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Query: EC:3.1.3.1 (alkaline phosphatase)
47,916 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

A simple and sensitive method has been described for the determination of UDPglucuronic acid pyrophosphatase activity. Pyrophosphatase-free alkaline phosphatase preparation is added to the reaction mixture in order to hydrolyze the phosphate esters (UMP and alpha-D-glucuronic acid 1-phosphate) produced by pyrophosphatase. The inorganic phosphate liberated is measured by a modification of Fiske and SubbaRow's method. The phosphatase coupled method is time saving, easy to perform and accurate. It can also be used for pyrophosphatase assays with other nucleotide substrates like UDPglucose, UDP-N-acetylglucosamine, NAD+, NADH, NADP+ and NADPH.
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PMID:UDPglucuronic acid pyrophosphatase assay with the aid of alkaline phosphatase. 84 23

A simple method for the separation of alkaline phosphatase and pyrophosphatase activities of pig bone ribs is described. Using anionic exchange chromatography (DEAE-cellulose) and affinity chromatography on Concanavalin A sepharose (Con A) eluted by a step pH gradient and Na4P2O7, several activities were obtained. A pyrophosphatase containing very little alkaline phosphatase activity was isolated from Con A sepharose by elution with pyrophosphatase. Our data are consistent, with the hypothesis that cortical alcaline phosphatase and pyrophosphatase activities are not due to a single enzyme protein. The method was used on whole bone, on bone marrow and on cortical bone.
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PMID:Separation of pig bone alkaline phosphatase activities. 92 Oct 14

1. Alkaline phosphatase (EC 3.1.3.1) from human liver was solubilized from the homogenate using 0.2% Triton X-100 containing 0.2 M lithium 3,5-diiodosalicylate, and the pellet obtained was resolubilized with 20% n-butanol. The procedure resulting in 3842-fold purification included acetone fractionation, ammonium sulfate precipitation, DEAE-cellulose chromatography, Sephadex G-200 gel filtration, hydroxyapatite gel chromatography and further concanavalin A/Sepharose 4B affinity chromatography. 2. The highly purified enzyme showed one major protein band on acrylamide gel electrophoresis at pH 8.6, and exhibited one-seventh of the alkaline p-nitrophenylphosphatase activity in the hepatic enzyme preparation contains of the alkaline pyrophosphatase activity. 3. The highly purified enzyme was a sialic-acid containing glycoprotein. 4. Sialidase-treated hepatic enzyme clearly presented the phenomenon of delayed mobility, and the delayed enzyme fraction stained more strongly than that of non-treated hepatic alkaline phosphatase. 5. In order to investigate the role of the carbohydrate region(s) of the hepatic alkaline phosphatase molecule on substrate binding, the effect of sialidase treatment on the rate of substrate inhibition of alkaline phosphatase was studied. In the case of hepatic enzyme without sialidase, substrate inhibition of alkaline phosphatase activity was clearly shown, while in the case of the hepatic enzyme with sialidase, there was hardly any substrate inhibition in the range of 1-8 mM p-nitrophenylphosphate.
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PMID:Partial purification and some properties of human liver alkaline phosphatase. 94 51

Growing rabbits were given 200 ppm of fluoride in the drinking water during 14 weeks. During this period excessive fluorotic changes developed in the diaphyses of the femur and tibia. The alkaline phosphatase and pyrophosphatase activities increased simultaneously in the fluorotic bone whereas the ratio between the activities remained constant. Acid phosphatase activity also increased. The increase in enzyme activities was regarded as due to the increased bone turnover and not as a primary consequence of fluoride ingestion.
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PMID:Effects of supply and withdrawal of fluoride. Experimental studies on growing and adult rabbits. 8. Phosphatase activity in fluorotic bone. 118 15

Growth plate cartilage from rachitic rats was studied to assess the role of extra-cellular matrix vesicles in the reinstitution of calcification during healing. The concentration and distribution of matrix vesicles was found to be normal in rachitic growth plate, and although the rachitic cartilage matrix was largely uncalcified, an occasional vesicle did contain internal mineral. Matrix vesicles served as initial loci for mineralization when healing was brought about either by in vivo injection of phosphate or in vitro incubation of growth plates in a metastable calcifying solution. During in vitro calcification a distinct line of mineralization developed in the upper growth plate which was shown by electron microscopy to reflect mineralization by the vesicles. The appearance of this vesicle-associated calcification line was inhibited by preheating or repeated freezing and thawing, and by 30 minutes preincubation in deoxycholate, ethane-1-hydroxy-1,1-diphosphonate, or beryllium sulfate. Our results suggest that vesicle calcification is dependent on the structural and enzymatic integrity of the vesicle membrane. Enzymes that may well play a role in vesicle calcification are phosphatases (e. g., alkaline phosphatase, pyrophosphatase and ATPase), which are known to be concentrated in vesicle membranes.
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PMID:Calcification of rachitic cartilage to study matrix vesicle function. 124 48

