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Purification of monoclonal antibodies raised against prostate-specific acid phosphatase for use in vivo in radioimaging of prostatic cancer.

In developing diagnostic reagents for the radioimaging of prostatic cancer, methods were optimized for the purification of two mouse IgG1 monoclonal antibodies raised against prostate-specific acid phosphatase and produced in cell culture. Two different two-step methods were selected. One method consisted of two successive ion exchange chromatographic steps on Mono S and Mono Q; in the other method, Mono S chromatography was followed by hydrophobic interaction (Alkyl Superose) chromatography. In both cases, fast protein liquid chromatography (FPLC) instrumentation was used. The antibodies were purified from cell culture media containing fetal calf serum (1-5%). Highly pure (greater than 95%) IgG1 antibodies, free of contaminating serum-derived proteins or column materials, were obtained in good yield (greater than 90% recovery). The purified antibodies completely retained their immunological reactivity towards prostate-specific acid phosphatase and were sterile and pyrogen-free. Since the monoclonal antibodies produced were intended for applications in vivo, an essential feature of the methods selected was the availability of in situ cleaning procedures for sterilization of the gel materials and for the inactivation of viruses and pyrogens in the gels. The methods developed could be readily scaled up for preparative purposes.

Acid Phosphatase↗

Comparison of the protein kinase and acid phosphatase activities of five species of Leishmania.

Promastigotes from log phase and stationary phase cultures of Leishmania donovani, L. braziliensis panamensis, L. tropica, L. major, and L. mexicana amazonensis were analyzed for their content of protein kinase and acid phosphatase activities. Cell surface, histone-specific protein kinase activity was 1.3- to 2.8-fold higher in stationary phase cells of all species except for L. tropica in which the activities of stationary and log phase cells were equal; L. mexicana amazonensis had the highest histone-specific protein kinase activity and L. donovani the lowest. When viable, motile promastigotes of all five species were incubated for 10 min with [gamma-32P]ATP and Mg2+ (10 mM) in the absence of exogenous histone acceptor; about one dozen proteins were phosphorylated in each case. Both log phase and stationary phase promastigotes of all five species extensively phosphorylated a 50-kDa protein that had the mobility of tubulin. Incubation of pure calf brain tubulin with [gamma-32P]ATP and purified L. donovani protein kinase resulted in extensive phosphorylation of the former. Highly infective metacyclic forms (PNA-) of L. major, isolated from a stationary culture using the peanut agglutinin (PNA), contained eight times more histone-specific protein kinase activity than noninfective log phase cells (PNA+). The PNA- and PNA+ forms of L. major both phosphorylated a 50-kDa protein when incubated with [gamma-32P]ATP and magnesium or manganese ions (10 mM); the 50-kDa protein was precipitated by anti-tubulin rabbit antibodies. Extracts of all five species contained large amounts of acid phosphatase activity.(ABSTRACT TRUNCATED AT 250 WORDS)

Acid Phosphatase↗

Localization of acid phosphatase activity in hepatic lysosomes by means of electron microscopy.

Samples of liver from untreated rats, from rats infused with unconjugated bilirubin, and from biopsies of human liver were fixed overnight in cold formol-calcium. Frozen sections were stained for acid phosphatase activity by the Gomori lead-glycerophosphate procedure. Small blocks of fixed tissue were also incubated in this medium. These were then treated briefly with osmium tetroxide, dehydrated, and embedded in methacrylate. Thin sections were studied by electron microscopy. The sites of reaction product of acid phosphatase activity as visualized in electron micrographs are consistent with those seen in frozen sections studied by light microscopy. They indicate that the pericanalicular bodies of parenchymatous cells, the large spherical bodies of Kupffer cells, the microbodies appearing after bilirubin infusion and lipofuscin granules belong to the class of cytoplasmic organelles called lysosomes by de Duve.

Acid Phosphatase↗

Total protein and acid phosphatase concentrations in prostatic fluid from patients with BPH compared to carcinoma.

OBJECTIVE: To obtain evidence of metabolic changes in the human prostate associated with prostate pathology, in particular carcinoma of the prostate, by identifying and evaluating associated changes in prostatic secretory products. METHODS: Expressed prostatic fluid (EPF) from 36 patients with carcinoma, 128 with BPH histologically confirmed, and 148 with clinical BPH was subjected to determination of protein (Lowry; UV 280 nm absorption), enzymatic (DMA modified Row procedure) acid phosphatase (AcP), and immunologically identified (Tandem-PAP immunoenzymatic assay) prostatic acid phosphatase (PAP) concentration. RESULTS: The important EPF findings are the following: (1) Protein concentrations (Lowry and UV determinations) are significantly increased in carcinoma as compared to histologic BPH, (2) AcP and PAP secretions remain stable in carcinoma versus BPH, and (3) AcP and PAP/Lowry protein ratios are significantly lower with carcinoma. CONCLUSIONS: These findings of increased protein and the decreased relative secretions of AcP and PAP to total protein (ratio) in EPF from patients with carcinoma compared to BPH support and help to characterize the diffuse metabolic alteration in the prostate associated with prostate carcinoma. EPF observations identify potential metabolic changes occurring in prostate carcinoma that may have potential clinical and investigative relevance.

