Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: EC:3.2.1.31 (beta-glucuronidase)
7,680 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Urinary excretion of lactate dehydrogenase, hydroxybutyrate dehydrogenase, gamma-glutamyltransferase, alkaline phosphatase, arylsulphatase A, alpha-glucosidase, beta-galactosidase, trehalase, N-acetyl-beta-glucosaminidase, beta-glucuronidase, and leucinearylamidase was studies in a carefully selected group of 100 healthy subjects, 50 women and 50 men. Enzyme activities were assayed in 3-h morning samples after gel filtration of the urine. Activities were related to time volume, and to urinary creatinine concentration. Several transforming functions had to be applied to enzyme output data to obtain an approximation to gaussian frequency distribution. Men showed a significantly higher excretion of gamma-glutamyltransferase, alpha-glucosidase, trehalase, N-acetyl-beta-glucosaminidase,beta-glucuronidase, and leucine arylamidase activity than did women if enzyme activity was related to urinary time volume. Women excreted more lactate dehydrogenase, hydroxybutyrate dehydrogenase, gamma-glutamyltransferase, alkaline phosphatase, alpha-glucosidase, trehalase, and N-acetyl-beta-glucosaminidase activity than did men, if urinary creatinine was used as the basis of reference. Reference intervals were calculated as 2.5 and 97.5 percentiles for both sexes.
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PMID:Normal limits of urinary excretion of eleven enzymes. 1 92

The activity of beta-glucuronidase (beta-D-glucuronide glycuronohydrolase, EC 3.2.1.31) in placental and hydatidiform mole tissue and in sera from non-pregnant, normal and molar pregnant women was determined. The oestrogen concentrations in the two solid tissues were also assayed. Significant differences were found in the activities of the enzyme between placental and molar tissues and among the various sera. The lower activity in molar serum corresponds to a lower concentration of oestrogens in molar tissues and may be regarded as a response to the alleviation of conjugation requirements.
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PMID:beta-Glucuronidase and oestrogens in hydatidiform mole. 1 Jan 9

Cultured normal human articular cartilage chondrocytes exhibited decreasing levels of arylsulfatase A and B activities when grown in the presence of increasing levels of ascorbic acid (0 to 90 mug/ml) in the media. That this was not a general effect on all lysosomal enzymes was supported by the increase in acid phosphatase activity and no change in beta-glucuronidase activity observed with increasing levels of vitamin C under identical culture conditions. No decrease in either arylsulfatase activity was observed when ascorbic acid was replaced by ascorbate-2-sulfate. Ascorbic acid did not inhibit either arylsulfatase activity when added directly to the assay mixture. These data, combined with results of mixing experiments, suggest that the effect of vitamin C is mediated through cellular factors produced in response to its inclusion in the growth media.
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PMID:Effect of ascorbic acid on arylsulfatase A and B activities in human chondrocyte cultures. 1 Oct 78

Rabbit testis arylsulphatase A was purified 140-fold with a recovery of 20% from detergent extracts of an acetone-dried powder by using DE-52 cellulose column chromatography, gel filtration on Sephadex G-200 and preparative isoelectric focusing. The purified enzyme showed one major band with one minor contaminant on electrophoresis in a 7.5% (w/v) polyacrylamide gel at pH8.3. On sodiumdodecyl sulphate/polyacrylamidegel electrophoresis, a single major band was observed with minor contaminants. The final preparation of enzyme was free from general proteolytic, esterase, hyaluronidase, beta-glucuronidase and beta-galactosidase activities. Rabbit testicular arylsulphatase A exists as a dimer of mol.wt. 110000 at pH7.1. At pH5.0 the enzyme is a tetramer of mol.wt. 220000. Arylsulphatase A appears to consist of two identical subunits of mol.wt. 55000 each. The highly purified enzyme has pI4.6. The enzyme hydrolyses p-nitrocatechol sulphate with Km and Vmax, of 4.1 mM and 80nmol/min respectively, but has no activity toward p-nitrophenyl sulphate. The pH optimum of the enzyme varies with the incubation time. By applying Sephacex G-200 chromatography and preparative isoelectric focusing, one form of enzyme was obtained. The enzyme has properites common to arylsulphatase A of other sources with respect to the anomalous time-activity relationship, pI, inhibition by PO42-, SO32- and Ag+ ions and substrate affinity to p-nitrocatechol sulphate. However, the enzyme shows the temperature optimum of arylsulphatase B of other species.
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PMID:Purification and properties of arylsulphatase A from rabbit testis. 1 73

