Restriction-modification systems as genomic parasites in competition for specific sequences.
- 21 November 1995
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 92 (24) , 11095-11099
- https://doi.org/10.1073/pnas.92.24.11095
Abstract
Restriction-modification (RM) systems are believed to have evolved to protect cells from foreign DNA. However, this hypothesis may not be sufficient to explain the diversity and specificity in sequence recognition, as well as other properties, of these systems. We report that the EcoRI restriction endonuclease-modification methylase (rm) gene pair stabilizes plasmids that carry it and that this stabilization is blocked by an RM of the same sequence specificity (EcoRI or its isoschizomer, Rsr I) but not by an RM of a different specificity (PaeR7I) on another plasmid. The PaeR7I rm likewise stabilizes plasmids, unless an rm gene pair with identical sequence specificity is present. Our analysis supports the following model for stabilization and incompatibility: the descendants of cells that have lost an rm gene pair expose the recognition sites in their chromosomes to lethal attack by any remaining restriction enzymes unless modification by another RM system of the same specificity protects these sites. Competition for specific sequences among these selfish genes may have generated the great diversity and specificity in sequence recognition among RM systems. Such altruistic suicide strategies, similar to those found in virus-infected cells, may have allowed selfish RM systems to spread by effectively competing with other selfish genes.Keywords
This publication has 36 references indexed in Scilit:
- Escherichia coli K-12 restricts DNA containing 5-methylcytosine.Proceedings of the National Academy of Sciences, 1986
- Unique type of plasmid maintenance function: postsegregational killing of plasmid-free cells.Proceedings of the National Academy of Sciences, 1986
- Nudeotide sequence of the BsuRI restriction-modification systemNucleic Acids Research, 1985
- Multimerization of high copy number plasmids causes instability: Cole 1 encodes a determinant essential for plasmid monomerization and stabilityCell, 1984
- Cloning vectors that yield high levels of single-stranded DNA for rapid DNA sequencingGene, 1984
- Mini-F plasmid genes that couple host cell division to plasmid proliferation.Proceedings of the National Academy of Sciences, 1983
- Cloned restriction/modification system from Pseudomonas aeruginosa.Proceedings of the National Academy of Sciences, 1983
- Specific-purpose plasmid cloning vectors I. Low copy number, temperature-sensitive, mobilization-defective pSC101-derived containment vectorsGene, 1981
- Restriction and modification determined by a Pseudomonas R plasmidPlasmid, 1977
- The genetical evolution of social behaviour. IJournal of Theoretical Biology, 1964