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Acid phosphatase in the guinea-pig oocytes.

In guinea-pig oocytes, at every developmental stage, acid phosphatase is found histochemically in cytoplasmic granules. Ultracytochemically the reaction product is located in lysosomes and is some cisternae of the rough endoplasmic reticulum, but not in cortical granules or in vesicles with a rough endoplasmic reticulum membrane which are filled with a moderately dense homogeneous substance. It is discussed whether the acid phosphatase transforms reserve material into a storable form as has been proposed for the deposition of vitellogenin in the oocytes of lower vertebrates.

Acid Phosphatase↗

Studies on kinetic properties of acid phosphatase from nuclei-free rat liver homogenate using different substrates.

Kinetic properties of rat liver acid phosphatase were evaluated using the conventional synthetic substrates sodium beta glycerophosphate (betaGP) and p-nitrophenyl phosphate (PNPP) and physiologically occurring phosphate esters of carbohydrates, vitamins and nucleotides. The extent of hydrolysis varied depending on the substrates; phosphate esters of vitamins and carbohydrates were in general poor substrates. Kinetic analysis revealed the presence of two components of the enzyme for all the substrates. Component I had low Km and low Vmas. Opposite was true for component II. The Km values were generally high for betaGP, PNPP and adenosine diphosphate (ADP). Amongst the nucleotides substrates AMP showed high affinity i.e. low Km. The increase in enzyme activity in general at high substrate concentration seems to be due to substrate binding and positive cooperativity. AMP which showed highest affinity was inhibitory at high concentration beyond 1 mM. The results suggest that in situ the nucleotides may be the preferred substrates for acid phosphatase.

Acid Phosphatase↗

Acid phosphatase in squamous cell carcinoma.

Surgical specimens of oral squamous cell carcinoma were processed for cytochemistry of acid phosphatase using Gomori's substrate. Reaction product was deposited in the cytoplasmic dense bodies, autophagic vacuoles, cytoplasmic projections, and advancing cell borders. Results of this study suggest that acid phosphatase and its associated lysosomes seem to play a role in the invasiveness of cancer cells.

Acid Phosphatase↗

[A cytochemical study of acid-phosphatase activity in follicular granulosa cells of human ovaries (author's transl)].

In order to clarify the nature and possible roles of lysosome-like granules observed electronmicroscopically in the granulosa cells of human preovulatory follicles, lysosomal activities in human preovulatory granulosa cells were investigated ultrastructurally by staining a marker enzyme acid phosphatase with modified Gomori technique. In the granulosa cells of follicles 10 approximately 15 mm in diameter, acid phosphatase reaction products were seen only in the Golgi apparatus. In follicles around 20 mm in diameter with extremely thin apical walls, granulosa cells with abundant nexuses and steroidogenic organelles (sER, large spherical mitochondria with tubular cristae and lipid-droplets), had many lysosome-like granules in the perinuclear regions and/or close to lipid droplets. Acid phosphatase reaction products were observed mainly in these granules, and infrequently in Golgi apparatus. These morphological results not only identify such granules as lysosomes, but also indicate that the granulosa cells are rich in the lysosomal activity. Possible roles of lysosomes in preovulatory granulosa cells deduced from the present results are as follows, 1) a role in steroidogenesis or in steroid-secretion, 2) an involvement in the ovulatory process with their proteolytic enzymes.

Acid Phosphatase↗

Human prostatic acid phosphatase: selected properties and practical applications.

Human prostatic acid phosphatase (EC 3.1.3.2) is a non-specific phosphomonoesterase, synthetized and secreted into seminal plasma under androgenic control. The enzyme is a dimer of molecular weight around 100 kDa. Gene coding this protein is localized on chromosome 3. Since many years prostatic phosphatase has been used as a marker of diagnosis and therapy control of cancer of the prostate gland. The biological role of this enzyme, however, remains unknown and needs further exploration.

Acid Phosphatase↗

Cock seminal plasma acid phosphatase: active site directed inactivation, crystallization and in vitro denaturation-renaturation studies.

1. Seminal plasma acid phosphatase from the mini Rock cocks was purified on a Sepharose 6B column and was not homogeneous on polyacrylamide gel electrophoresis in the presence of sodium dodecylsulfate. Its stability in time was also determined. 2. In the same time, the enzyme was crystallized in both ethanol and ammonium sulfate and this is also an evidence that this acid phosphatase was obtained in an advanced grade of purification but is present in a complex with some quantities of other proteins. 3. It was inactivated by iodoacetate to a degree consistent with the modification of an active site residue. DTNB and thiosulfate also inhibited this enzyme. 4. The enzyme was sensitive to 6 M guanidinum hydrochloride which in the presence and absence of 0.25 M mercaptoethanol produces a deep loss of activity. After dialysis the activity was increased during the first 10 days up to 66.2% of the initial one. 5. In the presence of molar concentration of mercaptoethanol, the enzyme activity is deeply decreased, but it is partially restored after 120 hr when 1 microM CuCl2 is added.

