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The effect of sublethal lead exposure on the ultrastructure and on the distribution of acid phosphatase activity in chloragocytes of earthworms (Annelida, Oligochaeta).

Laboratory experiments were conducted to study the effects of the exposure to a sublethal concentration (500 p.p.m.) of lead on the ultrastructure and acid phosphatase compartmentalization of the chloragogenous tissue of earthworms, Eisenia foetida. For the cytochemical demonstration of acid phosphatase activity, lead and cerium were used as capturing agents. In both cases there was a change in the compartmentalization of acid phosphatase, the enzyme activity being localized within the chloragosomes in controls, but distributed throughout the cytosol in treated animals. In addition, acid phosphatase activity increased following lead exposure. At the ultrastructural level, disruption of the chloragosomal membranes, an increase in chloragosomal fusion processes and vesiculation of the cytoplasm were evident. Moreover, an enhanced release of chloragosomes to the extracellular space was found in lead-exposed worms.

Acid Phosphatase↗

Quantitation of prostate-specific acid phosphatase in prostate cancer: reproducibility and correlation with subjective grade.

In this study, we quantitatively evaluated the intensity and extent of prostate-specific acid phosphatase in immunocytochemically stained prostate carcinoma tissue sections by using a dual-wave-length-based image processing technique. Tissue sections were doubly stained in a standard way, i.e., prostate-specific acid phosphatase was immunocytochemically labeled by peroxidase-antiperoxidase (PAP) technique using diaminobenezidene (DAB) as the substrate and hematoxylin as a nuclear counterstain. Statistical analysis in this study indicated that the quantitative measures of the prostate-specific acid phosphatase staining (PAP-DAB) are reproducible. We found that the quantitative intensity was generally proportional to the subjective intensity (graded as 1 to 4+) of PAP-DAB. Although the quantitative extent measurements compared with the subjective estimates of the percentage of tumor showing staining with PAP-DAB had a similar tendency, there were significant overlaps between extent of tumor staining falling in the mid-ranges. Because subjective grading of immunocytochemical prostate-specific acid phosphatase has been thought to be a useful marker of tumor differentiation in patients with prostate carcinoma, we also evaluated the relationship of the quantitative measures of PAP-DAB staining to other predictors of patient outcome, including histologic grades (Gleason score and MD Anderson grading scheme) and clinical stage. We confirmed that quantitative intensity and extent of PAP-DAB staining were independent of histologic grades and stage, just as the subjective measures of intensity and extent were found to be. Possible explanations of this lack of correlation are discussed.

3,3'-Diaminobenzidine↗

Evaluation of a monoclonal antibody-based immunoradiometric assay for prostatic acid phosphatase.

This report evaluates a new immunoradiometric assay for prostatic acid phosphatase in serum, based on a dual monoclonal antibody reaction system (Hybritech-TANDEM). A solidphase antibody binds the acid phosphatase molecule and a second monoclonal antibody to a different antigenic site serves as the 125I-radiolabel. The method was tested on 67 patients with various stages of prostatic carcinoma and 134 patients without the disease. It also was compared with a conventional polyclonal radioimmunoassay (NEN) and an enzymatic activity method (duPont aca). The upper limit for the TANDEM assay on nondiseased male patients was found to be 2.0 microgram/L. Based on this upper limit of normal, the diagnostic sensitivity of the method for all cases of prostatic carcinoma was 60%. We could not distinguish the enzyme released in abnormal amounts due to benign prostatic hypertrophy and certain nonprostatic malignant diseases from that of prostatic carcinoma. The diagnostic specificity was calculated at 95%. For the clinically undetectable Stage 1 disease, sensitivity was 44% (four abnormal values out of nine cases). The TANDEM procedure is simple to use and reproducible.

Acid Phosphatase↗

Expression and distribution of tartrate-resistant purple acid phosphatase in the rat nervous system.

