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April 19, 20260 citations

An evolutionary perspective on the nucleocytoplasmic shuttling mechanism of duck plague virus UL54 protein.

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MXMing-fei XuNorth Sichuan Medical UniversityYYYan-Hong YangNorth Sichuan Medical UniversityQLQianqian LiNorth Sichuan Medical University

Key Result

Three specific mutation sites (Lys269, Leu348, and Leu377) in the UL54 protein were correlated with the evolution of duck plague virus and significantly impacted its nuclear-cytoplasmic shuttling.

Key Points

  • This research aims to investigate the evolutionary role and nuclear-cytoplasmic shuttling mechanism of the UL54 protein in duck plague virus.
  • Analyzed co-evolution of DPV whole genome and UL54 gene using molecular evolutionary methods.
  • Constructed phylogenetic trees from UL54 nucleotide and amino-acid sequences of various alpha-herpesvirus strains.
  • Performed sequence alignment of UL54 gene between DPV and closely related strains.
  • Constructed recombinant plasmids to assess mutation impacts on UL54 protein shuttling.
  • Identified specific mutation sites in the UL54 gene of DPV that relate to its evolution.
  • Noted three key mutation sites: Lys269, Leu348, and Leu377 that affect nuclear-cytoplasmic shuttling.
  • Found that DPV exhibits co-evolution with hosts and marked evolutionary divergence in UL54 genes.

Structured PICO

P
Population
Duck plague virus (DPV) whole genome, UL54 gene sequences, and recombinant plasmids
I
Intervention
Genetic mutations at specific sites (Lys269, Leu348 and Leu377) in UL54 amino acid sequences
C
Comparator
Wild-type DPV UL54 protein
O
Outcome
Nuclear-cytoplasmic shuttling property of the UL54-encoded proteinssurrogate

Specific mutation sites (Lys269, Leu348, and Leu377) in the UL54 protein of Duck plague virus correlate with its evolution and significantly impact its nuclear-cytoplasmic shuttling property.

Abstract

Duck plague virus (DPV), a member of the alpha-herpesvirus, causes duck plague (DP), thereby posing a serious threat to the waterfowl industry. The DPV UL54-encoded protein shuttles between the nucleus and cytoplasm to modulate viral replication. However, the role of the UL54 protein in the evolutionary process remains unknown. This study is conducted from an evolutionary perspective to explore the nuclear-cytoplasmic shuttling characteristic of UL54 protein. First, we analyzed the co-evolution on DPV whole genome and its UL54 gene using molecular evolutionary methods. Next, we constructed phylogenetic trees based on UL54 nucleotide sequences and the corresponding amino-acid sequences from different alpha-herpesvirus stains. Based on these phylogenetic trees, we selected strains that are genetically close to DPV, and performed UL54 gene sequence alignment between DPV and those phylogenetically related strains. Then, we discovered there were specific mutation sites in UL54 gene of DPV. Finally, we constructed recombinant plasmids with genetic mutations to detect the influence of mutation sites on the nuclear-cytoplasmic shuttling property of the UL54-encoded proteins. The results showed that DPV exhibited dual modes comprising co-evolution with its natural hosts and cross-species transmission, meanwhile UL54 genes from different viral strains exhibited marked evolutionary divergence. Further investigation revealed there were three specific mutation sites (Lys269, Leu348 and Leu377) in UL54 amino acid sites, which were correlated with evolution of DPV. Mutation at these sites significantly impacted the nuclear-cytoplasmic shuttling property of the UL54-encoded protein. Our study provides a rationale for understanding the evolutionary mechanism of DPV and exploring new therapeutic strategy.

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Cite This Study

Xu et al. (2026) studied Duck plague virus (DPV). Genetic mutations in UL54 gene vs. Wild-type DPV UL54 was evaluated on Nuclear-cytoplasmic shuttling property of the UL54-encoded protein. Three specific mutation sites (Lys269, Leu348, and Leu377) in the UL54 protein were correlated with the evolution of duck plague virus and significantly impacted its nuclear-cytoplasmic shuttling.

synapsesocial.com/papers/69e47376010ef96374d8f446https://doi.org/10.16288/j.yczz.25-131
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