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Radioimmunoassayable prostate-specific acid phosphatase in peripheral and bone marrow sera compared in diagnosis of prostatic cancer patients.

Measurements of human prostate-specific acid phosphatase by radioimmunoassay in peripheral and bone marrow sera were compared. We studied 20 patients with benign prostatic hyperplasia, 27 with untreated prostatic cancer without bone metastases and 11 with metastases, in addition to 7 with cancer treated by hormonal therapy. The prostate-specific acid phosphatase concentrations in peripheral and bone marrow serum samples were equal and did not exceed the upper limit of our health-associated reference interval, 2.8 microgram. per 1. (mean plus 2 standard deviations) in patients with prostatic hyperplasia. Of 27 prostatic cancer patients without bone metastases the concentration of prostate-specific acid phosphatase was elevated in the peripheral sera of 20 and in the bone marrow sera of 21, and 21 had an extracapsular tumor (stage T3 to T4). Prostate-specific acid phosphatase concentrations were elevated in peripheral and bone marrow serum specimens of all 11 patients with metastases and bone marrow cytology studies were positive in 2. There was no difference in prostate-specific acid phosphatase concentrations in peripheral and bone marrow serum specimens from prostatic cancer patients undergoing hormonal treatment. We conclude that the use of bone marrow serum for the measurement of radioimmunoassayable prostate-specific acid phosphatase in prostatic cancer patients does not provide any further information in regard to the detection of prostatic cancer compared to the use of peripheral serum specimens. Falsely positive findings in bone marrow specimens were not observed with the method used.

Acid Phosphatase↗

Demonstration of extracellular acid phosphatase activity in the involuting, antimesometrial decidua in fed and acutely fasted mice by combined cytochemistry and electron microscopy.

An ultrastructural cytochemical study of acid phosphatase activity in the antimesometrial decidua on days 9-11 of pregnancy was performed in fed and acutely fasted mice. Specimens were fixed in a buffered mixture of paraformaldehyde and glutaraldehyde and were incubated in a buffered medium containing sodium beta-glycerophosphate and cerium chloride for ultrastructural localization of acid phosphatase activity. Fed and fasted animals showed extracellular acid phosphatase reaction product in the decidual-trophoblast interface, in the region of loosely and tightly packed, mature decidual cells, and in the region of predecidual cells. Reaction product was absent in the region of nondecidualized stromal cells. Extracellular acid phosphatase activity was more conspicuous in the region of mature decidual cells in fasted mice than in fed mice, and it was apparently similar in the region of predecidual cells in both fed and fasted mice. Acid phosphatase reaction product was also observed in lysosomes in all cells studied. Because acid phosphatase activity reflects the presence of lysosomal hydrolases in general, our results suggest that there is matrix degradation by lysosomal enzymes in both fed and fasted mice. These events may be part of the process of tissue remodeling in regions of predecidual cells and mature decidual cells. However, it is also possible that, in the region of mature decidual cells, breakdown of matrix constituents is a mechanism to provide nutrients for the growing fetus. This mechanism is probably enhanced in fasted mice.

Acid Phosphatase↗

Biochemical properties of tartrate-resistant acid phosphatase in serum of adults and children.

Spectrophotometry of total acid phosphatase activity in children's sera showed an average value of 22.4 +/- 2.9 and 7.4 +/- 0.8 U/liter, for the hydrolysis of p-nitrophenyl phosphate and alpha-naphthyl phosphate, respectively. Analyses of "band 5b", after electrophoresis on acrylamide gel, gave even higher values. The values for children's sera were much higher than those for sera from adults. The multiplicity of acid phosphatases in sera of children and adults was studied by electrophoresis on acrylamide gel and by chromatography on CM-Sepharose. Both methods showed the major acid phosphatase in children's sera to be an acid pyrophosphatase, band 5b. Its catalytic properties are indistinguishable from the enzyme previously isolated from the spleen of leukemic reticuloendotheliosis.

