Nature of the plasmid-linked penicillinase regulatory region in Staphylococcus aureus.
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Some 85 Staphylococcus aureus mutants phenotypically thermosensitive for penicillinase plasmid segregation (Seg-) have been isolated and characterized. Some of the mutations were plasmid-linked and those studied in detail were found to be defective in plasmid replication, most problbly at the initiation stage. Analysis of the segregation behavior of these mutants suggested a figure of 2.7 for the average number of plasmid copies per cell in a random culture. Other mutations were host chromosome-linked and these could be divided into at least three classes on the basis of their ability to maintain plasmids of the two different incompatibility sets: some were defective for type I plasmids, some for type II, and some for both types. One host mutant, defective in segregation of type I but not type II plasmids, was defective in polymerization of both.
This paper described a complementation test system for replication-defective S. aureus pencillinase plasmids in which the incompatibility barrier has been overcome by the isolation of an incompatibility-defective (Inc-) plasmid. This plasmid appears to be stably and irreversibly integrated into the host chromosome as attempts to restore it to its original independent state have been unsuccessful. The Inc- plasmid was able to complement the thermosensitive replication defects of Seg- plasmids belonging to the same original incompatibility class but was unable to complement onels belonging to a different incompatibility class. Positive and negative phenotypic complementation tests were confirmed at the molecular level by isotopec labeling of plasmid-specific DNA molecules.
The rate of DNA chain elongation of a thymine auxotroph of Proteus mirabilis harboring an R factor was reduced by either thymine limitation or treatment with hydroxyurea. Using CsCl density gradient centrifugation, sedimentation in sucrose gradients, and electron microscopy, it has been shown that the fraction of total R factor DNA which is in the process of replication is greatly increased when the rate of DNA chain elongation is reduced while the initiation of plasmid replication continues at the normal rate. This makes possible the isolation and characterization of replicating plasmid DNA. Electron microscopy revealed that replicating R factor DNA consists of double-branched (theta type) circular molecules.
R factors of the N incompatibility group apparently transfer at low frequencies (often 10(-6)-10(-5) per donor cell) in 30 min liquid matings. However, the level of transfer is greatly increased when donor-recipient mixtures are held on solid medium selective for the recipient only, prior to transconjugant selection. Increase in transconjugant recovery is still donor-dependent at plating and therefore arises from mating on the plate. The process limiting N-mediated conjugation in liquid is probably mating pair formation, suggesting that the increase in yield of transconjugants may result from provision of a solid substrate for mating pair formation rather than from the delay in selection per se. The kinetics of N plasmid transfer on solid medium resemble those of traniments suggest that RP4, the prototype P incompatibility group plasmid, shows a stimulation of transfer on solid medium similar to the N plasmids studied. We suggest that N, and probably P, plasmids are (like F and the col V's) naturally derepressed for fertility, but this is masked by the imcompetence in liquid matings of donors carrying them.
It was shown for some oncogenic Agrobacterium tumefaciens strains that agrocin 84 sensitivity is determined by the presence of a large closed circular DNA plasmid, called the Ti-plasmid. Whereas wild-type strain C58 is agrocin 84 sensitive, all Ti-plasmid cured derivatives were found to be fully resistant. Moreover all independently isolated agrocin 84 resistant colonies were stably non-oncogenic and plasmid negative. In a growth experiment carried out at 37 degrees C it was shown that the kinetics of appearance of non-oncogenic cells on the one hand and of agrocin 84 resistant cells on the other were identical. The fact that not all oncogenic, plasmid harbouring, Agrobacterium tumefaciens strains are sensitive to agrocin 84, points to the possibility that the genes determining agrocin 84 sensitivity are not essential for tumor-inducing ability.
