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[Capacity of fish media for the production of Pseudomonas pigments].

Fish mediums B1 and B2, which modified King A base (B1) and modified King B base (B2) were examined for pigment production of P.aeruginosa strains and compared with King A and King B Mediums. Pyocyanin production on B1 was found better than on King A medium. Pyoverdin (Fluorescein) production on B2 was observed as a lighter yellow green than King B Medium. Fluorescence on B2 was recognized easier than King B Medium. As a result of this study, Fish Medium B1 and B2 can be used easily for examination of pigments of Pseudomonas strains. The other advantage of fish medium is, that, it can be produced easily in our country.

Animals↗

[Occurrence of Pseudomonas aeruginosa in waste water and its behavior under biological treatment].

103 days long, the concentration of Pseudomonas aeruginosa was determined in 206 samples of raw wastewater and of the activated sludge after the biological step in the wastewater pretreatment plant of Braunschweig. 2594 strains of P. aeruginosa were isolated, 95.8% of them showed production of pyocyanin. The concentration of P. aeruginosa varied between 2.6 X 10(1) and 4.8 X 10(4) cells/ml. Neglecting some exceptions, there were about ten times more P. aeruginosa in the sludge than in the clearly filtered wastewater and about one hundred times more than in the clearly filtered effluent. In general, P. aeruginosa seem not to be reduced by the biological oxidation during the wastewater treatment. On the contrary, we observed a multiplication in 69% of all cases. The multiplication of P. aeruginosa during the biological oxidation is discussed. Finally, the hygienic role of sludge is discussed because P. aeruginosa are concentrated herein.

Filtration↗

[Influence of supplementary tyrosine or phenylalanine on bacterial growth and pigmentation of "Pseudomonas aeruginosa" (author's transl)].

Pseudomonas aeruginosa grows readily on synthetic media containing succinate (36 mM) and ammonium chloride as sole source of nitrogen (34 mM) ; addition of tyrosine or phenylalanine (2,7 mM) is followed by an increase of both the growth rate and pyocyanine production. Several molecules structurally related to tyrosine give similar results. Tyrosine partially suppresses the inhibitory effect of both cyanide and azide. The results are discussed with regard to the biosynthesis of aromatic aminoacids and of phenazine pigments.

Azides↗

[The identification of nonfermentative gram-negative bacteria. Experiences with 676 apyocyaninogenic strains (author's transl)].

During a period of 16 months 1757 strains of nonfermentative gram-negative rods have been isolated from clinical material. Of the, 1205 (69%) were P. aeruginosa, 124 (10%) of which failed to produce pyocyanin. The apyocyaninogenic strains as well as the remaining 552 isolates were differentiated by steps according to a diagnostic scheme developed by us. For identification of species two or three steps were needed. By this procedure, 530 of the 552 strains could be assigned to nineteen species within the genera Pseudomonas, Achromobacter, Alcaligenes, Flavobacterium, Agrobacterium and Acinetobacter. 17 strains could not be identified below the genus level, one strain belonged to CDC-group VE-2 and four strains were not identifiable. 72% of the 552 strains belonged to only four species: Pseudomonas putida, P. maltophilia, Acinetobacter lwoffii and A. anitratus.

Bacteria↗

Pseudomonas aeruginosa adherence to external auditory canal epithelium.

BACKGROUND: Pseudomonas aeruginosa is an important causative agent for external otitis. The specific bacterium-host reaction has not been investigated. It is therefore unknown whether adhesion of the external otitis strain to the external auditory canal epithelium is increased compared with strains isolated from other infections. DESIGN: A cohort study was designed to outline adhesion of P aeruginosa to the external auditory canal epithelium, cultured in vitro, of the guinea pig. Factors important for pathogenesis were also studied. PATIENTS: Pseudomonas aeruginosa strains from nonhospitalized patients were collected consecutively at the bacteriological laboratories at Karolinska Hospital, Stockholm, and Huddinge Hospital, Huddinge, Sweden. External otitis strains were compared with strains from leg ulcers, urinary tract infections, and cystic fibrosis. METHODS: Adhesion to the external auditory canal epithelium cultured in vitro was measured and compared groupwise with the mean profile of pathogenic factors. RESULTS: Adhesion to the epithelium was significantly increased for external otitis strains. These strains also had a significantly increased deoxyribonuclease production and a significantly decreased production of pyocyanin and alginate. CONCLUSIONS: The significantly increased ability of P aeruginosa, isolated from external otitis, to adhere to external auditory canal epithelium was combined with a significant production of pathogenic factors. The P aeruginosa that causes external otitis could therefore be considered a particular phenotype. The enzyme profile for external otitis strains was similar to that of the control groups except for the strains from cystic fibrosis. Adhesion to guinea pig vs human epithelium must be compared, and the effects of extracellular proteins on adhesion should be studied to further understand how P aeruginosa adheres to the external auditory canal.

