PubMed Health⌕ Search

Biomedical subjects

A Prince

Publications and source records attributed to A Prince.

At least 55 records · Page 3Linked to original sources

The Pseudomonas cepacia 249 chromosomal penicillinase is a member of the AmpC family of chromosomal beta-lactamases.

Pseudomonas cepacia 249 produces an inducible beta-lactamase with penicillinase activity. The nucleotide sequence of the penA gene, which encodes this beta-lactamase, was determined and found to include regions with a significant homology to the ampC-encoded beta-lactamases of members of the family Enterobacteriaceae and Pseudomonas aeruginosa. The predicted amino acid sequence of the PenA beta-lactamase contained 17 amino acids immediately preceding the putative active-site serine which were highly conserved among the enzymes of the AmpC family. Although the penA-coding sequence had a total GC content of 60%, the predicted codon usage was more characteristic of Escherichia coli ampC-encoded beta-lactamase, with 53% of the codons having G or C in the third position, in contrast to the values for the P. aeruginosa ampC (88.5%) or Pseudomonas cepacia (88 to 92%) metabolic genes. The inducible expression of penA can be regulated by the E. coli gene product AmpD. A putative P. cepacia AmpR homolog was associated with the positive regulation of both Enterobacter cloacae ampC and P. cepacia penA expression, as confirmed by gel retardation studies. The E. cloacae AmpR did not regulate penA expression. Thus, by homology studies, codon usage, and genetic analysis, the P. cepacia penA beta-lactamase appears to have been acquired from members of the family Enterobacteriaceae and belongs to the class C group of beta-lactamases.

Base Sequence↗

Pseudomonas aeruginosa pili bind to asialoGM1 which is increased on the surface of cystic fibrosis epithelial cells.

The basis for the unique association of Pseudomonas aeruginosa and the cystic fibrosis (CF) lung has remained obscure despite major advances in the understanding of the molecular genetic cause of this disease. There is evidence to suggest that abnormalities in CF transmembrane conductance regulator function result in alterations in the glycosylation of epithelial components. The number of asialoGM1 residues, as representative of a class of glycolipids which contain a GalNAc beta 1-4Gal sequence for P. aeruginosa attachment, was quantified by flow cytometric studies of respiratory epithelial cells in primary culture from both CF patients and normal subjects. Superficial asialoGM1 was detected on 12% of the CF cells as compared with 2.9% of the cells from normal control subjects (P = 0.03, chi 2 = 4.73), and more asialoGM1 residues were exposed on CF cells after modification by P. aeruginosa exoproducts. AsialoGM1, but not the sialylated glycolipid GM1, was demonstrated to be a receptor for 125I-labeled P. aeruginosa pilin, a major adhesin for this organism, and exogenous asialoGM1 was found to competitively inhibit P. aeruginosa adherence to epithelial cells, thus, confirming the biological role of the asialoGM1 receptor. Quantitative and qualitative differences in the sialylation of superficial glycolipids in CF epithelial cells may directly contribute to the colonization of the CF lung by P. aeruginosa.

Bacterial Adhesion↗

Independent divergences in the CD4 binding site and V3 loop encoded in two seroprevalent Ugandan HIV-1 clinical isolates.

Two major epitopes expressed in HIV-1 have been recently shown to play a central role in virus neutralization. One of these important specificities is a type-specific or group-specific, principal neutralizing determinant (PND) located in the V3 loop of gp120. The other is a more broadly neutralizing determinant associated with the CD4 binding site. Structural and serological studies of the variation in these epitopes have become important in vaccine research. This report describes the analysis of the DNA clones encoding a region of gp120 that overlaps the V3 loop and the putative CD4 recognition site in two new African isolates, UG06c and UG23c. Phylogenetic analyses of the DNA sequences showed that the new African isolates clustered with two very distinct subtypes of HIV-1. UG06c was grouped with U455, D687, and Z321, previously classified as "HIV-1 subtype A" in the AIDS and human retroviruses database; and UG23c was grouped with MAL, JY1, NDK, ELI, and Z2Z6 classified as "HIV-1 subtype D." Considerable variation was apparent in the V3 loop. The divergence included the presence of the hexapeptides GP-GRSF and GLGQAL at the cap of the loop in UG06c and UG23c, respectively. The GPGR tetrapeptide in UG06c formed a beta-turn configuration similar to that of MN or IIIB. The beta-turn was not found to be a likely conformation for GLGQ. The amino acids previously implicated in CD4 binding and the associated neutralizing activity were relatively conserved. To assess a possible impact of the sequence and conformational variations on serological reactivity, UG06c and UG23c were subjected to neutralization assay.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Adhesins and receptors of Pseudomonas aeruginosa associated with infection of the respiratory tract.

