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Mutations are involved in emergence of aminoglycoside-induced small colony variants of Staphylococcus aureus.

Staphylococcus aureus small colony variants (SCVs) occur frequently after local treatment with aminoglycosides and cause persistent as well as recurrent infections. So far, the molecular mechanism of the emergence of SCVs is not understood and regulatory as well as genetic mechanisms seem conceivable. To screen for possible mutations, the hemin biosynthetic gene cluster of a gentamicin-induced SCV was sequenced and was found to contain a deletion in the gene hemH. To further assess the influence of a high mutation rate on the development of SCVs, we tested the emergence of SCVs in a strain that had been inactivated in the DNA proofreading enzyme MutS. In the mutant, spontaneous SCVs emerged 556-fold more frequently than in the parent strain. By incubation in the presence of subinhibitory concentrations of gentamicin, the SCV frequency in the parent strain could be increased to 9.7 x 10(-6), whereas it remained rather stable in the mutant (1.8 x 10(-5)). Eighty percent of the gentamicin-induced SCVs were hemin auxotrophic in contrast to only 20% of the spontaneous SCVs which may explain the large proportion of hemin auxotrophs among clinical SCVs from patients previously treated with aminoglycosides. Additionally, a clinical S. aureus SCV isolate with a mutator phenotype, indicated by the generation of rifampicin-resistant mutants at a 16-fold higher frequency than in the reference strain S. aureus NCTC 8325, was characterized. The results demonstrate that a high mutation rate favours the emergence of SCVs, and suggest that mutations in general play an important role in the development of SCVs.

Amino Acid Sequence↗

Dynamic interaction between airway epithelial cells and Staphylococcus aureus.

Staphylococcus aureus is a major cause of pulmonary infection, particularly in cystic fibrosis (CF) patients. However, few aspects of the interplay between S. aureus and host airway epithelial cells have been investigated thus far. We investigated by videomicroscopy the time- and bacterial concentration-dependent (10(4), 10(6), and 10(8) CFU/ml) effect of S. aureus on adherence, internalization, and the associated damage of the airway epithelial cells. The balance between the secretion by S. aureus of the alpha-toxin virulence factor and by the airway cells of the antibacterial secretory leukoproteinase inhibitor (SLPI) was also analyzed. After 1 h of interaction, whatever the initial bacterial concentration, a low percentage of S. aureus (<8%) adhered to airway cells, and no airway epithelial cell damage was observed. In contrast, after 24 h of incubation, more bacteria adhered to airway epithelial cells, internalized bacteria were observed, and a bacterial concentration-dependent effect on airway cell damage was observed. At 24 h, most airway cells incubated with bacteria at 10(8) CFU/ml exhibited a necrotic phenotype. The necrosis was preceded by a transient apoptotic process. In parallel, we observed a time- and bacterial concentration-dependent decrease in SLPI and increase in alpha-toxin expression. These results suggest that airway cells can defend against S. aureus in the early stages of infection. However, in later phases, there is a marked imbalance between the bactericidal capacity of host cells and bacterial virulence. These findings reinforce the potential importance of S. aureus in the pathogenicity of airway infections, including those observed early in CF patients.

Apoptosis↗

Methicillin resistance and beta-lactamase production in Staphylococcus aureus.

Staphylococcus aureus isolates were either sensitive, resistant or partially resistant (minimum inhibitory concentration 90 of 4 micrograms/ml) to methicillin. Low-level methicillin resistance was shown to be due to beta-lactamase production. The clinical significance of this beta-lactamase-mediated resistance is still unclear, so it is recommended that these strains should, at present, be regarded as methicillin-resistant.

Animals↗

Mechanism of bacteriophage conversion of lipase activity in Staphylococcus aureus.

Staphylococcus aureus PS54 harbors two temperate bacteriophages and manifests no lipase activity on egg yolk agar. Curing of one of the resident prophages (L54a) restores lipase activity. To study the mechanism of bacteriophage conversion, the prophage was cured, and the gene encoding lipase activity was cloned into pBR322 in Escherichia coli on a 2.9-kilobase DNA fragment of the chromosome. The fragment was subcloned into a shuttle vector and subsequently transformed into S. aureus and Bacillus subtilis. Lipase activity was expressed in all three genetic backgrounds. Transformation and transductional data indicated that conversion is due to insertional inactivation of the lipase gene. Hybridization analysis with probes made from converting-phage DNA and from the cloned fragment confirmed that the phage insertion site resides within the terminal 0.8 kilobase of the insert.