Acid Phosphatase↗

Spectrophotometric and liquid-chromatographic studies of thymolphthalein monophosphate. Specifications for high-quality substrate for the measurement of prostatic acid phosphatase activity.

Fourteen lots of thymolphthalein monophosphate (TMP), disodium salt, obtained from 10 commercial suppliers were compared spectrophotometrically at 445 and 595 nm, liquid-chromatographically with monitoring at 254 nm, and enzymically by measurements of activity of prostatic acid phosphatase in human serum. Eight lots were classified as "unacceptable," six as "acceptable." Spectrophotometric testing revealed four lots with excessive thymolphthalein and three lots with grossly deficient amounts of TMP. In general, the chromatographic results paralleled those obtained by spectrophotometry, and both results correlated well with enzymic activity. Changing water content in this hygroscopic salt was a major problem, which resulted in great uncertainty as to the formula weight and therefore as to the moles of TMP actually taken. From these studies, specifications for high-quality TMP were determined. The critical importance of simultaneous enzymic activity measurements in comparisons with other "acceptable" lots in defining an adequate TMP substrate is stressed. Use of these specifications for selecting TMP for acid phosphatase activity measurements should improve intra- and inter-laboratory analytical performance.

Acid Phosphatase↗

Localization of alkaline and acid phosphatase activity in the intestine of healthy breams (Abramis brama l.) and those infected with plerocercoid of tapeworm Ligula intestinalis (Linné 1758).

The examination included 40 breams 4 to 7 years old (18 infected and 22 uninfected). Alkaline and acid phosphatase activity, as shown by the azo-coupling method, has been localized in the oesophagus and the intestine, being the strongest in the epithelium. It was distinctly less intensive in the Lamina propria mucosae and in the intermuscular connective tissue of the oesophagus, in the submucosa, in the cells of AUERBACH plexus and in the blood vessel walls. Besides only the acid phosphatase activity was noted in single (sometimes rather numerous) spherical cells - visible within the epithelium and Lamina propria mucosae. The cells are known as the components of so called "yellow bodies" (melanine macrophage centers) entering particular numerously in the spleen and in the pronephric kidney of infected breams. The activity of both enzymes in the epithelium was considerably weaker in the last third of the intestine, and none in cloaca and in Tunica muscularis all over the length of the intestine (and oesophagus) except for some cells of the connective tissue separating the layers of muscle fibres. No perceptible differences in the activity and localization of both enzymes in the intestine were observed between infected and uninfected fishes examined in different seasons of the year.

Acid Phosphatase↗

[Changes in the serum acid phosphatase activity of guinea pigs poisoned with C1 perfringens type A toxin and a mixture of toxin and a broth culture filtrate].

It was shown in experiments on guinea pigs that the injection of C1. perfringens type A toxoid induced an increase in acid phosphatase activity of animal blood serum. The action of the toxoid increased under the effect of C1. butyricum cultural filtrate, which gave rise to an earlier enhancement of the specific activity of the enzyme as compared to the injection of the toxoid alone. Increased activity of acid phosphatase may play a pathogenetic role in cases of anaerobic infection caused by association of C1. perfringens and C1. butyricum.

Acid Phosphatase↗

Plasma acid phosphatase levels in endotoxaemia: modification by drugs and chemically detoxified endotoxins.

The ability of chemically detoxified E. coli endotoxins and membrane-active agents to modify the toxicity of native E. coli endotoxin in vivo was examined. The time- and dose-dependent increase in plasma acid phosphatase activity following toxin administration to rats provided a convenient quantitative measure of in vivo toxicity under various experimental conditions. Treatment of endotoxin with either sodium hydroxide or sodium periodate produced substances which, when injected alone, failed to cause an increase in plasma acid phosphatase activity. When given before native endotoxin, periodate-detoxified toxin produced a dose-dependent reduction in the elevation of plasma enzyme activity caused by unmodified toxin. Pretreatment with pranolium, hydrocortisone or (+)-propranolol also reduced the in vivo toxicity of endotoxin. Mortality studies in mice provided further independent support for the effectiveness of periodate-detoxified endotoxin and membrane-active drugs as endotoxin antagonists. Evidence has been found that under certain conditions gentamicin may act synergistically with bacterial endotoxins in vivo.