Tartrate-resistant purple acid phosphatase (TRAP) of osteoclasts and certain cells of the monocyte-macrophage lineage belongs to the family of purple acid phosphatases (PAPs). We provide here evidence for TRAP/PAP expression in the central and peripheral nervous systems in the rat. TRAP/PAP protein was partially purified and characterized from the trigeminal ganglion, brain, and spinal cord. The TRAP activity (U/mg tissue) in these tissues was about 10-20 times lower than in bone. Reducing agents, e.g. ascorbate and ferric iron, increased the TRAP activity from the neural tissues (nTRAP) and addition of oxidizing agents completely inactivated both bone and nTRAP. The IC(50) for three known oxyanion inhibitors of TRAP/PAP was similar for bone and nTRAP with the same rank order of potency (molybdate > tungstate > phosphate). This indicates that the redox-sensitive binuclear iron center characteristic of mammalian PAPs is present also in nTRAP. Western blots of partially purified nTRAP revealed a band with the expected size of 35 kD. The expression of TRAP in the trigeminal ganglion, brain, and spinal cord was confirmed at the mRNA level by RT-PCR. In situ hybridization histochemistry demonstrated TRAP mRNA expression in small ganglion cells of the trigeminal ganglion, in alpha-motor neurons of the ventral spinal cord, and in Purkinje cells of the cerebellum. TRAP-like immunoreactivity was encountered in the cytoplasm of neuronal cell bodies in specific areas of both the central and the peripheral nervous system. Together, the data demonstrate that active TRAP/PAP is expressed in certain parts of the rat nervous system.

Acid Phosphatase↗

Purification and some properties of a Mg(2+)-activated acid phosphatase from rat testis.

1. The acid phosphatase (AcPase, EC 3.1.3.2) IV from rat testicular tissue was purified to apparent homogeneity. 2. The enzyme displays a native molecular weight of 70 kDa determined on gel permeation chromatography on a Sephadex G-100 column and 68 kDa using linear 5-20% sucrose density gradient centrifugation. The subunit molecular weight on SDS-PAGE analysis is 67 kDa, suggesting that the enzyme is a monomeric protein. 3. The enzyme does not bind to Concanavaline A-Sepharose 4B column, indicating that it is not a glycoprotein. 4. The rat testis AcPase IV is a metal activated enzyme in which Mg2+ is the metal activating agent with a Ka = 0.88 x 10(-3) M. The Michaelis constant for p-nitrophenylphosphate, in the presence of saturating concentrations of Mg2+ ions, is 0.23 x 10(-3) M. 5. The enzyme preferentially hydrolyzes p-nitrophenylphosphate, phenylphosphate and ATP.

Acid Phosphatase↗

[Mutual effect of invertase and acid phosphatase from the yeast Saccharomyces cerevisiae on their secretion into culture media].

The hypothesis that various extracellular enzymes produced by the yeast Saccharomyces cerevisiae exert a mutual influence on their secretion into the culture medium was tested experimentally. The statistically processed results indicate that extracellular invertase affects the secretion of acid phosphatase, and acid phosphatase affects the secretion of invertase. In addition, the secretion of each of these enzymes was shown to be subject to autoregulation.

Acid Phosphatase↗

Inhibition of hydrolytic enzymes by gold compounds. I. beta-Glucuronidase and acid phosphatase by sodium tetrachloroaurate (III) and potassium tetrabromoaurate (III).

Purified bovine liver beta-glucuronidase (beta-D-glucuronide glucuronohydrolase, EC 3.2.1.32) and wheat germ acid phosphatase (orthophosphoric monoesterphosphohydrolase, EC 3.1.3.2) were inhibited with freshly dissolved and 24 h aquated tetrahaloaurate (III) compounds. Rate and equilibrium inhibition constants were measured. From this data two acid phosphatases species were observed. Equilibrium inhibition constants ranged from 1 to 12.5 microM for the various gold compounds toward both enzymes. The first order rate constants ranged between 0.005 and 0.04 min.-1 for most reactions with the exception of the fast reacting acid phosphatase which had values as high as 2.6 and 2.8 min.-1. It is observed that the beta-glucuronidase is rapidly inhibited during the equilibrium phase before the more slower reaction covalent bond formation takes place. The acid phosphatases form the covalent bonds more rapidly, especially the faster reacting species suggesting a unique difference in the active site geometry to that of the more slowly reacting species. The tightly bonded gold (III)-enzyme complex is probably the reason for its toxicity and non-anti-inflammatory use as a drug.