Chromosome Mapping↗

Identification of a high-affinity glycine betaine transport system in Staphylococcus aureus.

Staphylococcus aureus accumulates proline and glycine betaine when cells are grown at low water activity. In the present study, we have identified a high-affinity glycine betaine transport system in this bacterium. Optimal activity for this transport system was measured in the presence of high NaCl concentrations, but transport activity was not stimulated by high concentrations of other solutes.

Betaine↗

Proline is biosynthesized from arginine in Staphylococcus aureus.

Staphylococcus aureus NCTC 8325 exhibited a long lag phase (11 h) when inoculated into defined medium lacking proline, that could be shortened by increasing the concentration of arginine in the medium, or by supplying ornithine. Radioactivity from L-[14C]arginine, but not L-[14C]glutamate was incorporated into a spot with the chromatographic mobility of [14C]proline in the pool metabolites fraction. Selection for transposon Tn917-lacZ mutants impaired in arginine catabolism yielded four proline auxotrophs. Enzyme assays and precursor feeding experiments suggested that the major pathway for proline biosynthesis in S. aureus was from arginine via ornithine and delta'-pyrroline 5-carboxylate, rather than from glutamate. Strain 8325 Pro+, a proline prototrophic variant obtained by cultivation of 8325 in the absence of proline, accumulated L-[14C]arginine from the medium at about eight times the rate of strain 8325, suggesting its response to proline starvation was to increase arginine uptake.

Arginine↗

In vitro antimicrobial activity of imipenem in combination with vancomycin or teicoplanin against Staphylococcus aureus and Staphylococcus epidermidis.

The interaction between imipenem and two glycopeptides against staphylococci was examined for potential synergy. Imipenem in combination with vancomycin or teicoplanin exerted a synergistic or additive effect against a majority of Staphylococcus aureus and Staphylococcus epidermidis isolates tested by the checkerboard method. Synergistic inhibitory effects were frequently accompanied by synergistic bactericidal effects. For a proportion of bacterial isolates of both species, the demonstration of synergy by the checkerboard method was confirmed by time-kill studies using antibiotic combinations at the MICs or at achievable serum antibiotic levels. Only with a single isolate of Staphylococcus epidermidis was antagonism with either antibiotic combination recorded.

Drug Resistance, Microbial↗

Effect of subinhibitory concentrations of cefamandole and cefuroxime on adherence of Staphylococcus aureus and Staphylococcus epidermidis to polystyrene culture plates.

The ability of cefamandole and cefuroxime to inhibit adherence of staphylococci to polystyrene culture plates was tested in an in vitro assay using eight strains each of Staphylococcus aureus and Staphylococcus epidermidis. The results indicated that subinhibitory concentrations of cefamandole and cefuroxime altered the adherence ability of both staphylococcal species, inhibition of adherence being more marked in the presence of cefamandole. It may be important to consider antiadherence properties in association with bactericidal activity when selecting agents for antibiotic prophylaxis.

Bacterial Adhesion↗

Selection of subpopulations resistnat to amikacin and netilmicin of gentamicin-resistant clinical strains of Staphylococcus aureus and Staphylococcus epidermidis.

Recently we have found several strains of Staphylococcus aureus and Staphylococcus epidermidis, which in spite of containing aminoglycoside-modifying enzymes (AMEs) remained susceptible to antibiotics such as netilmicin (NET) and amikacin (AN). Assuming an interest in this agent from a clinical point of view, the aim of this study was to determine if these strains became resistant after prolonged contact with such antibiotics. We found that minimal inhibitory concentrations (MICs) of the bacterial strains not only increased when using these two agents, but also when using other aminoglycosides such as gentamicin (GM), tobramycin (TM), amikacin (AN) and isepamicin (ISE). In order to see the effect of prolonged use of NET on enzyme production, three strains containing AMEs were selected and we could observe an increase in the enzyme levels after successive passages through media containing NET.