Inflammatory exudates were obtained from polyester sponges which had been implanted subcutaneously in rats four days previously. This material was found to be anti-inflammatory when injected into other rats in which carrageenan pleurisy had been induced. At a dose of 600 mg kg-1 exudate inhibited the formation of pleural effusion, emigration of both neutrophils and mononuclear cells and the accumulation of beta-glucuronidase and lactic dehydrogenase. The same dose of sponge exudate did not however inhibit the increased vascular permeability induced in the rat skin or rat foot following injection of 5-hydroxytryptamine, histamine, prostaglandin E1, or bradykinin. Furthermore sponge exudate did not reduce the haemolytic complement titre of rat serum either in vivo or in vitro. The possible mechanism of anti-inflammatory action of exudate is discussed.
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PMID:Some biological and pharmacological properties of inflammatory exudates. 1 58

The levels of several androgen responsive enzymes including beta-glucuronidase, alcohol dehydrogenase, D-amino acid oxidase and arginase, were compared in kidneys of normal and hypophysectomized female mice after treatment with testosterone. While hypophysectomy did not alter the basal level of glucuronidase, the androgen-mediated accumulation of kidney beta-glucuronidase was greatly decreased in hypophysectomized mice. Measurements of the rate of synthesis of glucuronidase showed that after androgen treatment the enzyme was synthesized in kidney of hypophysectomized mice at only 5% the normal rate. Glucuronidase activity in seven other organs was not appreciably affected by treatment with androgens or by hypophysectomy. Unlike the effect of hypophysectomy on kidney glucuronidase, there was no reduction in the accumulation of alcohol dehydrogenase or D-amino acid oxidase in kidney of hypophysectomized mice after androgen treatment. Hypophysectomy caused a large reduction in kidney arginase activity. However, subsequent administration of testosterone restored much of this activity. It is concluded that there are at least two mechanisms by which androgens increase enzyme activity in kidney. The normal increase in activity or rate of synthesis of beta-glucuronidase following androgen administration requires pituitary hormones and/or products of these hormones, while the increase in activity of enzymes like alcohol dehydrogenase and D-amino acid oxidase does not require pituitary hormones.
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PMID:Differential effect of hypophysectomy on the synthesis of beta-glucuronidase and other androgen-inducible enzymes in mouse kidney. 1 33

In normal mongrel dogs, outflow occlusion of 15 or 30 minutes duration was produced by clamping both the suprahepatic and suprarenal portions of the vena cava. One dog died immediately after release of occlusion; two dogs died from recurrent hypotension between six and 24 hours postoperatively. The other five dogs survived for three days, at which time an autopsy was done. During outflow occlusion, the blood pressure fell in all dogs, as did the central venous pressure. The pulse rate decreased during, and after, occlusion but toward a tendency of gradual recovery. A significant drop in pH and base excess of arterial blood was seen after occlusion. Although a steady, but not substantial, increase in hemoglobin and hematocrit values was noted, there were no remarkable changes in the blood coagulation system. Significant increases in serum glutamic-oxalacetic transaminase, glutamic-pyruvic-transaminase, lactic dehydrogenase, acid phosphatase and beta-glucuronidase activities were observed from immediately after release of occlusion, but alkaline phosphatase values increased much later than did these. Thus, hepatic outflow occlusion, even if it is short, seems to be dangerous in the dog, since it produces hypotension, metabolic acidosis and diffuse damage as well as disruption of the parenchyma of the liver.
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PMID:Enzymatic and hemodynamic changes after short term hepatic outflow occlusion in the dog. 1 3

