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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 cytochemical method for the light and electron microscope localization of the K- and Mg-dependent phosphatase component of the Na-K-ATPase complex was applied to rat kidney cortex, utilizing p-nitrophenylphosphate (NPP) as substrate. Localization of K-N-ATPase activity in kidneys fixed by perfusion with 1% paraformaldehyde -0.25% glutaraldehyde demonstrated that distal tubules are the major cortical site for this sodium transport enzyme. Cortical collecting tubules were moderately reactive, whereas activity in proximal tubules was resolved only after short fixation times and long incubations. In all cases, K-NPPase activity was restricted to the cytoplasmic side of the basolateral plasma membranes, which are characterized in these neplron segments by elaborate folding of the cell surface. Although the rat K-NPPase appeared almost completely insensitive to ouabain with this cytochemical medium, parallel studies with the more glycoside-sensitive rabbit kidney indicated that K-NPPase activity in these nephron segments is sensitive to this inhibitor. In addition to K-NPPase, nonspecific alkaline phosphatase also hydrolyzed NPP. The latter could be differentiated cytochemically from the specific phosphatase, since alkaline phosphatase was K-independent, insensitive to ouabain, and specifically inhibited by cysteine. Unlike K-NPPPase, alkaline phosphatase was localized primarily to the extracellular side of the microvillar border of proximal tubules. A small amount of cysteine-sensitive activity was resolved along peritubular surfaces of proximal tubules. Distal tubules were unreactive. In comparative studies, Mg-ATPase activity was localized along the extracellular side of the luminal and basolateral surfaces of proximal and distal tubules and the basolateral membranes of collecting tubules.
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PMID:Transport ATPase cytochemistry: ultrastructural localization of potassium-dependent and potassium-independent phosphatase activities in rat kidney cortex. 12 60

In the present investigations, the localization of several enzymes (Acid Phosphatase, Peroxidase, succinic dehydrogenase, Phosphorylase, alkaline phosphatase, ATP-ase) and other substances in the guard and subsidiary cells as well as trichomes of the leaves of Phaseolus mungo, was carried out. Attempts were also made to follow the sequence of developmental stages starting with meristemoids and culminating in differentiated structures. The basic information thus obtained is used in interpreting the developmental physiology of stomatal differentiation as well as their cellular organisation. Histochemical observations made in the present studies are compared with the electron microscopical observations of Whatley (1972). It is proposed that mitochondria played a basic role in the functioning of the guard cells. The present studies also demonstrated activity of acid phosphatase in the guard cells and was localized in spherosomes. The latter varied in the activity for acid phosphatase and was dependent on the turgid level of the cell. Interestingly, enough localization of phosphatase could only be observed in spherosomes when the osmotic pressure in the cell was relatively low, once the osmotic pressure increased, the activity disappeared.
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PMID:Histochemical studies in stomatal apparatus of Phaseolus mungo Linn. I. Localization of enzymes and structural material. 12

The fluoride (F) concentrations in hard tissues and blood plasma were determined in biopsy and autopsy specimens from fetuses, infants, and children on varying F intake. In newborn autopsy cases specimens consisting of rib, jawbone with teeth, and blood plasma the F concentrations of bone and dentin were of the same order, those of the enamel lower. Correlations between individual F values in different tissues were all positive, highest for enamel/dentin. Low birth weight entailed only slightly reduced F contents, high water F significantly increased F contents. In the biopsy material (rib and blood plasma) the maximal rib/ash concentration was about 400 parts/10(6) F. A negative correlation between rib F and plasma F is specially commented on. The possible influence of F on bone development as expressed by blood plasma F and phosphatase activity was investigated in three groups of infants aged 2-6 months, either breast-fed or fed dry-milk formulas diluted with drinking waters of different F content. The children of these groups were calculated to ingest F in the ratio of about 1:10:50. The highest F group had higher plasma F values than the two other groups, whereas its alkaline phosphatase was significantly higher than that of the lowest F group only. The influence of disturbances in the skeletal development on F retention studied in physically handicapped children aged 4-15 years living in a city with about 1 part/10(6) F in the drinking water. The severely handicapped showed a higher urinary F excretion than the controls.
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PMID:Studies on fluoride distribution in infants and small children. 13 70

