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Updated: Aug 18, 2025

Isolation and Quantification of Epstein-Barr Virus from the P3HR1 Cell Line
Published on: September 28, 2022
Regulation of Epstein-Barr Virus Minor Capsid Protein BORF1 by TRIM5α
Lih-Tsern Lin1, Yi-Shan Lu1, Hsiang-Hung Huang1
1Department of Biochemical Science and Technology, College of Life Science, National Taiwan University, Taipei City 106319, Taiwan.
Abstract:
TRIM5α is a host anti-retroviral restriction factor that destroys human immunodeficiency virus (HIV) virions and triggers innate immune signaling. TRIM5α also mediates the autophagic degradation of target proteins via TRIMosome formation. We previously showed that TRIM5α promotes Epstein-Barr virus (EBV) Rta ubiquitination and attenuates EBV lytic progression. In this study, we sought to elucidate whether TRIM5α can interact with and induce the degradation of EBV capsid proteins. Glutathione S-transferase (GST) pulldown and immunoprecipitation assays were conducted to identify interacting proteins, and mutants were generated to investigate key binding domains and ubiquitination sites. Results showed that TRIM5α binds directly with BORF1, an EBV capsid protein with a nuclear localization signal (NLS) that enables the transport of EBV capsid proteins into the host nucleus to facilitate capsid assembly. TRIM5α promotes BORF1 ubiquitination, which requires the surface patch region in the TRIM5α PRY/SPRY domain. TRIM5α expression also decreases the stability of BORF1(6KR), a mutant with all lysine residues mutated to arginine. However, chloroquine treatment restores the stability of BORF1(6KR), suggesting that TRIM5α destabilizes BORF1 via direct recognition of its substrate for autophagic degradation. These results reveal novel insights into the antiviral impact of TRIM5α beyond retroviruses.
Insights
The tripartite motif-containing protein 5 alpha (TRIM5α) targets Epstein-Barr virus (EBV) capsid protein BORF1 for degradation. This interaction destabilizes BORF1, revealing a new antiviral mechanism for TRIM5α against EBV.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Tripartite motif-containing protein 5 alpha (TRIM5α) is a known antiviral factor restricting retroviruses like human immunodeficiency virus (HIV).
- TRIM5α also plays a role in innate immune signaling and mediates protein degradation through autophagosomes via TRIMsome formation.
- Previous research demonstrated TRIM5α's role in Epstein-Barr virus (EBV) Rta ubiquitination and attenuation of viral lytic progression.
Purpose of the Study:
- To investigate the interaction between TRIM5α and EBV capsid proteins.
- To determine if TRIM5α induces the degradation of EBV capsid proteins.
- To elucidate the mechanism by which TRIM5α affects EBV capsid protein stability.
Main Methods:
- Glutathione S-transferase (GST) pulldown assays to identify interacting proteins.
- Immunoprecipitation assays to confirm protein interactions.
- Site-directed mutagenesis to analyze binding domains and ubiquitination sites.
- Western blotting to assess protein stability in the presence of TRIM5α and chloroquine.
Main Results:
- TRIM5α directly binds to BORF1, an EBV capsid protein essential for nuclear transport and capsid assembly.
- TRIM5α promotes the ubiquitination of BORF1, dependent on the PRY/SPRY domain of TRIM5α.
- TRIM5α expression reduces the stability of a BORF1 mutant lacking lysine residues (BORF1(6KR)).
- Autophagic degradation is implicated as chloroquine treatment restores BORF1(6KR) stability, suggesting TRIM5α targets BORF1 for autophagic clearance.
Conclusions:
- TRIM5α interacts with and induces the autophagic degradation of the EBV capsid protein BORF1.
- This study expands the known antiviral functions of TRIM5α beyond retroviruses to include herpesviruses like EBV.
- The findings reveal a novel mechanism of TRIM5α-mediated restriction against EBV infection by targeting essential capsid components.
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