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Biomedical subjects

T Nakae

Publications and source records attributed to T Nakae.

At least 91 records · Page 5Linked to original sources

Role of OmpD2 and chromosomal beta-lactamase in carbapenem resistance in clinical isolates of Pseudomonas aeruginosa.

Imipenem-resistant clinical isolates of Pseudomonas aeruginosa were divided into two categories: (i) isolates that were moderately resistant to imipenem (MIC 6.25 mg/L) that produced trace amounts of protein D2 detected with immunoblotting using anti-protein D2 antibody, but not when stained with Coomassie blue and had inducible class 1 beta-lactamase expression; (ii) isolates that were highly resistant to several beta-lactams, including meropenem, with no protein D2 by staining or immunoblotting and had stably derepressed beta-lactamase. Laboratory strains were isolated and analyzed: (i) mutants lacking protein D2, or (ii) lacking protein D2 and producing stably derepressed beta-lactamase with carbapenem resistance similar to the clinical isolates. (iii) mutants producing undetectable beta-lactamase which were four-fold more susceptible to imipenem than the mutant producing stably derepressed beta-lactamase or the strain with inducible beta-lactamase. These data suggests that beta-lactamase and outer membrane permeability govern meropenem-resistance in P. aeruginosa.

Bacterial Outer Membrane Proteins↗

Mechanisms of resistance to beta-lactam antibiotics in Acinetobacter calcoaceticus.

Examination of 12 strains of Acinetobacter calcoaceticus revealed that the strains expressed different constitutive levels of beta-lactamase. Mutants resistant to cefoxitin, cefoperazone or ceftazidime were selected from a strain producing a low level of beta-lactamase. All the mutants showed no change in expression of beta-lactamase, but produced penicillin-binding proteins with altered expression and/or affinity for beta-lactams. In addition, the outer membrane of the mutants showed decreased permeability (40-80% that of the parent strain) towards small hydrophilic solutes, together with diminished production of a 46.5 kDa porin protein. It was concluded that the enhanced resistance to beta-lactams in the A. calcoaceticus mutants was the result of interplay between the altered penicillin binding proteins and the reduced outer membrane permeability.

Acinetobacter calcoaceticus↗

Aminoglycoside resistance in Pseudomonas aeruginosa due to outer membrane stabilization.

Pseudomonas aeruginosa PAO1 released a significant amount of a cytoplasmic enzyme, glucose-6-phosphate dehydrogenase, in the presence of aminoglycoside and lysozyme. The extent of the enzyme release was inversely related to the MICs of the aminoglycoside. However, the aminoglycoside-resistant strain F3721, treated in the same way; released a less enzyme. The F3721 LPS was extracted in the phenol phase instead of the water phase in which PAO1 LPS was easily extracted. Electrophoretic analysis of the F3721 LPS showed the ladder bands at the high Mr position, suggesting that the LPS of the aminoglycoside-resistant cells has a structural modification(s) which somehow protects the outer membrane from aminoglycoside-mediated damage.

Aminoglycosides↗

Diffusion of beta-lactam antibiotics through liposome membranes reconstituted from purified porins of the outer membrane of Pseudomonas aeruginosa.

Determination of the rates of diffusion of beta-lactam antibiotics through purified Pseudomonas aeruginosa porins C, D2, and E in liposomes yielded the following results. (i) The rates of carbapenem (imipenem and meropenem) diffusion through the protein D2 pore were roughly 2 to 70 times higher than those through other porin pores. It is not clear why the protein D2 pore allowed rapid diffusion of carbapenems. The rates of diffusion of glucosamine and triglycine through the protein D2 pore were about 14 and 4 times higher, respectively, than that of an uncharged test solute with a similar Mr, glucose. (ii) The rates of diffusion of antipseudomonal anionic beta-lactams such as piperacillin, ceftazidime, cefsulodin, and aztreonam through the protein C pore were higher than those through other porin pores. This was probably due to the slightly larger pore size and the slight anion selectivity of protein C, since the apparent exclusion limit of the protein C pore for uncharged saccharides is higher than that of other porins and the rate of diffusion of gluconic acid through the protein C pore is about double that for glucose. (iii) The rates of diffusion of cefoperazone through all three species of porin were relatively high. These results indicate that the antipseudomonal beta-lactams permeate the P. aeruginosa outer membrane via newly identified porins.