Acid Phosphatase↗

The complete primary structure elucidation of Aspergillus ficuum (niger), pH 6.0, optimum acid phosphatase by Edman degradation.

The primary structure of the Aspergillus ficuum (niger) NRRL 3135 extracellular, pH 6.0, optimum acid phosphatase (E.C.3.1.3.2) was elucidated by gas phase sequencing. It was deduced by sequence overlap of peptides obtained from trypsin, chymotrypsin, clostripain, and cyanogen bromide digests of the pyridylethylated protein. The mature, active protein is composed of 583 amino acids, including 13 glycosylated Asn residues. The unglycosylated protein has a MW of 64,245-KDa and a pI of 4.97. Two putative metal binding sites were identified in the molecule. This enzyme may represent a special class of high molecular weight acid phosphatase, since it lacks the active site sequence RHGXRXP and shows no significant homology with known acid phosphatases containing this active site. Homology to human type 5 and A.niger APases was detected, however.

Acid Phosphatase↗

Molecular cloning of the type 5, iron-containing, tartrate-resistant acid phosphatase from human placenta.

The type 5, iron-containing, tartrate-resistant acid phosphatase (TR-AP) constitutes a relatively minor intracellular isozyme of acid phosphatase in the human that is immunologically related to uteroferrin, a secreted progesterone-induced protein of the porcine uterus. Here, the purification of small amounts of TR-AP from human placenta is described. When a placental lambda gt11 cDNA library was screened with two short 32P-labeled cDNA clones from within the coding region of uteroferrin, a 1412-base pair cDNA was identified that encodes the entire human TR-AP isozyme. This cDNA contains an open reading frame of 969 base pairs, corresponding to a protein of 323 amino acids. A putative signal sequence of 19 amino acids and two potential glycosylation sites are present. The deduced amino acid sequence of the human TR-AP is 85% identical to that of porcine uteroferrin (whose sequence is also reported here in complete form for the first time) and 82% identical to the corresponding regions of a partial amino acid sequence of a bovine spleen phosphoprotein phosphatase. Northern blotting techniques employing a labeled TR-AP cDNA probe revealed the presence of a 1.5-kilobase transcript in white cells from a patient with hairy cell leukemia, in human K562 erythroleukemic cells, and in Epstein-Barr virus-transformed human B-cells, but not in a human T-cell line. Culture of K562 cells in presence of 10(-8) M phorbol 12-myristate 13-acetate ester for 48-72 h enhanced TR-AP activity per cell about 30-fold and led to a corresponding increase in TR-AP mRNA levels.

Acid Phosphatase↗

In vitro effects of hormones and autacoids on the activity of acid phosphatase in the lysates of endotoxin-activated rat peritoneal and bronchoalveolar macrophages.

Peritoneal and bronchoalveolar macrophages activated in vitro by endotoxin, exhibit alterations in the acid phosphatase activity of cell lysates when certain hormones or autacoids are present in the culture medium. They also show morphological changes concerning general appearance and acid phosphatase cytochemistry. Certain agents known to increase the intracellular levels of cyclic AMP, such as dopamine and prostaglandin E2, decreased this enzyme activity in the lysates of peritoneal macrophages. Adrenalin had no effect on this activity at 14 hours, but was found to increase the activity in the culture medium at the initial hours of incubation. Glucagon decreased whereas insulin increased acid phosphatase activity in bronchoalveolar macrophages. Serotonin or histamine, known to activate phospholipase C, increased this activity in peritoneal or bronchoalveolar macrophages. The results of this study, taken together with previously published data (Kondomerkos et al., 2003), suggest that hormones and autacoids may control certain parameters of macrophage activation including acid phosphatase activity.

