Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “ACID PHOSPHATASE”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,459 records · Page 81Linked to original sources

Histochemical demonstration of acid phosphatase in a human retinal pigment epithelial cell line.

The retinal pigment epithelium (RPE) has numerous lysosomes and shows the highest acid phosphatase activity among eye tissues. In an established cell line of human RPE (K-1034), acid phosphatase activity, as a lysosome marker was investigated histochemically to evaluate the maintenance of original RPE characteristics. Even after 100 passages, RPE cells showed remarkable enzyme activity, and had numerous electron-dense bodies which were confirmed to be lysosomes. These results show that this cell line can maintain one of the vital functions of the RPE and provide useful experimental material for functional studies of the human RPE.

Acid Phosphatase↗

Sequencing, cloning, and expression of human red cell-type acid phosphatase, a cytoplasmic phosphotyrosyl protein phosphatase.

Low molecular weight phosphotyrosyl protein phosphatases of human placenta and human red cell were purified and sequenced by a combination of Edman degradation and tandem mass spectrometry. Screening of a human placental lambda gt11 cDNA library yielded overlapping cDNA clones coding for two distinct human cytoplasmic low molecular weight phosphotyrosyl protein phosphatases (HCPTPs). The two longest clones, designated HCPTP1-1 and HCPTP2-1, were found to have identical nucleotide sequences, with the exception of a 108-base pair segment in the middle of the open reading frame. Polymerase chain reaction studies with human genomic DNA suggest that the difference between HCPTP1-1 and HCPTP2-1 does not result from alternative RNA splicing. Studies with a human chromosome 2-specific library confirmed that these sequences are located on chromosome 2, which is known to be the location of red cell acid phosphatase locus ACP1. The coding sequences of HCPTP1-1 and HCPTP2-1 were placed downstream from a bacteriophage T7 promoter and the proteins were expressed in Escherichia coli. The resulting recombinant enzymes (designated HCPTP-A and HCPTP-B, respectively) showed molecular weights of 18,000 by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, and both of them exhibited immunoreactivity with antisera raised against authentic human placental and bovine heart enzymes. The expressed proteins were highly active towards the phosphatase substrates p-nitrophenyl phosphate, beta-naphthyl phosphate, and O-phospho-L-tyrosine, but not alpha-naphthyl phosphate, threonine phosphate, or O-phospho-L-serine. HCPTP-A and -B possessed effectively identical amino acid compositions, immunoreactivities, inhibition by formaldehyde, and kinetic properties when compared with two human red cell acid phosphatase isoenzymes. It is concluded that HCPTP-A and -B are the fast and slow forms of red cell acid phosphatase, respectively, and that this enzyme is not unique to the red cell but is instead expressed in all human tissues.

Acid Phosphatase↗

Gene expression and prostate specificity of human prostatic acid phosphatase (PAP): evaluation by RNA blot analyses.

A fragment of a complementary DNA (cDNA) clone for human prostatic acid phosphatase (PAP) (EC 3.1.3.2.) was used to study the expression of corresponding mRNA in human tissues. The specificity of its expression in benign prostatic hyperplasia (BPH) and prostatic carcinoma tissues were indicated in RNA blot analyses. The PAPcDNA probe did not recognize any specific mRNAs in RNAs extracted from human liver cancer, lung cancer, pancreatic cancer, placenta, breast cancer cells (MCF-7), mononuclear blood cells or acute promyelocytic leukemia cells (HL-60), according to Northern blot analysis. mRNA for PAP was detected in the androgen-dependent human prostatic cancer cell line LNCaP, but not in the androgen-insensitive human prostatic cancer cell line PC-3. In contrast, lysosomal acid phosphatase (LAP) mRNA was detected in both of these human prostatic cancer cell lines. Our findings indicate a high specificity for the PAP gene in prostatic tissue. The mean abundance for the PAPmRNA expression was 0.26 for prostatic carcinoma samples (n = 11) and 0.46 for BPH samples (n = 8) according to slot-blot analysis. The differences observed between the different categories of prostatic tissue in PAPmRNA abundances call for additional studies on regulation of its expression.

