Abstract
The N(6)-methyladenine (MeAde) and 5-methylcytosine (MeC) contents in deoxyribonucleic acid (DNA) of bacteriophage lambda has been analyzed as a function of host specificity. The following facts have emerged: (i) lambda grown on strains harboring the P1 prophage contain ca. 70 more MeAde residues/DNA molecule than lambda grown either in the P1-sensitive parent, or in a P1 immune-defective lysogen which does not confer P1 modification; (ii) lambda grown on strains harboring the N-3 drug-resistance factor contain ca. 60 more MeC residues/DNA molecule than lambda grown on the parental strain lacking the factor; (iii) lambda grown in Escherichia coli B strains is devoid of MeC, whereas lambda grown in a B (N-3) host contains a high level of MeC; (iv) the MeAde content in lambda DNA is not affected by the N-3 factor. These results suggest that P1 controls an adenine-specific DNA methylase, and that the N-3 plasmid controls a cytosine-specific DNA methylase. The N-3 factor has been observed previously to direct cytosine-specific methylation of phage P22 DNA and E. coli B DNA in vivo; in vitro studies presented here demonstrate this activity.
MeSH Terms
Adenine/analysis,metabolism
Base Sequence
Cell-Free System
Centrifugation, Density Gradient
Chromatography, Paper
Coliphages/analysis,growth & development,metabolism
Cytosine/analysis,metabolism
DNA, Bacterial
DNA, Viral/analysis,isolation & purification,metabolism
Escherichia coli/drug effects,enzymology
Extrachromosomal Inheritance
Genetics, Microbial
Lysogeny
Methionine/metabolism
Methylation
Tritium
Chemicals
DNA, Bacterial
DNA, Viral
Tritium
Cytosine
Methionine
Adenine
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Hattman S
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