Acid Phosphatase↗

Heterologous expression of human prostatic acid phosphatase and site-directed mutagenesis of the enzyme active site.

Earlier covalent modification experiments indicated that histidine, arginine, and carboxylic acid residues were involved in the catalytic mechanism of the acid phosphatase enzyme from human prostate. The present study utilizes site-directed mutagenesis to evaluate the catalytic importance of 7 residues of human prostatic phosphatase, namely His12, His257, Asp258, Arg11, Arg15, Arg54, and Arg79, which are highly conserved in the sequences of high molecular weight acid phosphatases. Both wild type and mutant enzymes were expressed in the yeast Saccharomyces cerevisiae as fusions to a leader peptide of prepro-alpha-factor, which resulted in the secretion of processed proteins into the culture media. The kinetic parameters of the recombinant wild type enzyme were shown to be effectively identical with those of the native protein. The circular dichroism spectra of wild type and mutant proteins were effectively superimposable. Replacement of His12, which was previously shown to be transiently phosphorylated during catalysis, as well as the adjacent Arg11, both resulted in > 10(4) reductions of enzyme activity. Consistent with a postulated involvement of arginine residues in substrate binding, large reductions in Vmax caused by the R15A and R79A mutations were accompanied by marked increases in Km. However, the mutation R54A had only small effects on kinetic parameters. Essential roles for both His257 and Asp258 were also established. The D258A mutation not only caused larger decreases of Vmax toward p-nitrophenyl phosphate compared to the effect of the H257A mutation, but it also caused the reaction to become more sensitive to the nature of the leaving group. It is concluded that His12 and Asp258 are involved in the formation of the phosphoenzyme intermediate as an acceptor of the phospho group and a proton donor for the substrate leaving group, respectively, while His257 may participate in substrate binding or may facilitate the breakdown of the phosphoenzyme by maintaining the protonated state of the phosphorylated His12 residue.

Acid Phosphatase↗

Effects of iron and ascorbic acid on acid phosphatases of the enamel organ of rat molars.

Protein extracts from 6- to 11-day-old rat enamel organs were applied to columns of carboxymethyl-52 cellulose. Protein eluted from the columns was assayed for acid phosphatase activity with substrates para-nitrophenylphosphate (p-NPP), beta-glycerolphosphate (beta-GP), ATP and phosphocasein. A weakly-bound peak of activity (A) emerged first which was insensitive to stimulation by iron and ascorbic acid. This enzyme hydrolysed only the phosphomonoester substrates (p-NPP and beta-GP). A strongly bound peak of activity (B) emerged later and was completely separated from the first activity. It hydrolysed all substrates except beta-GP, and was stimulated at least 10-fold by 0.1 mM ferrous ion (Fe2+) in the presence of a strong reducing agent (1.0 mM ascorbic acid). Both substances were more effective as stimulators when used together than they were when each was used separately. Dependency on these co-factors for the development of full activity increased with purification, especially when phosphocasein was substrate. The results were similar for each age of rat used. These properties of enzyme B are parallel with those of the acid phosphoprotein phosphatases of liver and spleen, and the tartrate-resistant acid phosphatase of rat bone. We conclude that enzyme B requires iron and a reducing agent for full activity and has properties that distinguishes it from the classical acid phosphatases (E.C. 3.1.3.2.).

Acid Phosphatase↗

A phosphate-repressible acid phosphatase gene from Aspergillus niger: its cloning, sequencing and transcriptional analysis.

The cloning and sequencing of an Aspergillus niger gene encoding a secreted form of phosphate-repressible acid phosphatase by complementation of a pacA (phosphate-repressible acid phosphatase) mutant of Aspergillus nidulans is described. The gene contains two introns, 201 and 265 nt in length, and codes for a 1.6-kb transcript. Both phosphate concentration and pH of the growth medium affect the level of expression of the gene in A. niger. Similar regulation is observed in A. nidulans transformants. A putative signal peptide, resembling known signal sequences of yeast, is identified.

Acid Phosphatase↗

Modulation of chromatin structure associated with derepression of the acid phosphatase gene of Saccharomyces cerevisiae.

