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Automated measurement of acid phosphatase reaction product in human kidneys treated with aminoglycoside antibiotics.

The acid phosphatase reaction product was measured by automated image analysis densitometry in histologic sections from 23 human kidney biopsies. Optical density was proportional to incubation time, section thickness and enzyme activity. After a four days' treatment with aminoglycoside antibiotics, optical density was increased and paralleled the lysosomal changes previously observed by electron microscopy.

Acid Phosphatase↗

Development of a stable reference material for prostatic acid phosphatase.

We describe the development of a stable reference material for prostatic acid phosphatase, derived from human prostatic tissue and human seminal fluid. The enzyme was purified by an L-tartramic acid affinity-chromatography technique. Two-dimensional electrophoresis revealed essentially no contaminating proteins, and specific tests revealed no contaminating enzymes. The preparations, in a matrix containing 30 g of human serum albumin and 0.1 mol of sodium acetate per liter, pH 6.0, were studied with respect to stability of both catalytic activity and immunological identity. We conclude that the preparations from either source are satisfactorily stable, and that either is acceptable for use in preparing clinical reference materials. These materials will be used in developing a reference method.

Acid Phosphatase↗

Comparison of Bolton-Hunter and chloramine-T techniques for the radioiodination of prostatic acid phosphatase.

A double antibody, semi-automated radioimmunoassay for serum prostatic acid phosphatase (PAP) is described, which uses the 125I-labelled N-succinimidyl-3-(4-hydroxyphenyl) propionate ester of PAP. This type of label has substantially higher immunoreactivity than that prepared using the chloramine-T method of radioiodination. Chromatographic purification of either label on Ultrogel ACA44 further improved immunoreactivity. The lowest detection limit (0 . 35 micrograms/l) was achieved with the chromatographically purified ester label.

Acid Phosphatase↗

Acid phosphatase localization in the equatorial region of human lenses.

Localization of acid phosphatase activity is described in equatorial segments of four human cataractous lenses, including one lens with equatorial cortical cataract, and three lenses with no significant equatorial opacities. The lenses were removed surgically with a cryoprobe. Enzyme reaction product was confined mostly to epithelial and cortical Golgi complexes and dense bodies, and to cortical smooth endoplasmic reticulum (SER). It also was located in small cortical vacuolar cysts in the lens with equatorial cataract, and intercellularly in a single lens which was devoid of equatorial opacity. In the latter case, intercellular activity was confined mostly to areas showing minimal pathological modification. Evidence is presented that the cortical SER represented GERL. The hypothesis is made that intercellular acid hydrolase activity might play a role in the early stages of human senile cortical cataract development. However, it is recognized that confirmation of this hypothesis will require additional studies involving comparison of both cataractous and normal lenses of various ages, which have been removed by a careful procedure which minimizes the lysis of lens cells.

Acid Phosphatase↗

The effect of cortisol on rabbit red cell acid phosphatase isoenzymes.

The effect of cortisol on rabbit erythrocyte and reticulocyte acid phosphatase was studied. Isoenzymic form I (slow) was activated by cortisol, and protected towards inhibition by phosphate and fluoride. Incubation of isoenzyme III (fast) preparation with cortisol resulted in decrease of the enzyme activity and its affinity for substrate. The inhibition of form III by phosphate and fluoride was accelerated in the presence of cortisol. Form II, if present, was unaffected by cortisol. Reticulocyte isoenzymes I and III were less affected by cortisol than the erythrocyte enzymes.

Acid Phosphatase↗

Three new phenotypes of human red cell acid phosphatase: ACP1FA, ACP1GA, and ACP1GB.

Three new phenotypes of human erythrocyte acid phosphatase (ACP1) have been detected and found to be unique by direct comparison with previously identified ACP1 variants. One of these new electrophoretic variants, labeled as ACP1FA, has been detected in the Hispanic population of California. The electrophoretic variants identified as ACP1GA and ACP1GB have been detected in a black family in North Carolina. A family study has shown that ACP1G is transmitted as an allele of ACP1.

Acid Phosphatase↗

Golgi apparatus: distinct structure of acid phosphatase localization in regenerating human skeletal muscle fiber.