Acid Phosphatase↗

A possible role for acid phosphatase with thiamin-binding activity encoded by PHO3 in yeast.

Periplasmic soluble thiamin-binding protein in Saccharomyces cerevisiae (Iwashima, A. et al. (1979) Biochim. Biophys. Acta 577, 217-220) was demonstrated to be encoded by PHO3 gene that codes for thiamin repressible acid phosphatase (Schweingruber, M.E. et al. (1986) J. Biol. Chem. 261, 15877-15882) by genetic analysis. The pho3 mutant cells of S. cerevisiae in contrast to the parent cells have markedly reduced activity of the uptake of [14C]thiamin phosphates, suggesting that thiamin repressible acid phosphatase plays a role in the hydrolysis of thiamin phosphates in the periplasmic space prior to the uptake of their thiamin moieties by S. cerevisiae.

Acid Phosphatase↗

Changes in acid phosphatase activity in the substantia gelatinosa in response to pain.

Two-day and 15-day-old offspring of capsaicin-pretreated Wistar rats were given subcutaneous injections of a 5% formalin solution to the dorsal aspect of the right forepaw. One hour after injection, acid phosphatase activity of the substantia gelatinosa of formalin/capsaicin cervical sections was significantly greater bilaterally than in saline/capsaicin 15-day-old animals. In 2-day-old animals the formalin/control right cervical sections had significantly higher acid phosphatase activity than saline/control. These results are further support for a direct functional relation between activity in the substantia gelatinosa and chemogenic pain stimulus.

Acid Phosphatase↗

Purple acid phosphatase of human brain macrophages in AIDS encephalopathy.

Brains from AIDS patients with an HIV-induced encephalopathy but without opportunistic infections or indications for an inflammation were studied by immuno- and enzyme-histochemical methods. It was found that the macrophages of these brains expressed a lysosomal tartrate-resistant acid phosphatase which gave a good immunological cross-reaction with an antibody to the well-characterized iron-containing bovine spleen purple acid phosphatase, belonging to the group of purple phosphatases, which are regarded as a marker for a special phenotype of activated macrophages. It was discussed that the numerous brain macrophages found in AIDS encephalopathy derive from latently infected monocytes which are believed to be drawn to the brain from the bloodstream.

AIDS Dementia Complex↗

Biochemical and molecular characterization of AtPAP26, a vacuolar purple acid phosphatase up-regulated in phosphate-deprived Arabidopsis suspension cells and seedlings.

A vacuolar acid phosphatase (APase) that accumulates during phosphate (Pi) starvation of Arabidopsis (Arabidopsis thaliana) suspension cells was purified to homogeneity. The final preparation is a purple APase (PAP), as it exhibited a pink color in solution (A(max) = 520 nm). It exists as a 100-kD homodimer composed of 55-kD glycosylated subunits that cross-reacted with an anti-(tomato intracellular PAP)-IgG. BLAST analysis of its 23-amino acid N-terminal sequence revealed that this PAP is encoded by At5g34850 (AtPAP26; one of 29 PAP genes in Arabidopsis) and that a 30-amino acid signal peptide is cleaved from the AtPAP26 preprotein during its translocation into the vacuole. AtPAP26 displays much stronger sequence similarity to orthologs from other plants than to other Arabidopsis PAPs. AtPAP26 exhibited optimal activity at pH 5.6 and broad substrate selectivity. The 5-fold increase in APase activity that occurred in Pi-deprived cells was paralleled by a similar increase in the amount of a 55-kD anti-(tomato PAP or AtPAP26)-IgG immunoreactive polypeptide and a >30-fold reduction in intracellular free Pi concentration. Semiquantitative reverse transcription-PCR indicated that Pi-sufficient, Pi-starved, and Pi-resupplied cells contain similar amounts of AtPAP26 transcripts. Thus, transcriptional controls appear to exert little influence on AtPAP26 levels, relative to translational and/or proteolytic controls. APase activity and AtPAP26 protein levels were also up-regulated in shoots and roots of Pi-deprived Arabidopsis seedlings. We hypothesize that AtPAP26 recycles Pi from intracellular P metabolites in Pi-starved Arabidopsis. As AtPAP26 also exhibited alkaline peroxidase activity, a potential additional role in the metabolism of reactive oxygen species is discussed.

Acid Phosphatase↗

Prognostic value of raised prostatic acid phosphatase and negative skeletal scintigraphy in prostatic cancer.

