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Reovirus nonstructural protein muNS binds to core particles but does not inhibit their transcription and capping

T J Broering1, A M McCutcheon, V E Centonze

  • 1Department of Biochemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.

Journal of Virology
|May 24, 2000
PubMed

Insights

Mammalian reovirus nonstructural protein muNS binds to viral cores, potentially delaying outer capsid assembly. This interaction allows transcriptase particles to continue synthesizing viral RNA within infected cells.

Area of Science:

  • Virology
  • Molecular Biology
  • Structural Biology

Background:

  • Nonstructural protein muNS is found in mammalian reovirus assembly intermediates.
  • These intermediates contain core-like particles and muNS, and can synthesize viral RNA transcripts.
  • The role of muNS in assembly and transcription is suggested but not fully understood.

Purpose of the Study:

  • To investigate the in vitro interaction between recombinant muNS and viral cores.
  • To determine the effect of muNS binding on core structure and function.
  • To assess the potential role of muNS in regulating viral particle assembly and transcription.

Main Methods:

  • In vitro binding assays using recombinant muNS and purified viral cores.
  • Buoyant density analysis of muNS-core complexes.
  • Negative-stain electron microscopy to visualize muNS-core complexes.
  • In vitro transcription assays to assess the activity of muNS-bound cores.
  • In vitro competition assays with outer-capsid proteins.

Main Results:

  • Recombinant muNS binds to viral cores but not to virions or intermediate subvirion particles.
  • muNS binding to cores does not show saturation or defined stoichiometry, reducing particle buoyant density.
  • Electron microscopy reveals intact cores linked by amorphous muNS density.
  • muNS-bound cores retain RNA transcriptase and 5' capping activity.
  • muNS binding to cores inhibits the stoichiometric binding of outer-capsid proteins mu1 and sigma3.

Conclusions:

  • The muNS protein interacts with reovirus cores, forming complexes that retain transcriptase activity.
  • muNS binding to cores may prevent or delay the assembly of outer capsid proteins.
  • This mechanism allows transcriptase particles to continue RNA synthesis within infected cells.

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