Abstract
The bacteriophage phi X174 viral (+) origin when inserted in a plasmid can interact in vivo with the A protein produced by infecting phi X174 phages. A consequence of this interaction is packaging of single-stranded plasmid DNA into preformed phage coats resulting in infective particles (1). This property was used to study morphogenesis and to analyse the signals for initiation and termination of the rolling circle DNA replication in vivo. It is shown that the size of the DNA had a strong effect on the encapsidation by the phage coats and the infectivity of the particle. Termination was analysed by using plasmids with two phi X (+) origins either in the same orientation or in opposite orientation. Both origins were used with equal frequency. Initiation at one origin resulted in very efficient termination (greater than 96%) at the second origin in the case of two origins in the same orientation. When the two (+) origins have opposite orientations, no correct termination was observed. The second origin in the opposite strand effectively inhibits (greater than 98%) the normal DNA synthesis; i.e. the covalently bound A protein present in the replication fork interacts with the (+) origin sequence in the opposite strand.
MeSH Terms
Bacteriophage phi X 174/genetics
DNA Replication
DNA Restriction Enzymes
DNA, Circular/genetics
DNA, Recombinant/metabolism
DNA, Single-Stranded/genetics
DNA, Viral/genetics
Escherichia coli/genetics
Microscopy, Electron
Plasmids
Viral Proteins/genetics
Virus Replication
Chemicals
DNA, Circular
DNA, Recombinant
DNA, Single-Stranded
DNA, Viral
Viral Proteins
DNA Restriction Enzymes
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
van der Ende A
Teertstra R
Weisbeek P J
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