Differences in Processing Determinants of Nonstructural Polyprotein and in the Sequence of Nonstructural Protein 3

Sirle Saul1, Mhairi Ferguson2, Colette Cordonin3

  • 1Institute of Technology, University of Tartu, Tartu, Estonia.

Journal of Virology
|August 28, 2015
PubMed
Abstract

Insights

Semliki Forest virus (SFV) virulence in mice is linked to nonstructural protein 3 (nsP3). Specific amino acid changes in nsP3 and its interaction with nsP4 influence viral encephalitis and alphavirus pathology.

Area of Science:

  • Virology
  • Molecular Biology
  • Immunology

Background:

  • Semliki Forest virus (SFV) infection in mice serves as a model for viral encephalitis and alphavirus molecular biology.
  • Previous studies suggested nonstructural protein 3 (nsP3) is associated with SFV virulence, but consensus clones had not been used to map determinants.
  • Understanding the genetic basis of SFV strain properties is crucial for studying host-pathogen interactions and alphavirus-induced pathology.

Purpose of the Study:

  • To map virulence determinants of Semliki Forest virus (SFV) using consensus clones.
  • To confirm the role of nsP3 in SFV virulence and characterize another neurovirulence determinant.
  • To identify novel functions of nsP3 and link SFV molecular biology to its biological properties.

Main Methods:

  • Construction and analysis of recombinant SFV viruses using consensus clones of virulent (L10/SFV6) and avirulent (A7(74)/A774wt) strains.
  • Insertion and replacement of nsP3 genes between SFV6 and A774wt backbones.
  • Pulse-chase experiments to analyze nonstructural polyprotein processing, specifically the cleavage site between nsP1 and nsP2.

Main Results:

  • Insertion of nsP3 from A774wt into SFV6 had minor effects, but nsP3 from SFV6 into A774wt or duplicated nsP3 resulted in virulent viruses.
  • Duplication of nsP3-encoding sequences led to elevated nsP4 levels, indicating nsP3 stabilizes nsP4.
  • Specific amino acid substitutions (His534Arg and Val1052Glu) in the nonstructural polyprotein modulated nsP3-mediated virulence by affecting nsP1-nsP2 cleavage and nsP2 protease activity.

Conclusions:

  • Nonstructural protein 3 (nsP3) plays a critical role in Semliki Forest virus (SFV) virulence.
  • nsP3 is involved in the stabilization of nsP4, a novel function.
  • Virulence is linked to the processing speed of the nsP1-nsP2 cleavage site, influenced by specific amino acid residues in the nonstructural polyprotein.