We have analyzed the chromatin structure of a phosphate-repressible acid phosphatase gene (PHO5) within yeast nuclei. Under derepressed conditions (low Pi media), the gene is much more sensitive to either DNAse I or micrococcal nuclease digestion than is the repressed gene. We have mapped DNase I hypersensitive sites unique to the active gene near the 5'-end of the acid phosphatase mRNA and within a region presumed to function in the regulation of the gene by Pi. Although the gene is packaged into regularly spaced nucleosomes, no detectable phase relationship exists between nucleosomes and DNA sequence under derepressed conditions, whereas in the repressed state the nucleosomes occur in one predominant phase. These results demonstrate reversible changes in the chromatin structure of a eukaryotic gene system that directly correlate with the functional state of the gene.

Acid Phosphatase↗

Aluminum phosphate visualisation of acid phosphatase activity: a biochemical and x-ray microanalysis study.

A new method is described that demonstrates acid phosphatase activity in the cells of the proximal tubules of the rat kidney. The method is based on the formation of an insoluble aluminum phosphate precipitate. Microanalysis was used to demonstrate the presence of intracellular aluminum and determine the quantity present under the probe. Parallel biochemical studies showed that the aluminum precipitate was indeed due to acid phosphatase activity.

Acid Phosphatase↗

Acid phosphatase complex from the freshwater snail Viviparus viviparus L. under standard conditions and intoxication by cadmium ions.

Acid phosphatases differing in both subcellular localization and substrate specificity were isolated for the first time from the liver of the freshwater snail Viviparus viviparus L. by preparative isoelectrofocusing. One of five characterized phosphatases is highly specific to ADP and the others can hydrolyze (at variable rate) a series of natural substrates. A scheme is proposed for the involvement of the studied phosphatases in carbohydrate metabolism. We have also studied some peculiarities of the effect of Cd2+ in vitro and in vivo on the activities of individual components of the acid phosphatase complex and corresponding changes in metabolism of the freshwater snail as a new test-object allowing the estimation of toxicity in water.

Acid Phosphatase↗

[Tartrate-resistant acid phosphatase in free-living Amoeba proteus].

Tartrate-resistant acid phosphatase (TRAP) of Amoeba proteus (strain B) was represented by 3 of 6 bands (= electromorphs) revealed after disc-electrophoresis in polyacrylamide gels with the use of 2-naphthyl phosphate as a substrate at pH 4.0. The presence of MgCl2, CaCl2 or ZnCl2 (50 mM) in the incubation mixture used for gel staining stimulated activities of all 3 TRAP electromorphs or of two of them (in the case of ZnCl2). When gels were treated with MgCl2, CaCl2 or ZnCl2 (10 and 100 mM, 30 min) before their staining activity of TRAP electromorphs also increased. But unlike 1 M MgCl2 or 1 M CaCl2, 1 M ZnCl2 partly inactivated two of the three TRAP electromorphs. EDTA and EGTA (5 mM), and H2O2 (10 mM) completely inhibited TRAP electromorphs after gel treatment for 10, 20 and 30 min, resp. Of 5 tested ions (Mg2+, Ca2+, Fe2+, Fe3+ and Zn2+), only the latter reactivated the TRAP electromorphs previously inactivated by EDTA or EGTA treatment. In addition, after EDTA inactivation, TRAP electromorphs were reactivated better than after EGTA. The resistance of TRAP electromorphs to okadaic acid and phosphatase inhibitor cocktail 1 used in different concentrations is indicative of the absence of PP1 and PP2A among these electromorphs. Mg2+, Ca2+ and Zn2+ dependence of TRAP activity, and the resistance of its electromorphs to vanadate and phosphatase inhibitor cocktail 2 prevents these electromorphs from being classified as PTP. It is suggested that the active center of A. proteus TRAP contains zinc ion, which is essential for catalytic activity of the enzyme. Thus, TRAP of these amoebae is metallophosphatase showing phosphomonoesterase activity in acidic medium. This metalloenzyme differs from both mammalian tartrate-resistant PAPs and tartrate-resistant metallophosphatase of Rana esculenta.

Acid Phosphatase↗

Partial purification and characterization of particulate acid phosphatase of Leishmania donovani promastigotes.

