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Published on: December 29, 2015
Specific binding of the type C viral core protein p12 with purified viral RNA
Abstract:
The major viral phosphoproteins (p12) of the Rauscher murine leukemia virus (R-MuLV) and the simian sarcoma-associated virus (SSAV) bind in vitro to their homologous 70S and 35S viral RNAs. Using purified 32P-labeled RNA and 125I-labeled p12 protein, complexes that are stabilized by formaldehyde-cross-linking can be readily detected after velocity gradient centrifugation. The in vitro reconstructed ribonucleoprotein complexes are seen only with p12 proteins incubated with viral RNAs isolated from the same type C viruses; no such complexes form with heterologous protein-RNA mixtures. Homologous but not heterologous p12 molecules compete with radiolabeled p12 protein for the specific viral RNA binding sites. The competition assay permits the detection of 10 ng of viral p12 protein. The major internal protein of type C viruses (p30) does not bind to viral RNA using identical assay conditions. From the specific activities of the radiolabeled components and also by equilibrium sedimentation analysis, we estimate that fewer than 15 molecules of p12 protein bind to each molecule of viral RNA. Both the specificity and stoichiometry of the p12-RNA interactions suggest that these RNA tumor virus proteins have a regulatory role in cells.
Insights
Viral phosphoproteins (p12) specifically bind homologous viral RNA from type C viruses. This specific interaction suggests a regulatory role for these proteins in cells.
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- Murine leukemia virus and simian sarcoma-associated virus are type C viruses.
- Viral phosphoproteins (p12) are key components of these viruses.
Purpose of the Study:
- To investigate the binding specificity of viral phosphoproteins (p12) to viral RNA.
- To determine the stoichiometry and potential regulatory role of p12-RNA interactions.
Main Methods:
- In vitro binding assays using radiolabeled RNA and protein.
- Formaldehyde cross-linking to stabilize complexes.
- Velocity gradient centrifugation and competition assays.
- Equilibrium sedimentation analysis.
Main Results:
- Viral p12 proteins specifically bind homologous viral RNA from type C viruses.
- No binding observed between heterologous protein-RNA mixtures.
- Competition assays confirmed specific binding sites for p12.
- Fewer than 15 molecules of p12 bind per molecule of viral RNA.
- The major internal protein (p30) did not bind viral RNA.
Conclusions:
- The p12 protein exhibits specific binding to homologous viral RNA.
- The stoichiometry suggests a regulatory function for p12 in RNA tumor viruses.
- These findings contribute to understanding viral protein-RNA interactions.
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