Uridine 5'-diphosphoglucuronic acid-fortified hepatic microsomes from dogs, rats, or humans rapidly metabolized [3H]-N-hydroxy-2-naphthylamine (N-HO-2-NA) to a water-soluble product that yielded 98% of the parent N-hydroxy amine upon treatment with beta-glucuronidase. The metabolite was identified as N-(beta-1-glucosiduronyl)-N-hydroxy-2-naphthylamine from ultraviolet, infrared, and mass spectral analyses of the glucuronide and its nitrone derivative. Incubation of N-hydroxy-1-naphthylamine (N-HO-1-NA), N-hydroxy-4-aminobiphenyl (N-HO-ABP), or the N-hydroxy derivatives of 2-aminofluorene, 4-aminoazobenzene, or N-acetyl-2-aminofluorene with uridine 5'-diphosphoglucuronic acid-fortified hepatic microsomes also yielded water-soluble products. beta-Glucuronidase treatment released 80 to 90% of the [3H]-NHO-1-NA and [3H]-N-HO-ABP conjugates as tritiated ether-extractable derivatives. N-HO-1-NA, N-HO-2-NA, and N-HO-ABP and the glucuronides of these N-hydroxy arylamines were relatively stable and nonreactive near neutral pH. At pH 5, the N-glucuronide of N-HO-2-NA and the presumed N-glucuronides of N-HO-1-NA and N-HO-ABP were rapidly hydrolyzed to the N-hydroxy arylamines that were then converted to reactive derivatives capable of binding covalently to nucleic acids. These data support the concept that arylamine bladder carcinogens are N-oxidized and N-glucuronidated in the liver and that the N-glucuronides are transported to the urinary bladder. The hydrolysis of the glucuronides to N-hydroxy arylamines and the conversion of the latter derivatives to highly reactive electrophilic arylnitrenium ions in the normally acidic urine of dogs and humans may be critical reactions for tumor induction in the urinary bladder.
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PMID:Hepatic microsomal N-glucuronidation and nucleic acid binding of N-hydroxy arylamines in relation to urinary bladder carcinogenesis. 1 29

Biotransformation of phenobarbital (PB) to p-hydroxyphenobarbital (PHPB) was studied quantitatively by gas-liquid chromatography in 8 epileptic patients who were receiving an established regimen of antiepileptic drugs including PB. PB and both conjugated and unconjugated PHPB were present in each patient's urine; m-hydroxyphenobarbital (MHPB) was not detected despite an assay sensitivity of 0.25 mug/ml. Incubation of the urine with beta-glucuronidase, but not with arylsulfatase, liberated PHPB which was, therefore, presumed to be conjugated with glucuronic acid. In general, the patients' urine contained more PB than total PHPB. Recovery of the patients' total daily dose of PB ranged from 24 to 77% (mean, 42%). After receiving a single iv dose of PB, PB and both conjugated and unconjugated PHPB were found in a normal volunteer's urine throughout a 16-day collection period; 30% of the dose was recovered. PB excretion was proportional to urine volume in the volunteer and in two additional patients who were made to vary their daily fluid intake. PHPB was not detected in the cerebrospinal fluid of 10 patients receiving PB. Neither PB, PHPB, nor MHPB were detected in the feces of four patients. These results suggest that metabolites other than PHPB or MHPB may be important in the elimination of PB in man.
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PMID:Metabolic fate of phenobarbital. A quantitative study of p-hydroxyphenobarbital elimination in man. 1 77

1. Highly sensitive technique are described for the assay of plasma membrane (5'-nucleotidase, alkaline phosphatase), microsomal (neutral alpha-glucosidase, leucyl-2-naphthylamidase) and biliary canalicular (gamma-glutamyltransferase) enzymes and for nine acid hydrolases (acid phosphatase, phosphodiesterase, beta-glucosidase, alpha-glucosidase, alpha-galactosidase, beta-galactosidase, alpha-mannosidase, N-acetyl-beta-glucosaminidase, beta-glucuronidase) in human liver. 2. Optimum and specific assay systems have been developed which give linear kinetics for all enzymes. 3. The range of enzyme activities in samples of human liver, obtained by closed needle biopsy, and sera have been determined.
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PMID:Enzyme activities in human liver biopsies: assay methods and activities of some lysosomal and membrane-bound enzymes in control tissue and serum. 1 4


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