Animals↗

The possible role of tightly bound adenine nucleotides in oxidative and photosynthetic phosphorylation.

The tightly bound nucleotides of the beff-heart mitochondrial ATPase are released during cold inactivation followed by ammonium sulfate precipitation. During incubation at 0 degrees C the sedimentation coefficient (S20W) of the ATPase first declines from 12.1S to 9S. Prolonged incubation or precipitation with ammonium sulfate leads to dissociation of the 9S component into subunits with S20W of 3.5S. The 9S component still bears bound nucleotides which exchange more extensively and rapidly with added nucleotides than those bound to the active 12.1S component. The bound nucleotides are lost when the 9S form dissociates into the smaller subunits. Thus, firm binding of nucleotides is a property of the quarternary structure of the enzyme. The exchangeability of the nucleotides bound to the ATPase of chloroplast membranes is greatly increased in membranes illuminated in the presence of pyocyanine. Pi can exchange into both the beta and gamma positions of the bound nucleotides when the membranes are energized in the presence of Mg2+. The exchange of the nucleotides and the incorporation of Pi are insensitive to the inhibitor Dio-9 but are inhibited by the uncoupler S13. This inhibition by S13 parallels that of the inhibition of photosynthetic phosphorylation. These findings are discussed with regard to our hypothesis that electron transfer causes release of preformed tightly bound ATP from the ATPase by inducing a conformational change.

Adenine Nucleotides↗

Comparative analysis between Pseudomonas aeruginosa genotypes and severity of symptoms in patients with unilateral or bilateral otitis externa.

Random amplified polymorphic DNA (RAPD) analysis was done on 32 isolates of Pseudomonas aeruginosa. These isolates were obtained from 22 patients who presented to the emergency room in a major medical center in Beirut, Lebanon, during a 5-month period with the diagnosis of either unilateral or bilateral otitis externa. Patients had yellowish to greenish discharge, moderate to severe external auditory canal swelling, moderate to severe pain, and periauricular cellulitis. None of these patients had intrinsic predisposing factors. An ear swab was obtained from both ears of patients, cultured on trypticase soy agar. P. aeruginosa was identified on the basis of pyocyanine production and API identification kits. RAPD analysis was done by using two primers (10 mer and 21 mer primers) and appropriate PCR conditions on extracted DNA. Our data have shown 23 RAPD patterns (A-W) distributed among the 32 P. aeruginosa isolates. RAPD patterns were reproducible. Twenty of 32 isolates were recovered from 10 patients with bilateral otitis externa. The remaining 12 of 32 isolates were recovered from 12 different patients with unilateral otitis externa. Eleven RAPD patterns (A,B,C,D,E,F,H,I,R,U,V) were associated with severe clinical symptoms, including severe pain, severe external auditory canal swelling, periauricular cellulitis, and a yellowish discharge. The remaining RAPD patterns were not associated with severe infections. This denotes a possible association between certain genotypes and severity of symptoms.

Adolescent↗

Tightly bound nucleotides of the energy-transducing ATPase of chloroplasts and their role in photophosphorylation.

1. Like other energy-transducing membranes, chloroplast membranes bear a coupling ATPase with especially tight binding sites for adenine nucleotides. Membranes washed several times still contain 2.5 nmol ATP and 1.3 nmol ADP bound per mg chlorophyll, which is equivalent to 1.9 ATP and 1.0 ADP per coupling ATPase. 2. In de-energized membranes, these nucleotides exchange to only a limited extent with added nucleotides. In membranes illuminated in the presence of pyocyanine, however, complete exchange of the bound nucleotides occurs rapidly, irrespective of whether ATP or ADP is present in the medium. 3. Pi can exchange into these nucleotided at both the beta and gamma positions when the membranes are energized in the presence of Mg-2+. Equilibrium with the beta and gamma groups of th ebound nucleotides is, however, not complete. 4. The inhibitors and uncouplers Dio-9, S13 and EDTA have different effects on the exchange of nucleotides, the exchange of inorganic phosphate and photophosphorylation. 5. The bound ATP level on the membrane is stable to a wide variety of conditions. The ADP level, however, drops to near zero under conditions of maximal activation of the emmbrane ATPase.

