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Cellular acid phosphatase activity: correlation of cytochemical and biochemical measurements.

Methods for comparing results of cellular acid phosphatase activities obtained by quantitative cytospectrophotometry with those obtained by biochemical analysis are needed to express the cytospectrophotometric data in biochemical units. Since naturally occurring cells have differing amounts of acid phosphatase, enzyme activity was measured cytochemically and biochemically in polymorphonuclear leukocytes and peritoneal and alveolar macrophages from male rats to determine if these measurements permitted construction of a line correlating the two parameters. Cellular acid phosphatase activity, as measured cytospectrophotometrically and biochemically, increased proportionately with polymorphonuclear leukocytes having the lowest activities and alveolar macrophages the highest. These values when subjected to linear regression analysis fixed a line with a correlation coefficient of 0.95 demonstrating that cytochemical and biochemical activities of acid phosphatase activity can be correlated using naturally occurring cells.

Acid Phosphatase↗

Purification and properties of acid phosphatases isolated from Owenia fusiformis.

Acid phosphatase (EC. 3.1.3.2) has been separated by molecular sieving into two fractions and these fractions were purified by Sephadex ion-exchange chromatography. One of the purified enzymes (fraction II) was purified 830 fold and had a specific activity of 34 international units per mg protein at 37 degrees C and at a pH of 4.9. The Km value with p-nitrophenylphosphate as substrate was 9.10(-4) M and the kinetic studies showed no possibilities of control by allosteric transitions, and no effect of metabolites (amino acids) on the reaction velocity.

Acid Phosphatase↗

Parotid saliva acid phosphatase in health and disease.

Acid phosphatase levels in serum from 5 patients with prostatic carcinoma were diagnostically higher than those from 5 patients who had undergone prostatectomy. The levels for saliva when compared with those from normal subjects for stimulated (314) and unstimulated (50) salivas could not serve as an index of serum concentration.

Acid Phosphatase↗

Identification of coenzyme M biosynthetic 2-phosphosulfolactate phosphatase. A member of a new class of Mg(2+)-dependent acid phosphatases.

Coenzyme M (CoM; 2-mercaptoethanesulfonic acid) is the terminal methyl carrier in methanogenesis. Methanogenic archaea begin the production of this essential cofactor by sulfonating phosphoenolpyruvate to form 2-phospho-3-sulfolactate. After dephosphorylation, this precursor is oxidized, decarboxylated and then reductively thiolated to form CoM. A thermostable phosphosulfolactate phosphohydrolase (EC 3.1.3.-) catalyzing the second step in CoM biosynthesis, was identified in the hyperthermophilic euryarchaeon Methanococcus jannaschii. The predicted ORF MJ1140 in the genome of M. jannaschii encodes ComB, a Mg2+-dependent acid phosphatase that is specific for 2-hydroxycarboxylic acid phosphate esters. Recombinantly expressed purified ComB efficiently hydrolyzes rac-2-phosphosulfolactate, (S)-2-phospholactate, phosphoglycolate and both enantiomers of 2-phosphomalate. In contrast to previously studied phosphoglycolate phosphatases, ComB has a low pH optimum for activity, a narrow substrate specificity and an amino acid sequence dissimilar to any biochemically characterized protein. Like other phosphatases that function via covalent phosphoenzyme intermediates, ComB can catalyze a transphosphorylation reaction. Homologs of comB are identified in all available cyanobacterial genome sequences and in genomes from phylogenetically diverse bacteria and archaea; most of these organisms lack homologs of other CoM biosynthetic genes. The broad and disparate distribution of comB homologs suggests that the gene has been recruited frequently into new metabolic pathways.

Acid Phosphatase↗

Differential androgen modulation of acid phosphatase isozymes in primary cultures of rat ventral prostate epithelial and stromal cells.

The influence of androgen on prostate differentiated cell function was investigated using primary cultures of rat ventral prostate epithelial and stromal cells developed from sexually immature animals (21 days of age). As a biochemical marker of androgen action, total acid phosphatase activity, which comprises both the secretory and lysosomal isoforms, was measured. Testosterone increased total acid phosphatase activity approximately 2-fold in epithelial cell cultures. This increase occurred only after the cessation of cell proliferation (i.e. upon reaching a confluent monolayer). In contrast, stromal cells showed no significant change in total acid phosphatase activity in response to androgen. Polyacrylamide gel isoelectric focusing of total acid phosphatase activity from epithelial and stromal cell extracts revealed that secretory acid phosphatase activity was localized exclusively in the epithelial cells while lysosomal acid phosphatase activity was present in both cell types. Furthermore, the androgen-induced increases in epithelial total acid phosphatase activity were found to result from increases in the secretory isoform.