4-Nitrophenylphosphatase↗

N-acetyl-beta-glucosaminidase, beta-glucuronidase and acid phosphatase in Mycobacterium leprae.

N-Acetyl-beta-glucosaminidase, beta-glucuronidase and acid phosphatase activities were detected in cell-free extracts of Mycobacterium leprae (from armadillo liver). Extracts of bacteria which had been treated with 7-diazonaphthalene-1,3-disulphonic acid to inactivate surface enzymes retained 30-45% of the activity of the glycosidases and 15% of the activity of the acid phosphatase. When intact bacteria were treated with 1 M-NaOH, the corresponding activity in the extracts was 4--9% for the glycosidases and 7% for the acid phosphatase. Inhibition studies with lactones and the use of concanavalin A-agarose showed differences between the glycosidases in extracts of M. leprae and those of armadillo liver. Inhibition studies with vanadate using extracts from NaOH-treated bacteria and extracts of armadillo liver showed differences between the acid phosphatases. Enzymes removed from the surface of M. leprae could have been adsorbed to the surface from host tissue (i.e. lysosomal enzymes) or they could have been extracellular enzymes or associated with the bacterial membrane.

Acetylglucosaminidase↗

Molecular cloning of cDNA for human prostatic acid phosphatase.

A human liver cDNA library in lambda gt11 was screened with polyclonal antiserum to human acid phosphatase isoenzyme 2a/4. About eleven positive clones have been obtained. Two clones, lambda Hap21 and lambda Hap22 were further characterized: clone lambda Hap21 contained a 0.8-kb cDNA insert and clone lambda Hap22 a 1.8-2.0-kb insert. XbaI digestion of lambda Hap22 generated two fragments of 1.0 and 0.9 kb. BglII digestion resulted in a 1.2-kb fragment and several smaller fragments of undetermined size. Clone lambda Hap22 contained all the genes carried by lambda gt11(lac5cI857nin5Sam100) and the 2-kb insert. An Escherichia coli(lambda Hap22) lysogen was generated, and its acid phosphatase activity was approximately ten-fold higher than that in the control nonlysogenic lysate. Western-blot analysis of total proteins present in this E. coli(lambda Hap22) lysate revealed that the non-induced lambda Hap22 prophage directed the synthesis of an approx. 175-kDa protein. This protein was recognized by antibody to the human acid phosphatase isoenzyme 2a/4 and anti-beta-galactosidase and was produced only upon induction with IPTG. These results indicated that lambda Hap22 carried a major portion of the gene coding for the human acid phosphatase isoenzyme 2a and/or 4 and this protein fragment of acid phosphatase was sufficient to manifest enzymatic activity.

Acid Phosphatase↗

Development and evaluation of a new solid-phase direct immunoenzyme assay for prostatic acid phosphatase.

In this assay we used polystyrene-tube-attached rabbit antibodies against prostatic acid phosphatase (PAP) that had been purified to homogeneity from human prostate. The amount of immunoreactive acid phosphatase was determined directly by its enzymic activity in the solid-phase-bound immune complex. The detection limit was 0.05 U/L (0.13 microgram/L), the CVs between 4.3 and 10.8%. Investigating the organ specificity of PAP, we found that some cross-reacting acid phosphatase activity could be so measured in human kidney, leukocytes, and platelets, all of which probably contribute to the circulating "prostatic" acid phosphatase that normally is present in serum. Diurnal and day-to-day variations in serum PAP activity were as much as 100% in healthy subjects. Individuals without prostatic diseases (n = 92) had values for serum PAP activity up to 0.36 U/L (0.94 microgram/L), in an age-independent distribution; patients with benign prostatic hyperplasia (n = 62) showed values up to 0.48 U/L (1.25 micrograms/L). With PAP activity of 0.38 U/L or 1.0 microgram/L (90th percentile of the prostatic group) as the upper limit of "normality," overall sensitivity (stages A-D) for detection of prostatic cancer in 33 essentially untreated patients was 65%. Examples for the followup of therapy of prostatic cancer by measurement of serum PAP with this assay are described.