Substantial progress has been made in defining a number of Pseudomonas adhesins which may be involved in the pathogenesis of respiratory infection. As yet, it is unclear which of these adhesins are primarily responsible for initiating infection in CF. The findings that CF epithelial cells have increased numbers of receptors for P. aeruginosa attachment and that CF epithelia are less highly sialylated than normal epithelial cells is consistent with a role for Pseudomonas pili in the initial recognition of asialoganglioside receptors on epithelial cells. In addition, there is ample evidence supporting the presence of several classes of non-pilus adhesins. Adherence properties of P. aeruginosa clearly vary from strain to strain and it appears likely that all potential adhesions are not equally expressed. More importantly, the regulation of the expression of these adhesins is unlikely to be constitutive. Some may be expressed only when triggered by the appropriate environmental conditions as found in vivo. In reviewing the pathogenesis of Pseudomonas infection in the CF lung, several classes of receptors must be considered. Pseudomonas infection is limited to the bronchi in CF. The organisms do not invade the bronchial tissue, but remain in the airways forming a biofilm with associated microcolonies. Thus, it would seem reasonable to expect Pseudomonas receptors within respiratory mucin. However, to date, there is little confirmatory data to support the presence of specific receptors in mucin. Alternatively, it is possible that the failure of bacterial binding to mucin components may contribute to colonization as organisms which are not efficiently cleared by muco-ciliary function may persist in the airways long enough to find or expose cryptic epithelial binding sites. This hypothesis is supported by binding studies which demonstrate decreased Pseudomonas attachment to CF as compared with normal respiratory mucins. Based on the available data, there appears to be a hierarchy of adhesin expression. Multiple ligand-receptor interactions may occur in the respiratory tract and it may be difficult to analyze the effect of secondary adhesins in the presence of what appears to be the dominant ligand, i.e. pilin. Thus, the failure to find the expected sialylated receptor for Pseudomonas attachment may be due to methodologic problems such as studying strains under conditions in which pili are well expressed and affinities for asialylated receptors predominate. This may not be the situation in vivo after the initial contact of the infecting organisms with the epithelial surface. Not only must the organism attach initially, but it must then be able to persist within the lung. Further studies, based on genetically defined mutants should help define which P. aeruginosa gene products and which components of the CF but not the normal epithelium are responsible for this unique but ultimately fatal host/bacterium interaction.

Adhesins, Bacterial↗

Towards a new predictor of AIDS progression through the quantitation of HIV-1 DNA copies by PCR in HIV-infected individuals.

The proviral copy (PVC) number in peripheral blood mononuclear cells (PBMCs) of human immunodeficiency virus (HIV)-infected individuals was measured by a quantitative polymerase chain reaction (PCR) assay to determine over time the relation between the viral load and the evolution towards the disease in HIV-infected people: 67 anti-HIV-1 positive individuals (60 stage II/III, 7 stage IV) were studied. The mean PVC number per 1.5 x 10(5) PBMCs in stage II/III individuals (14.4 +/- 14.2) and in stage IV individuals (32.2 +/- 22.9) was significantly different (P < 0.02). PVC number was inversely correlated to the CD4 lymphocyte count (P < 0.01). In the logistic regression, the PVC number was a better marker of evolution towards the disease than the CD4 lymphocyte count. The mean proportion of HIV-infected PBMCs in stage IV individuals and in stage II/III individuals was 1/4606 and 1/10714, respectively.

