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Preservation of acid phosphatase activity in medico-legal specimens.

Vaginal acid phosphatase has been preserved with a protective broth containing, per liter, 50 of bovine albumin, 0.2 g of sodium azide, 10 mmol of phosphate (pH 7.4), and 9.0 g of NaCl. Samples may be maintained at ambient temperature for one month without loss of activity. Several other commonly used preservative methods are compared and are shown to be inadequate. With a constant 2.5 ml volume of the support medium, and use of a sodium thymolphthalein monophosphate method (Worthington Diagnostics), vaginal acid phosphatase activity in non-coital women is less than 10 U/liter of broth, and in recently post-coital women is more than 50 U/liter (242 +/- 104 U/liter). In vivo degradation of vaginal activity follows a nearly logarithmic course until four days after intercourse, when it reaches nearly normal values.

Acid Phosphatase↗

[Electrophoretic forms of glucose-6-phosphate dehydrogenase, acid phosphatase and esterase in Amoeba species amoebas].

Glucose-6-phosphate dehydrogenase (G6PD), acid phosphatase and esterases in free-living amoebae of 7 Amoeba species were investigated with the use of disc-electrophoresis in polyacrylamide gel. The evidence provided is suggestive that the electrophoretic isoenzyme patterns of acid phosphatase and esterases (and G6PD in some cases), in addition to a few morphological characters, can serve as a taxonomic criterion for species identification within this genus, as well as for revealing erroneously classified species and strains. It is suggested that A. indica is an independent species whose preliminary diagnosis has been given in this paper. It is concluded that A. discoides and A. lescherae are strains of A. proteus, rather than two independent species. A and As-102 amoebian strains, kept in the collection of protozoan strains and species of the Institute of Cytology RAS and referred to as strains of A. proteus, belong in reality to another Amoeba species and even to another genus within the family Amoebidae. This conclusion has been documented by results of our analysis of electrophoretic patterns of acid phosphatase and esterases in these strains.

Acid Phosphatase↗

Acid phosphatases in germinal and somatic cells of the testes.

Four forms of acid phosphatase have been found in the testicular tissue of many mammalian species, but their exact cellular site has remained obscure. In this work, acid phosphatases have been studied in different reproductive organs of the male rat, in somatic cell lines derived by cloning from both rat and mouse testes, in primary cultures of rat Sertoli cells, and in isolated spermatogenic cells of the mouse. Among the reproductive organs, preputial glands show the highest specific activities with p-nitrophenyl phosphate as substrate, followed by the testicular tissue and the different regions of the epididymis. By contrast to that in other tissues, testicular activity with p-nitrophenyl phosphate is not influenced by tartrate and is activated markedly by cobalt (Co2+). Among the somatic cell lines, the highest hydrolysis rates are obtained with naphthyl substrates in the epithelial (TR-1) and myoid (TR-M) cell lines and marginally lower rates in the Leydig (TM3) and Sertoli (TM4) cell lines. With thymolphthalein phosphate, the latter two cell lines show very low activity. These activities are not influenced by different hormones and growth factors in the culture medium. The most marked Co2+-activated reaction with p-nitrophenyl phosphate is found in advanced stages of germinal cells and residual bodies. Primary cultures of Sertoli cells, prepared from rats 10 to 30 days of age, show a slight decrease in acid phosphatase levels; however, the activities are not influenced markedly by addition of follicle-stimulating hormone (FSH) and/or testosterone to the culture medium.(ABSTRACT TRUNCATED AT 250 WORDS)

Acid Phosphatase↗

Phosphoglycosylation of a secreted acid phosphatase from Leishmania donovani.

The secreted acid phosphatase (SAcP) of L.donovani is a heterogeneous glycoprotein that displays a wide array of N- and O-linked glycosylations. The O-linked sugars are of particular interest due to their similarity to the phosphoglycan structures of the major lipophosphoglycan surface antigen and released phosphoglycan (Turco et al., 1987; Greis et al., 1992). This study describes a structural analysis of the SAcP O-linked glycosylations using mass spectroscopy, amino acid sequencing, and enzymatic carbohydrate sequencing. Analysis of glycan chain lengths and peptide glycosylation site distribution was performed, revealing that the average O-linked structure was approximately 32 repeat units in length. Amino acid sequence analysis of glycosylated peptides showed that phosphoglycosylations did not occur randomly but were localized to specific serine residues within an array of degenerate serine/threonine-rich repeat sequences localized in the C-terminus. No evidence was obtained for modification of threonine residues. The observed pattern suggested that a consensus sequence may exist for localization of phosphoglycan structures.

Acid Phosphatase↗

[Genetico-biochemical study of the acid phosphatases of Saccharomyces cerevisiae yeasts. X. Analysis of mutations arising in gene acp3].

