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Interaction between Bdellovibrio bacteriovorus and the cytoplasmic membrane of Escherichia coli B.

Adsorption of Bdellovibrio bacteriovours (Bdv) on the surface of Escherichia coli is accompanied by a sharp decrease in the initial rate of entry of alpha-methylglucoside-C-14 and thiomethlgalactopyranoside-C-14 into the host cell. Interaction between the parasite and E. coli leads to the rapid departure of previously accumulated labeled glucosides and beta-galactosides from the bacteria. Meanwhile the ATPcontent in E. coli falls sharply. Adsorption Bdv E.coli spheroplasts was established as a fact. The possible mechanisms of interaction between Bvd and the host cell at the cytoplasmic membrane level are discussed.

Adenosine Triphosphate

The absorption of protons with alpha-methyl glucoside and alpha-thioethyl glucoside by the yeast N.C.Y.C. 240. Evidence against the phosphorylation hypothesis.

1. When yeast N.C.Y.C. 240 was grown with maltose in a complex medium based on yeast extract and peptone, washed cell preparations fermented alpha-methyl glucoside much more slowly than maltose. 2. The yeast absorbed alpha-methyl[14C]glucoside from a 10mM solution in the presence of antimycin and iodoacetamide, producing [14C]glucose, which accumulated outside the cells. The yeast itself contained hexose phosphates, trehalose, alpha-methyl glucoside and other products labelled with 14C, but no alpha-methyl glucoside phosphate. 3. About 1 equiv. of protons was absorbed with each equivalent of alpha-methylglucoside, and 1 equiv. of K+ ions left the yeast. 4. alpha-Thioethyl glucoside was also absorbed along with protons. Studies by g.l.c. showed that the yeast concentrated the compound without metabolizing it. 5. The presence of trehalose, sucrose, maltose, L-sorbose, glucose or alpha-phenyl glucoside in each case immediately stimulated proton uptake, whereas fructose, 3-O-methylglucose and 2-deoxyglucose failed to do so. 6. The observations support the conclusion that alpha-thioethyl glucoside, alpha-methyl glucoside and maltose are substrates of one or more proton symports, whereas they seem inconsistent with the notion that the absorption of alpha-methyl glucoside involves the phosphorylation of the carbohydrate [Van Stevenick (1970) Biochim. Biophys. Acta 203, 376-384].

Carbohydrate Metabolism

Grouping antigens of four Lactobacillus species and their characteristics.

Antigenic analyses of Lactobacillus bulgaricus, Lactobacillus lactis, Lactobacillus brevis and Lactobacillus buchneri were carried out by double immunodiffusion in agar. Antigens were extracted from whole cells and cell wall preparations with cold trichloroacetic acid. Most strains of the four species possessed antigen 9 in their cell walls. Another antigen, antigen 10, was found in the cell walls of all the strains of L. brevis and L. buchneri, and in some strains of L. lactis, but not in L. bulgaricus. Fractionation of the antigens was attempted using the cell wall extracts of L. lactis L-10 with only antigen 9 and of L. brevis X-1 with both antigens 9 and 10. The partially purified fractions of antigen 9 and of the complex of antigens 9 and 10 were obtained by zone electrophoresis. However, antigen 10 from the complex could not be separated by the same method or gel filtration on Sephadex G-100 since the two antigens 9 and 10 of the complex always behaved together. The fraction of antigen 9 consisted almost entirely of glycerol and glucose as sugar components, the molar ratio being 2: 1. The complex of antigens 9 and 10 also consisted of the same sugars, and the molar ratio of glycerol: glucose was 4: 1. Inhibition tests indicated that the immunodominant component of antigen 9 was a-methylglucoside (glucose), and most probably the determinant is a glycosylated glycerol teichoic acid. It was considered that the determinant of antigen 10 is a glycerol teichoic acid although glucosamine and galactosamine inhibited effectively the reaction between antigen 10 and its antibody.

Antigens, Bacterial

Regulation of staphylococcal enterotoxin B.

The effect of glucose and the glucose analogues 2-deoxyglucose and alpha-methyl-glucoside on the synthesis and regulation of staphylococcal enterotoxin B was examined. The attenuating effect of glucose on staphylococcal enterotoxin B synthesis was observed. However, when this effect was examined with analogues of glucose, contradictory responses were seen. alpha-Methylglucoside had a slight stimulatory effect on enterotoxin production and other extracellular proteins, whereas 2-deoxyglucose markedly inhibited enterotoxin production. beta-hemolysin and staphylococcal nuclease were also inhibited by 2-deoxy glucose but the synthesis of nuclease could be rescued by the addition of glucose to 2-deoxyglucose-containing cultures. Enterotoxin and beta-hemolysin synthesis were not subject to glucose rescue. The cells used in this study were permeable to cyclic 3',5'-adenosine monophosphate, but the addition of this compound did not reverse glucose repression or 2-deoxyglucose inhibition of enterotoxin B synthesis. We conclude from these data that the regulation of enterotoxin is not under catabolite control as previously reported.

