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M Gottlieb

Publications and source records attributed to M Gottlieb.

At least 73 records · Page 4Linked to original sources

Leishmania donovani: generation of monospecific antibody reagents to soluble acid phosphatase.

Four monoclonal antibodies (McAbs) were generated against the soluble extracellular acid phosphatase (EC 3.1.3.2) (S-AcP) of Leishmania donovani. These were detected in the primary screen using an ELISA with promastigote culture supernatants as antigen. Three of the McAbs demonstrated bound S-AcP from such culture supernatants in an enzyme activity binding assay. All immunoprecipitated metabolically labeled S-AcP but none showed any binding to the promastigote surface by indirect immunofluorescence. Moreover, none reacted with Triton X-100 solubilized plasma membranes by immunoprecipitation or Western blotting. These results demonstrated that the McAbs did not recognize the surface membrane bound acid phosphatase, but were specific for the extracellular soluble enzyme. Further, none of the antibodies immunoprecipitated any of the five human acid phosphatase isozymes or reacted with them in Western blots or the enzyme activity binding assay. Therefore, they are specific for the parasite-derived enzyme. One of these was used to affinity purify sufficient L. donovani S-AcP to immunize a rabbit and generate a specific, polyvalent antiserum. This polyvalent antibody immunoprecipitated S-AcP activity but did not cross-react with the surface membrane acid phosphatase, indicating that these two parasite enzymes are separate gene products.

Acid Phosphatase↗

Renaturation of Leishmania donovani 3'-nucleotidase following sodium dodecyl sulfate-polyacrylamide gel electrophoresis.

1. Renaturation of a 3'-nucleotidase from the surface membrane of Leishmania donovani promastigotes was achieved following polyacrylamide gel electrophoresis (PAGE) in the presence of sodium dodecyl sulfate (SDS). 2. Enzyme activity was detected in situ in gels, following SDS removal, by incubating the gels in reaction mixtures containing 3'-AMP or 3'-UMP as substrate followed by staining for the inorganic phosphate (Pi) reaction product with malachite green-molybic acid solution. 3. Conditions for the removal of SDS by diffusion and for the renaturation of enzyme activity are described including evidence for the detergent requirement, which is best satisfied by 3[(3-cholamidopropyl)-dimethylammonio]2-hydroxy-1-propane sulfonate (CHAPSO). 4. Results indicate that the 3'-nucleotidase migrates under these conditions as a polypeptide with an Mr of 43,000.

Animals↗

Evidence for phosphorylation of the extracellular acid phosphatase of Leishmania donovani.

The presence of two phosphorylated molecular species in the culture supernatants of axenically cultivated Leishmania donovani promastigotes was demonstrated by biosynthetically labeling cultures with [32P]phosphate. One of these species was resolved into two bands with Mr's of 149,000 and 97,000 by dissociating polyacrylamide gel electrophoresis and copurified with the extracellular acid phosphatase activity produced by the promastigotes. The site of phosphorylation of the extracellular acid phosphatase is not yet known.

Acid Phosphatase↗

Effect of ischaemia on protein synthesis in vitro.

Changes in the incorporation of 14C-amino acids into proteins in vitro were followed under conditions of ischemia induced by abdominal aorta ligature and subsequent recirculation in dogs. Cell saps isolated from L-S spinal cord, spinal ganglia, the sciatic nerve and medulla oblongata were added to the incorporation mixture composed of ribosomes and an enzymatic system from intact brains. Cytosols isolated from ischemic animals affected the rate of in vitro protein synthesis moderately, while repeated ischemia caused a profound decrease in the incorporation of amino acids into proteins. Cytosols from L-S spinal cord and especially from spinal ganglia after three days of recirculation substantially enhanced incorporation thus indicating a massive response of these tissues to ischemic injury. Cell saps from the medulla oblongata increased amino acid incorporation into proteins in vitro in all experimental groups.

Animals↗

Mechanism of defective NK cell activity in patients with acquired immunodeficiency syndrome (AIDS) and AIDS-related complex. I. Defective trigger on NK cells for NKCF production by target cells, and partial restoration by IL 2.

