Abstract
The major conclusion from these studies is that variants of Haemophilus influenzae Rd which restrict and modify phage S2 are metastable and capable of giving rise to one another with high frequency. Nonrestrictive RdS cells segregate spontaneously to the restricting, modifying phenotype in about 5% of the progeny of a single clone. The restrictive cells derived from RdS revert to the nonrestrictive phenotype in 15 to 25% of the progeny of a single clone. These frequencies are not appreciably affected by treatment with acriflavine or ethidium bromide, compounds which affect plasmid stability, or by nitrosoguanidine, a powerful mutagen. The genetic locus for restriction and modification of bacteriophage S2 is found to have a chromosomal position between the biotin and proline loci. Restriction-modification of phage S2 has been shown to be a function of its deoxyribonucleic acid (DNA) in that transfection with S2 phage DNA or prophage DNA is subject to host restriction and modification. An enzyme preparation, which contains endodeoxyribonuclease but no appreciable exonuclease activity, from mutant H. influenzae com(-10) did not restrict phage S2.RdS DNA or prophage DNA transfecting activity, indicating that this endodeoxyribonuclease is not responsible for phage restriction. A new restriction enzyme isolated from H. influenzae Rd was found to be the major enzyme involved in the restriction of bacteriophage S2. The enzyme inactivated the transfecting activity of unmodified phage DNA but did not attack modified phage DNA. Unlike endodeoxyribonuclease R, this enzyme requires adenosine triphosphate and S-adenosylmethionine.
MeSH Terms
Acridines/pharmacology
Bacteriophages
Bromides/pharmacology
Chromosome Mapping
Chromosomes, Bacterial
Culture Media
DNA, Bacterial/isolation & purification
DNA, Viral/isolation & purification
Erythromycin/pharmacology
Ethidium/pharmacology
Exonucleases/metabolism
Genetics, Microbial
Haemophilus influenzae/drug effects,enzymology
Nalidixic Acid/pharmacology
Nitrosoguanidines/pharmacology
Novobiocin/pharmacology
Streptovaricin/pharmacology
Transformation, Genetic
Chemicals
Acridines
Bromides
Culture Media
DNA, Bacterial
DNA, Viral
Nitrosoguanidines
Streptovaricin
Novobiocin
Nalidixic Acid
Erythromycin
Exonucleases
Ethidium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Gromkova R
Bendler J
Goodgal S
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