Cyclic AMP

Simple downshift and resulting lack of correlation between ppGpp pool size and ribonucleic acid accumulation.

The growth rate of Escherichia coli can be limited by the availability of carbon and energy. To impose such a limitation, alpha-methylglucoside (alpha MG), a non-metabolizable analogue, can be used to decrease uptake of glucose by competition for the transport of this sugar. Varying the ratio of glucose to alphaMG allowed shifts in growth rate without simultaneous qualitative changes in the growth medium and permitted examination of the immediate changes accompanying such shifts. Stringent (rel+) as well as relaxed (rel minus) strains were able to rapidly curtail their accumulation of ribonculeic acid (RNA) after a downshift imposed by decreasing glucose transport into the cell. Guanosine 5'-diphosphate 3'-diphosphate (ppGpp) accumulated in both rel+ and rel minus strains after a degrease in growth rate. However, the accumulation of ppGpp in relaxed derivatives was very slow, and there was no direct or obligatory correlation between the level of ppGpp and the rate of RNA accumulation. This latter conclusion is supported by measurements of ppGpp levels and rates of RNA accumulation after restoration of maximal growth rates by addition of excess glucose.

Adenosine Triphosphate

Control of ribosome synthesis in Escherichia coli: analysis of an energy source shift-down.

The rate of ribosome synthesis and accumulation in Escherichia coli during the transition after an energy source shift-down was analyzed. The shift was imposed on cultures of stringent and relaxed strains growing in glucose minimal medium by the addition of the glucose analogue alpha-methylglucoside. In the stringent strain, ribosome synthesis was almost instantaneously reduced after the shift, whereas the relaxed strain exhibited a more gradual response. The rate of messenger ribonucleic acid (mRNA) synthesis was affected similarly, though to a smaller extent. A comparison of the rates of synthesis and accumulation of ribosomal RNA (rRNA) and ribosomal proteins showed that far more ribosomal components were synthesized after the shift than were accumulated, indicating that a substantial part of the rRNA made after the shift was unstable. A new method was used to measure relative rates of rRNA synthesis and to estimate the transcription time for the rRNA operon under different conditions. In steady states of growth with growth rates ranging from 0.75 to 2.3 doublings/h, as well as during the transition after a shift-down, the transcription time of the rRNA operon was constant. The rate of synthesis of rRNA correlated during this transition - in contrast to the rate of accumulation (M. T. Hansen et al., J. Bacteriol. 122: 585-591, 1975) - with the ppGpp pool in the same way as has been observed during partial amino acid starvation.

Bacterial Proteins

Amino acid and sugar transport in Escherichia coli (ColIb) during abortive infection by bacteriophage T5.

T5 bacteriophage cannot replicate in Escherichia coli containing the colicinogenic factor ColIb. We show that active transport of proline and glutamine begins to decline at about 10 min after infection, the same time at which macromolecular synthesis stops during abortive infection. Uptake of alpha-methylglucoside is stimulated, however, and this change is evident even by 5 min after infection. These changes in membrane function do not occur during infections that are productive because of mutations on the plasmid or phage. The results suggest that the abortive infection is caused by membrane depolarization.

Amino Acids

The electrochemical proton gradient and phenylalanine transport in Escherichia coli irradiated with near-ultraviolet light.

Irradiation of Escherichia coli with near-ultraviolet (near-UV) light diminished the electrochemical proton gradient and the accumulation of L-phenylalanine. Inhibitors known to collapse the proton gradient and the comparison of two techniques measuring the electrical potential substantiated the estimates made. At several fluences (doses), a linear relationship was observed between the phenylalanine gradient and the combined electrical and chemical potentials (the electrochemical proton gradient), suggesting a close coupling between them. However, additional effects of near-UV light on the phenylalanine permease were not discounted. The combined potentials provided sufficient energy for the observed accumulation of phenylalanine, assuming a proton to amino acid cotransport ratio of 1. An increase in membrane permeability did not contribute to the loss of phenylalanine transport, as shown by an increase in the rate and extent of alpha-methylglucoside uptake.