The localization of acid phosphatase activity has been investigated ultrastructurally in regenerating human fetal skeletal muscle cells. The heavy reaction product was observed in the cisternae of Golgi apparatus and lysosomal vesicles, whereas the slight reaction product was also occasionally found in the nuclear envelope, endoplasmic reticulum and sarcoplasmic reticulum of the regenerating myocytes. The enzymatic basis for these deposits was confirmed by their absence in the incubation of the specimen in substrate-free medium and the enzyme inactivation of the specimen by exposure to NaF or heat.

Acid Phosphatase↗

Alkaline and acid phosphatase in the digestive system of two teleost fishes.

Alkaline and acid phosphatases are distributed in the stomach, intestine, liver and pancreas of Heteropneustes fossilis and Cirrhinus reba. In oesophagus and rectum they are found in traces only. In the stomach of Heteropneustes, the phosphatases are confined to the mucosa and gastric glands. In the omnivorous fish, Heteropneustes the intestine is shorter and the activity of the enzymes is higher where as in the herbivorous form Cirrhinus with long and coiled intestine, the enzymes are comparatively weak and distributed from the intestinal bulb to the posterior portion of the intestine. In Heteropneustes the enzymes are concentrated in the duodenum and anterior region of the intestine only. This regional difference in the distribution pattern may be correlated to the site of absorption of the metabolites.

Acid Phosphatase↗

Human prostatic acid phosphatase: properties of the native enzyme, and the enzyme-antibody complex.

Acid phosphatase purified from human prostatic tissue was shown to be homogeneous by polyacrylamide gel electrophoresis and N-terminal amino acid analysis. However, isoelectric focusing revealed a large number of isoenzymes which were reduced to four by digestion with neuraminidase. It is suggested that the patterns observed are due to differences in bound carbohydrate attached to the same protein backbone. Antiserum to the purified enzyme was produced in rabbits and reacted with the enzyme to form an enzymatically active complex of large molecular weight. This complex is more stable at high temperatures than the native enzyme. Kinetic analysis of both the enzyme and the enzyme-antibody complex demonstrated that the binding of the antibody caused no significant change to the active site of the enzyme.

Acid Phosphatase↗

Characterization of serum tartrate-resistant acid phosphatase and development of a direct two-site immunoassay.

Osteoclasts secrete tartrate-resistant acid phosphatase (TRAP) to the circulation, where the amount of TRAP is expected to correlate with the bone resorption rate. We have developed two monoclonal antibodies, O1A and J1B, using purified human bone TRAP as antigen. The antibodies recognized different epitopes, allowing us to develop a two-site fluoroimmunoassay. The immunoreactivity in fresh serum specimens was less than 10% of the concentrations measured from the same specimens after 24 h of storage at 4 degrees C, or after addition of 5 mM EDTA or EGTA to them. When fresh serum was gel filtrated using Sephacryl S-200 column, all of the enzyme eluted in the void volume as a complex with a molecular weight of more than 250 kDa. If the serum was treated with EDTA before the gel filtration, the complex was destroyed and the enzyme eluted in fractions corresponding to a molecular weight of 30 kDa, the size of monomeric purified human bone TRAP. The immunoassay was used to measure TRAP concentrations from serum samples that had been stored at 4 degrees C for 24 h. According to the assay, premenopausal women had 13.1 +/- 3.1, postmenopausal women 17.6 +/- 4.2, and children 32.6 +/- 12.2 microg TRAP/l of serum. We conclude that TRAP circulates in the serum as part of a complex, which also contains Ca2+, and that TRAP-immunoassay is a potentially useful method for determining bone resorption rates, as long as the complex is destroyed before the assay.

Acid Phosphatase↗

The diagnostic value of urinary transferrin compared to serum prostatic specific antigen (PSA) and prostatic acid phosphatase (PAP) in patients with prostatic cancer.

Urinary transferrin, serum prostatic acid phosphatase (PAP) and prostatic-specific antigen (PSA) concentrations were measured in patients with prostatic cancer, prostatitis, benign prostatic hypertrophy (BPH) and in a control group. In contrast to recently published data it is concluded that urinary transferrin is not suitable as a tumor marker for prostatic carcinoma. Receiver Operating Characteristic curves were constructed to compare the diagnostic value of the different tests at different cutoff values. Sensitivity and specificity of the urinary marker are extremely low compared to the serum markers PAP and especially PSA, making the former not suitable as an additional marker.

