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P A Pattee

Publications and source records attributed to P A Pattee.

16 recordsLinked to original sources

Analysis of a peptidoglycan hydrolase gene from Staphylococcus aureus NCTC 8325.

We have investigated the expression of the peptidoglycan hydrolase gene (lytA) of Staphylococcus aureus NCTC 8325. Results from in vitro transcription-translation analysis, maxicell experiments, and Northern (RNA) blot analysis suggest that the lytA gene encodes a polypeptide of M(r) approximately 50,000. Physical mapping data indicate that the lytA gene originated from prophage 11 in the NCTC 8325 strain.

Chromosome Mapping

Physical and genetic mapping of the protein A gene in the chromosome of Staphylococcus aureus 8325-4.

The gene coding for protein A (spa) has been mapped close to nov on the genetic map of the chromosome of Staphylococcus aureus 8325-4. A rapid mapping procedure has been developed which first allowed the region of the chromosome carrying the spa gene to be identified by blot +hybridization of large DNA fragments which had been separated by pulsed-field gel electrophoresis. Restriction endonuclease SmaI fragment G was shown to carry the spa gene. An insertion mutation in spa was constructed by in vitro insertion of a fragment of DNA expressing resistance to kanamycin and neomycin. A spa::Kan(r)Neo(r) mutation was isolated in S. aureus 8325-4 by allele replacement. This provided a selectable marker which allowed the spa gene to be mapped by transformation analysis.

Chromosome Mapping

Genetic analysis of Staphylococcus aureus with Tn4001.

Tn4001, a 4.5-kilobase composite transposon with IS256 ends that confers resistance to gentamicin (Gmr), tobramycin, and kanamycin in Staphylococcus aureus, can transpose to diverse chromosomal sites in S. aureus. Chromosomal insertions of Tn4001 were isolated either after UV irradiation of transducing lysates carrying pII147::Tn4001 or by selection for thermoresistant Gmr isolates with strains containing thermosensitive derivatives of plasmids pI258 and pII147 carrying Tn4001. Frequent integration of the entire delivery plasmid occurred under these selective conditions in recombination-proficient hosts. When selection for thermoresistant Gmr isolates was done with these plasmids in recombination-deficient hosts, 99% or more of the Gmr isolates resulted from transposition of Tn4001 in the absence of plasmid integration. Efficient isolation of Tn4001 insertions near markers of interest and the isolation of insertional auxotrophs were achieved. Reversion frequencies of insertional auxotrophs were between 10(-6) and 10(-7) (higher than those observed with Tn551 and Tn917). About 50% of the prototrophic revertants were Gms, and these are attributed to precise excision of Tn4001. The Gmr prototrophic revertants were due to intergenic suppression.

Chromosome Mapping

Transformation of a conditionally peptidoglycan-deficient mutant of Staphylococcus aureus with plasmid DNA.

A simple and reliable method for polyethylene glycol-induced plasmid transformation of a temperature-sensitive peptidoglycan-deficient mutant of Staphylococcus aureus is described. The procedure uses strains carrying the tofA372 mutation grown under conditions that yield osmotically fragile cells capable of efficient wall regeneration. The peptidoglycan-deficient cells were transformed with plasmids pE194 and pI258 at frequencies comparable with those obtained with protoplasts prepared with lysostaphin treatment. A readily portable tofA372 mutation was constructed by isolating an insertion of the erythromycin resistance transposon Tn551 adjacent to tofA372. tofA372 was shown by protoplast fusion and transformation analyses to be in the gene order hly-421-omega [Chr::Tn551]1059-tofA372-uraB232-omega [Chr::Tn916]1101-thrB106 on the chromosome of S. aureus NCTC 8325.

Bacteriophages

Sequential transposition of Tn916 among Staphylococcus aureus protoplasts.

Transposition of the Streptococcus faecalis conjugal tetracycline-resistance transposon Tn916 between S. aureus strains occurred when protoplasts of donor and recipient strains were regenerated together without prior fusion. Under these conditions, only Tn916 was transferred; spontaneous fusion of parental protoplasts is therefore unlikely to be responsible for Tn916 transfer. While the exact nature of this transfer remains unclear, it appears to resemble Tn916 conjugal transposition reported in S. faecalis. Evidence for sequential transpositions of Tn916 was obtained by 3-factorial transformation analyses and confirmed by DNA-DNA hybridizations. The ability of Tn916 to transpose within S. aureus and occupy diverse chromosomal sites demonstrates the value of this transposon in genetic studies of S. aureus.

Chromosome Mapping

Association of toxic shock toxin-1 determinant with a heterologous insertion at multiple loci in the Staphylococcus aureus chromosome.