Amino Acids

The effect of proflavine on pyruvate kinase I of Escherichia coli B.

Proflavine (PF) inhibited glucose use in sensitive but not resistant Escherichia coli B. Glucose transport (as measured by alpha-methylglucoside accumulation) was only partly inhibited by PF concentration that completely blocked glucose use. Fructose 1,6-diphosphate-(FDP)-regulated pyruvate kinase (PK1) (EC 2.7.1.40), the only glycolytic enzyme affected by PF, was completely inhibited by a dye concentration of 0.8 mM. The inhibition curve for PF was sigmoidal, suggesting that PF was acting as an allosteric inhibitor. PF increased the K 1/2 for phosphoenolpyruvate (PEP) and lowered the V; however, it had no effect on the Hill number for PEP. PF inhibition was partially reversed by FDP but not by cyclic AMP, AMP, ATP, fuctose 6-phosphate, or dithiothreitol. Studies with a variety of acridines indicated that those substituted at the 3-position are the most effective inhibitors and also that hydrophobic interactions may be involved in PF inhibition of PK I. PK I for E. coli B/Pr was also strongly inhibited by PF, indicating that PF resistance does not lie at the level of this enzyme. Ribose-5-phosphate-regulated pyruvate kinase (EC 2.7.1.40) was much less sensitive that PK I to the inhibitory effects of PF. A role for PF as a molecular probe for PK I has been proposed.

Acridines

[Catabolyte inhibition of lactate transport in Escherichia coli].

E. coli cells growing on the medium containing glucose and lactate do not utilize lactate. One reason of preferential utilization of glucose is catabolite inhibition of lactate transport. It is necessary for glucose to penetrate into the cell to inhibit lactate transport. Besides glucose the inhibition of the lactate transport is also caused by fructose and by non-metabolized analogue of glucose--alpha-methylglucoside.

Biological Transport

Concanavalin A binding to membranes of the Golgi apparatus and resultant modification of galactosyltransferase activity.

125I-Concanavalin A was found to bind to purified Golgi membranes in a manner which was time-dependent, proportional to the amount of Golgi protein, saturable, and inhibited by alpha-methyl-D-glucoside and unlabeled concanavalin A. Approximately 2 nmol of 125I-concanavalin A were bound per mg of membrane protein with a mean Ka of 0.2 x 10(7) M-1. After binding of concanavalin A to the membranes, all unbound lectin was removed by repeated washing prior to assay of galactosyltransferase activity to assure that bulk concanavalin A would not bind to the sugar acceptor during the enzyme assay. Therefore, the effects of the lectin were not due to altered acceptor concentrations in the assay. As a result of concanavalin A binding the activity of the galactosyltransferase of these membranes was enhanced by 70 to 100%. The enhancement was abolished by treatment of the concanavalin A-bound Golgi with alpha-methylglucoside. Kinetically this stimulation was reflected as an altered Km for N-acetylglucosamine and UDP-galactose. The data are suggestive that the stimulation of the enzyme results indirectly from perturbation of the membranes on binding of the lectin.

Animals

Genetic control of maltase synthesis in yeast. IV. Function of the MAL4 gene: extragenic suppression of a maltase negative mutant.

A new series of maltase negative mutants have been isolated from yeast strains carrying the MAL4 gene. These mutants are allelic to the MAL4 gene and fail to ferment maltose, sucrose, and alpha-methylglucoside. Most revertants isolated from these mutants restore the ability to ferment above sugars, and also produce the same levels of maltase as the parental strains. One of the revertants (NA-520-R1), however, ferments maltose slowly, and produces 24 fold less enzyme than the parental strain. Genetic studies revealed that revertant (NA-520-R1), is not a true back mutation but is carrying an extra-genic suppressor, which suppresses the mal4 allele in mutant (NA-520). Since several lines of published evidence indicate that the MAL4 gene is a regulatory gene, it is suggested that the MAL4 gene codes for a regulatory protein, which acts as a positive regulatory element in maltase synthesis.

Alleles

Partial purification and characterization of alpha-glucosidase from Pseudomonas fluorescens W.

