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Selective decrease in the rate of cleavage of an intracellular precursor to Rauscher leukemia virus p30 by treatment
Abstract:
The cleavage of an intracellular 67,000- to 70,000-dalton precursor, termed Pr4 to Rauscher leukemia virus (RLV) p30 protein proceeded at a slower rate when virus-producing cells were treated with actinomycin D (AMD). Treatment with AMD also caused a slight accumulation of Pr4 in purified early virus particles produced by a cell line which usually produces virions that contain little Pr4. The cleavage of other intracellular viral precursor polypeptides was not affected by treatment with AMD. Treatment of infected cells with cycloheximide, on the other hand, allowed the cleavage of Pr4 to proceed at the usual rate for a short period of time before further cleavage was drastically slowed or prevented. The cleavage of several other viral precursor polypeptides was also inhibited by treatment with cycloheximide. Different lines of evidence suggest that the mechanism of action of AMD is not due to a possible indirect effect on protein synthesis. Thus, the rate of cleavage of Pr4 was not affected by the length of pretreatment with AMD between 1 to 8 h. In addition, the combined effect of AMD and cycloheximide, at their maximal inhibitory concentrations, was greater than the effect of either drug alone, indicating the involvement of two at least partially different mechanisms in the action of AMD and cycloheximide. Furthermore, AMD did not affect the pulse labeling of viral precursor polypeptides. These results suggest that the interaction with viral RNA, whose production is inhibited by AMD, accelerates the cleavage of Pr4 to p30 during virus assembly. A hypothetical model is presented to illustrate th possible advantages of having a step in virus assembly in which genomic RNA interacts with a precursor to capsid proteins before the cleavage of that precursor.
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.