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Both strands of polyoma DNA are replicated discontinuously with ribonucleotide primers in vivo
Abstract:
Nascent polyoma DNA molecules were isolated after pulse-labeling of infected murine 3T6 cells with [3H]thymidine. The extent of digestion of these DNA molecules by spleen exonuclease was increased by exposure to alkali or RNase, suggesting that ribonucleotides were present at or near the 5' terminal of the newly synthesized pieces of DNA. Intermediates shorter than 300 nucleotides were hybridized to the separated strands of restriction enzyme fragments of the polyoma genome: 2.5 to 3-fold more radioactivity was found in the strand whose synthesis is necessarily discontinuous (the lagging strand) than in the strand whose synthesis is potentially continuous (the leading strand) than in the strand whose synthesis is potentially continuous (the leading strand). Separation of the strands of [5'-32P]DNA molecules showed that the excess [3H]thymidine in lagging-strand molecules was not simply the result of an increased number of molecules. Therefore, assuming equivalent efficiencies of labeling, lagging-strand pieces must be slightly longer than those with leading-strand polarity. The presence of ribonucleotides on the 5' termini of molecules with both leading- and lagging-strand polarity was demonstrated by (i) release of 32P-ribonucleoside diphosphates upon alkaline hydrolysis of [5'-32P]DNA separated according to replication polarity and (ii) the change in the degree of self-annealing of nascent molecules upon preferential degradation of DNA molecules possessing initiator RNA moieties by spleen exonuclease. We conclude that replication of polyoma DNA in vivo occurs discontinuously on both sides of the growing fork, using RNA as the major priming mechanism.
Insights
Polyoma DNA replication in cells involves discontinuous synthesis on both strands, using RNA primers. This process ensures efficient DNA duplication through short, RNA-initiated fragments.
Area of Science:
- Molecular Biology
- Virology
- Genetics
Background:
- Polyoma DNA replication is crucial for viral propagation in host cells.
- Understanding the mechanism of nascent DNA synthesis provides insights into DNA replication fidelity.
Purpose of the Study:
- To investigate the mechanism of nascent polyoma DNA synthesis in vivo.
- To determine the role of RNA primers in polyoma DNA replication.
Main Methods:
- Pulse-labeling of infected murine cells with [3H]thymidine.
- Exonuclease digestion, alkaline hydrolysis, and strand separation of nascent DNA.
- Hybridization of nascent DNA intermediates to separated polyoma genome strands.
Main Results:
- Ribonucleotides were detected at or near the 5' termini of newly synthesized polyoma DNA fragments.
- Discontinuous synthesis, evidenced by RNA primers, occurs on both leading and lagging strands.
- Lagging-strand DNA fragments were found to be slightly longer than leading-strand fragments.
Conclusions:
- Polyoma DNA replication in vivo proceeds discontinuously on both sides of the replication fork.
- RNA serves as the primary mechanism for initiating DNA synthesis in polyoma replication.