Acid Phosphatase↗

In vitro synthesis of repressible yeast acid phosphatase: identification of multiple mRNAs and products.

Antibodies to repressible nonspecific acid phosphatase [APase; orthophosphoric-monoester phosphohydrolase (acid optimum), EC 3.1.3.2] purified from Saccharomyces cerevisiae were used to detect the in vitro products of APase mRNA. Immunoprecipitation of cell-free synthesized protein and of in vivo enzyme from cell extracts has shown that derepression of enzyme synthesis in situ is the result of de novo appearance of functional mRNA followed by de novo protein synthesis. At least three unique APase polypeptides are synthesized in vitro from separate mRNAs and appear to be glycosylated in vivo to form secreted enzyme.

Acid Phosphatase↗

The oligosaccharides of the Fe(III)-Zn(II) purple acid phosphatase of the red kidney bean. Determination of the structure by a combination of matrix-assisted laser desorption/ionization mass spectrometry and selective enzymic degradation.

Purple acid phosphatase of the common bean Phaseolus vulgaris (KBPase), a dimeric 110-kDa glycoprotein related to the mammalian purple acid phosphatases with a two-metal cluster at the active site contains five oligosaccharide side chains/monomer. The N-linked glycan structures were characterized by selective enzymic degradation in combination with matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS). The purified protein was cleaved by cyanogen bromide. One 30-kDa large methionine-free fragment required a further tryptic digest. The peptides were separated by HPLC and the glycosylated species were identified both by their heterogeneous mass spectra and by an immunoassay. None of the glycopeptides proved to have more than one glycosylation site. The composition of the carbohydrate moieties were calculated by comparing the mass spectra of the glycopeptides before and after enzymic deglycosylation. These results were complemented by data from a carbohydrate composition analysis. In four of the five peptides an alpha 1-3 fucose attached to the asparagine-linked N-acetylglucosamine prevented removal of the glycan by peptide N-glycosidase F; peptide N-glycosidase A removed all carbohydrates from the peptides. To reveal the sequence of the carbohydrate moiety including the linkage positions between the different saccharides, one of the glycopeptides was degraded by specific exoglycosidases. The enzymic degradations by these hydrolases were monitored by mass spectrometry of small aliquots taken at intervals during the reaction. The detailed structure of this one glycan in conjunction with the respective mass spectra and the composition analysis were used to infer the structure of the other four glycans. All glycans of the KBPase have a complex-type xylose-containing structure with four of the five having an additional fucose.

Acid Phosphatase↗

Characterization of acid phosphatase and phosphorylcholine hydrolase in adult Haemonchus contortus.

An acid phosphatase (AP) and a phosphorylcholine hydrolase (PCH) were detected in excretory-secretory (ESP) products from adult Haemonchus contortus. The AP had a pH optimum of 4.5 and was inhibited by tartaric acid and sodium fluoride, but not by o-phenanthroline. The AP hydrolyzed paranitrophenol (pnp)-phosphate and to a lesser extent pnp-phenyl-phosphonate but did not hydrolyze diester substrates. Purified AP consisted of heterodimers with relative molecular weight (Mr) of 41.9 and 48.7 kDa and had a native molecular weight of 98 kDa by size-exclusion chromatography (SEC). The PCH had a pH optimum of about 9.5 and was inhibited by EDTA and o-phenanthroline but not by the specific phospholipase inhibitor D609. The specific activity of PCH in the ESP was approximately 25-fold less than that of AP. PCH also hydrolyzed 5'-thymidine monophosphate-pnp at a rate about 40% lower than pnp-phosphorylcholine but did not hydrolyze 3'-thymidine monophosphate-pnp. Partial purification of PCH suggests an Mr of 50.2 kDa by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and an Mr of 102 kDa by SEC. Both AP and PHC were secreted in vitro in a time-dependent manner and had their highest concentrations in the intestine. The results indicate that H. contortus adults secrete significant amounts of AP that might be a digestive enzyme. PCH is also an intestinal enzyme and is secreted in lesser amounts than AP. The PCH is probably not a phospholipase C but has some characteristics of a type I phosphodiesterase.