Acid Phosphatase↗

Quantitative evidence of a silent gene Po of human red cell acid phosphatase in south Polish population.

The distribution of red cell acid phosphatase types in 3244 unrelated Polish adults is reported. Gene frequencies Pa = 0.3594, Pb = 0.5643 and Pc = 0.0763 were obtained. In a forensic case of disputed paternity an apparent mother/child incompatibility respect to red cell acid phosphatase was found, the mother appearing as type B and the child as type A. Determination of acid phosphatase activity suggested the presence of a silent gene Po. The phosphatase levels were about half the values expected as determined in 237 adults representing the different phenotypes.

Acid Phosphatase↗

Evidence of acid phosphatase in the cytoplasm as a distinct entity.

A study of subcellular acid phosphatase distribution in mammalian tissues shows that isozymes with specific functions are compartmentalized in the cells. The enzyme may be generalized into two types: type A and type B. They are shown by several means to be distinct entities. Type A is confined to the cytoplasm and is inhibited by Cu2+, HCHO, and the coupling agents (for enzyme staining) fast blue RR salt and fast Garnet GBC salt (newly discovered inhibitors), but is insensitive to fluoride and L-(+)-tartrate. Type B is localized in the organelles, presumably lysosomes, in both soluble form and membrane-bound form, with inhibitor sensitivity exactly opposite to that of type A enzyme. Types A and B consist of different sets of isozymes, with sensitivities to inhibitors resembling those observed with the crude extracts of subcellular fractions. Acid phosphatase that exhibits a phosphoryl transfer property was identified as type A enzyme. Type A enzyme has a slightly higher optimal pH and is inhibited by alloxan, whereas for type B, the addition of alloxan broadens the optimal pH to a higher range and elevates the activity of pH 7.4 from negligible to about 30-40% of that obtained under optimal conditions. The alloxan-mediated elevation of type B enzyme activity to this level at the physiological pH may be of considerable significance. Type B enzyme has a high affinity for metabolic intermediates and nucleotides, while type A has an extremely low affinity for these substrates. Cytoplasmic acid phosphatase (type A) is a significant enzyme population and its activity is not related to the lysosome density in the cells. Type A enzyme in the cytoplasm is thus shown to be an entity distinctly different from type B enzyme in the lysosomes. These findings suggest that the physiological functions of type A acid phosphatase, such as metabolic regulatory processes, merit further studies because of the phosphoryl transfer activity and cytoplasmic localization of the enzyme.

Acid Phosphatase↗

Histochemical acitivity of acid phosphatase in rat liver after perfusion fixation.

Acid phosphatase activity was studied histochemically in rat livers after perfusion fixation. The three different perfusates used were (1) 2% of paraformaldehyde; (2) 1.25% of glutaraldehyde, and (3) 1.25% of each of paraformaldehyde and glutaraldehyde. Unfixed fresh frozen sections showed high enzymatic activity in both centrilobular (CL) and periportal (PP) areas. A similar localization pattern resulted after perfusate 1 indicating a lack of reduction in the enzymatic activity in either of the two areas. After perfusate 2, PP arease remained intensely stained while slight reduction of the enzymatic activity was exhibited by the CL regions. Perfusion (3) resulted in higher activity in PP areas but maximal inhibition in the CL region. The inhibition of acid phosphatase activity in the CL areas correlates with regional differences of Kupffer cell population as well as the existence of metabolic heterogeneity between the two hepatic regions.

Acid Phosphatase↗

Prognostic factors in patients with prostate cancer refractory to endocrine therapy: univariate and multivariate analyses including doubling times of prostate-specific antigen and prostatic acid phosphatase.