Mutations leading to decrease or absence of orthophosphate-repressible acid phosphatase activity have been studied. It is shown that these mutations can arise in three genes: acp1, acp2 and acp3, which are not linked. Genes acp1 and acp2 have been studied previously; the existence of the gene acp3 is demonstrated in this paper. It is established that all mutations in the acp3 gene are recessive, are leaky and epistatic to the constitutive mutations in all known regulatory genes for acid phosphatase II synthesis - acp4, acp80, acp81, acp82, acp83, and acp84. The gene acp3 is not linked with these regulatory genes, but it is closely linked with the structural gene for constitutive acid phosphatase - pho1 (D=0.33+/-0.20 cM). The pho1 gene has been recently located on the right arm of chromosome II on the left of the gene lys2. Mutations lacking activity of constitutive and repressible acid phosphatases simultaneously have been found. It is shown that these mutations are allelic to mutations in the gene acp3 and pho1 simultaneously. Two hypotheses are proposed about the role of the gene acp3: the gene controls the positive factor for the repressible acid phosphatase synthesis or the structure of the enzyme.

Acid Phosphatase↗

Bovine milk acid phosphatase. III. Purification and characterisation of the enzyme.

The acid phosphatase of bovine milk has been purified by ion-exchange chromatography on Amberlite CG-50 resin followed by Sephadex G-100 gel filtration and further purification steps using CM-Sephadex C-50, cellulose phosphate and affinity chromatography on alphas1-casein-Sepharose. These gave an apparently homogeneous enzyme with a specific activity of about 30 I.U./mg which possessed a molecular weight of about 42000 and E1%1cm = 9.4 at 280 nm. Electrophoresis under dissociating conditions, gel filtration in a 6.6 M urea buffer and ultracentrifugal analysis in the presence of 6 M guanidine HCl and 0.1 M 2-mercaptoethanol all gave molecular weight values close to 42000 indicating that the molecule was probably composed of a single polypeptide chain. The acid phosphatase was a glycoprotein with 2 mol/mol of galactose, 2 mol/mol of mannose and 4 mol/mol of glucosamine. Amino acid analysis showed that the enzyme was devoid of methionine.

Acid Phosphatase↗

Bone marrow acid phosphatase in prostate cancer: an assessment by immunoassay and biochemical methods.

Comparisons of the bone marrow and serum acid phosphatase values obtained by counterimmunoelectrophoresis and the Roy biochemical test were made in 72 patients with and in 13 patients without prostatic cancer. The counter-immunoelectrophoresis test, when positive at more than 1 international unit per liter, showed only 4.4% falsely positive results. The Roy biochemical test, which uses sodium thymolphthalein monophosphate as the substrate, had 65% falsely positive bone marrow acid phosphatase levels. Conflicting reports regarding the value of bone marrow acid phosphatase determinations in patients with prostatic cancer result from the use of non-specific substrates in biochemical methods for measurement and from the trauma incidental to bone marrow aspiration, which releases many non-prostatic acid phosphatase enzymes. The use of immunoassay such as counter-immunoelectrophoresis minimizes this source of error.

Acid Phosphatase↗

Localization of acid phosphatase in the principal cells of the guinea pig epididymis.

The activity of acid phosphatase in the principal cells of the guinea pig epididymis was studied histochemically. The enzyme activity was localized in the Golgi and apical regions in segments 1-4. In segments 5-7, the enzyme activity was distributed throughout the entire supranuclear cytoplasm. There was a gradual increase of acid phosphatase activity from segments 1-7. A possible function of acid phosphatase in the epididymis is discussed.

Acid Phosphatase↗

Bone marrow acid phosphatase in prostate cancer: an assessment by immunoassay and biochemical methods.

Comparisons of the bone marrow and serum acid phosphatase values obtained by counter-immunelectrophoresis and the Roy biochemical test were made in 72 patients with and in 13 patients without prostatic cancer. The counter-immunoelectophoresis test, when positive at more than 1 international unit per liter, showed only 4.4 per cent falsely positive results. The Roy biochemical test, which used sodium thymolphthalein monophosphate as the substrate, had 65 per cent falsely positive bone marrow acid phosphatase levels. Conflicting reports regarding the value of bone marrow acid phosphatase determinations in patients with prostatic cancer result from the use of non-specific substrates in biochemical methods for measurement and from the trauma incidental to bone marrow aspiration, which releases many non-prostatic acid phosphatase enzymes. The use of immunoassay such as counter-immunoelectrophoresis minimizes this source of error.

Acid Phosphatase↗

Non-conventional role of lysosomal acid phosphatase in olfactory receptor axons: co-localization with growth-associated phosphoprotein-43.