Acid Phosphatase↗

Enzyme immunoassay for the prostate-specific acid phosphatase (E. C. 3.1.3.2).

The clinical application of enzyme immunoassay for the determination of the prostate-specific acid phosphatase is reported. 227 sera were investigated in the diagnosis as well as in tumour monitoring and a good correlation with the clinical stage was found. In prostatic carcinomas 5 of 13 with stage T1, 11 or 12 patients with stage T2, 16 of 16 patients with T3 and 19 of 19 patients with stage T4 disease had values above 1 ng/ml. In prostatic adenomas (n = 69) in prostatitis (n = 40) and in other carcinomas of the urogenital tract (n = 28), renal carcinomas, carcinomas of the bladder and the penis) the values of the prostate-specific acid phosphatase measured by the enzyme immunoassay 131 of 137 were under 1 ng/ml. A comparison of random samples with the radioimmunoassay for this enzyme showed good correlation.

Acid Phosphatase↗

A histochemical study of alkaline and acid phosphatase activity in subchondral bone from osteoarthrotic human hips.

In order to analyze the presence of alkaline and acid phosphatase activity in osteoarthrotic subchondral bone frozen sections from 24 femoral heads were prepared for semiquantitative analysis, using the enzyme-histochemical methods described by Burstone and by Barka and Anderson. Different areas of the subchondral bone, viz. weight-bearing, nonweight-bearing and osteophytes as well as central regions were analyzed. Furthermore, the cartilagenous changes were determined by histological-histochemical grading. There were wide variations within the same femoral head with significantly greater activity of both alkaline and acid phosphatase in weight-bearing than in nonweight-bearing areas and in subchondral bone than in central regions. Osteophytes excluded, the enzyme activities correlated directly with the severity of the cartilage lesions. These enzyme activities presumably reflect the degree of bone regeneration and bone resorption respectively.

Acid Phosphatase↗

Kinetics of inactivation of Penaeus penicillatus acid phosphatase during inhibition by N-bromosuccinimide.

In the present investigation, the inactivation by N-bromosuccinimide of acid phosphatase from penaeus penicillatus has been studied using the kinetic method of the substrate reaction during modification of enzyme activity as previously described by Tsou [(1988, Adv. Enzymemol. Related Areas Mol. Biol. 61, 381-436]. The results show that inactivation of the enzyme by N-bromosuccinimide is a slow, reversible reaction. The results also clearly show that the modification of the tryptophan residues of penaeus penicillatus acid phosphatase by high concentrations of N-bromosuccinimide led to the complete inactivation of the enzyme. The microscopic rate constants were determined for the reaction of the inactivator with the free enzyme and with the enzyme-substrate complex. Comparison of the obtained microscopic rate constants indicates that the presence of the substrate offers marked protection of the enzyme against inactivation by N-bromosuccinimide. The above results suggest that the tryptophan residue is essential for activity and may be situated at the active site of the enzyme.

Acid Phosphatase↗

Effect of ultrasound guided core biopsy of prostate on serum concentration of prostate specific antigen and acid phosphatase activity.

Forty-three patients had their serum concentrations of prostate specific antigen and activity of tartrate inhibited acid phosphatase measured before and after digital rectal examination, transrectal ultrasonography and transrectal core biopsy. Transrectal core biopsy significantly increased the values for both tumor markers but rectal examination and ultrasonography without biopsy had no such effect. The measurements returned to normal within one week of biopsy in all but four patients who still had slightly increased concentrations of prostate specific antigen. We recommend that the concentration of prostate specific antigen and activity of tartrate inhibited acid phosphatase are checked before biopsy of the prostate is carried on.

