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)

The metabolism of 17 alpha-ethynyl[6,7-3H]estradiol (3H-EE2) (50 micrograms) given orally was studied in two groups of women: (a) six subjects from whom duodenal bile samples were obtained after 4 h by endoscopic aspiration; (b) two subjects with bile-duct (T-tube) drainage. The first group eliminated 16.6 +/- 7.8% (mean +/- S.D.) of the dose in urine over 72 h, the second group 28.6% and 27.5%. Biliary excretion by the latter was 41.9% and 28.3% of the dose, respectively, during the first 24 h after dosing. The metabolites excreted in bile and urine were largely polar conjugates: 1-12% of the 3H was ether extractable. Approx. 70-90% of urinary and biliary 3H was extractable following beta-glucuronidase-arylsulphohydrolase hydrolysis. Both beta-glucuronides and arylsulphates were excreted. Unchanged 3H-EE2 was the principal 3H-labelled component of the glucuronide and arylsulphate fractions of bile, and it was a major component of urinary fractions. 2-Hydroxy-EE2 and 2-methoxy-EE2 were identified as conjugated biliary metabolites.
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PMID:The biliary and urinary metabolites of [3H]17 alpha-ethynylestradiol in women. 665 45

Estrogen metabolism was studied in a newly established cell line (RL95-2) derived from a human endometrial carcinoma. Estradiol and estrone were metabolized to water-soluble derivatives by cells under in vitro culture conditions. Between 80-90% of the added steroids were metabolized, with nearly quantitative recovery of the products from the incubation medium. Arylsulfatase treatment converted the metabolites to ether-soluble forms, whereas beta-glucuronidase had no effect on the aqueous solubility of these compounds. Butanol extracts of the water-soluble estradiol metabolites cochromatographed on high performance liquid chromatography with 17 beta-estradiol-3-sulfate (93.6%) or estrone-3-sulfate (3.5%). No more than 6% of the estradiol added to the incubation medium was recovered in the form of estrone, either as estrone or estrone sulfate. After arylsulfatase treatment of the estradiol conjugates, 92% of the ether-soluble radioactivity cochromatographed with estradiol, and 3.8% cochromatographed with estrone. Estrogen-sulfurylating activity was localized in the cytosol of subcellular fractions of RL95-2 cells. The sulfoconjugation of estrogens by RL95-2 cells may prove useful as a model for the investigation of estrogen metabolism in endometrial carcinoma cells.
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PMID:Estrogen sulfoconjugation by human endometrial cancer cells (RL95-2) in culture. 669 41

The alpha- and beta-anomers of the 17 beta-D-glucuronide conjugate of ethynylestradiol were synthesized by the SnCl4-promoted reaction between beta-acetoxy GAM and the t-17 beta-hydroxyl group of EE2-3-acetate. The conjugates were resolved by crystallization and HPLC. Positive identification was established by u.v. spectrophotometry, i.r. and mass spectrometry and 1H- and 13C-n.m.r. The structure of the beta-anomer was confirmed by X-ray crystallographic analysis. In addition, the alpha-anomer was refractory to hydrolysis by bovine beta-glucuronidase, establishing a biochemical difference between the conjugate pair.
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PMID:Synthesis and characterization of the anomeric pair of 17 beta-glucuronides of ethynylestradiol. 686 6

The diameters of Sudan Black B stained sebum vesicles and acid hematein stained perinuclear granules, and the numerical density of the latter, were determined in mature sebaceous preputial cells from normal male and female rats, testosterone-treated female rats and estradiol-treated male rats. Statistical analysis by Student's t-test showed that the diameter of lipid droplets was significantly higher in male than in female controls and that testosterone increased female values up to make control levels. Estradiol treatment decreased male values to levels below those of normal male and female controls and of testosterone-treated female rats. Diameters of perinuclear granules did not vary among animal groups but their numerical density was larger in testosterone treated than in normal female rats or estradiol treated male rats. Lipid droplet sizes and perinuclear granule numbers are thus increased by androgens and decreased by estrogens, which was interpreted an meaning that sexual hormones do not only act on sebaceous cell multiplication or turnover time as previously known, but also on the production of lipid and the output of beta-glucuronidase containing granules in this gland.
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PMID:The effect of sexual hormones on the lipid and proteinaceous secretion of the rat preputial sebaceous gland. 727 16

A bioaccumulation study was performed with the endobenthic freshwater oligochaete Lumbriculus variegatus MULLER exposed to the radiolabelled synthetic steroid 17alpha-ethinylestradiol (14C-EE2) in a spiked artificial sediment. Concentration of total radioactivity increased constantly and almost linearly during 35 days of exposure. The accumulation factor normalised to worm lipid content and sediment TOC (AFlipid/OC) was 75 at the end of the uptake period, but a steady state was not reached. Uptake kinetics were calculated fitting the measured AFs to a kinetic rate equation for constant uptake from sediment using iterative non-linear regression analysis. After 10 days of elimination in contaminant-free sediment 50% of the accumulated total radioactivity was excreted by the worms. Extracts from L. variegatus sampled at the end of the uptake phase were analysed by thin layer chromatography (TLC). The results showed that 6% of the total radioactivity incorporated by the worms was 14C-EE2. After treatment of extracts with beta-glucuronidase the amount of 14C-EE2 increased to 84%. These results suggest that L. variegatus has the potency to accumulate high amounts of conjugated EE2. Hence, a transfer of EE2 to benthivores and subsequent secondary poisoning of predators might be possible.
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PMID:Bioaccumulation of 14C-17alpha-ethinylestradiol by the aquatic oligochaete Lumbriculus variegatus in spiked artificial sediment. 1572 99