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C Hardisson

Publications and source records attributed to C Hardisson.

At least 55 records · Page 3Linked to original sources

A non-specific deoxyribonuclease with restriction function in Streptomyces glaucescens.

A non-specific deoxyribonuclease with a possible role in the restriction of some actinophages was detected in Streptomyces glaucescens ETHZ 22794. Production of this enzyme activity was influenced by the medium composition, indicating nutritional control of enzyme synthesis. Restriction was confirmed when phage adsorption and efficiency of plating in nuclease-productive and non-productive media were investigated, and also by analysis of a mutant which lacked exonucleolytic activity. In vivo escape from restriction in nuclease-productive media is mainly related to the ability of phages to adsorb in a growth phase earlier than that in which enzyme synthesis occurs.

Actinomycetales↗

Formation of an adduct between fosfomycin and glutathione: a new mechanism of antibiotic resistance in bacteria.

Plasmid-borne resistance to fosfomycin in bacteria is due to modification of the antibiotic molecule by a glutathione S-transferase that catalyzes the formation of a covalent bond between the sulfhydryl residue of the cysteine in glutathione and the C-1 of fosfomycin. This reaction results in opening of the epoxide ring of the antibiotic to form an inactive adduct, the structure of which was confirmed by nuclear magnetic resonance. Dialyzed extracts prepared from resistant Escherichia coli strains were unable to modify fosfomycin unless exogenous glutathione was added to the reaction mixtures. Similarly, mutants defective in glutathione biosynthesis were susceptible to fosfomycin, despite harboring a resistance plasmid. Extracts of resistant but not susceptible strains could join glutathione to 1-chloro-2,4-dinitrobenzene, confirming the nature of the enzymatic activity. Adduct formation appeared to be specific for glutathione: none of the other thiols tested (cysteine, N-acetylcysteine, and dithiothreitol) could modify fosfomycin.

Drug Resistance, Microbial↗

Novel mechanisms of resistance to lincosamides in Staphylococcus and Arthrobacter spp.

Clinical isolates of Staphylococcus and Arthrobacter spp. were screened for lincosamide resistance. Six different patterns of resistance were found. Strains designated SF27 and SF28 showed low-level resistance to lincosamides: one was susceptible to erythromycin (SF27) and the other was resistant (SF28). Analysis of ribosomes from the resistant strains in an in vitro poly(U)-dependent protein-synthesizing system showed that ribosomes of both strains were sensitive to lincomycin and clindamycin. Four patterns of high-level resistance to lincosamides were observed (strains SF4, SF19, SF30, and SF31). All of these except SF30 had ribosomes which were highly resistant in vitro to the antibiotics and showed a close correlation with results of the in vivo experiments. In vivo protein synthesis by strain SF30 was resistant to lincomycin and sensitive to clindamycin, whereas the ribosomes were sensitive when assayed in vitro. Lincosamide-inactivating enzymes were not detected in cell extracts of the six resistant strains. Strains SF19 and SF31 demonstrated two ribosome-mediated lincosamides resistance mechanisms that were not previously reported. Both strains were highly resistant to lincosamides and susceptible to erythromycin, but SF19 was also highly resistant to oleandomycin and partially resistant to various macrolides.

Aminoglycosides↗

An exocytoplasmic endonuclease with restriction function in Streptomyces antibioticus.

Streptomyces antibioticus produces a strong endo-DNase which is located between the cytoplasmic membrane and the cell wall. All DNA substrates assayed, including the chromosomal DNA of this species and several bacteriophage DNAs, were completely degraded in vitro by the enzyme. The rate of synthesis of the nuclease depended on the growth medium. In NBG medium, in which the enzyme is not produced, the size of lytic plaques of several actinophages was larger than that in GYM or GAE medium, in which synthesis of the nuclease takes place late in growth. In addition, one of the phages assayed, phi A6, showed a diminution of its efficiency of plating in GYM medium with respect to that in NBG medium; another phage, phi A9, grew in NBG medium but not in the other two media. It is postulated that the presence of the host nuclease, together with the capability of the particular phage to absorb on S. antibioticus of different growth phases, determines the efficiency of growth and the plaque size of the phages on productive media. This hypothesis was confirmed when the growth of phi A6 and phi A9 in a mutant of S. antibioticus lacking the endonuclease activity was analyzed. It is concluded that the enzyme can assume, under some circumstances, a role in in vivo restriction.