Although several prognostic factors have been discussed, multivariate analysis that includes tumor marker doubling time has not yet been examined in patients with prostate cancer refractory to endocrine therapy. A number of conventional prognostic factors including doubling times of prostate-specific antigen and/or prostatic acid phosphatase were examined in 56 prostate cancer patients who were refractory to endocrine therapy, using univariate and multivariate analyses. On univariate analysis, 6 parameters (doubling times of prostate-specific antigen and prostatic acid phosphatase at the time of refractory status, performance status, duration from beginning of endocrine therapy to prostate-specific antigen/prostatic acid phosphatase failure, mode of recurrence, the presence or absence of prostate-specific antigen/prostatic acid phosphatase normalization, and alkaline phosphatase) were shown to be significant prognostic factors. On multivariate analysis, only performance status and doubling times of prostate-specific antigen and prostatic acid phosphatase were significant. These observations showed that the doubling times of prostate-specific antigen and prostatic acid phosphatase, calculated at the time of prostate-specific antigen/prostatic acid phosphatase failure by estimating serial prostate-specific antigen or prostatic acid phosphatase, were a valuable prognostic factor in patients with prostate cancer refractory to endocrine therapy.

Acid Phosphatase↗

Type 5 acid phosphatase. Sequence, expression and chromosomal localization of a differentiation-associated protein of the human macrophage.

The purple acid phosphatases and uteroferrin belong to a diverse multifunctional class of binuclear iron-containing proteins that includes haemerythrin and ribonucleotide reductase. In the pig, uteroferrin has been implicated in the delivery of iron to the foetus, but the role of the related human type 5 acid phosphatase that is principally found in resident tissue macrophages is not yet clear. To define further the function of this metalloenzyme, we have isolated and sequenced a cDNA clone for type 5 acid phosphatase and investigated expression of its gene in human tissues. The phosphatase clone contains an open reading frame of 975 bp and encodes a protein of 325 amino acids, including a signal peptide of 19 residues and two potential sites for N-glycosylation. The type 5 acid phosphatase gene mapped to the short arm of human chromosome 19 and was found to have a restriction fragment length polymorphism on digestion with XbaI. Expression of phosphatase mRNA was restricted to mononuclear phagocytes and the enzyme was induced greater than 20-fold on transformation of normal human monocytes to macrophages by culture in serum-supplemented medium. Type 5 acid phosphatase thus represents a tightly regulated system for the study of molecular events in the differentiation programme of the normal macrophage.

Acid Phosphatase↗

Effects of proteolysis and reduction on phosphatase and ROS-generating activity of human tartrate-resistant acid phosphatase.

Osteoclasts and macrophages express high amounts of tartrate-resistant acid phosphatase (TRACP), an enzyme with unknown biological function. TRACP contains a disulfide bond, a protease-sensitive loop peptide, and a redox-active iron that can catalyze formation of reactive oxygen species (ROS). We studied the effects of proteolytic cleavage by trypsin, reduction of the disulfide bond by beta-mercaptoethanol, and reduction of the redox-active iron by ascorbate on the phosphatase and ROS-generating activity of baculovirus-generated recombinant human TRACP. Ascorbate alone and trypsin in combination with beta-mercaptoethanol increased k(cat)/K(m) of the phosphatase activity seven- to ninefold. The pH-optimum was changed from 5.4-5.6 to 6.2-6.4 by ascorbate and trypsin cleavage. Trypsin cleavage increased k(cat)/K(m) of the ROS-generating activity 2.5-fold without affecting the pH-optimum (7.0). These results suggest that the protease-sensitive loop peptide, redox-active iron, and disulfide bond are important regulatory sites in TRACP, and that the phosphatase and ROS-generating activity are performed with different reaction mechanisms.

Acid Phosphatase↗

Acid phosphatase activity in human semen.

Acid phosphatase activity was examined in normal and abnormal human semen of individuals not suffering from testosterone deficiency. No differences in enzymatic activity between the examined groups were observed. The presence of tartaric acid caused an inhibition of about 95% of enzymatic activity.

