Inherent symmetry and flexibility in hepatitis B virus subviral particles.

Wang, Quan; Wang, Tao; Cao, Lin; Mu, An; Fu, Sheng; Wang, Peipei; Gao, Yan; Ji, Wenxin et al. · Science · 2024

basic_science · Level V

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Abstract

Chronic hepatitis B virus (HBV) infection poses a major global health challenge with massive morbidity and mortality. Despite a preventive vaccine, current treatments provide limited virus clearance, necessitating lifelong commitment. The HBV surface antigen (HBsAg) is crucial for diagnosis and prognosis, yet its high-resolution structure and assembly on the virus envelope remain elusive. Utilizing extensive datasets and advanced cryo-electron microscopy analysis, we present structural insights into HBsAg at a near-atomic resolution of 3.7 angstroms. HBsAg homodimers assemble into subviral particles with <b><i>D</i></b><sub>2</sub>- and <b><i>D</i></b><sub>4</sub>-like quasisymmetry, elucidating the dense-packing rules and structural adaptability of HBsAg. These findings provide insights into how HBsAg assembles into higher-order filaments and interacts with the capsid to form virions.

Medical subject headings