Most Staphylococcus aureus strains associated with toxic shock syndrome and producing toxic shock syndrome toxin 1 (TSST-1) require tryptophan because of a genetic defect in tryptophan biosynthesis. The association between TSST-1 production and tryptophan auxotrophy was not correlated with the phage type, the colonization site, or the disease status of the patient from whom the isolate came. Protoplast fusion and transformation mapping located the genetic determinant of TSST-1 production (tst) very close to the trp operon in such strains and very close to tyrB in a Trp+ TSST-1+ strain. Southern blot hybridization of ClaI-restricted chromosomal DNA with a tst-specific probe revealed a common homologous segment in all of the Trp+ strains with tst linked to tyrB. These results confirmed that the tst determinant in Trp- strains is located at one site, whereas in Trp+ TSST-1+ strains the determinant is located elsewhere on the S. aureus chromosome. It is suggested that the TSST-1 determinant is associated with the insertion of a transposonlike segment into several sites on the S. aureus chromosome.

Bacterial Toxins

Transfer of the conjugal tetracycline resistance transposon Tn916 from Streptococcus faecalis to Staphylococcus aureus and identification of some insertion sites in the staphylococcal chromosome.

The Streptococcus faecalis pheromone-dependent conjugative plasmid pAD1::Tn916 and the membrane filter-dependent conjugative plasmid pPD5::Tn916 were used to introduce Tn916 into Staphylococcus aureus by intergeneric protoplast fusions and intergeneric membrane-filter matings. In recombinants obtained by protoplast fusion where no plasmid DNA could be detected, tetracycline resistance resulted from transposition of Tn916 from pAD1 to the S. aureus chromosome. Transformation analyses showed that S. aureus Tn916 chromosomal insertions occurred near pig, ilv, uraA, tyrB, fus, ala, and the trp operon. DNA hybridization analyses of EcoRI- and HindIII-digested chromosomal DNAs confirmed the diversity of chromosomal sites involved and demonstrated that the inserts were Tn916 insertions rather than integrations of all or part of pAD1::Tn916. Both pAD1::Tn916 and pPD5::Tn916 were transferred to S. aureus by membrane-filter matings. These plasmids remained intact and expressed tetracycline resistance in S. aureus. S. aureus strains carrying pAD1::Tn916, but not a chromosomal insert of Tn916, and any one of several conjugal gentamicin-resistance plasmids lost their ability to serve as conjugal donors of the gentamicin-resistance plasmids.

Chromosome Mapping

Characterization and genetic mapping of a mutation affecting apurinic endonuclease activity in Staphylococcus aureus.

Protoplast fusion between the Rec- mutant RN981 (L. Wyman, R. V. Goering, and R. P. Novick, Genetics 76:681-702, 1974) of Staphylococcus aureus NCTC 8325 and a Rec+ NCTC 8325 derivative yielded Rec+ recombinants that exhibited the increased sensitivity to N-methyl-N'-nitro-N-nitrosoguanidine characteristic of RN981. Transformation analyses identified a specific mutation, designated ngr-374, that was responsible not only for N-methyl-N'-nitro-N-nitrosoguanidine sensitivity, but also sensitivity to methyl methanesulfonate, ethyl methanesulfonate, nitrous acid, and UV irradiation. However, ngr-374-carrying recombinants showed no significant increase in their sensitivity to mitomycin C or 4-nitroquinoline 1-oxide and were unaffected in recombination proficiency. In vitro assays showed that ngr-374-carrying strains had lower apurinic/apyrimidinic endonuclease activities than the wild type. The chromosomal locus occupied by ngr-374 was shown to exist in the gene order omega(Chr::Tn551)40-ngr-374-thrB106.

4-Nitroquinoline-1-oxide

Genetic translocation in Staphylococcus aureus.

A 5.2-kilobase pair transposon, Tn551, has been found in Staphylococcus aureus, a Gram-positive bacterium. Initially detected on plasmid pI258, it undergoes rec-independent transposition to multiple chromosomal and plasmid sites, sometimes causing insertional inactivation. Unlike most other transposons, Tn551 undergoes apparently precise excision as a rule. The initial observation of Tn551 transition involved UV inactivation of the carrier plasmid; this would appear to be a general means of detecting transposable elements.

Chromosome Deletion

Translocatable elements in Staphylococcus aureus.

The properties of the first translocatable element in Gram-positive bacteria, a 5.2 kb segment encoding erythromycin resistance in S. aureus, are described. This element translocates from plasmid to multiple chromosomal sites and from chromosome to multiple plasmid sites, sometimes causing insertional inactivation and deletion. The genetic control of translocation and its role in natural plasmid evolution are discussed and preliminary evidence for translocation of penicillin and chloramphenicol resistance is presented. In the latter case, translocation involves in intact plasmid.

Chloramphenicol

Isolation and characterization of Arthrobacter bacteriophages and their application to phage typing of soil arthrobacters.

