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Identification of a Conserved, Linear Epitope on VP3 of Enterovirus A Species Recognized by a Broad-Spectrum Monoclonal Antibody.

Lie FuXiao-Yu ZhangWei-Ping JinChen WangSha-Sha QianMeng-Jun WangWen-Hui WangSheng-Li MengJing GuoZe-Jun WangXiao-Qi ChenShuo Shen
Published in: Viruses (2023)
Outbreaks of hand, foot and mouth disease (HFMD) have occurred frequently in the Asian-Pacific region over the last two decades, caused mainly by the serotypes in Enterovirus A species. High-quality monoclonal antibodies (mAbs) are needed to improve the accuracy and efficiency of the diagnosis of enteroviruses associated HFMD. In this study, a mAb 1A11 was generated using full particles of CV-A5 as an immunogen. In indirect immunofluorescence and Western blotting assays, 1A11 bound to the viral proteins of CV-A2, CV-A4, CV-A5, CV-A6, CV-A10, CV-A16, and EV-A71 of the Enterovirus A and targeted VP3. It has no cross-reactivity to strains of Enterovirus B and C . By mapping with over-lapped and truncated peptides, a minimal and linear epitope 23 PILPGF 28 was identified, located at the N-terminus of the VP3. A BLAST sequence search of the epitope in the NCBI genus Enterovirus (taxid: 12059) protein database indicates that the epitope sequence is highly conserved among the Enterovirus A species, but not among the other enterovirus species, first reported by us. By mutagenesis analysis, critical residues for 1A11 binding were identified for most serotypes of Enterovirus A . It may be useful for the development of a cost-effective and pan- Enterovirus A antigen detection for surveillance, early diagnosis and differentiation of infections caused by the Enterovirus A species.
Keyphrases
  • monoclonal antibody
  • escherichia coli
  • transcription factor
  • sars cov
  • south africa
  • high resolution
  • crispr cas
  • genetic diversity
  • binding protein
  • cancer therapy
  • data analysis
  • quantum dots