Adenosine Diphosphate↗

Sulphydryl groups in photosynthetic energy conservation. I. Light-dependent inhibition of photophosphorylation by the sulphydryl reagent 2-2'dithio bis-(5-nitropyridine).

1. The sulphydryl reagent 2-2'dithio bis-(5-nitropyridine) (DTNP) inhibited photophosphorylation when the chloroplasts were preincubated with the reagent in the light. A maximum inhibition of about 50% was obtained in the presence of pyocyanine and MgCl 2 at 0.3 mumol DTNP per mg chlorophyll and was completed in about 40 s of preillumination. 2. Dithioerythritol, ADP plus Pi (or arsenate) and uncouplers prevented the inhibition when present during the preillumination while phloridzin, Dio-9 and discarine B were ineffective. Low concentrations of ADP or ATP afforded partial protection but other nucleotides had no effect. 3. DTNP inhibited the coupled electron transport rate to the basal level and had no effect on the uncoupled electron transport. The stimulation of proton uptake and inhibition of electron transport by ATP was prevented by DTNP. 4. The trypsin-activated but not the light- and dithioerythritol-triggered ATPase was inhibited by light preincubation of chloroplasts with DTNP. 5. Reversal of DTNP inhibition of photophosphorylation was obtained by a second preillumination in the presence of thiol groups. 6. More DTNP reacted with chloroplasts in the light than in the dark. Two mol of thione were formed in the light per mol of DTNP disappeared. 7. The results suggested that DTNP inhibition is related to the oxidation by DTNP of chloroplast vicinal dithiols probably exposed by a light-induced conformational change.

Adenosine Triphosphate↗

Light dependence of the decay of the proton gradient in broken chloroplasts.

The initial rates and steady-state values of proton uptake by broken chloroplasts have been measured as functions of light intensity at various concentrations of chlorophyll, pyocyanine, supporting electrolyte, buffer, as well as pH and temperature. Kinetics analysis of the data shows that the rate of decay of proton gradient due to backward leakage depends on light intensity. Under steady illumination, the decay constant kL is equal to kD + mR0, where R0 is the initial rate of proton uptake which is a function of light intensity, kD is the decay constant in the dark and m is a parameter which is independent of light intensity. Treatment of chloroplasts with lysolecithin, neutral detergent, 2,4-dinitrophenol, or valinomycin in the presence of K+ increases kD without affecting m. Treatment with N,N'-dicyclohexylcarbodiimide or adenylyl imidodiphosphate under appropriate conditions decreases m without affectsity and hence m = 0. These results suggest that the light-dependent part (mR0) of kL is due to leakage of protons through the coupling factor (CF1-CF0) complex which can open or close depending on light intensity and that the light independent part (kD) of the decay constant kL is due to proton leakage elsewhere.

Adenylyl Imidodiphosphate↗

The thermodynamic properties of some commonly used oxidation-reduction mediators, inhibitors and dyes, as determined by polarography.

The oxidation-reduction midpoint potentials (Em) of the following compounds have been measured in the range of pH from 3 to 12 by polarography: methyl viologen; benzyl viologen; 2-hydroxy-1,4-naphthoquinone; 2-hydroxy-1,4-anthraquinone; N,N,N',N',-tetramethyl-p-phenylenediamine; 2,3,5,6-tetramethyl-p-phenylenediamine; phenazine; N-methylphenazonium methosulfate; N-methylphenazonium sulfonate methosulfate; N-ethylphenazonium ethosulfate; pyocyanine; neutral red; safranin; phenol red; chlorophenol red; cresol red; bromocresol purple; 2,5-dibromo-3-methyl-6-isopropylbenzoquinone and 5-n-undecyl-6-hydroxy-4,7-dioxobenzothiazole. Many of these previously assumed to have a simple behavior in this range have proven to be rather more complicated, and several anomalous observations have been reconciled.

Dibromothymoquinone↗

Potentially pathogenic features of heterotrophic plate count bacteria isolated from treated and untreated drinking water.

