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Polypeptides of Mason-Pfizer monkey virus. I. Synthesis and processing of the gag-gene products
Abstract:
Mason-Pfizer monkey virus (M-PMV), the prototype D-type retrovirus, differs from the mammalian C-type retroviruses by preassembling core structures in the cytoplasm of infected cells during morphogenesis. Studies that define the protein composition of M-PMV virions and identify two gag-related polyprotein precursors in M-PMV infected cells are reported. The polyprotein precursor to the internal structural (gag) proteins of M-PMV was identified by immunoprecipitation from lysates of pulse-labeled, virus-infected cells with an antiserum to the major structural protein, p27. Tryptic peptide-mapping experiments have shown that this precursor (Pr78) is cleaved to yield five virion structural polypeptides--p27, pp16, p14, p12, and p10. The pp16 polypeptide represents an additional gag-gene encoded polypeptide, not described previously; it is a phosphoprotein and present in virions in a number of forms. A second gag-related polyprotein precursor, P95, is also present in infected cells although in smaller amounts. This nonglycosylated polypeptide contains all of the leucine-containing tryptic peptides of Pr78 plus three others. Studies of the rate of synthesis and half-life of this protein argue against it being the major gag-gene precursor polypeptide. The possibility that it represents a precursor to the viral protease is discussed.
Insights
Mason-Pfizer monkey virus (M-PMV) research reveals two gag-related polyprotein precursors, Pr78 and P95, crucial for D-type retrovirus morphogenesis. Pr78 yields five structural polypeptides, including a novel phosphoprotein pp16.
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Mason-Pfizer monkey virus (M-PMV) is a prototype D-type retrovirus.
- M-PMV differs from C-type retroviruses in its cytoplasmic core structure assembly during morphogenesis.
Purpose of the Study:
- To define the protein composition of M-PMV virions.
- To identify gag-related polyprotein precursors in M-PMV infected cells.
Main Methods:
- Immunoprecipitation using antiserum to the major structural protein p27.
- Tryptic peptide-mapping of polyprotein precursors.
- Analysis of synthesis rates and half-life of viral proteins.
Main Results:
- Identified a major gag-related polyprotein precursor, Pr78, cleaved into five virion structural polypeptides (p27, pp16, p14, p12, p10).
- Discovered a novel gag-gene encoded phosphoprotein, pp16, present in virions.
- Identified a second, less abundant gag-related precursor, P95, with distinct peptide mapping and metabolic properties.
Conclusions:
- Pr78 is the major precursor to M-PMV internal structural (gag) proteins.
- pp16 is a newly identified phosphoprotein component of M-PMV virions.
- P95's role is uncertain, possibly a precursor to viral protease, and not the major gag precursor.