Acid Phosphatase↗

Acid phosphatase activity in mating type I and mating type II cell lines of Paramecium primaurelia.

The cellular acid phosphatase content, a marker enzyme for lysosomal activity, in Paramecium primaurelia mating type I and mating type II cells was determined by optical laser scanning microscopy. The naphthol AS-TR phosphatase-hexazotized pararosaniline method was used to visualize acid phosphatase activity by the light microscopy. Cell lines of both mating types were tested during culture life, from the early log phase to the death phase. The amount of acid phosphatase was higher in mating type II than in mating type I until the onset of the stationary phase, and then the values reversed. Indeed, during the log phase of growth, mating type II cells formed a higher number of food vacuoles, so that, by taking up a higher amount of bacteria, they sooner became deprived of food. It is suggested that, by lacking nutrients, their synthesis activities and acid phosphatase content were reduced as compared with mating type I cells.

Acid Phosphatase↗

Distribution of acid phosphatase activity in the larval stages of Wuchereria bancrofti, Brugia malayi, B. pahangi and Dirofilaria immitis in the mosquito.

The histochemical distribution of acid phosphatase in microfilariae and in the larval stages of four mosquito-borne filariae: Wuchereria bancrofti, Brugia malayi, B. pahangi and Dirofilaria immitis was studied using naphthol AS-TR-hexazonium technique and light microscopy. Accurate differentiation between microfilariae of the four species could be made on the basis of their patterns of acid phosphatase activity. In contrast to microfilariae in the blood, the larval stages in the mosquito exhibited different patterns of acid phosphatase activity which were characteristic for each developmental stage. In the first-stage larva, maximum acid phosphatase activity was found in the anal vesicle, the growing anal membrane (anal plug), buccal cavity, forming intestine and rectum. In the second-stage larva, acid phosphatase activity was present throughout the alimentary canal, particularly in the section of the intestine and rectum. In the infective third-stage larva, the whole body stained densely red. The reaction for acid phosphatase in the excretory cell complex of W. bancrofti and of both species of Brugia gradually decreased in intensity and disappeared completely towards the end of the first-larval stage, whereas in D. immitis a strong reaction in this area persisted throughout the larval life in the mosquito. The presence or absence of enzymic activity in the excretory cell complex and in the Mundgebilde (amphids) of the developing larvae can be used as an adjunctive diagnostic method.

Acid Phosphatase↗

[Characteristics of alkaline and acid phosphatase in Spirometra erinacei].

This study was done to investigate the enzyme-histochemical localization and characteristics of alkaline and acid phosphatase related with metabolism in sparganum and adult of Spirometra erinacei. By the enzyme-histochemical assay, the alkaline and acid phosphatases were localized in the tegument and subtegumental musculature of sparganum and adult, but not in the parenchyma. The activities of alkaline phosphatase were stronger in the tegument than in the subtegumental musculature, and activities of acid phosphatase were stronger in the tegument of adults than those of sparganum. The 2 isozymes of alkaline and acid phosphatases were separated from s-sparganum (from snake) and r-sparganum (from experimentally infected rats) respectively, but 4 isozymes of Alp and 3 isozymes of Acp were separated from adult worms by electrophoresis. In isozyme Alp, the 66 kDa was the common isozyme, but 130 kDa isozyme of Acp was the common isozyme in spargana and adult worms. By isoelectrofocusing, 4 isozymes (PI 7.9, 7.7, 6.5 and 6.3) and 2 isozymes (PI 7.9 and 7.7) of alkaline phosphatase were separated from adults and spargana, respectively. In the stability against heat, activity of alkaline phosphatase was denatured perfectly after heating at 90 degrees C for 40 seconds. The optimum pH and temperature for activity of alkaline phosphatase were about pH 10 and 50 degrees C, respectively. The maximum activity (unit) of alkaline phosphatase was 22.0 in s-sparganum, 25.0 in r-sparganum and 215.0 in adult worms, so that the maximum activity was revealed higher in adults than spargana. As the result from above, we observed that alkaline and acid phosphatases were functioned mainly in the tegument and subtegumental musculature, and the isozymes of phosphatase were activated differently according to habitat of the parasites. The spargana and adult worms carry out the parasitism by adapting themselves to parasitic circumstance with these enzymes.