Heterotrophic plate counts (HPCs) are commonly used to assess the general microbiological quality of drinking water. Drinking water quality specifications worldwide recommend HPC limits from 100 to 500 cfu ml(-1). A number of recent studies revealed evidence that these bacteria may not be as harmless as generally accepted. It appears that immuno-compromised individuals are particularly at risk. This would include the very young and very old patients with diseases such as AIDS and patients on therapy for purposes such as organ transplantation and cancer treatment. In this study, 339 bacterial colonies were isolated at random from selected treated and untreated drinking water in South Africa using routine heterotrophic plate count tests. In a first step to screen for potentially pathogenic properties, 188 (55.5%) of the isolates showed alpha- or beta-haemolysis on human- and horse-blood agar media. Subsequent analysis of the haemolytic isolates for enzymatic properties associated with pathogenicity revealed the presence of chondroitinase in 5.3% of the isolates, coagulase in 16.0%, DNase in 60.6%, elastase in 33.0%, fibrinolysin in 53.7%, gelatinase in 62.2%, hyaluronidase in 21.3%, lecithinase in 47.9%, lipase in 54.8% and proteinase in 64.4%. Fluorescein and pyocyanin were not produced by any of the isolates. Among the haemolytic isolates, 77.7% were resistant to oxacillin 1 microg, 59.6% to penicillin G 2 units, 47.3% to penicillin G 10 units, 54.3% to ampicillin 10 microg and 43.1% to ampicillin 25 microg. Cell culture studies revealed that 96% of haemolytic isolates were cytotoxic to HEp-2 cells, and 98.9% of the 181 cytotoxic isolates adhered to HEp-2 or Caco-2 cells. HEp-2 cells were invaded by 43.6%, and Caco-2 cells by 49.7%, of the 181 cytotoxic isolates. The invasion index on HEp-2 cells ranged from 1.9 x 10(-1) to 8.9 x 10(-6), whereas the invasion index on Caco-2 cells varied between 7.7 x 10(-2) and 8.3 x 10(-6). The most commonly isolated genera with these potentially pathogenic features were Aeromonas, Acinetobacter, Aureobacterium, Bacillus, Chryseobacterium, Corynebacterium, Klebsiella, Moraxella, Pseudomonas, Staphylococcus, Tsukamurella and Vibrio. The results obtained in this study support earlier findings on potentially pathogenic features of bacteria detected by routine HPCs on drinking water. These findings are in agreement with some epidemiological studies, which indicated an association between HPCs in drinking water and the incidence of gastroenteritis in consumers. However, the extent of the health risk concerned needs to be defined in more detail for meaningful revision of quality guidelines for HPCs in drinking water.

Bacteria↗

4-quinolone signalling in Pseudomonas aeruginosa: old molecules, new perspectives.

In Pseudomonas aeruginosa, diverse virulence determinants and secondary metabolites are regulated via the action of a hierarchical quorum-sensing system which integrates two chemically distinct classes of signal molecules, the N-acylhomoserine lactones (AHLs) and the 4-quinolones (4Qs). Synthesis of the pseudomonas quinolone signal, 2-heptyl-3-hydroxy-4-quinolone (PQS) depends on the pqsABCDE locus which is responsible for generating multiple 4Qs including 2-heptyl-4-quinolone (HHQ), the immediate PQS precursor. Exported HHQ is taken up by adjacent bacterial cells and converted into PQS by PqsH, a putative mono-oxygenase. In addition, PQS regulates its own production by driving the expression of pqsABCDE through a direct interaction with PqsR (MvfR). PQS regulates diverse target genes including those coding for elastase, rhamnolipid, the PA-IL lectin and pyocyanin via the action of PqsE as well as influencing biofilm development and impacting on cellular fitness. Furthermore, 4Q signalling is not restricted to P. aeruginosa raising the possibility of cross-talk with other related bacterial species which occupy similar ecological niches.

4-Quinolones↗

Microbial diversity and prevalence of virulent pathogens in biofilms developed in a water reclamation system.