Acid Phosphatase↗

Acid phosphatases bind to the main high density lipoprotein apolipoprotein A-I.

The serum protein binding secretory prostatic acid phosphatase (PAP) and lysosomal placental acid phosphatase (LAP) was purified using affinity chromatography on gels containing immobilized acid phosphatases. The protein, which could be eluted from these enzyme affinity gels only with 0.05 mol/l HCl (pH 2.0), was shown to be apolipoprotein A-I (apo A-I), the main structural protein of high density lipoprotein (HDL).

Acid Phosphatase↗

Acid phosphatase stimulation of the growth of Nocardia asteroides and its possible relationship to the modification of lysosomal enzymes in macrophages.

Lysosomal acid phosphatase levels are reduced in murine macrophages by virulent strains of Nocardia asteroides. At the same time, other lysosomal enzymes either remain unchanged or increase in activity, indicating that acid phosphatase is not lost because of degranulation or membrane leakage. This study shows that acid phosphatase was utilized as a sole carbon source by Nocardia asteroides and that acid phosphatase combined with glutamate as a carbon source enhanced nocardial growth. As a consequence, the inverse relationship that was observed between acid phosphatase activity and the bactericidal capacity of macrophages infected with N. asteroides appears to be due to the ability of N. asteroides to preferentially metabolize this lysosomal enzyme during growth within phagocytes.

Acid Phosphatase↗

Ultrastructural localization of acid phosphatase activity in plasma cells containing Russell's bodies in periodontitis.

Acid phosphatase activity was examined ultracytochemically in gingival specimens to elucidate the response of plasma cells to Russell's bodies. The acid phosphatase activity was discernible in lysosomes of various morphology, some of which contained Russell's bodies. The acid phosphatase activity was stronger in the peripheries of such lysosomes, but weak activity was also found inside Russell's bodies. These findings indicated that at least some of Russell's bodies formed within the plasma cells were degraded in autophagolysosomes.

Acid Phosphatase↗

The acid phosphatases of Thermoascus crustaceus, a thermophilic fungus.

Thermoascus crustaceus, a filamentous, thermophilic ascomycete with pathogenic potential was cultured on Sabouraud's liquid medium at temperatures from 27 to 47 degrees C for periods up to 7 days. Growth rate and yield were optimal at 37 degrees C. Morphological changes were confined to the cell walls, the thickness being greatest at 47 degrees C, which were also more resistant to mechanical disruption. Significant amounts of acid phosphatase (EC 3.1.3.2) activity occurred in the spent media of all cultures but were greatest at 37 degrees C. The proportions of acid phosphatase activity which were operationally defined as soluble or bound were also documented; the optimum pH for acid phosphatase activity in all fractions was 5.0. Extracts were subjected to polyacrylamide gel electrophoresis under non-denaturing conditions and the gels were stained for acid phosphatase activity. This revealed four electrophoretically distinct acid phosphatases which had different susceptibilities to inhibition by fluoride, phosphate, or tartrate. Effects of growth temperature, or phosphate supplement in the culture medium, on the acid phosphatase isoenzyme pattern were judged to be minor. Cytochemistry at the electron microscope level indicated acid phosphatase activity on the surface, in the periplasmic space, and in the cytoplasm, but no trends with regard to growth conditions. A substantial temperature range can be tolerated by this species but it is concluded that neither the general shape of the cells nor the acid phosphatase isoenzyme pattern changes substantially; this contrasts with previously documented differences for this class of enzyme in dimorphic Sporotrix schenckii.

Acid Phosphatase↗

Purification and characterization of an acid phosphatase from Arachis hypogaea.

An acid phosphatase from Arachis hypogaea (peanuts) has been purified. The electrophoretically homogeneous enzyme preparation is free of any phophodiesterase activity. The enzyme has a molecular weight of 120,000. Among the various phosphomonoesters tested, p-nitrophenylphosphate was found to be its most effective substrate. The Km for p-nitrophenylphosphate was 1.21 mM at pH 5.0 and 25 degrees C. The enzyme was thermostable and did not loose activity after 1 hr at 50 degrees C.

Acid Phosphatase↗

Acid phosphatase activity in human semen.

