A comparison of murine leukemia viruses that escape from human and rhesus macaque TRIM5αs

Sadayuki Ohkura1, Jonathan P Stoye

  • 1Division of Virology, MRC National Institute for Medical Research, Mill Hill, London, United Kingdom.

Journal of Virology
|March 29, 2013
PubMed

Insights

Human TRIM5α (huTRIM5α) and rhesus macaque TRIM5α (rhTRIM5α) restrict N-tropic murine leukemia virus (N-MLV) by binding its capsid. Escape mutations reveal conserved and species-specific interactions, highlighting TRIM5α

Area of Science:

  • Virology
  • Immunology
  • Molecular Biology

Background:

  • Trimerco-5 alpha (TRIM5α) is a key antiviral protein that restricts retroviral infection.
  • Understanding TRIM5α's interaction with retroviral capsids is crucial for developing antiviral strategies.
  • Previous studies identified N-tropic murine leukemia virus (N-MLV) escape mutants from rhesus macaque TRIM5α (rhTRIM5α).

Purpose of the Study:

  • To investigate the binding mechanism of human TRIM5α (huTRIM5α) to N-MLV capsid.
  • To compare escape mutations from huTRIM5α with those previously identified for rhTRIM5α.
  • To determine the commonality and specificity of TRIM5α-mediated restriction across different primate species.

Main Methods:

  • Genetic approach involving passaging N-MLV in cells expressing huTRIM5α.
  • Selection of N-MLV variants that escape huTRIM5α restriction.
  • Mapping of escape mutations within the N-MLV capsid protein.

Main Results:

  • huTRIM5α escape mutations were distributed across the capsid exterior, indicating an extended binding surface.
  • Fewer escape mutations were identified for huTRIM5α compared to rhTRIM5α, with some mutants repeatedly selected.
  • Three of four huTRIM5α escape variants showed resistance to multiple primate TRIM5αs, but two exhibited reduced viral fitness.

Conclusions:

  • TRIM5α broadly recognizes the N-MLV capsid surface, but specific interactions vary between human and rhesus macaque TRIM5α.
  • Species-specific differences in amino acid changes suggest a charge-dependent interaction mechanism.
  • While TRIM5α binding is a general restriction strategy, the precise molecular interactions are distinct across primate species.