Acid Phosphatase↗

Purification and properties of one component of acid phosphatase produced by Aspergillus niger.

One component, the i form, of acid phosphatase (orthophosphoric-monoester phosphohydrolase (acid optimum), EC 3.1.3.2) produced by Aspergillus niger was purified from the mycelial extract. The purified enzyme was homogenous on Sephadex G-200 gel filtration, disc electrophoresis and heat inactivation. The purified enzyme was studied and the following results were obtained: 1. The enzyme catalyzed the hydrolysis of a wide variety of phosphomonoesters, but not that of bis(p-nitrophenyl)phosphate, adenosine 3',5'-cyclic monophosphate, fructose 1,6-diphosphate, adenosine 5'-diphosphate or adenosine 5'-triphosphate. 2. Fluoride, orthophosphate, arsenate, borate, molybdate and (+)-tartrate acted as inhibitors. This enzyme was inactivated by N-bromosuccinimide and 2-hydroxy-5-nitrobenzyl bromide, and was not affected by p-chloromercuribenzoate, N-acetylimidazole, p-diazobenzenesulfonic acid and tetranitromethane. From these results, tryptophan was estimated to play an important role in the enzyme activity. 3. The apparent molecular weight was 310000 by Sephadex G-200 gel filtration. Polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate suggested that the molecular weight of the subunit was approximately 89000. 4. The purified enzyme contained 29% carbohydrate consisting of glucosamine, mannose and galactose. The amino acid composition of this enzyme was not specific compared with other known acid phosphatases.

Acid Phosphatase↗

Members of a unique histidine acid phosphatase family are conserved amongst a group of primitive eukaryotic human pathogens.

Recently, we identified and characterized the genes encoding several distinct members of the histidine-acid phosphatase enzyme family from Leishmania donovani, a primitive protozoan pathogen of humans. These included genes encoding the heavily phosphorylated/glycosylated, tartrate-sensitive, secretory acid phosphatases (Ld SAcP-1 and Ld SAcP-2) and the unique, tartrate-resistant, externally-oriented, surface membrane-bound acid phosphatase (Ld MAcP) of this parasite. It had been previously suggested that these enzymes may play essential roles in the growth, development and survival of this organism. In this report, to further examine this hypothesis, we assessed whether members of the L. donovani histidine-acid phosphatase enzyme family were conserved amongst other pathogenic Leishmania and related trypanosomatid parasites. Such phylogenetic conservation would clearly indicate an evolutionary selection for this family of enzymes and strongly suggest and support an important functional role for acid phosphatases to the survival of these parasites. Results of pulsed field gel electrophoresis and Southern blotting showed that homologs of both the Ld SAcPs and Ld MAcP were present in each of the visceral and cutaneous Leishmania species examined (i.e. isolates of L. donovani, L. infantum, L. tropica, L. major and L. mexicana, respectively). Further, results of enzyme assays showed that all of these organisms expressed both tartrate-sensitive and tartrate-resistant acid phosphatase activities. In addition, homologs of both the Ld SAcPs and Ld MAcP genes and their corresponding enzyme activities were also identified in two Crithidia species (C. fasciculata and C. luciliae) and in Leptomonas seymouri. In contrast, Trypanosoma brucei, Trypanosoma cruzi and Phytomonas serpens had only very-low levels of such enzyme activities. Cumulatively, results of this study showed that homologs of the Ld SAcPs and Ld MAcP are conserved amongst all pathogenic Leishmania sps. suggesting that they may play significant functional roles in the growth, development and survival of all members of this important group of human pathogens.

Acid Phosphatase↗