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N A Pyliotis

Publications and source records attributed to N A Pyliotis.

6 recordsLinked to original sources

A chromatographic method for the purification of K99 pili from enterotoxigenic Escherichia coli.

Details of a relatively inexpensive method for the purification of K99 pili in their native conformation are reported. The method involved sequential precipitation of K99 pili with (NH4)2SO4, followed by precipitation in 12% (w/v) mannose or sorbitol solution. The crude pili preparation was adsorbed with Bio-Gel A-5m and subjected to sequential gel filtration on Bio-Gel A-5m equilibrated with Tris/EDTA/NaN3/NaCl buffer and KSCN/KCl solution, respectively. The K99 containing peak was subjected to sequential ion-exchange chromatography on DEAE-Bio-Gel A equilibrated with 0.02 M-Tris/HCl, pH 8.6 containing 0.05 M-NaCl and DEAE-Sephadex A-50 equilibrated with 0.05 M-phosphate buffer, pH 7.2. The purified pili yielded a single band on SDS-PAGE with an estimated molecular weight of 13000. Attempts to purify pili by other methods evaluated, viz. MgCl2 precipitation and chromatofocusing were unsuccessful. While the amino acid composition of purified K99 pili was similar to that reported previously the N-terminal amino acid was apparently blocked.

Amino Acids

A new method for the extraction and purification of K99 pili from enterotoxigenic Escherichia coli and their characterization.

It was found that K99 pili from enterotoxigenic Escherichia coli (of bovine origin) could be extracted by treatment with 3M-KSCN solution. The K99 pili were purified by preparative isoelectric focusing to apparent homogeneity as judged by the presence of a single band on sodium dodecyl sulphate/polyacrylamide-gel electrophoresis; the molecular weight of this component was calculated to be 12 600 +/- 300. This indicated that the K99 pili were composed of a single subunit. On analytical ultracentrifugation, a single boundary with an s20,w of 12.2 S at a concentration of 0.42 mg/ml was observed. The average length of purified pili at zero concentration was approx. 160 nm and the diameter was 7.4 +/- 0.6 nm. Amino acid analysis of the purified K99 pili revealed that sulphur-containing amino acids, cysteine and methionine, were absent. Aromatic amino acids, phenylalanine and tyrosine, previously reported to be absent [Isaacson (1977) Infect. Immun. 15. 272-279], constituted 7.14% of the total amino acid residues present. On immunoelectrophoresis, purified K99 pili migrated towards the cathode and caused mannose-resistant haemagglutination of horse, but not of sheep or guinea-pig, red blood cells. Pili from enterotoxigenic E. coli of porcine and human origin and from another bacterial species, namely Fusiformis nodosus, could also be extracted by the treatment of respective micro-organisms with 3 M-KSCN.

Amino Acids

Metal accumulation by bacteria with particular reference to dissimilatory sulphate-reducing bacteria.

Dissimilatory sulphate-reducing bacteria, genera Desulfovibrio and Desulfotomaculum, exhibit a superior ability, over assimilatory organisms, to extract three amounts of metals from culture media. This property does not appear to be solely a function of the presence of H2S. In media containing elevated amounts of Fe, electron dense particles, provisionally identified as FeS, are deposited within the cells of dissimilatory bacteria.

Bacillaceae

The regreening of nitrogen-deficient Chlorella fusca II. Structural changes during synchronous regreening.

Chlorella fusca, strain 211-15, cells degreened in a nitrogen-deficient mineral growth medium in the light for 4-6 weeks were regreened for up to 24 hrs in a nitrogen rich medium that leads to synchronous cell division at 24-26 hrs. Structural changes in the plastid membranes during the regreening period were observed by thin section and freeze-fracture electron microscopy. Nitrogen-deficient plastids were found to have non-appressed lamellae, prolamellar body-like membrane aggregations, and only 2 types of freeze-fracture face. At this time no photosynthetic oxygen evolution could be demonstrated. After 6 hrs regreening the plastid lamellae had fused to form bands of appressed lamellae and the four types of freeze-fracture face, described previously, were visible. At this time photosynthetic oxygen evolution could be demonstrated. After 24 hrs regreening the plastids had an appearance typical of normally grown Chlorella and had commenced to divide. Supporting evidence for these developmental stages is presented from isolated chloroplast particle fractions. An unusual type of cell wall proliferation was observed in the nitrogen-deficient Chlorella cells that resulted in the laying down of several walls, each with a trilaminar component.

Cell Division