On rat jejunum the effects of sorbitol or NaH2PO4 on the activity of various enzymes localized in brush borders was investigated: glycosidases, amino-peptidase, alkaline phosphatase. The activity of phosphatase varies under the influence of these compounds (and others carbohydrates) in the same sense and the same extact than they induce variations of Ca absorption.
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PMID:[Study at the level of the jejunal mucosa of the effects of various carbohydrate compounds on the activity of various enzymes localized in brush borders. Augmentation of phosphatase activity]. 13 33

Ultrastructural studies on the Malpighian tubules of Glomeris marginata (Villers) reveal considerable morphological differences between the upper, fluid secreting, segment, and the lower segment which is at present of unknown function. Previous reports have shown that the upper tubule has a high permeability to compounds of high molecular weight. This may be accounted for by the fact that the epithelium shows very extensive intercellular spaces which are linked directly to junctions apparently specialised to provide a low resistance extracellular pathway between the haemocoel and the tubule lumen. Histochemical studies on the localisation of phosphatase enzymes reveal intracellular vesicles with acid phosphatase activity. The basal labyrinth of the lower tubule exhibits considerable alkaline phosphatase activity which is apparently identical in location to the enzyme revealed by two different ATPase localisation techniques.
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PMID:Ultrastructural studies on the Malpighian tubule of the pill millipede, Glomeris marginata (villers). 14 32

Three proteins possessing alkaline phosphatase activity were detected in a fraction of periplasmic material of Escherichia coli K-10 and its mutants with constitutive synthesis of alkaline phosphatase. They also showed acid phosphatase, pyrophosphatase and ATPase activities. Through the use of phosphatase-negative mutants it was shown that these proteins were the products of a single structural gene and therefore represented alkaline phosphatase isozymes. The numbers of enzyme isoforms and possibly the spectrum of their phosphohydrolase activities were controlled by exogenous orthophosphate and depended on the integrity of regulator genes for alkaline phosphatase.
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PMID:Metabolic and genetic control of isoenzyme spectrum of alkaline phosphatase in Escherichia coli. 14 52

The epithelial cells in the taste buds of C. jacchus and C. penicillata show a moderate amount of ribonucleic acid an a concentration of a PAS-positive diastase-resistant material at their apical part. These cells are devoid of UDPG-GT, phosphorylases, G-6-PA, alanyl aminopeptidase, leucine aminopeptidase, cholinesterase and MAO; they present a weak reaction of F-1, 6-P Ald, LDH, SDH, MDH, cytochrome oxidase, beta-OHBDH, nonspecific esterase and acid phosphatase and a stronger reaction to ADH, NADPH2-TR, ATPases, alpha-GPDH, alkaline phosphatase, 5-nucleotidase and GDH. Although some enzymes (alkaline phosphatase, 5-nucleotidase and ATPases) have an almost uniform reactivity by the several taste buds, the other ones react with a lesser intensity in the smaller uniform reactivity by the several taste buds, the other ones react with a lesser intensity in the smaller taste buds of the fungiform papillae. As a rule the apical part of the cells shows a stronger enzymatic reactivity. The taste buds of the marmosets are penetrated by acetylcholinesterase positive nerve fibers whereas the autonomic ganglia in the connective tissue contain both-acetyl and butyrylcholinesterase.
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PMID:Histochemical observations on the taste buds of the marmosets (Callithrix jacchus and Callithrix penicillata). 15 39