Peripheral blood from patients with acquired immunodeficiency syndrome (AIDS) or AIDS-related complex (ARC) exhibits poor NK activity in the 51Cr-release assay. The present studies were undertaken to investigate the mechanism underlying the observed defective NK cytotoxic activity. On the basis of our studies on the mechanism of natural killer cell-mediated cytotoxicity (NKCMC), a defective NK cell can result from lack or decreased frequency of effector cells, inability to recognize and bind the target cell, failure to be activated for the release of NK cytotoxic factors (NKCF), and/or failure to synthesize or secrete NKCF. Each of these various possibilities was examined. Single cell analysis revealed that the frequency of NK cells was comparable to controls, and although the NK cells bind to the NK-sensitive target, the bound target is not lysed. These results suggested that the defect in NK cells was not due to depletion of NK cells or to a defect in recognition structures, but that it was located at the postrecognition event. We previously demonstrated that after binding to target, the NK cell is stimulated to release NKCF in the supernatants and NKCF lyse specifically NK-sensitive targets. Accordingly, we investigated the activation of NK cells from AIDS and ARC patients for release of NKCF. After coculture with the stimulator cell, the patients' NK cells failed to release active NKCF in the supernatant. However, the cells released NKCF after stimulation with the lectin Con A or a mixture of TPA and ionophore, albeit to a lesser extent than controls. These results suggested that AIDS and ARC NK cells are defective in the trigger involved in release of NKCF. Further studies were done to investigate whether the immunomodulator IL 2 can restore the functional activity of the defective NK cells. Treatment with IL 2 resulted in augmented NK cytolytic activity, but did not reach control levels of activated cells from normal controls. Furthermore, the patients' IL 2-treated cells recover partially the ability to be stimulated by NK cells and to release NKCF. These results suggest that the trigger for NKCF production and the cytolytic function of the patients' NK cells are regulated by IL 2. By delineating the stage at which the AIDS and ARC NK cells are defective, it is now possible to monitor their recovery and to investigate the effect of various biologic response modifiers in restoring NK activity.

Acquired Immunodeficiency Syndrome↗

A sensitive staining technique for the detection of phosphohydrolase activities after polyacrylamide gel electrophoresis.

A sensitive colorimetric method for the determination of Pi in the range 0.5-10 nmol has been adapted for detection of several phosphohydrolase activities in polyacrylamide gels. This procedure, which leads to the formation of a malachite green-phosphomolybdate complex, may be used with many commonly studied enzymes, such as acid and alkaline phosphatases, nucleotidases, and ATPases. Since detergents do not interfere with color development, this assay is useful for monitoring the activity of detergent-solubilized membrane enzymes as well as normally soluble enzymes.

Animals↗

Hydrolysis of phosphoproteins and inositol phosphates by cell surface phosphatase of Leishmania donovani.

Leishmania donovani promastigotes contain intense tartrate-resistant cell surface acid phosphatase (ACP1) which blocks superoxide anion production by activated human neutrophils [A.T. Remaley et al. (1984) J. Biol. Chem, 259, 11173-11175]. An extensively purified preparation of ACP1 dephosphorylates several phosphoproteins which are phosphorylated at serine residues; these include: pyruvate kinase (Km 1.6 microM; Vmax 71.4 U (mg protein)-1), phosphorylase kinase (Km 0.076 microM; Vmax 5.4 U (mg protein)-1) and histones (Km 4.86 microM; Vmax 2.2 U (mg protein)-1). However, the specific activity of the leishmanial phosphatase on these phosphoproteins is very low as compared to other phosphoprotein phosphatases. The phosphatase activity of ACP1 was also low on phosphohistone phosphorylated at tyrosine residues. Phosphatidylinositol-4,5-diphosphate (PIP2) and inositoltriphosphate (IP3) were also tested as ACP1 substrates. PIP2 was hydrolyzed rapidly by ACP1. The rate of hydrolysis of PIP2 was higher at pH 6.8 (Km 2.35 microM; Vmax 107 X 10(3) U (mg protein)-1) than at pH 5.5 (Km 4.16 microM; Vmax 71 X 10(3) U (mg protein)-1). 32P-labeled IP3 was also a substrate for ACP1; the hydrolysis products consisted of a mixture of inositoldiphosphate and inositolmonophosphate. ACP1 and ten other phosphatases were tested for their ability to dephosphorylate proteins and to inhibit O2- production by stimulated human neutrophils. There was no correlation between the protein phosphatase activity of the acid- and alkaline phosphatases and their ability to block neutrophil O2- production. The results indicate that ACP1 probably blocks the production of reduced oxygen intermediates by a mechanism that does not involve dephosphorylation of phosphoproteins; however, the possibility that the parasite's phosphatase affects phagocyte metabolism by degrading PIP2 or IP3 should be considered.