Bacterial biofilm is a common phenomenon in both natural and engineered systems which often becomes a source of contamination and microbially influenced corrosion. It is thought that formation of biofilm in the monoculture of several bacterial species is regulated by acylhomoserine lactone (AHL) quorum-sensing signals. In this study, we investigated the microbial diversity and existence of AHL-producing and AHL-degrading bacterial species in the biofilm samples from a water reclamation system located in a tropical environment. 16S ribosomal DNA sequencing analysis indicated the presence of at least 11 bacterial species, including the frequently encountered bacterial pathogens Pseudomonas aeruginosa and Klebsiella pneumoniae, and several rare pathogens. We showed that only two groups of isolates, belonging to P. aeruginosa and Enterobacter agglomerans, produced AHL signals. We also found that three bacterial isolates, i.e., Agrobacterium tumefaciens XJ01, Bacillus cereus XJ08, and Ralstonia sp. XJ12, expressed AHL degradation enzymes. Furthermore, we showed that P. aeruginosa isolate HL43 was virulent against animal model Caenorhabditis elegans and released 2-6-fold more pyocyanin cytotoxin than P. aeruginosa strains PA01 and PA14, the two commonly used laboratory strains. These data indicate the complexity and importance of biofilm research in water reclamation.

Animals↗

Modified Pseudomonas agar: new differential medium for the detection/enumeration of Pseudomonas aeruginosa in mineral water.

Pseudomonas aeruginosa has been implicated as a foodborne and waterborne pathogen and is now considered a primary infectious agent. In the present study, the survival of P. aeruginosa inoculated in mineral water was evaluated by drop counts on Pseudomonas Agar Base (PAB), PAB with CN supplement X107, PAB with cetrimide, PAB with nalidixic acid, and these media with added FeSO(4). Initial counts, before starvation, were the same in all media tested. Following this period, P. aeruginosa became sensitive to PAB with added cetrimide. The addition of FeSO(4) did not improve the recovery of stressed P. aeruginosa but gave colonies a typical dark brown colour being easily differentiated from other species that can grow at 42 degrees C. The modified Pseudomonas agar medium was also tested with several P. aeruginosa strains, other species of Pseudomonas, and other genera. Only P. aeruginosa strains (pyocyanin positive) produced the typical colonies. Our results demonstrate that Pseudomonas agar with ferrous sulphate, used for the differentiation of P. aeruginosa colonies, and nalidixic acid, used as an inhibitor of Gram-positive bacteria, might be a useful medium for the detection of injured P. aeruginosa in mineral water.

Bacteriological Techniques↗

A C. elegans orphan nuclear receptor contributes to xenobiotic resistance.

Lipophilic endocrine signals in metazoans, including the steroid, thyroid, and retinoid hormones, alter gene expression in target cells by binding to and modulating the activity of nuclear receptor (NR) transcription factors [1]. In vertebrates, xenobiotic and pharmacologic compounds can regulate the expression of protective metabolic enzymes via specific "xenobiotic sensing" NRs [2-4]. Here, we report evidence suggesting that this activity is an ancient conserved function for the NR class containing these receptors. Specifically, we show that a Caenorhabditis elegans member of this NR class, nhr-8, is required for wild-type levels of resistance to the toxins colchicine and chloroquine. The nhr-8 promoter is active in the nematode gut, a tissue that also expresses the ABC transporter, PGP-3, which contributes to defense against these toxins [5]. In contrast to pgp-3 mutants, nhr-8 mutants are not more sensitive than wild-type to pyocyanin-dependent killing by the pathogenic bacterium Pseudomonas aeruginosa. We conclude that NHR-8 functions in the nematode xenobiotic defense system and that NHR-8 and PGP-3 have overlapping, but distinct, spectra of toxin specificity.

ATP Binding Cassette Transporter, Subfamily B↗

Flow-force relationships in lettuce thylakoids. 2. Effect of the uncoupler FCCP on local proton resistances at the ATPase level.

The relationship between the steady-state proton gradient (delta pH) and the rate of phosphorylation was investigated in thylakoids under various conditions. Under partial uncoupling by carbonyl cyanide p-(trifluoromethoxy)phenylhydrazone (FCCP), the rate of ATP synthesis was reduced by less than expected from the decrease of delta pH. This was observed in the case of the pyocyanine-mediated cyclic electron flow around photosystem 1, but not with the H2O-->photosystem 2-->cytochrome b6f-->photosystem 1-->methyl viologen system. In state 4, a unique relation was found between delta pH and the "phosphate potential", delta Gp, regardless of whether the energy level was controlled by light input or FCCP. The anomalous effect of FCCP on the rate of ATP synthesis disappeared when the ATPase was partially blocked by the reversible inhibitor venturicidin, but not in the presence of tentoxin, an irreversible inhibitor. These results are consistent with the existence of a small kinetic barrier for protons, limiting their access to the ATPase. This resistance would be collapsed by FCCP.

Adenosine Triphosphate↗