Bacteriophages↗

Molecular relationship among fosfomycin-resistant plasmids and clinical impact of fosfomycin resistance.

We have been carrying out a surveillance programme on plasmid-mediated fosfomycin resistance in our community over the last decade and have isolated and characterized several varieties of conjugative plasmids from different enterobacteriae. In this work we show that seven varieties of plasmids are related with the Inc M group, and carry the same For determinant which encodes a modifying enzyme. The comparative study on their R-phenotype, restriction analysis and DNA-DNA hybridization showed different degrees of molecular relationship among them. The spread of For-plasmids as well as the fosfomycin resistance by other mechanisms seems to be low in spite of the great For-plasmid diversity found.

DNA, Bacterial↗

The effect of rifampicin on the development of the Streptomyces bacteriophage phi C31.

The production of phi C31 progeny virus was inhibited by rifampicin when it was added at any time before 20 minutes after induction of the thermoinducible lysogen Streptomyces coelicolor 01. The inhibition was gradually lost as the antibiotic was being added later on until the end of the latent period, which lasts about 45 minutes. This effect was not due to resistance of transcription to rifampicin but to accumulation of intracellular virions from around 20 minutes postinduction. When a rifampicin-resistant lysogen was induced in the presence of the antibiotic, no inhibition of RNA synthesis was detected, although a smaller population of progeny than in control cultures without rifampicin was obtained. Two possible explanations of this fact are discussed.

Bacterial Proteins↗

Resistance to oleandomycin in Streptomyces antibioticus, the producer organism.

Resistance to oleandomycin in Streptomyces antibioticus, the producer organism, was studied. The organism was highly resistant in vivo to the antibiotic but sensitive to other macrolides and lincosamides. Protein synthesis in vivo by mycelium of S. antibioticus was more resistant to oleandomycin than that by mycelium of Streptomyces albus G, an oleandomycin-sensitive strain, and this resistance was dependent on the age of the culture, older mycelium of S. antibioticus being more resistant to oleandomycin than young mycelium. [3H]Oleandomycin was capable of binding to the same extent to the 50S subunits of the ribosomes of both organisms. Oleandomycin also inhibited in vitro protein synthesis by ribosomes obtained from an oleandomycin-production medium at the time when maximum levels of oleandomycin were being produced. A clear difference between the ability of the two organisms to incorporate exogenous oleandomycin was observed. Thus, while S. albus G took up oleandomycin, S. antibioticus showed a decreased permeability to the antibiotic, suggesting a role for cell permeability in self-resistance.

Bacterial Proteins↗

Transfection in Micromonospora spp.

The introduction of bacteriophage DNA into Micromonospora protoplasts, resulting in the production of infective viral progeny, is reported. Transfection was affected by several factors. We observed that it reached a maximum when protoplasts from young mycelium (15 h old) were used. Maximum transfection took place when polyethylene glycol (PEG) was added to the mixtures at a final concentration of 20% (vol/vol) and did not occur at PEG concentrations under 10% or over 35%. The addition of positively charged liposomes to the mixtures was essential, since no transfectants were detected in the absence of liposomes at any PEG concentration. When DNA was present in nonlimiting amounts, a maximum efficiency of around 10(-3) to 10(-4) PFU per protoplast was obtained. The efficiency per DNA molecule showed a constant value of around 10(-4) to 10(-5) PFU, but the data suggest that transfection could be achieved by a single DNA molecule. The method proved to be equally efficient for the DNAs of at least five Micromonospora bacteriophages. On the contrary, we failed to transfect five of seven Micromonospora strains. These data suggest that only a minor subpopulation of protoplasts is competent and that the main factors influencing the transfection of Micromonospora protoplasts are neither the characteristics nor the origin of the DNA but the properties and status of the protoplasts.

Bacteriophages↗

Glycogen and trehalose accumulation during colony development in Streptomyces antibioticus.