Anti-Bacterial Agents↗

Protection of Toxoplasma gondii-infected mice by stearylamine-bearing liposomes.

The cytotoxic activity of stearylamine-bearing liposomes against Toxoplasma gondii (RH strain) was examined. When tachyzoites were treated in vitro with liposomes consisting of 20 mol% stearylamine and 80 mol% phosphatidylcholine (130 micrograms/ml total lipids), more than 95% of the parasites were killed within 90 min. Intraperitoneal injection of 10 mg of 30 mol% stearylamine/70 mol% phosphatidylcholine-liposomes in mice shortly before or after T. gondii challenge afforded protection from death for more than 30 days to 70-80% of the treated mice, whereas all untreated mice succumbed within 9 days. The liposome-injected mice that survived remained symptom-free and behaved normally.

Amines↗

The barrier function of the outer membrane of Pseudomonas maltophilia in the diffusion of saccharides and beta-lactam antibiotics.

This paper reports that the efficiency of solute diffusion through the outer membrane of Pseudomonas maltophilia is roughly 3 to 5% of that of Escherichia coli. This is despite the fact that the outer membrane pore(s) is only a little smaller than that of E. coli. These results suggest that P. maltophilia has a low copy number of porin(s). The outer membrane of antibiotic resistant clinical isolates showed even less efficient permeability towards saccharides and antibiotics than the laboratory strains.

Anti-Bacterial Agents↗

Identification of porins in the outer membrane of Pseudomonas aeruginosa that form small diffusion pores.

The purified outer membrane proteins of Pseudomonas aeruginosa were reconstituted with phosphatidylcholine and dicetylphosphate into membrane vesicles, and these were tested by the liposome swelling method for the diffusion of saccharides with different Mr. Proteins C (Mr, 70,000), D (Mr, 46,000), and E (Mr, 43,000) were found to confer the monosaccharide-permeable pores in the reconstituted liposome membranes. The membrane vesicles containing proteins F (Mr, 34,000), G (Mr, 25,000), or H (Mr, 19,000) showed no detectable pore-forming activity. The pores formed by proteins C, D, or E appeared to be smaller than that formed by the Escherichia coli porins. The size of the solutes that permeated through the newly identified porins is similar to that through the intact and purified outer membrane of P. aeruginosa (Yoneyama, H., and Nakae, T. (1986) Eur. J. Biochem. 157, 33-38; Yoshihara, E., Gotoh, N., and Nakae, T. (1988) Biochem. Biophys. Res. Commun. 156, 470-476).

Bacterial Outer Membrane Proteins↗

Role of protein F in maintaining structural integrity of the Pseudomonas aeruginosa outer membrane.

To investigate the functional role of protein F of the outer membrane of Pseudomonas aeruginosa, we isolated mutants devoid of protein F, and the defective gene was transferred to a wild-type strain by plasmid FP5-mediated conjugation. Chemical analyses of the protein F-deficient outer membrane revealed that the amount of outer membrane protein was reduced to 72 to 74% of that of the protein F-sufficient strain and that lipopolysaccharides and phospholipids increased to 117 to 123% and 135 to 136%, respectively. The mutants and the transconjugant showed the following characteristics: (i) growth rates of protein F-deficient strains in low-osmolarity medium (e.g., L broth containing 0.1% NaCl) were less than 1/10 the rate of the protein F-sufficient strain; (ii) protein F-deficient cells were rounded, and the outer membrane formed large protruded blebs; and (iii) the outer membrane became physically fragile, since a significant amount of periplasmic proteins leaked out and the cells became highly sensitive to osmotic shock. The results suggested that protein F plays an important role in morphogenesis and in maintaining the integrity of the outer membrane. Determination of the diffusion rates of saccharides and beta-lactam antibiotics showed that the protein F-deficient outer membrane had no detectable transport defect compared with the protein F-sufficient outer membrane. The MICs of antibiotics for the protein F-deficient strains were nearly identical to those for the protein F-sufficient strain.

