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Direct measurement of the poliovirus RNA polymerase error frequency in vitro
C D Ward1, M A Stokes, J B Flanegan
1Department of Immunology and Medical Microbiology, University of Florida College of Medicine, Gainesville 32610.
Abstract:
The fidelity of RNA replication by the poliovirus-RNA-dependent RNA polymerase was examined by copying homopolymeric RNA templates in vitro. The poliovirus RNA polymerase was extensively purified and used to copy poly(A), poly(C), or poly(I) templates with equimolar concentrations of noncomplementary and complementary ribonucleotides. The error frequency was expressed as the amount of a noncomplementary nucleotide incorporated divided by the total amount of complementary and noncomplementary nucleotide incorporated. The polymerase error frequencies were very high and ranged from 7 x 10(-4) to 5.4 x 10(-3), depending on the specific reaction conditions. There were no significant differences among the error frequencies obtained with different noncomplementary nucleotide substrates on a given template or between the values determined on two different templates for a specific noncomplementary substrate. The activity of the polymerase on poly(U) and poly(G) was too low to measure error frequencies on these templates. A fivefold increase in the error frequency was observed when the reaction conditions were changed from 3.0 mM Mg2+ (pH 7.0) to 7.0 mM Mg2+ (pH 8.0). This increase in the error frequency correlates with an eightfold increase in the elongation rate that was observed under the same conditions in a previous study.
Insights
Poliovirus RNA polymerase exhibits high error rates during RNA replication, with frequencies ranging from 7 x 10(-4) to 5.4 x 10(-3). Reaction conditions significantly impact fidelity, affecting RNA replication accuracy.
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- Poliovirus RNA-dependent RNA polymerase is crucial for viral replication.
- Understanding polymerase fidelity is key to viral mutation and evolution.
Purpose of the Study:
- To quantify the error frequency of poliovirus RNA polymerase in vitro.
- To investigate the influence of reaction conditions on polymerase fidelity.
Main Methods:
- Purified poliovirus RNA polymerase was used to copy homopolymeric RNA templates (poly(A), poly(C), poly(I)).
- Equimolar concentrations of complementary and noncomplementary ribonucleotides were employed.
- Error frequency was calculated based on nucleotide incorporation rates.
Main Results:
- High error frequencies were observed, ranging from 7 x 10(-4) to 5.4 x 10(-3).
- No significant differences in error rates were found across different noncomplementary nucleotides or templates.
- Increased Mg2+ concentration and pH led to a fivefold increase in error frequency and an eightfold increase in elongation rate.
Conclusions:
- Poliovirus RNA polymerase demonstrates low fidelity in RNA replication.
- Fidelity is sensitive to environmental factors like Mg2+ concentration and pH.
- Altered reaction conditions can enhance both error rate and replication speed.