Acid phosphatase (ACP) was studied in normal and abnormal human semen of individuals not suffering from testosterone deficiency. Study of ACP activity was performed on 365 men referred to the OPD clinic of L.T.M.G. Hospital, Bombay. Semen samples were classified into five groups according to sperm concentration, vitality, motility, and morphology. An inverse correlation was found between enzyme activity and sperm concentration. Statistical analysis revealed that ACP activity was maximal in the azoospermic group, and decreases as the sperm concentration increases. On the basis of this, measurement of ACP in human semen may be useful in clinical practice.

Acid Phosphatase↗

[What is the use of the radioimmunoassay of prostatic acid phosphatase?].

Radioimmunoassay (RIA) of prostatic acid phosphatases (PAP) using the Gammadab (R) PAP pack supplied by Clinical Assays in an effective method for determining extension of prostatic cancer. In patients with lymph node or metastatic invasion serum assay values are almost always elevated (sensitivity = 94%), especially with well differentiated cancer. Elevated levels of this variable are practically pathognomonic of external extension (specificity = 94%). This is of importance in therapy since the degree of invasion determines the choice between palliative and curative treatment. Strategy leading to this therapeutic choice can be greatly simplified and thus modified by RIA of PAP.

Acid Phosphatase↗

Immobilized enzymes on chitosan columns: alpha-chymotrypsin and acid phosphatase.

alpha-Chymotrypsin and acid phosphatase have been immobilized on chitosan, a polyaminosaccharide, without using any intermediate reagent; the immobilized enzymes are active and their activity is much higher than for chitin-immobilized enzymes. The best pH conditions for operating chitosan columns have been determined and columns have been used to transform substrates in large amounts, with no decrease of activity or enzyme losses. Due to the nonconvalent interaction between chitosan and enzymes, the pure and active enzymes can be eventually recovered from the columns. The effects of metal ions, aldehydes, and salts are reported and discussed. Applications are foreseen in the food and biomedical sciences and industries.

Acid Phosphatase↗

Leishmania donovani: surface membrane acid phosphatase blocks neutrophil oxidative metabolite production.

We show that a purified preparation of the prominent tartrate-resistant acid phosphatase (E.C.3.1.3.2), isolated from the external surface of the intracellular parasite Leishmania donovani (promastigote form), inhibits toxic oxidative metabolite production of neutrophils. Preincubation of a neutrophil suspension (2.5 X 10(6) cells/ml) for 15 min at 37 C with 250 units (1 unit equals 1 nmole of 4-methylumbelliferyl phosphate cleaved per hr at pH 5.5) of the acid phosphatase in Krebs-Ringer phosphate buffer (pH 7.4) decreased O2 consumption, O2- production, and H2O2 production of N-formyl-methionyl-leucyl-phenylalanine (fMet-Leu-Phe)-stimulated neutrophils to 15-25% of control values. The acid phosphatase also affected concanavalin A-stimulated O2-production by neutrophils, but had no effect on the rate of phorbol myristic acetate-stimulated O2- production, chemotactic peptide binding, degranulation, or membrane depolarization. Addition of an acid phosphatase inhibitor (Complex E; (NH4)6[P2Mo18O62] X 9H2O) to suspensions of opsonized promastigotes and neutrophils resulted in a threefold or greater enhancement of O2- production. These results suggest a possible pathophysiologic role for the acid phosphatase of L. donovani promastigotes.

Acid Phosphatase↗

Activation of low molecular weight acid phosphatase from bovine brain by purines and glycerol.

Low molecular weight acid phosphatase (orthophosphoric monoester phosphophydrolase (acid optimum), EC 3.1.3.2) from bovine brain is activated up to 4-fold by guanosine, guanine, adenine, adenosine, and 6-ethylmercapto-purine. Several pyrimidines and other purines were tested and did not show any activation effect. The rate enhancement induced by purines is uncompetitive and not caused by transphosphorylation to the activator. Using transphosphorylation to glycerol as a probe, it is proposed that the activator binds to one of the phosphorylated intermediates in the reaction pathway. These findings are discussed in terms of the catalytic mechanism of low molecular weight acid phosphatase.

4-Nitrophenylphosphatase↗

Purification and characterization of a low-molecular-weight acid phosphatase--a phosphotyrosyl-protein phosphatase from bovine heart.

