EMD-33377

Single-particle
2.7 Å
EMD-33377 Deposition: 04/05/2022
Map released: 15/02/2023
Last modified: 08/05/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-33377

Focused refinement cryo-EM map of the A/B/C subunits of the T=4 lake sinai virus 2 virus-like particle at pH 6.5

EMD-33377

Single-particle
2.7 Å
EMD-33377 Deposition: 04/05/2022
Map released: 15/02/2023
Last modified: 08/05/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Lake Sinai virus 2
Sample: Lake Sinai virus 2

Deposition Authors: Chen NC , Wang CH , Chen CJ , Yoshimura M , Guan HH , Chuankhayan P, Lin CC
Structures of honeybee-infecting Lake Sinai virus reveal domain functions and capsid assembly with dynamic motions.
Chen NC , Wang CH , Yoshimura M , Yeh YQ , Guan HH , Chuankhayan P, Lin CC , Lin PJ, Huang YC , Wakatsuki S , Ho MC , Chen CJ
(2023) Nat Commun , 14 , 545 - 545
PUBMED: 36726015
DOI: doi:10.1038/s41467-023-36235-3
ISSN: 2041-1723
Abstract:
Understanding the structural diversity of honeybee-infecting viruses is critical to maintain pollinator health and manage the spread of diseases in ecology and agriculture. We determine cryo-EM structures of T = 4 and T = 3 capsids of virus-like particles (VLPs) of Lake Sinai virus (LSV) 2 and delta-N48 LSV1, belonging to tetraviruses, at resolutions of 2.3-2.6 Å in various pH environments. Structural analysis shows that the LSV2 capsid protein (CP) structural features, particularly the protruding domain and C-arm, differ from those of other tetraviruses. The anchor loop on the central β-barrel domain interacts with the neighboring subunit to stabilize homo-trimeric capsomeres during assembly. Delta-N48 LSV1 CP interacts with ssRNA via the rigid helix α1', α1'-α1 loop, β-barrel domain, and C-arm. Cryo-EM reconstructions, combined with X-ray crystallographic and small-angle scattering analyses, indicate that pH affects capsid conformations by regulating reversible dynamic particle motions and sizes of LSV2 VLPs. C-arms exist in all LSV2 and delta-N48 LSV1 VLPs across varied pH conditions, indicating that autoproteolysis cleavage is not required for LSV maturation. The observed linear domino-scaffold structures of various lengths, made up of trapezoid-shape capsomeres, provide a basis for icosahedral T = 4 and T = 3 architecture assemblies. These findings advance understanding of honeybee-infecting viruses that can cause Colony Collapse Disorder.