PubMed HealthSearch

Biomedical subjects

J G Tiraby

Publications and source records attributed to J G Tiraby.

4 recordsLinked to original sources

Marker discrimination and mutagen-induced alterations in pneumococcal transformation.

Nitrous acid-induced and hydroxylamine-induced chemical alterations in transforming DNA result in the loss of biological activity and in mutagenesis. The function responsible for the discrimination between high efficiency and low efficiency markers in pneumococcal transformation, and for the elimination of a substantial fraction of spontaneously occurring mutational events, does not appear to act on integrated DNA carrying these chemical alterations. The chemical modifications result in mutations that are evident among bacteria transformed with the treated DNA. Fusidic acid-resistant mutants isolated in this way have been shown to be predominantly of the low efficiency class. We have previously reported that most mutations of spontaneous origin occurring in this locus are of the high efficiency class, and have suggested that discrimination results from the elimination of specific classes of base pair mismatches that occur as intermediates in transformation. It would appear that the base pair mismatches most effectively eliminated in the discriminating strain of pneumococcus are those of the A:C and G:T type and that the immediate product of transformation with mutagenized DNA involves intermediates that are not recognized as A:C or G:T by the discrimination system.

Base Sequence

Marker discrimination in transformation and mutation of pneumococcus.

Earlier investigations of pneumococcal transformation revealed a function (hex(+)) responsible for severely reducing the transformation yield of certain markers. A mutational alteration (hex(-)) responsible for the loss of this function has been transferred into a hex(+) strain to permit a comparison of the hex(+) and hex(-) phenotypes in an isogenic background. The loss of the hex(+) function results both in a loss of the capacity to eliminate the low efficiency markers in transformation and a substantial increase in the spontaneous mutation rate. These properties of the hex(-) strain could result from the loss of a capacity to eliminate certain classes of mismatched base pairs that occur as intermediates in both transformation and mutagenesis.

Base Sequence