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Biomedical subjects

P Gacesa

Publications and source records attributed to P Gacesa.

49 records · Page 3Linked to original sources

The purification and some properties of pig liver hyaluronidase.

Hyaluronidase (hyaluronate 4-glycanohydrolase, EC 3.2.1.35) has been isolated from pig liver and purified 1720-fold with an overall yield of 9.5%. The enzyme was purified using an acid-extraction technique followed by successive chromatography on DEAE-cellulose, two boronate affinity columns and Sephadex G-75. This final preparation, which was essentially homogeneous as determined by gel electrophoresis, was a single subunit enzyme of apparent molecular weight 70 000 with an isoelectric point of 5.0. No contaminant enzymes capable of degrading glycosaminoglycans could be detected in the final preparation. The substrate specificity of the enzyme was the same as for bovine testicular hyaluronidase; however, both the Km and V values were significantly lower for the pig liver enzyme with all of the substrates tested (hyaluronate, chondroitin 4-sulphate, chondroitin 6-sulphate). A full kinetic analysis of the enzyme using hyaluronate as a substrate showed that the activity of pig liver hyaluronidase was uncompetitively activated by either protons or NaCl.

Animals↗

Preferential uptake of intravenously administered hyaluronidase (Hyalosidase) by damaged rat myocardium.

The induction of myocardial infarction in rats by ligation of the left-anterior coronary artery was confirmed by measurement of increased plasma levels of creatine kinase, aspartate aminotransferase and lactate dehydrogenase. Using this model system it has been established that intravenous administration of 125I-labelled hyaluronidase to rats resulted in a preferential uptake of the enzyme by damaged myocardium as compared to normal heart tissue.

Animals↗

The purification and chemical characterisation of the alginate present in extracellular material produced by mucoid strains of Pseudomonas aeruginosa.

A rapid ion-exchange method has been used to purify the alginate from the extracellular material of mucoid strains of Pseudomonas aeruginosa isolated from the lungs of cystic fibrosis patients. The structure has been investigated by chemical analysis, infrared spectroscopy, paper chromatography, and gas-liquid chromatography. The alginates contain mainly random or poly(D-mannuronic acid) block structures, and are highly acetylated. The relative viscosity is not correlated with the ratio of D-mannuronic acid to L-guluronic acid residues, or the degree of acetylation. The chemical/physical properties of the alginate from P. aeruginosa are considered in the context of the growth of the organism in the lung.

Alginates↗

Modification of functional arginine residues in purified bovine testicular hyaluronidase with butane-2, 3-dione.

Purified bovine testicular hyaluronidase (hyaluronate 4-glycanohydrolase, EC 3.2.1.35) was inactivated by butane-2,3-dione in either borate or Hepes buffer, pH 8.3. The presence of borate enhanced the inactivation process which followed pseudo-first-order kinetics with a calculated second-order rate constant of 13.54M-1 min-1. Using kinetic data it was estimated that the modification of 1 mol arginine per mol enzyme was sufficient for inactivation to occur, whereas amino acid analysis indicated that 4 mol arginine had been modified. The inactivation process was partially prevented by using either competitive inhibitors or substrates of the enzyme, thus indicating that the essential arginine residue is close to the active site of hyaluronidase. A full kinetic analysis of the enzyme with either hyaluronic acid or chondroitin 6-sulphate as substrate showed that the activity of hyaluronidase was uncompetitively activated by either protons or NaCl. The product obtained by reduction of the corboxyl groups of hyaluronic acid to the corresponding alcohol groups was a competitive inhibitor. The possibility that the microenvironment of hyaluronic acid was responsible for the observed kinetic effects of pH and ionic strength was dispelled. It is concluded that these data are compatible with a mechanism that involves anionic interaction between a carboxyl group on the substrate and an arginine residue on the enzyme.

Animals↗

The preparation of stable enzyme-coenzyme complexes with endogenous catalytic activity.

N6-(6-Aminohexylcarbamoylmethyl)-NAD+ was coupled to lactate dehydrogenase by using glutaraldehyde to form an active complex. The stability of this complex could be considerably improved by reduction with KBH4, although this treatment caused a partial decrease in specific activity. NAD+ was also coupled directly to the enzyme by this method. All of these complexes exhibited an intrinsic activity in the absence of exogenous NAD+.

Borohydrides↗