Acid Phosphatase↗

A new method to localize acid phosphatase using the confocal laser-scanning microscope.

The aim of the study was to work out a technique for the detection of acid phosphatase enzyme activity by confocal laser-scanning microscope using the histochemical acid phosphatase detection method (after Barka and Anderson 1962, modified by Bowen and Lewis 1985) routinely used for light microscopy. The density and the distribution of enzyme reaction product is dependent on the incubation time, as shown by different confocal images or ELISA reader. The inhibition of the enzyme activity with metal ions shows the same profile known from the literature. This staining method seems to be useful to demonstrate subcellular distribution of the enzyme in the lysosomes and in the Golgi apparatus.

Acid Phosphatase↗

Asp304 of Escherichia coli acid phosphatase is involved in leaving group protonation.

Site-directed mutagenesis was used to explore the role of potential proton donors in the mechanism of the Escherichia coli acid phosphatase that is encoded by the appA gene. Asp304 appeared to be the only carboxylic acid residue that is conserved in the protein sequences of the high molecular weight acid phosphatases. The mutations Asp304Ala and Asp304Glu were introduced into appA and the corresponding proteins were overexpressed in E. coli and purified to homogeneity. Only small decreases were observed for the Km values of the substrates p-nitrophenyl phosphate, fructose 1,6-diphosphate, and tripolyphosphate. However, Vmax was greatly decreased, and the magnitude of effect depended markedly on substrate. Both mutant proteins exhibited significantly lower Vmax values with fructose 1,6-diphosphate, which possesses a much poorer leaving group than do the other two substrates. The importance of the leaving group was further tested by using a number of phenyl and alkyl phosphate derivatives as substrates. A linear correlation was observed between log Vmax and the pKa of the substrate leaving group for catalysis by the Asp304Ala mutant enzyme. These results are consistent with partition experiments using ethylene glycol as an alternate nucleophile, which indicated that for the Asp304Ala protein, the formation of a phosphoenzyme intermediate is the rate-determining step, in contrast to the situation for the wild type enzyme and the His303Ala mutant. In the latter case, the rate-limiting step of the reaction is interpreted to be the breakdown of phosphoenzyme. It is concluded that Asp304, rather than His303, is involved in protonation of the substrate leaving group.

Acid Phosphatase↗

Lysosomal and free acid phosphatase in salivary glands of chironomus tentans.

In cells of salivary glands of last-instar larvae of Chironomus tentans, acid phosphatase activity is bound to (probable) lysosomes and a few other cell organelles. At the end of the pupal molt the salivary gland breaks down. While acid phosphatase in areas of nondegenerated cells is still restricted to the structures mentioned, in degenerated areas the enzyme is freely distributed in the cytoplasm.

Acid Phosphatase↗

Effect of virulent and less virulent strains of Nocardia asteroides on acid-phosphatase activity in alveolar and peritoneal macrophages maintained in vitro.

Since virulent strains of Nocardia asteroides grow within macrophages, experiments were designed to determine whether this intracellular pathogen affects lysosomal enzyme levels. Peritoneal and alveolar macrophages from mice were infected in vitro with live or killed N asteroides of the virulent strain GUH-2 or with live nocardiae of the less virulent strain 10905, which is killed by macrophages. The activity of acid phosphatase in individual macrophages was quantitated by means of a computer-assisted cytospectrophotometry system. Slide preparations were Gram stained for quantitation of ingested nocardiae in the same macrophages. The level of acid phosphatase activity in alveolar and peritoneal macrophages was decreased by infection with live cells of the virulent strain; the level of activity was inversely proportional to the number of nocardiae ingested. This effect was not seen with killed bacteria of this strain or with live bacteria of the less virulent strain. These results demonstrate a relation between the virulence of N asteroides strains and the extent of reductions in lysosomal acid-phosphatase activity of macrophages.