Acquired Immunodeficiency Syndrome↗

Comparison of adherence of Pseudomonas aeruginosa to respiratory epithelial cells from cystic fibrosis patients and healthy subjects.

The adherence of Pseudomonas aeruginosa PAO1 to primary cultures of cystic fibrosis nasal polyp (CFNP), normal human nasal polyp (NHNP), and immortalized CF and normal cell lines was studied. PAO1 bound significantly more to primary CFNP cells than to NHNP cells as the mean adherence +/- standard deviation of 5 x 10(7) CFU of 35S-labeled bacteria per ml per well was 15.09 x 10(6) +/- 4.25 x 10(6) CFU/ml per well and 7.62 x 10(6) +/- 2.11 x 10(6) CFU/ml per well, respectively (Mann-Whitney U test, P less than 0.0001). There was no significant difference in PAO1 adherence to the immortalized CF and normal cell lines. The primary CFNP cells had more receptors (115 per cell) than did NHNP cells (34 per cell). P. aeruginosa binding to CFNP was blocked by GlcNAc, NeuAc, L-Fuc, and D-Gal, while binding to NHNP was blocked only by GlcNAc, suggesting that receptors on the two cell types were qualitatively different. Pseudomonas supernatants containing protease, phospholipase C, and neuraminidase activity increased adherence to CFNP and NHNP cells. The Pseudomonas exoproducts modified epithelial cell glycoconjugates, as characterized by binding of fluorescein isothiocyanate-labeled lectins and the release of sialic acid. There was minimal release of fibronectin by the bacterial supernatants. The affinity of P. aeruginosa for CF epithelial cells appeared to be due to an increased number of receptors and modification of the epithelial cell surface by P. aeruginosa exoproducts that exposed asialoganglioside binding sites.

Bacterial Adhesion↗

Production of the Pseudomonas aeruginosa neuraminidase is increased under hyperosmolar conditions and is regulated by genes involved in alginate expression.

The pathogenesis of Pseudomonas aeruginosa infection in cystic fibrosis (CF) is a complex process attributed to specific characteristics of both the host and the infecting organism. In this study, the properties of the PAO1 neuraminidase were examined to determine its potential role in facilitating Pseudomonas colonization of the respiratory epithelium. The PAO1 neuraminidase was 1000-fold more active than the Clostridium perfringens enzyme in releasing sialic acid from respiratory epithelial cells. This effect correlated with increased adherence of PAO1 to epithelial cells after exposure to PAO1 neuraminidase and was consistent with in vitro studies demonstrating Pseudomonas adherence to asialoganglioside receptors. The regulation of the neuraminidase gene nanA was examined in Pseudomonas and as cloned and expressed in Escherichia coli. In hyperosmolar conditions neuraminidase expression was increased by 50% (P less than 0.0004), an effect which was OmpR dependent in E. coli. In Pseudomonas the osmotic regulation of neuraminidase production was dependent upon algR1 and algR2, genes involved in the transcriptional activation of algD, which is responsible for the mucoid phenotype of Pseudomonas and pathognomonic for chronic infection in CF. Under the hyperosmolar conditions postulated to exist in the CF lung, nanA is likely to be expressed to facilitate the initial adherence of Pseudomonas to the respiratory tract.

Alginates↗

Defective acidification of intracellular organelles in cystic fibrosis.

The phenotype of cystic fibrosis (CF) includes abnormalities in transepithelial transport of Cl- (refs 1-5), decreased sialylation and increased sulphation and fucosylation of glycoproteins, and lung colonization with Pseudomonas. It is not apparent how these abnormalities are interrelated, nor how they result from loss of function of the CF gene-encoded transmembrane regulator (CFTR). We have previously shown that that the pH of a secretory granule is regulated by the vesicular conductance for Cl- (ref. 11). Here we find defective acidification in CF cells of the trans-Golgi/trans-Golgi network, of prelysosomes and of endosomes as a result of diminished Cl- conductance. Sialytation of proteins and lipids is reduced and ligand traffic altered. These abnormalities can result from defective acidification because vacuolar pH regulates glycoprotein processing and ligand transport. The CF phenotype is similar to that of alkalinized cells and acidification-defective mutatants.

