Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: EC:3.1.6.12 (chondroitinase)
2,183 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Serum vitamin A (retinol) levels were generally low in all malnourished children (6-15 microgram/100 ml) compared with control children (50 microgram/100 ml). A significant increase in vitamin A after appropriate therapy was observed in all malnourished groups. Dietary supplements of proteins and calories even without extra vitamin A supplements increased serum vitamin A levels in cases of kwashiorkor indicating active mobilization of liver vitamin A. Total urinary arylsulfatase A activity excreted in 24-h or within 8-h in the morning (6 a.m. to 2 p.m.) was significantly reduced in cases of malnutrition with or without mild vitamin A deficiency symptoms. The excretion of arylsulfatase B was not altered. In cases of severe vitamin A deficiency coupled with malnutrition increased excretion of both arylsulfatases A and B was evident. These results on urinary arylsulfatases excretory pattern have been obtained either in samples collected for 24-h or specifically for 8-h (morning) and it is suggested that this test on urinary arylsulfatases may prove useful for detection of acute vitamin A deficiency with malnutrition in field studies. A ratio of arylsulfatases A/B of 2.0 or less seems to indicate mild malnutrition, the normal ratio being 3.4. Furthermore a low ratio coupled with increased excretion of both arylsulfatases A and B may be considered specific for acute vitamin A deficiency.
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PMID:Urinary excretion of arylsulfatases in malnourished/vitamin A deficient children. 3 22

Proteoglycan synthesis by sternal chondrocytes was studied in the presence of excess vitamin A (10 i.u./ml). Proteoglycans synthesized by the treated cells were smaller, and had larger amounts of chondroitinase ABC-resistant materials than control cells. Vitamin A-pretreated cells, when provided with normal feeding medium, failed to revert back to normal morphology and synthetic processes. Chondrocyte cultures prelabelled with [35S]-sulphate, when maintained in the presence of excess of vitamin A, showed: (1) increased release of labelled proteoglycans into the medium, and (2) increased (19%) degradation of the proteoglycans. The proteoglycans synthesized by the vitamin A-treated chondrocytes are also incapable of binding with exogenous large molecular weight hyaluronic acid. Thus, high levels of vitamin A modulate the differentiation of chondrocytes by altering cellular synthetic processes.
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PMID:Proteoglycan synthesis by sternal chondrocytes perturbed with vitamin A. 731 Feb 88