Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: EC:3.2.1.36 (hyaluronidase)
4,606 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Some hitherto undetected differences in chemical and macromolecular structure between both dermatan sulphates and heparan sulphates excreted in the Hurler and Hunter syndromes are demonstrated. 1. Of Hunter dermatan sulphate, 37-43% is resistant to periodate oxidation, as opposed to 25% of the corresponding Hurler material. It is likely that the resistance is conferred by the presence of sulphate groups on carbon atoms 2 or 3 of the iduronate residues, correlating with the recently established deficiency of a sulphoiduronate sulphatase in Hunter fibroblasts. 2. Two distinct electrophoretic species of dermatan sulphate are found in Hunter urine, but only one in Hurler preparations. 3. Ion-exchange chromatography and gel filtration reveal that Hurler dermatan sulphate is more heterogeneous with respect to molecular weight distribution than the other. The dermatan sulphates were degraded by hyaluronidase to a limited extent. 4. Hurler heparan sulphate contains a higher proportion of sulphoamino-glucose than material from Hunter urine. Similar high levels in Sanfilippo patients, representing 65-78% of the total glucosamine suggest a direct correlation with mental deficiency.
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PMID:Comparative structural studies of urinary glycosaminoglycans in the Hurler and Hunter syndromes. 12 16

Bovine testicular hyaluronidase (endo-beta-N-acetyl hexosaminidase) has a significant corrective effect on cultured Hurler fibroblasts. Nonspecificity of this effect is indicated by its equally strong corrective effect on Hunter fibroblasts. Although all specimens of hyaluronidase also possessed iduronidase activity, a separate corrective effect could be attributed to the endo-N-acetyl hexosaminidase activity of at least one hyaluronidase (Wyeth M-151) for four reasons: (i) its very low content of iduronidase activity; (ii) a decrease in intracellular macromolecular mucopolysaccharides (believed to be largely dermatan sulfate) with a corresponding increase in intracellular and extracellular oligosaccharides; (iii) no measurable increase in iduronidase activity of hyaluronidase-treated cells despite near maximal correction; (iv) direct correlation between Hurler cell correction and hyaluronidase activity when enzymes of different strength were used at less than maximal correction.
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PMID:In vitro correction of Hurler fibroblasts with bovine testicular hyaluronidase. 13 20