Cell Line↗

The effect of piliation and exoproduct expression on the adherence of Pseudomonas aeruginosa to respiratory epithelial monolayers.

The adherence properties of Pseudomonas aeruginosa strains with known pilin DNA sequences were studied. A polar pilus clearly contributed to adherence, as 35S-labeled pilus-positive (Pil+) strains bound significantly more to bovine trachea epithelial monolayers than did pilus-negative (Pil-) mutants (P less than .05) and minimally more than hyperpiliated strains. A pil- mutant PAK/NP, constructed by gene replacement, demonstrated low levels of attachment (3.8% of the inoculum adherent compared with 7% for the wild-type strain PAK), suggesting that other adhesins are functional. The Pil-, flagellum-negative strain PAO1150.1 bound the least (0.3% of the inoculum adherent), confirming the importance of motility in the binding process. The pilin sequences of strains P1 and PA1244 were virtually identical, although P1 bound threefold more than did PA1244. P1 produced 10-fold more proteinase than did PA1244, and a proteinase-negative mutant of P1, isolated by transposon mutagenesis, had binding equivalent to that of PA1244. The adherence of PAO1 was increased 60% in the presence of bacterial supernatants from phosphate-limited cultures and correlated with phospholipase C activity in the supernatant. Thus, the expression of several Pseudomonas genes may be required to promote efficient binding to epithelial surfaces.

Animals↗

Pseudomonas cepacia adherence to respiratory epithelial cells is enhanced by Pseudomonas aeruginosa.

Pseudomonas aeruginosa and Pseudomonas cepacia are both opportunistic pathogens of patients with cystic fibrosis. The binding characteristics of these two species were compared to determine if they use similar mechanisms to adhere to respiratory epithelial cells. P. cepacia 249 was shown to be piliated, but there was no detectable homology between P. aeruginosa pilin gene probes and P. cepacia genomic DNA. P. cepacia and P. aeruginosa did not appear to compete for epithelial receptors. In the presence of purified P. aeruginosa pili, the adherence of 35S-labeled strain 249 to respiratory epithelial monolayers was unaffected, while that of P. aeruginosa PAO1 was decreased by 55%. The binding of P. cepacia 249 and 715j was increased by 2.4-fold and 1.5-fold, respectively, in the presence of an equal inoculum of PAO1. Interbacterial agglutination contributed to the increased adherence of P. cepacia, as the binding of 249 was increased twofold in the presence of irradiated PAO1. PAO1 exoproducts had a marked effect in enhancing the ability of the P. cepacia strains to adhere to the epithelial monolayers. A PAO1 supernatant increased the binding of 249 by eightfold and that of 715j by fourfold. Thus, there appears to be a synergistic relationship between P. aeruginosa and P. cepacia in which PAO1 exoproducts modify the epithelial cell surface, exposing receptors and facilitating increased P. cepacia attachment.

Animals↗

Fractional processing of sequential bronchoalveolar lavage to separate bronchial and alveolar samples.

Bronchoalveolar lavage has been widely used to sample the lower respiratory tract. Most of the material recovered with this technique represents alveolar contents. A number of modifications have been suggested in order to obtain samples relatively enriched for bronchial material. In order to be able to use a standard technique for bronchoalveolar lavage to sample both airways and "routine" alveolar material, a simple modification of the technique as described by Reynolds and Newball was used: five sequential 20-ml aliquots were infused into the lower respiratory tract, and each aliquot was immediately aspirated. The return from the first aliquot was processed separately from the return from the subsequent four aliquots. These last four aliquots were pooled. Analysis of the first aliquot revealed it to be enriched for ciliated epithelial cells when compared with the subsequent aliquots. There were also differences in inflammatory cell composition with the bronchial sample containing relatively more neutrophils and relatively less lymphocytes. Aspiration during transoral bronchoscopy was documented by quantifying salivary amylase in the bronchial and alveolar lavage fluids. It was estimated, however, that the aspiration was not of quantitative significance in the vast majority of subjects studied. Finally, with the technique of fractional processing of bronchoalveolar lavage samples, it was possible to compare the protein concentrations in bronchial and alveolar lavages. Most prominent among the differences was a marked relative enrichment in the bronchial samples for immunoglobulin A. The technique of fractional processing of bronchoalveolar lavage samples provides a simple means to obtain samples enriched for bronchial and alveolar components. This should facilitate analysis of lower respiratory tract specimens in airway disease.