Growth characteristics, survival time, sex differences and hormonal effects, and various biochemical parameters were evaluated in a transplantable Furth/Wistar rat Wilms' tumor model. Survival time was dependent on site of tumor transplant and ranged from a mean of 28 days for intrarenal implantation to 44 days intramusculary. Maximum tumor weight (130 g) was obtained via subcutaneous implant. Lung metastasis was evident in the majority of animals with the exception of those receiving the tumor implant intraperitoneally. The levels of erythropoietin and serum calcium and phosphatase were comparable to control values whereas hematocrit levels declined. Tumor tissue arginase or total protein remained unchanged during tumor growth. In these same tissues DNA, content and 5-alpha-reductase activity significantly and progressively increased with concomitant tumor growths. Measurements of lactic dehydrogenase, alkaline phosphatase, and their isoenzymes indicated patterns of liver involvement which were not macroscopically evident. After 31 days of subcutaneous tumor transplant, male and female rats had tumors of comparable weights. Orchiectomy or estradiol treatment significantly reduced tumor weight in males. In female rats testosterone treatment significantly increased tumor weights. DNA concentration in tumor tissue was unaffected by treatment. Similiarly, although 5-alpha-reductase activity was higher in tumors from males, and arginase higher in females, these enzymes were not affected by surgical or hormonal treatment.
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PMID:Characterization of a Wilms' tumor model. 16 21

The binding of metal to alkaline phosphatase from Escherichia coli and the binding of water and orthophosphate to the Me-2+-enzyme binary complex have been examined by water proton relaxation rate (PRR) measurements. Titration of the three paramagnetic metals, Mn2+, Cu2+, and Co2+, into apoalkaline phosphatase and the titrations of apoenzyme into metal have been carried out. Analysis of the spin-lattice relaxation rates for these titrations and of Scatchard binding curves derived from these results, as well as EPR data, show four tight manganese sites, between two and three tight copper sites, or four cobalt sites per enzyme dimer of molecular weight 80,000. The multiple sites for each metal are indistinguishable by these magnetic resonance techniques. Both the spin-lattice- and spin-spin-relaxation rates exhibit a negative temperature coefficient, showing that these processes are not exchange-limited. From a frequency dependence study of T-1 and from the T-1:T-2 ratio measured at 220 MHz, correlation times from the water-enzyme complexes have been estimated. For H20-Mn-2+-alkaline phosphatase, gamma c equals 1.55 times 10-9 s; for H20-Cu-2+ -alkaline phosphatase, gamma c equals 1.82 times 10-s; and for the cobalt complex, gamma c equals 1.0 times 10-12 s at 4 degrees. Assuming 1 water molecule bound per metal site, these correlation times correspond to the following water-metal distances: gamma (A) is 4.0 A for Mn-2+-H20, 3.4 A for Cu-2+-H20, and 2.8 A for Co-2+-H20. Thus, water is shown to bind directly to the metal atoms of alkaline phosphatase. The correlation between the length of the water-metal bond and the relative activity of the various metalloenzymes support the importance of this binding in the monophosphoesterase reaction catalyzed by alkaline phosphatase. Addition of excess orthophosphate to any of the water-metalloenzyme complexes does not displace an exchangeable water molecule from the metal site. The Mn-PO-4 distance which we have reported earlier (Zukin, R.S., Hollis, D.P., and Gray, G.A. (1973) Biochem. Biophys. Res. Commun. 53, 238) to be 7.3 A is consistent with this finding and suggests a model in which Pi binds to Mn-2+-alkaline phosphatase through a water bridge.
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PMID:Role of metal ions in Escherichia coli alkaline phosphatase. A study of the metal-water interaction by nuclear relaxation rate measurements on water protons. 16 41

The effects of the alkaline phosphatase inhibitors levamisole and R 8231 on p-nitro-phenylphosphatase, inorganic pyrophosphatase and adenosine triphosphatase (ATPase) activities in dentingenically active odontoblasts were studied. The p-nitrophenylphosphatase and inorganic pyrophosphatase activities were inhibited, while 40% of the ATP-splitting enzyme activity remained under the assay condition used. This finding, togeather with earlier studies, indicates that at least two different phosphatase are active at alkaline pH in hard tissue-forming cells; on nonspecific alkaline phosphatase and one specific ATPase. The ATPase activity is uninfluenced by ouabain and ruthenium red and is activated by Ca-2+ ions.
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PMID:Inhibition studies of alkaline phosphatase in hard tissue-forming cells. 16 33


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