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Selective decrease in the rate of cleavage of an intracellular precursor to Rauscher leukemia virus p30 by treatment

Journal of Virology
|September 1, 1976
PubMed

Insights

Actinomycin D (AMD) and cycloheximide affect Rauscher leukemia virus (RLV) protein cleavage. Viral RNA interaction with Pr4 precursor likely accelerates its cleavage to p30 during virus assembly.

Area of Science:

  • * Virology
  • * Molecular Biology
  • * Biochemistry

Background:

  • * Rauscher leukemia virus (RLV) is an oncogenic retrovirus.
  • * Viral protein processing is crucial for infectious virion assembly.
  • * The Pr4 precursor is processed into the RLV p30 capsid protein.

Purpose of the Study:

  • * To investigate the effect of actinomycin D (AMD) and cycloheximide on Pr4 precursor cleavage.
  • * To elucidate the role of viral RNA in the cleavage of Pr4 to p30.
  • * To understand the mechanisms regulating RLV assembly.

Main Methods:

  • * Treatment of RLV-producing cells with actinomycin D (AMD) and cycloheximide.
  • * Analysis of intracellular viral precursor polypeptides and purified virions.
  • * Pulse-labeling experiments to assess protein synthesis.

Main Results:

  • * AMD treatment slowed Pr4 cleavage and caused Pr4 accumulation in virions.
  • * Cycloheximide initially allowed Pr4 cleavage but then inhibited it, also affecting other precursors.
  • * AMD's effect was not due to inhibition of protein synthesis, suggesting a distinct mechanism.
  • * Combined AMD and cycloheximide showed synergistic inhibition, indicating different mechanisms of action.

Conclusions:

  • * Viral RNA interaction with the Pr4 precursor accelerates its cleavage to p30 during RLV assembly.
  • * AMD and cycloheximide inhibit Pr4 cleavage through at least partially distinct pathways.
  • * A model is proposed where genomic RNA interaction precedes Pr4 cleavage, potentially aiding virus assembly.

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