Olfactory receptor neurons undergo a continuous turnover in adult mammals. It is largely unknown how their axons invade the olfactory bulb and induce synaptic re-organization in glomeruli. Here, the cytochemical localization of lysosomal acid phosphatase has been studied in olfactory bulbs of adult rats and mice. The enzyme has been identified by specific substrate, inhibitors and absence in lysosomal acid phosphatase-knockout mice. Lysosomal acid phosphatase is located in primary and secondary lysosomes, which are unevenly distributed in the olfactory nerve layer and among olfactory glomeruli. In consecutive sections of glomeruli, the intensity of lysosomal acid phosphatase immunoreactivity co-varied with that of growth-associated phosphoprotein. Electron microscopically, differential lysosomal acid phosphatase staining in glomeruli corresponded to different proportions of labelled and unlabelled axons. Quantification revealed that lysosomal acid phosphatase labelling was strongest in non-synaptic profiles of terminal axons, while it was weak in or even missing from most synaptic profiles. Hence, growing olfactory axons apparently carry more lysosomal acid phosphatase than those which have established synaptic contacts. Following olfactory deafferentation both lysosomal acid phosphatase activity and growth-associated phosphoprotein-43 are lost from glomeruli, suggesting that both proteins are expressed in olfactory sensory axons during growth, while lysosomal acid phosphatase is apparently not a marker of anterograde terminal degeneration.

Acid Phosphatase↗

Alterations of low molecular weight acid phosphatase protein level in Alzheimer's disease.

We have previously reported that the activity of low molecular weight (LMW) acid phosphatase, which can remove tyrosine-linked phosphates of epidermal growth factor receptor, was significantly decreased in Alzheimer brains. In the present study, a specific antibody was prepared to analyze the protein level of this enzyme. Western blot analysis indicated that the level of LMW acid phosphatase protein was significantly reduced, whereas the activity of LMW acid phosphatase per enzyme molecule was not changed in Alzheimer brains. These results suggest that the reduction of LMW acid phosphatase activity in Alzheimer brains is due to its decreased protein level in Alzheimer's disease.

Acid Phosphatase↗

Purification and characterization of acid phosphatase in rat liver lysosomal contents.

Acid phosphatase in rat liver lysosomal contents, C-APase I, was purified about 5,700-fold over the homogenate with 8.0% recovery, to apparent homogeneity as determined from the pattern on polyacrylamide gel electrophoresis in the presence and in the absence of SDS. The purification procedures included; preparation of crude lysosomal contents, DEAE-Sephacel ion exchange chromatography, hydroxylapatite chromatography, and gel filtration with Sephacryl S-300. The enzyme is composed of three identical subunits with an apparent molecular weight of 48K. The enzyme contains about 11% carbohydrate and the carbohydrate moiety was composed of mannose, fucose, N-acetylglucosamine, and N-acetylgalactosamine in a molar ratio of 20:3:11:1. Sialic acid was not detected in the enzyme. Antisera against the purified C-APase I were raised in goat and the C-APase I was rapidly purified with high yield (10%) by using the specific antibodies coupled to Sepharose 6B.

Acid Phosphatase↗

Immunocytochemical demonstration of prostatic acid phosphatase: different secretion kinetics between normal, hyperplastic and neoplastic prostates.

The ultrastructural localization and distribution of prostatic specific acid phosphatase in normal, hyperplastic and neoplastic human prostates was studied by immunocytochemical methods. In normal or hyperplastic prostates, the localization of prostatic specific acid phosphatase was uniformly observed at the apical portion of the glandular epithelium of apical cells under the light microscope. Electron microscopy revealed prostatic specific acid phosphatase localized in the microvilli lining prostatic and vesicular bodies of apical cells. Occasionally the limiting membrane of the blebs and vesicles extruded into the glandular lumen and were stained positively. Light microscopic examination of neoplastic prostates revealed a more intense and uniform staining of tumor cells and the glandular epithelium of well differentiated adenocarcinomas, whereas less intense and more variable staining was seen in neoplastic cells of moderately or poorly differentiated adenocarcinomas. Furthermore, under electron microscopic study, prostatic specific acid phosphatase granules were uniformly and intensely condensed in intracytoplasmic vacuoles in well differentiated adenocarcinomas, whereas in moderately or poorly differentiated adenocarcinomas 2 types of staining were observed. Among neoplastic cells, positive granules with less intensity were found between collagen fibers as well as adjacent to the endothelium of the stromal capillaries in anaplastic tissue.

Acid Phosphatase↗

Functional analysis of the signal-sequence processing site of yeast acid phosphatase.