Acid Phosphatase↗

Gene dosage: evidence for assignment of erythrocyte acid phosphatase locus to chromosome 2.

A child, trisomic for the distal short arm of chromosome 2 due to a familial 2/18 translocation, has elevated levels of activity of erythrocyte acid phosphatase [orthophosphoric-monoester phosphohydrolase (acid optimum), 3.1.3.2] Ferguson-Smith et al. [(1973) Nature New Biol. 243, 271-274] previously had found decreased levels of activity and loss of expression of an erythrocyte acid phosphatase allele in a subject who lacked one of the two homologous regions containing the distal three bands of chromosome 2. They suggested that the locus for erythrocyte acid phosphatase is located on that segment. Our findings provide further evidence for this assignment and also suggest an in vivo gene dosage effect of this autosomal locus, which depends on both the type and number of alleles present.

Acid Phosphatase↗

Localization of non-specific esterase and acid phosphatase in human fibroblast from skeletal muscle atrophy.

The intracellular localization of non-specific esterase and acid phosphatase was investigated in human fibroblast cells from skeletal muscle atrophy. Non-specific esterase and acid phosphatase positive sites were visualized ultrastructurally in the fibroblast. Electron microscopy for the cytochemistry of these enzyme was performed in human atrophic skeletal muscle by using thiol acetate esterase method and GOMORI'S method. Lipofuscin pigment granules in fibroblast cells contain dense pigment, granular matrix and lipid droplet. Reaction products of non-specific esterase are seen in the pigment and granular matrix, and they may therefore be called residual bodies. Reaction products of acid phosphatase and non-specific esterase were found to be located in lysosomes.

Acid Phosphatase↗

Recovery of exocellular acid phosphatase activity on Saccharomyces mellis after treatment of the organism with reagents that affect the cell surface.

Derepressed cells of Saccharomyces mellis were treated in one of several different ways to either elute or inactivate the exocellular enzyme, acid phosphatase. The enzyme was either (i) eluted from resting cells with 0.5 m KCl plus 0.1% beta-mercaptoethanol, (ii) eluted from exponential phase cells by growing the organism in derepressing media containing 0.5 m KCl, or (iii) inactivated on exponential phase cells by adding sufficient acid or base to growth media to destroy the enzyme but not enough to kill the cells. These treatments did not affect viability. Treated cells were transferred to fresh growth media or some other reaction mixture, and the kinetics of recovery of acid phosphatase activity was studied. In these reaction mixtures, enzyme was synthesized only by actively growing cells. Treated resting cells were indistinguishable from untreated, repressed resting cells in that the organism inoculated into complete growth medium remained in the lag phase for approximately 6 hr before both growth and enzyme synthesis began. Exponential phase derepressed cells treated by method (ii) or (iii) were transferred to fresh medium under conditions that allowed growth to continue. The cells immediately started to manufacture enzyme at a rate greater than normal until the steady-state level was reached, thus demonstrating a feedback control system. Exponential phase repressed cells were also transferred to fresh derepressing media under conditions which sustained growth. Though these cells began to grow immediately, there was a lag before acid phosphatase synthesis began followed by a lengthy inductive period. The length of the period of induction could be correlated with the polyphosphate content of the cells. As the supply of polyphosphate neared exhaustion, the rate of synthesis increased rapidly until it was greater than normal; this differential rate was sustained until the steady-state concentration was reached. When derepressed cells grow in a medium containing 0.5 m KCl, some acid phosphatase activity is found free in the culture fluid and some remains firmly attached to the cells despite the presence of the salt. The bound activity is subject to feedback control, but the steady-state level of this activity on the cells is only one-third that of the acid phosphatase on cells growing in nonsaline media. The extracellular phosphatase is produced at a rate that is several-fold greater than that of the exocellular enzyme in a nonsaline medium. The synthesis of the extracellular enzyme does not seem to be controlled by a feedback mechanism but is produced at a maximal rate as long as the cells are growing.

Acid Phosphatase↗

Ultrastructural localization of alkaline and acid phosphatases in the human fallopian tube epithelium during the menstrual cycle.