Acid Phosphatase↗

Multiple marker evaluation in prostatic cancer with prostatic acid phosphatase, gamma-seminoprotein and prostate-specific antigen.

Serum prostatic acid phosphatase (PAP), gamma-seminoprotein (gamma-Sm), and prostate-specific antigen (PA) levels were measured in 63 untreated patients with prostatic cancer. The sensitivities of PAP, gamma-Sm, and PA as markers of malignancy were 68%, 83%, and 77%, respectively. The latter two markers were more sensitive than PAP, especially in stage B disease. The specificities of PAP, gamma-Sm, and PA were 95%, 93%, and 93%, respectively. Patients with multiple positive markers were very likely to have prostatic cancer. In reactivation of the disease, positive rates for gamma-Sm and PA were higher than for PAP, indicating that the former two markers are more reliable for monitoring prostatic cancer.

Acid Phosphatase↗

Temperature dependent influence of As2O3, HgHPO4 and KCl on lysosomal acid phosphatase isolated from rat liver.

Studies were carried out to investigate acid phosphatase activity in the presence of As2O3, HgHPO4 and KCl at 25 degrees C and 37 degrees C. In all cases examined enzyme activities measured at 25 degrees differ from those detected at 37 degrees C. When activity was measured in the presence of As2O3 at 25 degrees C a stimulation was found while at 37 degrees C activities remained within the control range. Similar results were obtained, when As2O3 was replaced by HgHPO4. In contrast to that, added amounts of KCl cause an increase of activity at both incubation temperatures, but the increment being greater at 37 degrees C. Furthermore in most cases correlation between increasing amounts of substances added and enzyme activity measured was non-linear.

Acid Phosphatase↗

Counterimmunoelectrophoretic studies of serum prostatic acid phosphatase.

A counterimmunoelectrophoretic (CIEP) assay for the specific determination of prostatic acid phosphatase (PAP) is described. PAP was obtained from benign human prostatic tissue and a specific antiserum to this enzyme was produced in rabbits and goats. The lowest detectable activity of PAP was at 0.3 IU/l or 4 ng./0.1 ml. This CIEP method was compared to a standard biochemical method (Roy) on a wide spectrum of prostatic and nonprostatic disease. Nonprostatic malignancies and other disorders associated with hyperacidphosphatasemia by the biochemical method were found to be nonreactive for PAP by CIEP. Patients under treatment with various stages of prostatic carcinoma showed comparable elevations by both methods (35%). In untreated patients, the CIEP was statistically most sensitive in stage A (39% by CIEP and 14% by chemical).

Acid Phosphatase↗

Rhythmic variations in acid phosphatase activity in the liver of newborn rats.

The rhythm of acid phosphatase activity in liver homogenates of newborn rats (aged about 14 days) was compared with a similar rhythm in adult rats (aged 4.5 months). Serial chromatographic investigations demonstrating isoenzyme patterns demonstrated age-related changes of this rhythm connected with the synthesis of the enzyme in newborn rats. The averaged activity of the enzyme in the liver homogenates of newborn rats was about 4 times lower than in adult rats. The maximal values of total enzyme activity of both isoenzymes after chromatographic separation in newborn rats were shifted by about 7 hours in relation to adult animals. Similar changes were observed in the case of the greatest maximal values of the activity ratios--subunit: both isoenzymes, and isoenzyme II: isoenzyme I. In adult rats these maximal values appeared during the night hours and in newborn rats during the day.

Acid Phosphatase↗

Expression, purification, crystallization and preliminary X-ray characterization of the class B acid phosphatase (AphA) from Escherichia coli.

The class B non-specific acid phosphatase AphA from Escherichia coli has been expressed in E. coli and purified following a new protocol. ESI mass spectroscopy shows that the purified enzyme solution contains two polypeptides with molecular weights differing by 185 Da corresponding to two different cleavage sites of the signal peptide from the AphA E. coli precursor. Despite the solution heterogeneity, X-ray quality crystals have been obtained. However, the crystals have a tendency to give polymorphs and to lose long-range order with time while maintaining an intact crystal habit. Crystals have been grown in space groups I222 and C2 with three different unit cells and different asymmetric unit contents. Diffraction data to 1.6 A resolution have been collected with synchrotron radiation at ESRF and DESY.

Acid Phosphatase↗