1 subdomain, shares some sequence conservation between ANV strains while a hypervariable region, forming the P2 subdomain, is at the spike domain apex. We propose that this structure renders the particle less susceptible to antibody neutralization by hiding vulnerable conserved domains while exposing highly diverse epitopes as immunological decoys, thereby contributing to the immune evasion properties of anelloviruses. These results shed light on the structure of anelloviruses and provide a framework to understand their interactions with the immune system.

Publisher

Springer Science and Business Media LLC

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Understanding anellovirus immune evasion;Nature Reviews Drug Discovery;2024-09-06

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