We have shown that yeast pyrophosphatase dissolves calcium pyrophosphate dihydrate (CPPD) crystals in solutions. In this investigation we demonstrate that alkaline phosphatase (ALP) effectively dissolves CPPD crystals in vitro. CPPD dissolution by ALP had a pH optimum of 7.4, which is the optimum pH for its pyrophosphatase (PPiase) activity. The CPPD dissolution and PPiase activity by ALP are magnesium dependent, whereas its phosphoester hydrolytic activity is not. Calcium, which inhibited the enzymatic CPPD dissolution and PPiase activity of ALP had no effect on its phosphoester hydrolytic activity. These data indicate that PPiase activity of ALP is responsible for CPPD dissolution and not its phosphoester hydrolytic activity. Matrix molecules such as proteoglycans and chondroitin sulfate had no effect on the enzymatic and nonenzymatic dissolution of CPPD crystals. ALP acted more effectively on CPPD crystals than on soluble pyrophosphate relative to yeast PPiase. Our data suggest that chondrocyte ALP may play an important role in the dissolution of CPPD crystals in cartilage.
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PMID:Alkaline phosphatase dissolves calcium pyrophosphate dihydrate crystals. 176 89

The effects of chemical modification with 4-NN-dimethyl amino azo benzene-4'-isothiocyanate on various biological activities of phospholipases A2, NN-XIII-PLA2 from Naja naja naja and VRV-PL-VIIIa from Vipera russelli snake venoms were investigated. Modification of the enzymes resulted in significant reduction of lethal, hemolytic, anticoagulant and enzymatic activities. The Km value of the modified enzymes was increased. The modified enzymes failed to induce edema in the foot pads of mice and were non-lethal up to 16 mg/kg body weight. However, considerable myotoxicity was retained, suggesting that the toxins have multiple sites for biological activities. The aggregated form obtained from modified NN-XIII-PLA2 exhibited decreased enzymatic activity and increased toxicity compared to the modified monomer. This aggregated form did not show pyrophosphatase/phosphomonoesterase activity in contrast to the aggregated form obtained from the native NN-XIII-PLA2 molecule.
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PMID:Effects of chemical modification on enzymatic and toxicological properties of phospholipases A2 from Naja naja naja and Vipera russelli snake venoms. 180 18

In the structures of the nucleus supraopticus, changes of the activity of some enzymes (alkaline phosphatase, acid phosphatase, thiamine pyrophosphatase, butyrylcholinesterase, succinate dehydrogenase, glycerol-3-phosphate dehydrogenase) were studied in rat brains exposed to high supralethal doses of gamma radiation at early time interval after irradiation. The activity of alkaline phosphatase, acetylcholinesterase and butyrylcholinesterase increased in the wall of blood capillaries after irradiation with 50, 150, 500 Gy. The dose of 500 Gy induced the most pronounced activity. These membrane enzymes are highly sensitive to ionizing radiation. The activity of acid phosphatase, acid nonspecific esterase and thiamine pyrophosphatase increased in magnocellular neurons after irradiation with all doses of gamma radiation. Glycerol-3-phosphate dehydrogenase and succinate dehydrogenase showed a decreased activity in neurons, neuropil and capillaries.
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PMID:Effect of ionizing radiation on the nucleus supraopticus. 183 85

A colorimetric procedure to detect biotin bound to microtiter plates with a sensitivity down to 10(-16) mol was developed using biotinylated inorganic pyrophosphatase of Escherichia coli. Reaction of pyrophosphatase with 1 mM N-biotinyl-6-aminocaproic acid N-hydroxy-sulfonosuccinimide ester yielded a stable 87% active enzyme containing 5.6 mol biotin/mol. In the measurements of human immunoglobulin G, a biotinylated pyrophosphatase.streptavidin complex provided a sensitivity superior to that of conventional enzyme immunoassay due to low nonspecific binding. The new procedure was also more sensitive compared with that using biotinylated alkaline phosphatase. Together with high thermostability of pyrophosphatase and its substrate, low background staining allowed measurement of enzymatic activity to be performed at 60 degrees C for 4 h resulting in a marked increase in assay sensitivity.
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PMID:Use of biotinylated inorganic pyrophosphatase for detection of biotin bound to solid support. 196 28

Activities of the following enzymes were assessed in cryostat sections of human embryonic and fetal placentae aged 7 to 22 weeks of the intrauterine life using the standard methods recommended by Lojda et al. (1978): alkaline phosphatase (AIP), and acid phosphatase (AcP), non-specific esterase (ANE), ATP-cleaving enzymes (ATP-ase), beta-glucuronidase, thiamine pyrophosphatase, dipeptidylaminopeptidase IV (DPP IV), aminopeptidase A and M (APA, APM), gamma-glutamyltransferase (GGT), glycero-3-phosphate dehydrogenase and succinate dehydrogenase (alpha-GPDH, SDH). Since week 7 high activity of AIP has been proved in the apical zone of the plasmodiotrophoblast. At the same time the DPP IV activity appeared in the plasmodiotrophoblast, in the stroma of villi, and, latter on, in vascular endothelium. In the fetal placenta the APA activity was pronounced both in the cytotrophoblast and the stroma of villi. The activities of AcP and ANE were relatively weak. In the course of development the activities of most enzymes were gradually increasing.
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PMID:Histochemistry of some enzymes in human embryonic and fetal placentae. 215 Oct 77


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