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Biomedical subjects

H Braun

Publications and source records attributed to H Braun.

At least 109 records · Page 6Linked to original sources

Carboxyl groups at the two active centers of sucrase-isomaltase from rabbit small intestine.

1. Seveal selective reagents were employed to identify the amino acid residues essential for the catalytic activity of sucrase-isomaltase. 2. Modification of histidine, lysine and carboxyl residues resulted in a partial inactivation of the enzyme. Substrates or competitive inhibitors provided protection against inactivation only in the reaction of carboxyl groups with carbodiimide (+lycine ethyl ester) or with diazoacetic ethyl ester. This indicated the occurrence of carboxyl groups at the two active centers of the enzyme complex. 3. Protection against inactivation of the enzyme by carbodiimide was provided also by the presence of alkali and alkaline earth metal ions, which are non-essential activators of sucrase-isomaltase. The presence of Na+ and Ba2+ protected approximately one carboxyl group per active center from reacting with carbodiimide plus glycine ethyl ester. 4. The carbodiimide-reactive groups were not identical with the two carboxylate groups recently found to react with conduritol-B-epoxide, an active-site-directed inhibitor of sucrase-isomaltase (Quaroni, A. and Semenza, G., 1976, J. Biol. Chem 251,3250--3253). A possible role for the carbodiimide-reactive carboxyl groups at the active centers of sucrase-isomaltase is discussed.

Animals↗

External yeast beta-fructosidase. Affinity labeling of the active site.

Conduritol-B-epoxide, a compound structurally related to the substrates of external yeast beta-fructosidase (beta-D-fructofuranoside fructohydrolase, EC 3.2.1.26), is an active-site directed inhibitor of this enzyme. The inactivation is irreversible and first-order with respect to time and inhibitor concentration. From the kinetic data obtained, it is concluded that one molecule of inhibitor reacts with one molecule of the enzyme causing inactivation. The inactivation is prevented by the presence of substrates. The pH-dependence of inactivation shows two dissociating groups in the enzyme with pKa values 3.05 and 6.8 being involved in the inactivation process. A carboxylate at the active site with pKa 3.05 is suggested to be the reactive group with conduritol-B-epoxide.

Affinity Labels↗

[Urographic effects of different states of diuresis (author's transl)].

In 35 patients with normal renal function antidiuretic hormone (DDAVP) effected a significant contraction of renal pelvis and calices, while in 10 other cases an enlargement of the roentgenological size of the kidneys was caused by the administration of the diuretic furosemide (Lasix). These results suggest a dependence of urographic findings from the state of diuresis.

Diagnostic Errors↗

[Septate gallbladder (author's transl)].

In 3,8% of 2,437 in-side patients, examined by x-rays, septs of the gallbladder, supposed to be congenital form variations, were found. There were no differences in sex distribution of the segmented organs and no recognizable correlation to increasing age. Usually, septations were found by accident without clinical relevance. In the proximal parts of the gallbladder located septs occasionally cause symptoms not to be differentiated from those of cholelithiasis. In these cases ectomize is indicated. Calculi are found to be more frequent in septate gallbladders than in unsegmented ones. Sex differences between concrement-bearing, septate gallbladders and unsegmented organs containing stones, were not observed. Likewise, there was no correlation of gallbladder-septs to other diseases, particularly to hepatitis.

Adult↗

Dissociation of small-intestinal sucrase - isomaltase complex into enzymatically active subunits.

1. The sucrase - isomaltase complex from rabbit small intestine dissociated into its subunits upon reaction with citraconic anhydride. They can recombine after deacylation under mild acidic conditions. 2. When citraconylated, the subunits could be separated and isolated in a catalytically active form. 3. The previously reported procedure for separation of the subunits by alkaline treatment at pH 9.6 is apparently not due to contaminating degradative enzymes (possibly still present at undetectable levels in the isolated sucrase - isomaltase complex) but to the action of alkali.

Animals↗