Ultrastructural and cytochemical methods were utilized to study the human Fallopian tube fimbrial epithelium during the different stages of the menstrual cycle. Alkaline phosphatase reaction product was located along the apical and lateral plasma membranes of the secretory cells only, regardless of the stage of the cycle. The ciliated cells were almost devoid of any reaction product at all stages of the cycle. Acid phosphatase reaction product depicted the lysosomes. These appeared as electron-dense bodies, of almost equal numbers in the ciliated and the secretory cells at all stages of the cycle. Thus the number of lysosomes did not vary appreciable during the different stages of the menstrual cycle. Many lipid droplets were found in both cells; these were rimmed by acid phosphatase reaction product, and some were partially enveloped by electron-dense bodies containing acid phosphatase deposits. Acid phosphatase deposits were also found on the inner face of Golgi vesicles.

Acid Phosphatase↗

Some kinetic aspects of the mechanism of hydrolysis of phosphoric acid esters by nonspecific acid phosphatase from Schizosaccharomyces pombe.

1. The kinetics of the hydrolysis of nitrophenylphosphate by nonspecific acid phosphatase (orthophosphoric-monoester phosphohydrolase (acid optimum), EC 3.1.3.2.) from Schizosaccharomices pombe was studied. 2. The kinetic parameters, Km and V, were determined as well as the inhibition constants, K1, for the inhibitors, phosphate and fluoride, as a function of pH. 3. The results, interpreted according to the theories of Dixon and Waley indicated the presence of three ionizable groups on the enzyme itself and one on the enzyme-substrate complex. 4. A model of the hydrolysis of phosphoric acid monoesters by the S. pombe acid phosphatase is proposed based on the ionization state of the reactants and on the results of the inhibition by the competitive inhibitors.

Acid Phosphatase↗

Generation and characterization of putative monoclonal and polyclonal antibodies against tartrate-resistant acid phosphatase.

The generation of monoclonal antibodies (MAbs) specific for tartrate-resistant acid phosphatase (TRAP) may aid development of a serological immunoassay for this marker of bone resorption. The lack of MAbs to TRAP largely reflects the difficulty in obtaining sufficient antigen for in vivo immunization strategies. We have circumvented this problem by using in vitro immunization, requiring a small amount of TRAP isolated from osteoclastoma tumor. Two MAbs designated 312D and 310A were generated that exhibited weak anti-TRAP activity in enzyme-linked immunosorbent assay and immunocytochemistry. A polyclonal antibody to TRAP (Ab8023) was also raised in rabbit, using synthetic peptide. Ab8023 and MAbs 310A and 312D exhibited no activity against TRAP in dot-blotting experiments. Further characterization in enzyme-liked immunosorbent assay showed that Ab8023 was remarkably specific for TRAP whereas MAb 312D cross-reacted with another metalloenzyme, human prostatic acid phosphatase.

Acid Phosphatase↗

Acid Phosphatase Development during Ripening of Avocado.

The activity and subcellular distribution of acid phosphatase were assayed during ethylene-induced ripening of whole fruit or thick slices of avocado (Persea americana Mill. var. Fuerte and Hass). The activity increased up to 30-fold during ripening in both the supernatant fraction and the Triton X-100 extract of the precipitate of a 30,000g centrifugation of tissue homogenates from whole fruit or slices ripening in moist air. Enzyme activity in the residual precipitate after Triton extraction remained constant. The development of acid phosphatase in thick slices ripened in moist air was similar to that in intact fruit, except that enzyme development and ripening were accelerated about 24 hours in the slices. The increase in enzyme activity that occurs in slices ripening in moist air was inhibited when tissue sections were infiltrated with solutions, by aspiration for 2 minutes or by soaking for 2 hours, anytime 22 hours or more after addition of ethylene. This inhibition was independent of the presence or absence of cycloheximide or sucrose (0.3-0.5m). However, the large decline in enzyme activity in the presence of cycloheximide, as compared with the controls, indicated that synthesis of acid phosphatase was occurring at all stages of ripening.

Journal Article↗