Acid Phosphatase↗

Diagnostic accuracy of four assays of prostatic acid phosphatase. Comparison using receiver operating characteristic curve analysis.

We compared the diagnostic characteristics of four assays of prostatic acid phosphatase by two methods. In the first analysis, receiver operating characteristic (ROC) curves were developed and the areas under the curves were calculated. In the second analysis, the sensitivity of each assay was compared with the sensitivities of the other assays with specificities set at equal levels. One or more assays were performed in 1,298 patients; 141 underwent all four assays. Pairwise comparisons of the areas under the ROC curves showed no significant differences. No differences were found in the sensitivities of the four assays when the upper limits of normal were selected to provide equal specificities. We conclude that there is little difference in diagnostic accuracy among the prostatic acid phosphatase assays. Our findings contrast with previous studies that used only one upper limit of normal and that found some assays to be superior to others. Receiver operating characteristic curve analysis corrects for the bias introduced by the choice of an upper limit of normal.

Acid Phosphatase↗

Identification of the Pseudomonas aeruginosa acid phosphatase as a phosphorylcholine phosphatase activity.

Choline, betaine and N,N-dimethylglycine as the sole carbon and nitrogen source induced a periplasmic acid phosphatase activity in Pseudomonas aeruginosa. This enzyme produced the highest rates of hydrolysis in phosphorylcholine and phosphorylethanolamine among the various phosphoric esters tested. At saturating concentrations of Mg2+, the Km values were 0.2 and 0.7 mM for phosphorylcholine and phosphorylethanolamine respectively. At high concentrations both compounds were inhibitors of the enzyme activity. The Ksi values for phosphorylcholine and phosphorylethanolamine were 1.0 and 3.0 mM respectively. The higher catalytic efficiency was that of phosphorylcholine. Considering these results it is possible to suggest that the Pseudomonas aeruginosa acid phosphatase is a phosphorylcholine phosphatase. The existence of this activity which is induced jointly with phospholipase C by different choline metabolites, in a high phosphate medium, suggests that the attack of Pseudomonas aeruginosa on the cell host may also be produced under conditions of high phosphate concentrations, when the alkaline phosphatase is absent.

Acid Phosphatase↗

Effects of 24,25(OH)2D3, 1,25(OH)2D3 and 25(OH)D3 on alkaline and tartrate-resistant acid phosphatase activities in fetal rat calvaria.

The aim of this work was to evaluate the effects of 24,25-dihydroxyvitamin D3, 24,25(OH)2D3, on alkaline phosphatase (AP) and tartrate-resistant acid phosphatase (TRAP) activities in fetal rat calvaria cultures. These actions were compared with those of 1,25-dihydroxyvitamin D3, 1,25(OH)2D3, and 25-hydroxyvitamin D3, 25(OH)D3, in similar experimental conditions. At 10 min, 30 min and at 24 h incubation time, 1,25(OH)2D3 (10(-10)M) and 25(OH)D3 (10(-7) M) produced a significant increase in AP and TRAP activities compared to control group (without vitamin D metabolites). However, 24,25(OH)2D3 (10(-7) M) only produced effects on phosphatase activities similar to those produced by 1,25(OH)2D3 and 25(OH)D3, after 24 h incubation time. These findings suggest that 1,25(OH)2D3 and 25(OH)2D3 could carry out actions in minutes (nongenomic mechanism), while 24,25(OH)2D3 needs longer periods of time to perform its biological actions (genomic mechanism).

24,25-Dihydroxyvitamin D 3↗

Tartrate-resistant acid phosphatase in serum of cancer patients.

Tartrate-resistant acid phosphatase activity determined by enzyme immunoassay was higher in the serum of cancer patients than that in normal blood donors. The highest activity was found among patients having malignancy metastatic to bone. The classic colorimetric method showed a broad range of values among normal blood donors, and the contrast between normal and cancer patients was less obvious. Most of the cancer patients had normal to low alkaline phosphatase activities.

Acid Phosphatase↗