Adult↗

In vitro virucidal effectiveness of a 0.12%-chlorhexidine gluconate mouthrinse.

The purpose of this work was to assess the in vitro antiviral effectiveness of a mouthrinse (Peridex) containing 0.12% chlorhexidine gluconate (CH) on several viruses that are associated with the oral cavity. These included herpes simplex virus (HSV), cytomegalovirus (CMV), influenza A, parainfluenza, polio, and hepatitis B (HBV). Virucidal assays in tissue cultures were performed on all viruses except HBV. The virucidal effect on HBV was assessed by inactivation of the DNA polymerase contained within the Dane particle of HBV. The CH mouthrinse had virucidal activity against all of the viruses, except polio, in as little as 30 s. The virucidal activity increased with time. However, there were differences in the responses of these viruses to the challenge of the CH mouthrinse, probably due to subtle differences in the physical/chemical structures of the virus envelopes. Results on DNA polymerase of the HBV virus were similar to those on the other viruses, except polio, suggesting a common mechanism. With respect to this mechanism, it was proposed that CH exerted its antiviral effect on the envelopes of these viruses, and that the absence of an envelope on polio precluded effectiveness against this virus.

Animals↗

Cross-reactivity of Pseudomonas aeruginosa antipilin monoclonal antibodies with heterogeneous strains of P. aeruginosa and Pseudomonas cepacia.

Much of the morbidity and mortality in patients with cystic fibrosis (CF) is secondary to pulmonary infections with Pseudomonas aeruginosa and, more recently, with Pseudomonas cepacia. Prevention of colonization and subsequent infection would be a useful therapeutic strategy. The pili (fimbriae) of P. aeruginosa are a potential vaccine antigen, as they have been implicated in binding to respiratory epithelium and appear to have limited antigenic diversity. Monoclonal antibodies (MAbs) raised to P. aeruginosa pilin demonstrated significant cross-reactivity, as four of five P. aeruginosa strains with known pilin sequences and 10 of 15 P. aeruginosa clinical isolates hybridized by immunoblot with at least one of the three MAbs tested. The P. cepacia strains demonstrated minimal cross-reactivity with these MAbs, as only 2 of 16 strains hybridized immunologically. The three MAbs decreased the adherence of 35S-labeled P. aeruginosa PA1244 to bovine tracheal cells by 56, 45, and 31%. One of these MAbs decreased the adherence of strains P. aeruginosa PAO1 and P. cepacia 249 to CF epithelial cells by 46 and 25%, respectively. While antibodies to Pseudomonas pili must be shown to be protective in patients with CF, these studies give support for a multivalent vaccine strategy using P. aeruginosa pilin as the immunogen.

Animals↗

Isolation and characterization of a penicillinase from Pseudomonas cepacia 249.

Pseudomonas cepacia has an inducible beta-lactamase which is responsible for its novel ability to catabolize beta-lactam compounds. The gene encoding this enzyme, penA, was cloned from a genomic library of P. cepacia 249 on the broad-host-range cosmid pLAFR. This separated the penA gene from the gene encoding a second beta-lactamase in P. cepacia 249. Expression of penA was inducible in an Escherichia coli host strain by low levels of penicillin. The 33,500-molecular-weight enzyme had penicillinase activity not inhibited by clavulanic acid or sulbactam and was highly active against piperacillin and azlocillin. In comparison with other inducible beta-lactamases produced by gram-negative organisms, the penA enzyme had many properties which were similar to those of the penicillinase produced by Alcaligenes faecalis. It was unlike the ampC-type cephalosporinase produced by Pseudomonas aeruginosa.

Cloning, Molecular↗