The alpha-glucosidase (alpha-D-glucoside glucohydrolase, EC 3.2.1.20) of Pseudomonas fluorescens W was partially purified by (NH4)2SO4 fractionation, Sephadex G-200 and DEAE-cellulose column chromatography. The enzyme showed great specificity for maltose hydrolysis, with very little action against polymeric forms. Sucrose, isomaltose, alpha-methylglucoside, and maltobionic acid were not hydrolyzed. Turanose was a strong competitive inhibitor, and glucose a weaker one. Tris (2-amino-2-hydroxymethylpropan-1:3-diol) inhibited enzyme activity significantly only at alkaline pH. Mercuric, cupric, and silver cations strongly inhibited, and EDTA (ethylenediaminetetraacetate) weakly inhibited the enzyme. The isolated enzyme was rather unstable even at 4 degrees C, and was destroyed by freezing and lyophilization. Inositol and albumin had a slightly protective effect. Sulfhydryl-binding reagents strongly inhibited the enzyme.

Drug Stability

Effect of sodium chloride on the respiratory function of Staphylococcus aureus.

Sodium chloride at concentrations below 0.5 M, enhanced the respiratory activity (O2-consumption) of Staphylococcus aureus under endogenous and sugar-supported conditions, but did not overcome the inhibitory action of sodium azide. Several sugars, including the glucose analogue alpha-methylglucoside, and their metabolites enhanced bacterial O2-consumption, but acetylmethylcarbinol was ineffective.

Azides

Presence of a human chorionic gonadotropin--like substance in human sperm.

An hCG-like material has been extracted from human sperm. These experiments were designed to characterize this material. Sperms of 10 volunteers were separated from seminal fluid, washed in PBS three times, and resuspended in 0.5 ml of the same buffer. Samples were pooled; cells were disrupted by sonication and extracted in alkaline buffer by constant agitation at 4 degrees C. The extract was ultracentrifuged at 4 degrees C. Supernate was lyophilized and reconstituted in 2 cc of distilled water. This material presented a dose-response curve parallel to those of IS2-hCG and CR119 in beta hCG RIA. When chromatographed in a Sephadex G-150 column the extract eluted within the hCG range and immunoreacted in the specific beta hCG RIA. When absorbed onto a concanavalin A--Sepharose column, all recovered immunoreactive material eluted after exposure to alpha-D-methylglucoside, indicating that it is a glycoprotein. The extract stimulated progesterone and testosterone secretion in porcine granulosa cells and decapsulated rat testis, respectively, indicating its biologic potency.

Adenylyl Cyclases

Interactions of lectins with (Na+ + K+)-ATPase of eel electric organ.

Interaction of lectins with a detergent-solubilized ATPase from eel electric organ was studied. Concanavalin A, which binds to alpha-mannosides, altered the rate of enzyme migration in agar and inhibited the formation of an antigen-antibody precipitate: other lectins had no such effects. Concanavalin A similar amounts partially inhibited (Na+ + K+)-ATPase; this inhibition was reversible by alpha-methylglucoside. There was no corresponding effect of concanavalin A on the potassium p-nitrophenylphosphatase. Concanavalin A also did not interfere with ouabain binding. Thus, concanavalin A binds to an antigenic region also involved in Na+ and/or ATP binding, but does not interact with a K+ site.

4-Nitrophenylphosphatase

Separation of human renin substrate from renin and a major contaminating albumin using a concanavalin A-sepharose column.

Human plasma renin substrate was purified and separated from renin by a concanavalin A-Sepharose affinity column. Human renin substrate as well as renin were bound to concanavalin A. Renin substrate was eluted with 0.1 M D-glucose in 20 mM Tris/HCl buffer, pH 8.0. The specific activity increased from 38.5 to 653 ng of angiotensin-I equivalents per mg of protein (17-fold) and the recovery was 85%. Renin was eluted completely with 0.2 M alpha-D-methylglucoside and 0.2 M alpha-D-methylmannoside.

Angiotensin II

Binding of human serum ferritin to concanavalin A.

1. A high proportion of the ferritin in normal serum binds to concanavalin A. Binding is prevented by the addition of alpha-D-methylglucoside to the reaction mixture. 2. Ferritin in extracts of normal heart, liver and spleen or serum ferritin from patients with massive hepatic necrosis does not bind to concanavalin A. 3. Isoelectric focusing of preparations of serum ferritin from patients with primary haemochromatosis shows that the ferritin fraction binding to concanavalin A consists, predominantly, of the more acidic isoferritins. 4. These findings suggest that carbohydrate residues may be added to ferritin during its secretion into the plasma. Glycosylation may account for the heterogeneity of serum ferritin on isoelectric focusing. 5. Direct release of intracellular ferritin from damaged tissue may be indicated by an increase in the proportion of circulating ferritin which does not bind to concanavalin A. Such an increase has been found in sera from patients with iron overload.

Concanavalin A