Amikacin↗

Correlation of agar dilution and VITEK2 system for detection of resistance to macrolides, lincosamides and pristinamycin among Staphylococcus aureus and Staphylococcus epidermidis: association with genotypes.

The performance of the VITEK2 system was evaluated against the agar dilution reference procedure for testing susceptibility of Staphylococcus aureus and Staphylococcus epidermidis to macrolides, lincosamides and streptogramins (MLS). Eighty clinical isolates were selected according to their resistance phenotype and genotype. Results for erythromycin and clindamycin showed 100% agreement; results for lincomycin showed agreement of 78%, with one very major error and 17 minor errors; and results for pristinamycin showed agreement of 46%, with one major error and 43 minor errors. Most isolates resistant to lincomycin and streptogramin A (L SgAr phenotype) were falsely susceptible to lincomycin, and intermediately-resistant or resistant to pristinamycin, with the VITEK2 system. No resistance gene was detected. Most (80%) isolates resistant constitutively to MLS (MLS(r)BC phenotype) were falsely intermediately-resistant to pristinamycin with the VITEK2 system. The erm(A) gene was more common than erm(C) in MLS(r)BC strains. Resistance to pristinamycin alone (SgA SgB PTr phenotype), or associated with either lincomycin resistance (L SgA SgB PTr phenotype) or constitutive MLS(B) resistance (MLS(BC) SgA PTr phenotype), was well-characterised without discordant results. Resistance to pristinamycin was always associated with resistance to streptogramin A, encoded by the vga(A), vga(B), vgb(A) and vat(A) genes in association with the erm(A) or erm(C) genes.

Agar↗

In vitro activities of two novel oxazolidinones (U100592 and U100766), a new fluoroquinolone (trovafloxacin), and dalfopristin-quinupristin against Staphylococcus aureus and Staphylococcus epidermidis.

Two oxazolidinones (U100592 and U100766), trovafloxacin, and a streptogramin combination (dalfopristin-quinupristin) were highly active in vitro against Staphylococcus aureus and Staphylococcus epidermidis, including methicillin-resistant strains. Trovafloxacin was more active than ciprofloxacin. Time-kill synergy studies demonstrated indifference for the oxazolidinones combined with vancomycin and rifampin against methicillin-resistant staphylococci. Spontaneous resistance was observed with all agents.

Acetamides↗

In vitro activity of coumermycin alone or in combination against Staphylococcus aureus and Staphylococcus epidermidis.

The in vitro activity of coumermycin was tested against oxacillin-susceptible and resistant strains of Staphylococcus aureus and Staphylococcus epidermidis, and compared with that of penicillin G, oxacillin, minocyclin, erythromycin, vancomycin, teicoplanin, rifampicin and LM 427. The MICs were measured using the agar dilution method with an inoculum of 10(5) cfu/spot. Coumermycin was the most active antibiotic with MIC90 of 0.025-0.2 mg/l. The MICs of coumermycin remained unchanged by further incubation for 48 h. The combination of coumermycin with ciprofloxacin, an inhibitor of subunit A of the DNA gyrase, was studied by the time-kill curve method and resulted in a synergistic effect when subinhibitory concentrations of either antibiotic were used. The combination of coumermycin with rifampicin or LM 427 was antagonistic.

Aminocoumarins↗

Effects of subinhibitory concentrations of florfenicol on morphology, growth, and viability of Staphylococcus aureus.

Staphylococcus aureus strain Newman was investigated for changes in its growth pattern, its morphology and its viability when grown in the presence of 3 microg/ml florfenicol (Ff). This concentration corresponds to the 0.75-fold strain-specific minimum inhibitory concentration (MIC). Under these conditions, S. aureus Newman showed a distinct retardation in its growth pattern and 20% dead cells were detected in a fluorescence microscopic viability assay. However, bactericidal activity - defined as a 3-log drop in the staphylococcal population - was not recorded at this Ff concentration. Further analysis of the cell wall revealed a significant increase in cell wall thickness of S. aureus Newman when grown in the presence of 3 microg/ml Ff. This might result in a compression of the protoplast with subsequent disruption of single staphylococcal cells. Accordingly, 20% of the staphylococcal cells analysed by electron microscopy proved to be disrupted. These observations suggest that Ff can cause a thickening of the cell wall accompanied by impaired viability of the staphylococcal cells.

