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Published on: January 17, 2014
Construction and characterization of 3A-epitope-tagged foot-and-mouth disease virus
Xueqing Ma1, Pinghua Li1, Pu Sun1
1State Key Laboratory of Veterinary Etiological Biology, National Foot and Mouth Disease Reference Laboratory, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, No. 1 Xujiaping, Lanzhou 730046, Gansu, China.
Abstract:
Nonstructural protein 3A of foot-and-mouth disease virus (FMDV) is a partially conserved protein of 153 amino acids (aa) in most FMDVs examined to date. Specific deletion in the FMDV 3A protein has been associated with the inability of FMDV to grow in primary bovine cells and cause disease in cattle. However, the aa residues playing key roles in these processes are poorly understood. In this study, we constructed epitope-tagged FMDVs containing an 8 aa FLAG epitope, a 9 aa haemagglutinin (HA) epitope, and a 10 aa c-Myc epitope to substitute residues 94-101, 93-101, and 93-102 of 3A protein, respectively, using a recently developed O/SEA/Mya-98 FMDV infectious cDNA clone. Immunofluorescence assay (IFA), Western blot and sequence analysis showed that the epitope-tagged viruses stably maintained and expressed the foreign epitopes even after 10 serial passages in BHK-21 cells. The epitope-tagged viruses displayed growth properties and plaque phenotypes similar to those of the parental virus in BHK-21 cells. However, the epitope-tagged viruses exhibited lower growth rates and smaller plaque size phenotypes than those of the parental virus in primary fetal bovine kidney (FBK) cells, but similar growth properties and plaque phenotypes to those of the recombinant viruses harboring 93-102 deletion in 3A. These results demonstrate that the decreased ability of FMDV to replicate in primary bovine cells was not associated with the length of 3A, and the genetic determinant thought to play key role in decreased ability to replicate in primary bovine cells could be reduced from 93-102 residues to 8 aa residues at positions 94-101 in 3A protein.
Insights
Foot-and-mouth disease virus (FMDV) nonstructural protein 3A
Area of Science:
- Virology
- Molecular Biology
- Animal Health
Background:
- Foot-and-mouth disease virus (FMDV) nonstructural protein 3A (153 amino acids) is partially conserved.
- Specific deletions in FMDV 3A impact viral growth in bovine cells and disease causation.
- Key amino acid residues responsible for these processes are not well understood.
Purpose of the Study:
- To investigate the role of specific amino acid residues in FMDV 3A protein.
- To identify the genetic determinants of FMDV's reduced replication in primary bovine cells.
Main Methods:
- Construction of epitope-tagged FMDVs (FLAG, HA, c-Myc) by substituting residues in the 3A protein.
- Passaging epitope-tagged viruses in BHK-21 cells and assessing stability.
- Evaluating viral growth rates and plaque phenotypes in BHK-21 and primary fetal bovine kidney (FBK) cells.
Main Results:
- Epitope-tagged FMDV 3A viruses stably expressed foreign epitopes after 10 passages.
- Epitope-tagged viruses showed similar growth and plaque phenotypes to parental virus in BHK-21 cells.
- Epitope-tagged viruses exhibited reduced growth rates and smaller plaque sizes in FBK cells, similar to 3A deletion mutants.
Conclusions:
- FMDV replication in primary bovine cells is not solely dependent on the length of the 3A protein.
- The genetic determinant for reduced replication in bovine cells can be localized to an 8-amino acid region (residues 94-101) within 3A.

