Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: EC:3.5.1.12 (biotinidase)
392 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Biotinidase was purified from human breast milk (4,000-fold), and was compared with human serum biotinidase (enriched 30,000-fold). The molecular weight of milk enzyme was 68,000 Da as determined by SDS-PAGE. It was definitely smaller than that of serum biotinidase (Mr = 76,000). Isoelectric point of milk biotinidase was 4.6, whereas that of serum biotinidase was 4.3. Sialic acid content in milk biotinidase was less than that found in serum enzyme. N-Acetyl-galactosamine was present in milk enzyme, whereas it was absent in serum enzyme. Milk biotinidase is O-glycosylated, whereas serum biotinidase is N-glycosylated. These differences in glycosylation suggest the existence of different types of excretion mechanisms between milk and serum biotinidase. Both biotinidases were found to be thiol-type enzyme, however, the extent of activation of the enzyme by 2-mercaptoethanol was 13-fold in milk, whilst the serum enzyme was activated only 1.5-fold. Km for biotinyl-4-amino-benzoate was 22 microM in milk enzyme and 50 microM in serum enzyme. Competitive inhibition by biotin (Ki) of milk enzyme was 43 microM and 1.3 mM for serum enzyme. These results suggest the structural differences at or near the active site of the each enzyme.
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PMID:Comparative study on human milk and serum biotinidase. 251 77

Purified biotinidase (enriched 24,000-fold) from fresh human plasma exhibited reduced catalytic activity when incubated with heat-inactivated dialyzed plasma. The polypeptide fractions separated from the heat-inactivated dialyzed plasma using streptavidin-Sepharose resin showed the same effect on purified biotinidase. These inhibitory effects on biotinidase were partial (25-45%) rather than complete. The polypeptide fraction from streptavidin-Sepharose resin was analyzed by SDS-PAGE in the Laemmli system and by various types of HPLC. Analyses by ion-exchange and reversed-phase HPLC revealed the existence of three relatively small mol. wt polypeptides. Each of these peak fractions exhibited similar inhibitory effects on biotinidase activity. SDS-PAGE analysis indicated that the streptavidin affinity resin fraction was composed of four major polypeptides whose mol. wts were 120,000, 76,000, 53,000 and 27,000. The two bands of 120,000 and 76,000 corresponded to the mol. wts of the biotinyl subunit of pyruvate carboxylase, beta-methyl-crotonyl-CoA and/or propionyl-CoA carboxylase respectively. However, the polypeptides of mol. wts 53,000 and 27,000 were found to be two unique biotinyl-peptides present in human plasma. These bands on the gels were transblotted and exhibited a fluorescent activity after incubated with a FITC-avidin. These findings strongly suggest the existence of circulating plasma biotinyl-polypeptides as inhibitory factor(s) on human plasma biotinidase.
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PMID:Effect of plasma biotinyl-peptides on biotinidase activity. 325 55

Biotinidase purification from human serum was performed under new protocol. With HPLC biotinidase assay instead of colorimetric method and using non-ionic surfactant, 110-kDa biotinidase was discovered and co-purified in addition to the previously identified 76-kDa biotinidase. This newly identified enzyme accounted for 5% of the total biotinidase activity. Protein core of 110 kDa was estimated as 72 kDa by use of N-glycanase and SDS-PAGE analysis, while that of the 76-kDa enzyme was estimated as 59 kDa. Total amino acid analysis indicated 30% higher absolute amounts of amino acids in 110-kDa enzyme. The following differences were observed from kinetic study: the 110-kDa enzyme showed a 10-fold lower Km value and a 9-fold higher kcat/Km value for biocytin than those of 76-kDa enzyme. Thus, 110-kDa enzyme is more likely to be the physiological biocytin hydrolase (biocytinase), since the biocytin concentration in human serum is extremely low. The pathogenesis of an inborn error of the metabolism such as a variant form of biotinidase deficiency, which presented an atypical clinical course, might be related to these isoenzymes in terms of their different roles in the body.
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PMID:Biocytin-specific 110-kDa biotinidase from human serum. 851 69