Streptomyces antibioticus accumulated glycogen and trehalose in a characteristic way during growth on solid medium. Glycogen storage in the substrate mycelium took place during development of the aerial mycelium. The concentration of nitrogen source in the culture medium influenced the time at which accumulation started as well as the maximum levels of polysaccharide stored. Degradation of these glycogen reserves was observed near the beginning of sporulation. The onset of sporogenesis was always accompanied by a new accumulation of glycogen in sporulating hyphae. During spore maturation the accumulated polysaccharide was degraded. No glycogen was observed in aerial non-sporulating hyphae or in mature spores. Trehalose was detected during all phases of colony development. A preferential accumulation was found in aerial hyphae and spores, where it reached levels up to 12% of the cell dry weight. The possible roles of both carbohydrates in the developmental cycle of Streptomyces are discussed.

Disaccharides↗

Characteristics of the developmental cycle of actinophage phi C31.

Some characteristics of the lytic development of the temperate phage phi C31 in Streptomyces coelicolor A3(2) were studied using a thermoinducible lysogen. The physiological state of the host and the culture medium influenced the production of progeny virus after induction. The latent period lasted 45 min and the rise period 20-30 min. RNA synthesis in induced cultures was reduced with respect to controls. This reduction was restricted to cellular transcription as evidenced by: no stable RNA being synthesized in induced cultures, and the proportion of phage specific RNA increasing from 0.5% before induction to more than 30% in induced cultures. Host RNA synthesis proceeded throughout the lytic cycle. Protein synthesis was also reduced in induced cultures, although to a lesser extent than RNA synthesis. Phage DNA synthesis started at around 10 min postinduction, marking the division between the early and late periods of phage development. Host DNA synthesis occurred during the first 20 min after induction, and gradually decreased later.

Bacteriophages↗

Cloning and molecular epidemiology of plasmid-determined fosfomycin resistance.

The plasmid determinant of resistance to fosfomycin (For) was cloned into pBR322 and located in a 0.7-kilobase segment of DNA by transposon mutagenesis and in vitro deletion analysis. It encodes an 18-kilodalton protein located in the cytoplasm of resistant cells. Its synthesis is constitutive. The For genetic determinant is common to all plasmids isolated since 1975 in an hospital environment as determined by DNA-DNA hybridization. However, plasmids which carry For can be divided into two groups on the basis of size, pattern of antibiotic resistances, incompatibility specificity, and restriction and hybridization properties.

Cloning, Molecular↗

Isolation and properties of Streptomyces spore membranes.

A simple procedure for the isolation of membranes from Streptomyces spores is described which produces about 12 mg of membrane protein per g of dry weight. The membrane fractions were contaminated by low levels of DNA, RNA, and hexosamines. The functional integrity of the membrane is conserved through the isolation procedure, as evaluated by the presence of several activities of the membrane-bound electron transport chain. This isolation procedure allowed the determination of the biosynthesis of proteins and phospholipids of the membrane. Both biosynthetic processes started in the first 5 min of germination and increased progressively during spore germination. A stable mRNA fraction of the dormant spore encoded 44% of the membrane proteins synthesized early in germination, but most of the phospholipid biosynthesis was not dependent on this fraction.

Bacterial Proteins↗

Plasmid profile analysis as a tool for characterization of epidemic Shigella sonnei strains.

The usefulness of plasmid profile analysis as a marker to determine the strain number of Shigella sonnei implicated in an epidemic outbreak and its prevalency in our community was studied. We could define two multirresistant strains and determine that the drug resistance was plasmid mediated in both. One strain carried a tra- plasmid which encoded (Sm, Sd)r, the other one carried two tra+ plasmids which encoded (Ap-Cb, Sm, Sd)r and (Sm, Km-Nm, Sd, Tp)r respectively. These strains and some coisolates collected during the later phase of the outbreak carried cryptic plasmids which showed similar electrophoretic mobilities.

DNA, Bacterial↗

Morphological characteristics of colony development in Micromonospora chalcea.

Colonies of Micromonospora chalcea display two types of mycelia. Vegetative mycelia are nonbranched, have a propensity for parallel disposition, and possess infrequent septa. The reproductive mycelia develop on their apical portion and are characterized by branching, frequent septation, and bearing of spores that are either sessile or at the end of small sporophores.

Micromonospora↗

Role of substrate mycelium in colony development in Streptomyces.

Cellophane cultivation techniques have been proven to be useful for the study of colony growth in Streptomyces. Results obtained by this procedure indicate that, in S. antibioticus, substrate mycelium was a nutrient support for aerial mycelium growth. Oleandomycin synthesis starts before aerial mycelium formation and may play an important role during colony growth.

Autoradiography↗