Of 438 consecutive cases of newly diagnosed prostate cancer, 178 (41%) had skeletal metastases (T0-4 M1) at the time of diagnosis according to skeletal scintigraphy; 139 men had serum prostatic acid phosphatase (PAP) greater than twice the upper limit of normal on 2 separate occasions at the time of diagnosis and 65% of them had metastases on bone scan. However, 49 men with normal bone scans were found to have similarly raised serum PAP. (Such patients are defined as having skeletal metastases in the current Medical Research Council immediate versus deferred orchiectomy study and stratified accordingly). The actuarial survival of this group was calculated by life table methods and was compared with that of 2 other subgroups: those patients having metastases demonstrated on bone scan, and those patients having both normal bone scans and normal serum PAP. The survival of the "metastatic by acid phosphatase" group was significantly better than that of the "metastatic by bone scan" group but did not differ from that of patients having both normal scans and PAP. For patients with no scintigraphic evidence of skeletal metastases at diagnosis, those with a raised PAP were at a significantly greater risk of scan conversion, although this was more powerfully predicted by high histological grade.

Acid Phosphatase↗

Purification and properties of phosphatidic acid phosphatase from porcine thymus membranes.

We purified phosphatidic acid phosphatase (EC 3.1.3.4) 2300-fold from porcine thymus membranes. The enzyme was solubilized with beta-octyl glucoside and Triton X-100 and fractionated with ammonium sulfate. The purification was then achieved by chromatography in the presence of Triton X-100 with Sephacryl S-300, hydroxylapatite, heparin-Sepharose, and Affi-Gel Blue. The final enzyme preparation gave a single band of M(r) = 83,000 on sodium dodecyl sulfate-polyacrylamide gel electrophoresis under reducing and nonreducing conditions. The native enzyme, on the other hand, was eluted at M(r) = 218,000 in gel filtration chromatography with Superose 12 in the presence of Triton X-100. The enzyme was judged to be specific to phosphatidic acid, since excess amounts of dicetylphosphate or lysophosphatidic acid did not inhibit the enzyme activity. In this respect, the enzyme was inhibited by 1,2-diacylglycerol but not by 1- or 2-monoacylglycerol and triacylglycerol. The enzyme required Triton X-100 or deoxycholate for its activity. Although the enzyme appeared to be an integral membrane protein, we could not detect its phospholipid dependencies. The activity was independent of Mg2+, and other cations were strongly inhibitory. The specific enzyme activity was 15 mumol/min/mg of protein when assayed using phosphatidic acid as Triton X-100 mixed micelles. The Km for the surface concentration of phosphatidic acid was 0.30 mol%. The enzyme was inhibited by sphingosine and chloropromazine, and less potently, by propranolol and NaF. The enzyme was insensitive to thio-reactive reagents like N-ethylmaleimide.

Animals↗

Histochemical and immunological demonstration of purple acid phosphatase in human and bovine alveolar macrophages.

A tartrate-resistant purple acid phosphatase was localized in human and bovine alveolar macrophages by enzyme- and immuno-histochemistry using an antibody to bovine spleen purple phosphatase. The enzyme could be detected in human and bovine lung tissues as well as on cytospin preparations of alveolar macrophage suspensions from bronchoalveolar lavages. The immunological identity of human and bovine purple phosphatases from alveolar macrophages was demonstrated by Western blot analysis of material separated by polyacrylamide gel electrophoresis. A possible significance of the purple phosphatase as a marker enzyme of activated cells of the mononuclear phagocyte system is discussed.

Acid Phosphatase↗

Functional significance of dauciform roots: exudation of carboxylates and acid phosphatase under phosphorus deficiency in Caustis blakei (Cyperaceae).

Caustis blakei produces an intriguing morphological adaptation by inducing dauciform roots in response to phosphorus (P) deficiency. We tested the hypothesis that these hairy, swollen lateral roots play a similar role to cluster roots in the exudation of organic chelators and ectoenzymes known to aid the chemical mobilization of sparingly available soil nutrients, such as P. Dauciform-root development and exudate composition (carboxylates and acid phosphatase activity) were analysed in C. blakei plants grown in nutrient solution under P-starved conditions. The distribution of dauciform roots in the field was determined in relation to soil profile depth and matrix. The percentage of dauciform roots of the entire root mass was greatest at the lowest P concentration ([P]) in solution, and was suppressed with increasing solution [P], while in the field dauciform roots were predominantely located in the upper soil horizons, and decreased with increasing soil depth. Citrate was the major carboxylate released in an exudative burst from mature dauciform roots, which also produced elevated levels of acid phosphatase activity. Malonate was the dominant internal carboxylate present, with the highest concentration in young dauciform roots. The high concentration of carboxylates and phosphatases released from dauciform roots, combined with their prolific distribution in the organic surface layer of nutrient-impoverished soils, provides an ecophysiological advantage for enhancing nutrient acquisition.

Acid Phosphatase↗