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D L Wulff

Publications and source records attributed to D L Wulff.

30 records · Page 2Linked to original sources

Mutations masking the lambda cin-1 mutation.

A lambda cnc mutation masks the phenotype of the lambda cin-1 mutation. Eleven cnc mutations have been found. All appear to be identical and all map at a site just to the right of the cin-1 site. It is probable that cin-1 and cnc affect adjacent, or almost adjacent nucleotide pairs. Neither the cin-1 nor the cnc mutation involves large additions or deletions of genetic material.

Chromosome Mapping↗

Fine structure mapping, complementation, and physiology of Escherichia coli hfl mutants.

Six of seven hfl mutations of Escherichia coli K12, characterized by high frequencies of lysogenization by phage lambda and lambdacIII mutants, are shown to be tightly linked to, but not within, the purA locus. All six hfl mutations are recessive to wild type in hfl(+)/hfl merodiploids and all lie in a single complementation group, located just counterclockwise from the purA locus. All six mutations confer a slightly increased resistance to penicillin and rifamycin and a slightly increased sensitivity to sodium dodecyl sulfate. Some cases of intragenic complementation and intragenic recombination were observed. It is argued that the hfl(+) gene determines the synthesis of a protein which antagonizes lysogenization by phage lambda. It is further argued that the function of the lambdacIII gene product is to negate the antagonistic effect of this hfl(+) protein.

Chromosome Mapping↗

Genetic and biochemical investigation of the Escherichia coli mutant hfl-1 which is lysogenized at high frequency by bacteriophage lambda.

The Escherichia coli mutant hfl-1 is lysogenized at very high frequency by bacteriophage lambda. The normal requirement for the lambdacIII gene product in the establishment of repression is not observed in hfl-1 strains. These phenotypic characteristics are specified by a single locus at 82.5 min on the E. coli map in extremely close proximity to the purA gene, cotransduction frequencies ranging from 97 to 100% depending on the particular purA marker used. The lactose operon is shown to function normally in this strain, and there are also no demonstrable differences in ribonucleic acid polymerase activity or cyclic-adenosine monophosphate levels. Alterations in the cell envelope are indicated by a slight rifamycin resistance, which is reversible by pretreating the cells with ethylenediaminetetraacetic acid, and by a resistance to penicillin and a sensitivity to high concentrations of sodium dodecyl sulfate. It is not known whether this change in cell surface is the primary lesion, or a pleiotropic effect of some more basic metabolic shift.

Chromosome Mapping↗

Mapping of the fabA locus for unsaturated fatty acid biosynthesis in Escherichia coli.

fabA mutants of Escherichia coli require an appropriate unsaturated fatty acid for growth. The fabA locus has now been mapped at minute 21.5 of the linkage map of E. coli. The locus is cotransduced with pyrD and aroA but not with pyrC, purB, or pdxC. The clockwise order of markers in the region is pdxC, aroA, cmlB, pyrD, fabA, pyrC.

Chromosome Mapping↗

Bacteriophage lambda protein cII binds promoters on the opposite face of the DNA helix from RNA polymerase.

The bacteriophage lambda transcriptional activator protein, cII, coordinately regulates transcription from two phage promoters that control lysogenic development. We demonstrate that cII is a DNA binding protein that selectively interacts with a repeat sequence in the -35 region of the promoter. Furthermore, cII is shown to bind mainly one face of the DNA helix and to make its contacts primarily in the major groove of the DNA. RNA polymerase sees this same region from the opposite side and sandwiches the DNA helix between itself and cII.

Bacteriophage lambda↗