Animals↗

Influence of alkali-treated cornsteep liquor containing medium on protein A production by Staphylococcus aureus.

Staphylococcus aureus cultivated in liquid media containing untreated cornsteep liquor (CSL) and alkali-treated CSL produced similar biomass yields (6.5-6.9 g/L). However, contents of protein A in the biomass was 0.5% and 1.56% for untreated CSL and treated CSL, respectively. Addition of treated CSL at 20 g/L achieved optimal enhancement of protein A production (0.11 g/L). Probable factors associated in treated CSL for the enhanced protein A production are discussed.

Culture Media↗

[A chromogenic method for rapid identification of Staphylococcus aureus].

Staphylococcus aureus is responsible for septicaemia and serious nosocomial infections. A rapid and specific identification of this species is of great importance in clinical microbiology. Current methods for S. aureus identification require a 18 to 24 h-incubation. We describe a two hour-identification method based on the detection of the staphylocoagulase, using human prothrombin and a chromogenic substrate. 242 staphylococcal strains (160 S. aureus, 82 coagulase-negative staphylococci (CNS)) were collected from 4 French hospitals. They have been identified by the following methods: (i) clotting of citrated rabbit plasma, which is considered as reference method; (ii) biochemical tests (Rapidec Staph and Api Staph or ID 32 Staph); (iii) and agglutination test (Pastorex Staph or Pastorex Staph-plus). A strain of S. intermedius was provided by the Collection of the Pasteur Institute (Paris). An adapted culture medium is inoculated with staphylococci and adjusted to 2 Mac Farland unities. This medium is then mixed to an equal volume with a human prothrombin solution and the chromogenic substrate. After 1 to 2 hours incubation at 37 degrees C, the strength of the yellow colour of the mixture is observed to the naked eye, or measured at 405 nm with a spectrophotometer. Fifteen chromogenic tripeptides having a thrombin-like affinity and paranitroanilin as leaving group were compared. With the substrate which has the higher hydrolysis velocity and enzymatic affinity (SQ149), all S. aureus strains gave a positive result: 94.7% of the methicillin-susceptible S. aureus were detected after 1 hour incubation, but only 52.3% of the methicillin-resistant S. aureus. 98.4% of the methicillin-resistant S. aureus were detected after 2 hours. No false positive result was observed for the 82 CNS strains. The chromogenic method shows good within-run and day-to-day precision tests. It doesn't need any complementary test. The sensitivity and the specificity are 99.4% and 100% respectively.

Agglutination Tests↗

Molecular cloning and mapping of 16S-23S rRNA gene complexes of Staphylococcus aureus.

Staphylococcus aureus BB255, a derivative of NCTC8325, had six rRNA operons, and each operon contained two SmaI sites about 3 kb apart. By molecular cloning and pulsed-field gel electrophoresis, all operons were mapped at the junctions of SmaI fragments in the published map of NCTC8325 except one, which was connected to a previously unidentified 23-kb SmaI fragment.

Base Sequence↗

The challenge of methicillin-resistant Staphylococcus aureus.

Staphylococcus aureus strains resistant both to methicillin and aminoglycosides emerged during the late 1970s. These have become endemic in hospitals all over the world. Outbreaks of infection and colonization may cause severe clinical and managerial problems, as therapeutic options are limited and it may be difficult to clear the carrier state. The genetics and biochemistry of these organisms are well studied, but additional antibiotics active against these strains are needed. The most urgent requirement is for rational and effective policies for control of their spread.

Animals↗

Global regulation of gene expression by ArlRS, a two-component signal transduction regulatory system of Staphylococcus aureus.

Staphylococcus aureus expresses various cell wall-associated and extracellular virulence factors, coordinately controlled by different two-component signal transduction systems and transcriptional regulators. In this study, we used microarray technology to identify the genes regulated by ArlR. The microarray data indicate that ArlR functions as a positive regulator and also as a negative repressor to directly and/or indirectly mediate the expression of at least 114 genes involved in different functions, including autolysis, cell division, growth, and pathogenesis.

Bacterial Proteins↗