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The drug resistance plasmid pKM101 plays a mojor role in the Ames Salmonella/microsome carcinogen detecting system by enhancing chemical mutagenesis. It is shown that in Escherichia coli K-12 the plasmid pKM101 enhances both spontaneous and methyl methanesulfonate-caused reversion of an ochre mutation, bacterial survival after ultraviolet irradiation, and reactivation of ultraviolet-irradiated lambda in unirradiated cells. All these effects are shown to be dependent on the recA+ lexA+ genotype but not on the recB+ recC+ or recF+ genotypes. The recA lexA-dependence of the plasmid-mediated repair and mutagenesis suggests an interaction with the cell's inducible error-prone repair system. The presence of pKM101 is shown to cause an additional increase in methyl methanesulfonate mutagenesis in a tif mutant beyond that caused by growth at 42 degrees. The presence of the plasmid raises the level of the Weigle-reactivation curve for the raactivation of ultraviolet-irradiated lambda in E. coli and causes a shif of the maximum to a higher UV fluence. These observations suggest that pKM101 does not exert its effects by altering the regulation of the cell's error-prone repair system but rather by supplying a mechanistic component or components.
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1. A series of CS revertants has been selected from various strains (both omega+ and omega-) carrying a CR mitochondrial mutation at the RIB1 locus. The properties of mitochondrial recombination exhibited by these CS revertants in various crosses, have been examined systematically. The omega allele of the CS revertants has been defined in crosses with omega+ and omega- tester strains using two criteria: the polarity of recombination and a new criterium called relative output coefficient. We found that mutations of omega appear frequently associated with the mutations at the RIB1 locus selected from omega- strains but not with those selected from omega+ strains. A new allelic form of omega (omega n) which had not been found amongst wild type yeast strains is characterised. Similarly omega n mutation was found frequently associated with CR mutants at the RIB1 locus selected from omega- CS strains but not with those selected from omega+ CS strains. The omega n mutants, and the omega+ and omega- strains, explain the groups of polarity previously observed by Coen et al. (1970). 2. Main features of mitochondrial crosses with omega n strains (omega+ x omega n, omega- x omega n and omega n x omega n) are analysed. Recombination is possible between the different mitochondrial genetic markers. No high polarity of recombination is observed and the frequency of recombinants are similar to those found in homosexual crosses (omega+ x omega+ and omega- x omega-). A striking property, observed for the first time, exists in crosses between zota+ omega n CS strains and some zota- CREO mutants: the zota- CREO are unable to integrate by recombination their CR allele into the zota+ mit-DNA of omega n CS strains while being capable of integrating it into omega+ CS or omega- CS genomes. 3. It is proposed that the omega locus is the site of initiation of non reciprocal recombination events, the omega+/omega- pairing specifically initiates the non-reciprocal act while omega+/omega n or omega-/omega n pairings do not. 4. The molecular nature of the omega n mutation and its bearing on the structure of the omega locus are discussed. It is suggested that omega n mutations correspond to macrolesions (probably deletions) of a segment of the mit-DNA covering the omega and RIB1 loci. If omega n is a partial deletions of the omega- sequence the omega+ could be an additionnal deletion of the omega n sequence. 5. The occurrence of spontaneous CR and ER mitochondrial mutations has been analysed by the Luria and Delbrück fluctuation test in omega- and omega n isonuclear strains. Results of these tests indicate that an intracellular selection of resistant copies preexisting the action of the anttibiotic occurs.
Erythromycin-resistant mitochondria from species 1, 5 and 7 of P. aurelia were injected into erythromycin-sensitive paramecia of each of the same three species. Mitochondria from species 1 and 5 were successfully transferred to all three species, but species 7 mitochondria failed to develop in species 1 and 5. Minor differences were indicated in the frequency of successful transfers of species 1 mitochondria into species 1 and 5 cells. From studies on the transferability of mitochondria from "hybrid" cells, containing mitochondria from one species and nuclei from another, it was concluded that mitochondrial compatibility was mainly under control of the nuclear genome, with a possible minor control also by the mitochondrial genome.
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