1. More than 90% of the total acid phosphatase activity in a sonicate of L. donovani promastigotes is contained in a particulate fraction (200,000 X g 30 min). The enzyme can be quantitatively extracted and solubilized with the aid of Triton X-100 (0.2 g/100 ml) and purified over 200-fold with 54% yield by chromatography on DEAE-Sephadex, QAE-Sephadex, Sepharose 4B and concanavalin-A Sepharose. 2. The phosphatase is a true acid hydrolase (pH optimum, 5.0-5.5) and has a rather broad substrate specificity; it will catalyze the hydrolysis of 4-methylumbelliferylphosphate, thymolphthalein diphosphate, pyridoxal phosphate, fructose 1,6-diphosphate, glucose 6-phosphate, glucose 1-phosphate, ADP and AMP. 3. It is a large (170,000 daltons in the presence of Triton X-100), stable and acidic enzyme (pI = 4.1) that has the electrophoretic mobility of a type zero or type 1 isoenzyme in acid (pH 4.3) polyacrylamide gels. 4. The enzyme is inhibited by sodium fluoride, 2-mercaptoethanol and mumolar amounts of a number of polyanionic molybdenum and heavy metal complexes that include the following: [C(NH2)3]4[(C3H7O3PO3)2Mo5O15] X 3H2O, [C(NH2)3]2[(C6H5)2AsMo4O15H] X H2O, (NH4)4[SiMo12O40] X H2O and (NH4)6[P2Mo18O62] X 9H2O. 5. L. donovani promastigotes contain very low levels of 10 other acid pH optimum hydrolytic enzymes, with the exception of modest levels of alpha-fucosidase.

Acid Phosphatase↗

Purple acid phosphatases of Arabidopsis thaliana. Comparative analysis and differential regulation by phosphate deprivation.

Purple acid phosphatases (PAPs) are members of the metallo-phosphoesterase family. They are characterized by the presence of seven conserved amino acid residues involved in coordinating the dimetal nuclear center in their reactive site. We compared the 29 PAPs predicted for Arabidopsis thaliana in their varieties of potential metal-ligating residues. Although 24 members possessed sets of metal-ligating residues typical of known PAPs, 1 member lacked four of the seven residues. For the remaining four members, potential metal-ligating residues were generally more similar to those in metal-dependent exonucleases and related proteins. Evidence was obtained for the expression of the majority of the 29 PAPs. To facilitate future investigations, a scheme for naming Arabidopsis PAPs and a system for classifying the 29 PAPs are proposed. The cDNA sequences and the responses to phosphate deprivation of seven Arabidopsis PAPs (AtPAP7-AtPAP13) were characterized. For some AtPAPs analyzed, there were fully processed transcripts as well as splice variants. The splice variants of AtPAP10 were found to associate with polyribosomes and may be translated into a NH(2)-terminal truncated protein. Phylogenetic investigations showed that AtPAPs 7 and 8, together with similar enzymes from other plant species, formed the low molecular weight plant PAP group. Members of this group were more closely related to PAPs from mammalian cells. AtPAPs 9-13, together with kidney bean PAP, formed the high molecular weight PAP group. In phosphate deprivation experiments, gene transcription of AtPAP11 and AtPAP12 was induced and increased, respectively, whereas that of the remaining five AtPAPs was not affected by phosphate deprivation. The present work demonstrates that structure variation and expression regulation of plant PAPs are more complex than previously described and provides a framework for comprehensive molecular genetic and biochemical studies of all Arabidopsis PAPs in the future.

Acid Phosphatase↗

Acid phosphatase activities during the germination of Glycine max seeds.

In this paper, we describe a study concerning the determination of some characteristics of soybean seedlings and the detection of acid phosphatase activities towards different substrates during the germination. Enzyme activities with p-nitrophenylphosphate (pNPP) and inorganic pyrophosphate (PPi) as substrates were detected from the 5th and 7th days after germination, respectively. Acid phosphatase activities with tyrosine phosphate (TyrP), glucose-6-phosphate (G6P) and phosphoenol pyruvate (PEP) were also observed but to a lesser extent. Under the same conditions, no enzyme activity was detected with phytic acid (PhyAc) as substrate. The appearance of phosphatase activity was coincident with the decrease of inorganic phosphate content during germination; over the same period, the protein content increased up to the 5th day, decreased until the 8th day, and remained constant after this period. Relative to phosphatase activity in the cotyledons, the activities detected in the hypocotyl and roots were 82% and 38%, respectively. During storage the enzyme maintained about 63% of its activity for 3 months at 5 degrees C. The specificity constant (Vmax/Km) values for pNPP and PPi were 212 and 64 mu kat mM-1 mg-1, respectively. Amongst the substrates tested, PPi could be a potential physiological substrate for acid phosphatase during the germination of soybean seeds.

Acid Phosphatase↗