Seventeen bacteriophages, active against 19 Arthrobacter soil isolates, were isolated from concentrated samples of river water and sewage. Attempts to isolate Arthrobacter bacteriophages from filtrates of broth cultures of the soil isolates or from ultraviolet light-irradiated cultures were unsuccessful. Bacteriophages were not detected in either concentrated or unconcentrated soil extracts. Electron microscopic studies of 11 phages showed morphologies characteristic of Bradley's groups B (exhibited by 9 phages) and C (exhibited by 2 phages). Moles percent guanine plus cytosine, calculated from the deoxyribonucleic acid density of three phages, ranged from 60.2 to 65.3. The phages were characterized by their plague and virion morphology, host range, and serological specificity.

Arthrobacter

Chromosomal map location of the methicillin resistance determinant in Staphylococcus aureus.

Three-factor genetic crosses performed by transformation have shown that the methicillin resistance determinant of Staphylococcus aureus strain DU4916 (the mec-4916 marker) is linked to a novobiocin resistance (Novr) marker (nov-142) and mutational sites affecting pyrimidine (pyr-141), purine (pur-102), and histidine (hisG15) biosynthesis in S. aureus strain 8325. The linkage group thus defined is pyr-141-hisG15-nov-142-pur-102-mec-4916. Phage 80alpha previously propagated on a novobiocin-resistant, methicillin-sensitive (Mecs) 8325 strain was used to infect 21 novobiocin-sensitive, methicillin-resistant clinical isolates (including strain DU4916). Among the novobiocin-resistant transductants so obtained from each recipient, between 1 and 5% were methicillin sensitive (reflecting cotransduction of Novr and Mecs). These results are consistent with the genetic determinant of methicillin resistance having a single chromosomal locus in most, if not all, strains of S. aureus.

Chromosome Mapping

Transformation in Staphylococcus aureus: role of bacteriophage and incidence of competence among strains.

When used in a helper phage capacity, phages 29, 52, 52A, 79, 80, 55, 71, 53, 83A, 85, 95, 96, phi11, and 80 alpha, all serological group B Staphylococcus phages, conferred competence for transformation to S. aureus 8325-4, a strain that does not normally become competent. Of the serological group A phages tested, only phage 3A showed significant competence-conferring activity. Phages 29, 55, 53, 83A, .85, 95, phi11, and 80 alpha showed an enhancement of competence-conferring activity if exposure to the cells occurred in the presence of nromal rabbit serum. All of the propagating strains for the Staphylococcus reference typing phages were rendered competent for transformation by exposure to at least one of these helper phages. The use of a helper phage to confer competence to S. aureus did not result in distortion of the genetic linkages observed in an inherently competent strain. Lysogenization by phages phi11 or 83A is shown not to be required for the expression of competence, and evidence is presented which indicates that competence in the inherently competent 8325 strain is due to a helper phage effect initiated by the adsorption to cells of phi11 virion parts [or phi11 particles in the case of the single lysogen 8325-4(phi11)] that have been liberated by prophage induction.

Adsorption

Genetic linkage of chromosomal tetracycline resistance and pigmentation to a purine auxotrophic marker and the isoleucine-valine-leucine structural genes in Staphylococcus aureus.

Three tetracycline resistance determinants (tmn-3106, tmn-3110, and tmn-3511) reported by Asheshov (1975) to be chromosomal in Staphylococcus aureus have been linked by transformation to a purine auxotrophic marker (pur-110), a cluster of eight genes involved in the biosynthesis of isoleucine, valine, and leucine (the ilv-leu region), a marker (ilvR10) that may be involved in the regulation of the ilv-leu region, and a gene involved in pigmentation (pig-131). The linkage group thus defined is tmn-3106-pur-110-ilvR10-(ilv-leu)-pig-131. The orientation of the ilv-leu region relative to ilvR10 and pig-131 was not determined. The tmn-3106, tmn-3110, and tmn-3511 determinants exhibit the same linkage relationships to the other markers. It is concluded that this linkage group represents a portion of the chromosome of S. aureus.

Amino Acids

Transformation analysis of three linkage groups in Staphylococcus aureus.

While studying a set of multiply marked mutants of Staphylococcus aureus strain 8325 by transformation, several instances of apparent genetic linkage were encountered. After showing that these linked transformations were readily inactivated by shearing of the deoxyribonucleic acid (DNA) but were resistant to dilution of the DNA, and showing that mixtures of DNA failed to form double transformants, it was concluded that the linkages were legitimate rather than the result of congression. Three linkage groups were defined: thy-101-lys-115-trp-103-thr-106, pyr-141-hisGb15-nov-pur-102, and pur-110-ilv-129. The positions of the previously studied trp and his operons corresponded to the trp-103 and hisGb15 loci. The ilv-129 position adjacent to pur-110 probably corresponds to the ilv-leu gene cluster. The distance over which linkage was detected was greater by transformation than by generalized transduction.

Amino Acids