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Identification of poliovirus polypeptide P63 as a soluble RNA-dependent RNA polymerase
Abstract:
A poliovirus-specific RNA-dependent RNA polymerase was isolated from a cytoplasmic extract of infected HeLa cells and was shown to copurify with a single virus-specific protein. The polymerase was isolated from cells labeled with [35S]-methionine and was fractionated from other soluble cytoplasmic proteins by ammonium sulfate precipitation, phosphocellulose chromatography, gel filtration on Sephacryl S-200, and chromatography on hydroxylapatite. The activity of the enzyme was measured by using either polyadenylic acid or poliovirion RNA as a template in the presence of an oligouridylic acid primer. A single virus-specific protein that had an apparent molecular weight of 63,000 (p63) was found to copurify with this activity. Host-coded proteins were present in reduced molar amounts relative to p63. Noncapsid viral protein 2 (NCVP2) and other viral proteins were clearly separated from p63 by gel filtration on Sephacryl S-200. Polymerase activity coeluted from the column precisely with p63. NCVP2 was totally inactive as an RNA polymerase and did not stimulate the polymerase activity of p63. The purified enzyme sedimented at about 4S on a glycerol gradient and thus appeared to be a monomer of p63. Two-dimensional gel electrophoresis of the polymerase protein indicated that it had an isoelectric point of about 7.5. Thus, the viral polypeptide, p63, as defined by the above physical parameters, is an RNA-dependent RNA polymerase that can copy poliovirion RNA when oligouridylic acid is used as a primer.
Insights
Researchers isolated a poliovirus-specific RNA-dependent RNA polymerase. This enzyme, a single viral protein (p63), was purified and shown to copy poliovirus RNA, crucial for understanding viral replication.
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- Poliovirus replication relies on a viral RNA-dependent RNA polymerase.
- Understanding the purification and function of this enzyme is key to antiviral strategies.
Purpose of the Study:
- To isolate and characterize the poliovirus-specific RNA-dependent RNA polymerase.
- To identify the viral protein responsible for RNA polymerase activity.
Main Methods:
- Isolation of polymerase from infected HeLa cells using ammonium sulfate precipitation, phosphocellulose chromatography, gel filtration, and hydroxylapatite chromatography.
- Assay of polymerase activity using polyadenylic acid or poliovirion RNA templates with an oligouridylic acid primer.
- Characterization of the purified protein using gel filtration, glycerol gradient sedimentation, and two-dimensional gel electrophoresis.
Main Results:
- A single virus-specific protein, p63 (63,000 MW), was purified and copurified with RNA polymerase activity.
- Host proteins were present in lower amounts than p63.
- Noncapsid viral protein 2 (NCVP2) was separated from p63 and showed no polymerase activity.
- The purified enzyme sedimented as a 4S monomer and had an isoelectric point of 7.5.
Conclusions:
- The viral polypeptide p63 is the poliovirus-specific RNA-dependent RNA polymerase.
- p63 can copy poliovirion RNA using an oligouridylic acid primer.
- This purification and characterization provide insights into the molecular mechanisms of poliovirus replication.