Structural basis of mpox virus A30/H2 subcomplex formation

成果类型:
Article
署名作者:
Jia, Xiaohua; Lin, Sheng; Yang, Fanli; You, Yu; Yang, Ruixi; Chen, Zimin; Guo, Liyan; Yang, Jing; Wang, Lingling; Yuan, Xin; Zhang, Xindan; Xu, Pengli; Tong, Qin; He, Bin; Cao, Yu; Li, Jian; Zhao, Qi; Lu, Guangwen
署名单位:
Sichuan University; Sichuan University; Sichuan University; Chengdu University; Chengdu University
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2524604123
发表日期:
2026-02-10
页码:
e2524604123
关键词:
mpox virus entry-fusion complex A30/H2 subcomplex crystal structure immunogen design VIRION MEMBRANE-PROTEIN VACCINIA-VIRUS cell entry ENTRY/FUSION COMPLEX essential component fusion subunit A28
摘要:
The continuous spread of mpox disease caused by mpox virus (MPXV) has posed great threat to global public health. The postattachment membrane fusion process of MPXV is mediated by a multimeric protein machinery, termed as entry-fusion complex (EFC). Among EFC components, A30 and H2 are the earliest identified interaction pair and play important roles in virus entry. Here, we determine the crystal structure of MPXV A30/H2 subcomplex via the tandem-fusion strategy, and show that A30 undergoes large conformational rearrangements upon H2 binding. Structural analysis reveals extended intersubunit interface and highly conserved intermolecular interactions. In vitro binding data further clarify key residues and elements involved in the A30/ H2 subcomplex formation. Finally, we show that the H2-A30 fusion protein, superior to A30 ectodomain alone or the ectodomain-mixture of H2+A30, can induce more potent neutralizing-antibody responses which could inhibit viral infection. These data provide valuable information for the understanding of poxvirus EFC assembly and the H2-A30-based immunogen design and optimization.
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