A low-molecular-weight acid phosphatase that is representative of a group recently shown to be phosphotyrosyl protein phosphatases was purified to homogeneity from bovine heart. The enzyme was a monomer with a molecular mass of 18 kDa and had an isoelectric point of 7.0. The absorption coefficient, E1% 1cm was 9.65 at 280 nm. The enzyme had pH optima of 5.3 and 6.0 with the substrates p-nitrophenyl phosphate and tyrosine phosphate, respectively. When measured at pH 5 and 37 degrees C, the enzyme had specific activities of 114 and 86 mumol min-1 mg-1 for p-nitrophenyl phosphate and tyrosine O-phosphate, respectively, while the Km values were 0.38 and 14 mM. The enzyme was highly specific for aryl monophosphate esters and showed little or no activity toward aliphatic phosphate esters, with the remarkable exception of flavin mononucleotide (FMN) and certain of its structural analogs. As shown by 31P NMR data, the activity toward FMN was due to the hydrolysis of one of the eight components present in the (commercial) sample. Both molybdate and vanadate were potent inhibitors, with inhibition constants of 37 and 29 microM, respectively; tartrate and fluoride had little effect on enzymatic activity. A two-stage reversible denaturation of the enzyme by guanidine HCl was observed with midpoints of 0.25 and 1.75 M, respectively. The amino acid composition was homologous to the low-molecular-weight acid phosphatases from other tissue. The enzyme showed immunological cross-reactivity against low-molecular-weight human liver acid phosphatase. There were 7 or 8 accessible cysteines on the monomeric protein and at least one was essential for enzyme activity. The enzyme also had phosphotransferase activity, for example transferring phosphate from p-nitrophenyl phosphate to a wide variety of alcohol acceptors.

Amino Acids↗

Activity of acid phosphatase in target binding cells expressing NK cytotoxic potential.

Activity of acid phosphatase was analysed in the NK-effectors from human blood forming conjugates with K 562 cells. Presence of activity of acid phosphatase was associated with the cytolytic potential of the NK-effectors. The non-lytic target-binders did not express activity of this enzyme. The results suggest that activity of acid phosphatase in the effector cells of NK reaction is important in the lethal hit stage.

Acid Phosphatase↗

Elution of Acid Phosphatase from the Cell Surface of Saccharomyces mellis by Potassium Chloride.

Weimberg, Ralph (Northern Regional Research Laboratory, Peoria, Ill.), and William L. Orton. Elution of acid phosphatase from the cell surface of Saccharomyces mellis by potassium chloride. J. Bacteriol. 90:82-94. 1965.-Acid phosphatase of Saccharomyces mellis may be eluted from intact resting cells by 0.5 m KCl or other salts. However, the enzyme is not eluted at higher salt concentrations of about 2 m unless a thiol, such as beta-mercaptoethanol, is included in the reaction mixture. These treatments do not significantly affect viability of the cells. Neutral compounds like sorbitol or sucrose cannot substitute for ionic compounds in eluting the enzyme from resting cells. Furthermore, the neutral compounds are also inadequate for stabilizing the protoplast structure. It is suggested that the enzyme is held on the cell surface by a combination of electrostatic forces and disulfide bonds. Thiol alone dissociates protein and carbohydrate from the cell surface, but the eluate has no acid phosphatase activity. Salts also remove protein and carbohydrate from the cell surface, but the amount of protein removed is considerably less than that dissociated by thiol. A concentration of 0.5 m KCl elutes more protein than does a 2 m concentration, and enzymatic activity is present only in the 0.5 m KCl eluate. The carbohydrate eluted by either reagent has been identified as a mannan. Conditions for eluting acid phosphatase from acetonedried cells of S. mellis are essentially the same as those for resting cells. Significantly, though, thiol is required at all salt concentrations to dissociate the enzyme. Pretreatment of the cells with thiol, followed by KCl, elutes acid phosphatase, whereas the reverse procedure does not. Acid phosphatase is excreted by growing cells of S. mellis into growth media if the medium contains 0.25 m KCl. The total yield of enzymatic activity may be 8 to 10 times greater than is usually present on derepressed cells grown in a salt-free medium. The enzyme can be precipitated from the culture fluid with acetone. The acetone-precipitated fraction contains mannan and protein in a ratio of 12:1 by weight. Partial purification of the enzyme by calcium phosphate gel and elution resulted in an enzyme fraction in which the specific activity on the basis of protein increased 12-fold, and the carbohydrate-protein ratio was reduced to 1:1.

Journal Article↗