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Biomedical subjects

J Hase

Publications and source records attributed to J Hase.

At least 37 records · Page 2Linked to original sources

Urease-producing species of intestinal anaerobes and their activities.

Urease activities of anaerobic bacteria that constituted predominant gut flora were examined. It was demonstrated that some strains of Eubacterium aerofaciens, E. lentum, and Peptostreptococcus products produced urease. They were the most numerous species in human feces. All strains of Bifidobacterium infantis and some strains of Bacteroides multiacidus, B. bifidum, Clostridium symbiosum, Fusobacterium necrophorum, F. varium, Lactobacillus fermentum, Peptococcus asaccharolyticus, and P. prevotii produced urease. The optimum pH of the Lactobacillus urease was found to be 4.0, whereas the pH value of B. multiacidus urease was 8.0.

Anaerobiosis↗

Clostridium perfringens exotoxins. VI. Reactivity of perfringolysin O with thiol and disulfide compounds.

The reactivity of perfringolysin O with thiol and disulfide compounds was studied. The activation potency of thiols was roughly proportional to the reaction rate constants of 5,5'-dithiobis-(2-nitrobenzoic acid) with thiols, which should be inversely proportional to their oxidation-reduction potentials. 1,2-Dimercaptoethane, which had the highest rate constant, most potently activated the toxin among the thiols tested and 4,4'-dipyridyl disulfide, which is known to be one of the most potent thiol-disulfide exchanging reagents, strongly inhibited toxin activity. Toxin activity was also inhibited by other thiol inhibitors.

Clostridium perfringens↗

A new hydrolase specific for taurine-conjugates of bile acids.

Through the investigation of the bile acid-deconjugation activities of human intestinal anaerobes, a new enzyme was discovered in Peptostreptococcus intermedius which hydrolyzed specifically the taurine-conjugates, but not the glycine-conjugates of bile acids. However, the enzymes in Streptococcus faecalis and Lactobacillus brevis hydrolyzed chiefly the glycine-conjugates.

Bile Acids and Salts↗

Clostridium perfringens exotoxins. IV. Inhibition of the theta-toxin induced hemolysis by steroids and related compounds.

1. The inhibitory powers of thirty two samples of steroids and their related compounds on the theta-toxin induced hemolysis were assayed. Apparent I50 value of cholesterol, the most potent inhibitor amoung them, was 0.022 muM. 2. Inhibitory powers of sterol acetates were not more than one tenth of those of the corresponding sterol, and steroids without 3-hydroxyl group hardly inhibited the hemolysis. These results suggest that 3-hydroxyl group of sterols plays an important role in the inhibition. 3. The inhibitory power of sterols were strongly affected by steric situation of 3-hydroxyl group for the face of their tetracyclic rings. From these results it is suggested that theta-toxin binds to beta-side of the tetracyclic rings but not to alpha-side. 4. A methylsterol and pentacyclic triterpens with 3-hydroxyl group also inhibited the hemolysis, but steroids and their related compounds either with a hydrophylic or without a hydrophobic group at their ring D had little, if any, inhibitory power.

Chemical Phenomena↗

Inhibition of urease activity by hydroxamic acid derivatives of amino acids.

Hydroxamic acids have been reported to be potent and specific inhibitors of urease (EC 3.5.1.5) activity of plant and bacterial origin. The present investigation was performed on the inhibitory effect of hydroxamic acid derivatives of naturally occurring amino acids on the urease activity of the Jack Bean and the alimentary tracts of rats. Methionine-hydroxamic acid was the most powerful inhibitor (I50=3.9 X 10(-6) M) among nineteen alpha-aminoacyl hydroxamic acids. Phenylalanine-, serine-, alanine-, glycine-, histidine-, threonine-, leucine-, and arginine-hydroxamic acids followed, in order of decreasing inhibitory power. The inhibition proceeded with time at a comparable rate to fatty acyl hydroxamic acid inhibition. The I50 values of alpha-aminoacyl hydroxamic acids were found to be almost equal to those of the corresponding fatty acyl hydroxamic acids. This fact shows that the alpha-amino group did not affect inhibitory power. However, aspartic-beta-, lysine-, and glutamic-gamma-hydroxamic acids, in descending order, were much less inhibitory, probably due to the presence of a carboxyl or omega-amino group. Furthermore, the pH optimum of the inhibition shifted to lower pH in the presence of a carboxyl group, and to a higher pH in e presence of an amino group. The results suggest that the dissociation of an acidic or a basic group reduces the inhibitory power of hydroxamic acid. Hydroxamic acid inhibits urease activity with strict specificity, excpet for aspartic-beta-hydroxamic acid, which inhibited asparaginase competitively. Hydroxamic acid derivatives of amino acids inhibited not only the urease activity of the Jack Bean, but also that of the caecum and ileum parts of the rat intestine.

Amino Acids↗

Clostridium perfringens exotoxins. III. Binding of theta-toxin to erythrocyte membrane.

When Clostridium perfringens theta-toxin was incubated with sheep erythrocytes the toxin activity disappeared before lysis, the fact of which suggests fixation of the toxin to erythrocyte membranes. 2. Theta-Toxin lost its activity by binding to cell membranes, and the membrane constituted inhibitor of theta-hemolysis was neither a protein, a carbohydrate nor a phosphatide, but was cholesterol. From these results this report proposes that the theta-toxin binding site of erythrocytes should be cholesterol.

Binding Sites↗