Bacterial Outer Membrane Proteins↗

In vitro demonstration by the rate assay of the presence of small pore in the outer membrane of Pseudomonas aeruginosa.

Determination of the rates of saccharide diffusions by the proteoliposomes showed that the outer membrane of Pseudomonas aeruginosa only possesses small diffusion pores and that protein F might have not been involved in the pore formation. Proteoliposomes containing stachyose or Dextan T-10 showed the same relative diffusion rates as measured by the liposome swelling method. Slopes of the lines, diffusion rate vs saccharide Mr, in the liposomes made of the P. aeruginosa and E. coli B outer membranes appeared to be -7.4 and -3.5, respectively. Intercepts of the lines with x-axis in the liposomes containing the P. aeruginosa and E. coli B outer membrane appeared to be about Mr, 220 and 320, respectively. Relative diffusion rates of saccharides through the liposome membranes reconstituted from the protein F-deficient outer membrane were superimposable with that of the protein F-sufficient outer membrane.

Cell Membrane↗

Infiltrating ductal carcinoma developing within cystosarcoma phyllodes--a case report.

Malignancy in cystosarcoma phyllodes is uncommon and often confined to the stromal element. An extremely rare case of infiltrating ductal carcinoma developing within the stroma of cystosarcoma phyllodes is reported herein. A breast tumor with a diameter of 15 cm, which was diagnosed as cystosarcoma phyllodes, was excised from the right breast of a 47-year old woman. The histopathological examination revealed that hyperplastic ductal epithelial cells with dark cytoplasm and enlarged hyperchromatic nuclei were infiltrating the stroma. Thus, a diagnosis of ductal carcinoma within cystosarcoma was made. Subsequently, a standard radical mastectomy was performed. No recurrence or metastasis has been observed over the post-operative period of 5 years and 6 months.

Breast↗

Size of diffusion pore of Alcaligenes faecalis.

The diffusion pore of the outer membrane of Alcaligenes faecalis was shown to be substantially smaller than the Escherichia coli porin pore. In experiments with intact cells, pentoses and hexoses penetrated into the NaCl-expanded periplasm, whereas saccharides of Mr greater than 342 did not. Cells treated with 0.5 M saccharides of Mr greater than 342 weighed 33 to 38% less than cells treated with isotonic solution, suggesting that these saccharides do not permeate through the outer membrane. The diffusion rates of various solutes through the liposome membranes reconstituted from the Mr-43,000 outer membrane protein showed the following characteristics. (i) The relative diffusion rates of pentoses, hexoses, and methylhexoses appeared to be about 1.0, 0.6, and negligibly small, respectively. (ii) The diffusion rate of glucose appeared to be about 1/10th that with the E. coli B porin. (iii) The diffusion rate of gluconic acid was five to seven times higher than that of glucose. (iv) The diffusion rates of beta-lactam antibiotics appeared to be 40 to less than 10% of those with the E. coli B porin.

Alcaligenes↗

In vitro lysis of the bloodstream forms of Trypanosoma brucei gambiense by stearylamine-bearing liposomes.

Cytolytic activity of liposomes consisting of stearylamine and phosphatidylcholine (SA/PC-liposomes) was examined in vitro against the bloodstream forms of Trypanosoma brucei gambiense. More than 99% of the cells (2 X 10(6)/ml) were killed within 30 min by treatment with 15 mol% SA/PC-liposomes (100 microM total lipids). As few as 1.2 X 10(12) liposomes per ml (equivalent to 2 nM liposome) showed trypanocidal activity. Fluorescence microscopy of cells treated with the dansylated SA/PC-liposomes suggested that the liposomes bound to and accumulated on the cell surface, eventually damaging the plasma membrane. SA/PC-liposomes showed no significant hemolysis when incubated with human and mouse erythrocytes under conditions that killed greater than 99.9% of the T. b. gambiense trypomastigotes. Human leukocytes were also shown to be less susceptible to SA/PC-liposomes than T. b. gambiense. These results may point to a new direction in strategy for therapy of African trypanosomiasis.

Amines↗