A systematic study of the signal peptidase cleavage site of the main cell-wall-repressible Saccharomyces cerevisiae acid phosphatase encoded by the PHO5 gene is presented. The last amino acid of the signal sequence, the chromosomally encoded alanine of the wild-type gene, was changed by any of 19 other amino acids in the chromosomal DNA by using in vitro mutagenesis in Escherichia coli and the technique of gene replacement. Processing and secretion are normal when the amino acid at this position is a small neutral amino acid, i.e. alanine, glycine, cysteine, serine or threonine. Processing glycosylation, and secretion of regulated acid phosphatase are distinctly affected with other amino acid substitutions and core-glycosylated protein accumulates in the cell. Surprisingly, PHO5 protein is still secreted to the cell wall and into the growth medium but at a lower rate and without cleavage of the signal sequence. The same features are exhibited by a mutated acid phosphatase with a deletion of four amino acids at the end of the signal peptide (-7 to -4 relative to the processing site) thus preserving the important -3 to -1 region.

Acetylglucosaminidase↗

Purification and characterization of purple acid phosphatase PAP1 from dry powder of sweet potato.

Purple acid phosphatase (PAP) was purified from sweet potato dry powder, which is used as a food additive. Spectrometric and enzymatic analyses, and analysis of the amino-terminal sequence indicated that the purified purple acid phosphatase was PAP1. High activity in neutral and acidic conditions, broad substrate specificity, and good thermal stability of PAP1 suggest the possibility of practical applications of PAP1.

Acid Phosphatase↗

Induction of a germination specific, low molecular weight, acid phosphatase isozyme with specific phosphotyrosine phosphatase activity in lentil (Lens esculenta) seeds.

A germination specific isozyme of acid phosphatase (EC 3.1.3.2) hydrolysing O-phospho-L-Tyrosine, pH optima 5.5 is induced in lentil seeds. When seeds at 0 h, 24 h and 36 h of germination are electrophorezed, native PAGE on specific enzyme staining shows several constitutive isozymes of acid phosphatases. At 48 h, an isozyme is induced which gradually decreases and then disappears at 108 h of germination. The short lived, induced isozyme is present in the embryo and seed-coat but not in the plumule and the radical. Induction of this isozyme is inhibited by cycloheximide and actinomycin-D and increased by plant growth regulators such as heteroauxin and gibbrellic acid treatment during germination. The induced isozyme is a single 30 kD polypeptide, with subunit molecular mass of 25 kD, shows activity for O-phospho-L-Tyrosine. It is strongly inhibited by vanadate (microM), molybdate, tungustate as also by iodoacetate, p-chloromercuribenzoate and diethylpyrocarbonate. This study shows for the first time that the germination induced low molecular weight Acid phosphatase is a Tyrosine phosphatase super family class IV enzyme, having a role in cellular differentiation and development during seed germination.

Acid Phosphatase↗

An unusual alkaline phosphatase isoenzyme in a patient with concomitant marked elevation of acid phosphatase without clinical evidence of prostatic carcinoma.

An 81-year-old male with congestive heart failure and prostatic hypertrophy was found to have markedly elevated serum acid phosphatase (EC 3.1.3.2) and moderately elevated serum alkaline phosphatase (EC 3.1.3.1). Alkaline phosphatase isoenzyme analysis was performed to determine the organ source of the enzyme. There was an unsual slow-migrating alkaline phosphatase isoenzyme band in the serum of this patient suggestive of hepatic origin by a variety of biochemical tests.

Acid Phosphatase↗

Regulation of extracellular acid phosphatase biosynthesis by phosphates in proteinase producing fungus Humicola lutea 120-5.

The feasibility of using proteinase producing fungus Humicola lutea 120-5 as a source of extracellular acid phosphatase was investigated. To enhance the acid phosphatase yield and significantly reduce the proteolytic activity the composition of casein-glucose medium containing inorganic phosphate (Pi) was modified. The regulation of phosphatase formation was controlled by Pi. The repression influence of Pi on the synthesis of phosphatase was established. A reduction of Pi (KH(2)PO(4)) concentration from 1.0 to 0.01 g/l caused approximately 5-fold increase of the phosphatase (1200 U/I) and 3-fold decrease of the proteinase (10 U/ml). The omission of Pi from the medium in which the casein (phosphoprotein) was the sole phosphatase source resulted in higher phosphatase yield (2000 U/l) and lower proteolytic activity (7.5 U/ml). Different concentrations of glucose and casein were tested to obtain the optimal medium for maximal acid phosphatase production and minimal level of proteinase. The highest acid phosphatase activity of 2500 U/l and the least amount of acid proteinase (5.5 U/ml) were achieved in 72 h shake-flask culture using Pi-free medium containing glucose and casein in concentrations of 20 and 4 g/l, respectively. The ability of the fungus H. lutea 120-5 to dephosphorylate casein providing orthophosphate for cell growth was discussed.

Journal Article↗