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Mutational analysis of DNA sequences affecting the replication of defective polyomavirus variant D-50

Virus Research
|December 1, 1986
PubMed

Insights

The defective polyomavirus D-50 variant genome can be rebuilt by joining DNA segments. The origin of DNA replication is crucial for its function, while other elements assist in cis.

Area of Science:

  • Molecular Biology
  • Virology

Background:

  • The defective polyomavirus D-50 variant genome comprises tandemly repeated DNA segments.
  • Each repeat unit is a 17% fragment of the polyomavirus DNA.

Purpose of the Study:

  • To enable mutational analysis, a monomer unit of D-50 DNA was cloned.
  • To investigate the essential elements for D-50 DNA replication and variant genome construction.

Main Methods:

  • Cloning of a D-50 DNA monomer unit.
  • Ligation of cloned segments to form oligomers and transfection into cells.
  • Deletion and mutation analysis of specific DNA sequences.
  • Transfection with polyomavirus DNA fragments to construct D-50-like variants.

Main Results:

  • Replication of head-to-tail oligomers mimicked original D-50 DNA properties.
  • Deletion at the origin of DNA synthesis abolished replication; deletion at repeat junctions had minor effects.
  • Mutations in potential coding sequences slightly stimulated DNA synthesis, indicating no D-50 protein enhances replication.
  • Constructed D-50-like variants showed slow replication, suggesting an inhibitory element.

Conclusions:

  • D-50 genomes can be reconstituted from ligated monomer units.
  • The origin of DNA replication is the sole essential element for D-50 genome replication.
  • Other genomic elements possess cis-acting auxiliary functions crucial for efficient replication.

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