Acid Phosphatase↗

Purification and characterization of the extracellular acid phosphatase of Leishmania donovani.

A tartrate sensitive acid phosphatase activity was purified from culture supernatants of Leishmania donovani promastigotes grown in a macromolecule-free defined medium. Purification was accomplished by ultrafiltration, lentil lectin affinity chromatography, and sucrose density gradient ultracentrifugation. This enzyme was determined to be an acid glycoprotein containing 0.37 mg hexose per mg protein. A molecular weight of 134 000 by sucrose density gradient centrifugation was observed, although on molecular sieve chromatography the enzyme eluted with an apparent molecular weight of greater than 700 000. The specific activity of the purified enzyme was greater than 200 mumol min-1(mg protein)-1 when assayed with 4-methylumbelliferylphosphate as the substrate. In addition to various hexose phosphates, the enzyme hydrolyzed phosphorylated amino acids, in particular phosphotyrosine. The purified enzyme was heterodisperse with respect to both protein and activity staining patterns upon polyacrylamide gel electrophoresis.

Acid Phosphatase↗

3'-nucleotidase activity in procyclic and bloodstream stages of Trypanosoma rhodesiense.

Both procyclic and bloodstream-derived trypanosomes of Trypanosoma rhodesiense exhibit a nucleotidase activity which is capable of hydrolyzing 3'-ribonucleotides. Nucleotidase activity in assays employing 5'-nucleotide substrates is not detectable in preparations of either phenotype. The 3'-nucleotidase activity in lysates of procyclic trypanosomes is pelletable at 100,000 g, whereas that activity from bloodstream forms is operationally soluble under the conditions employed. The 3'-nucleotidase activities of both stages share the following characteristics: pH optimum of 8.5, substrate preference for purine ribonucleotides, resistance to commonly used phosphatase inhibitors, including fluoride, tartrate and molybdate ions. Both activities are reversibly inhibited by EDTA and reactivated by Co2+ ions. As visualized by fine-structure cytochemical methods, 3'-nucleotidase activity was distributed over the entire surface of procyclic trypanosomes, but not bloodstream parasites bearing an intact surface coat.

Animals↗

Comparison of extracellular acid phosphatases from various isolates of Leishmania.

Forty isolates of Leishmania, representing all major species infecting humans and one parasite of lizards, were examined for their ability to secrete an extracellular acid phosphatase activity. This enzyme, which was originally described and characterized from a Sudanese strain of L. donovani, was detected in the culture supernatants of all species of promastigotes examined except for L. major and L. tarentolae. There were quantitative differences among species in their levels of enzyme activity and in the sensitivity of the exoenzyme to inhibition by L(+) tartrate. Upon electrophoresis in nondenaturing polyacrylamide gels, extracellular acid phosphatase from L. braziliensis panamensis, L. tropica, and L. mexicana showed distinctive patterns which were similar for all isolates of a given species, while enzymes from L. donovani isolates differed from one another in relative electrophoretic mobility. Enzymes from all species appeared heterogeneous, showing either discrete multiple bands or single diffuse bands on gels stained for enzyme activity. Although the biological function of the extracellular acid phosphatase is presently unknown, the exoenzyme may be of value as a diagnostic or taxonomic characteristic.

Acid Phosphatase↗

Enzyme regulation in a trypanosomatid: effect of purine starvation on levels of 3'-nucleotidase activity.

Crithidia fasciculata, a nonpathogenic relative of the leishmanial and trypanosomal pathogens of humans and animals, showed a 3'-ribonucleotidase activity similar to that in Leishmania donovani. The level of 3'-nucleotidase activity in Crithidia was regulated by the availability of purines in the culture medium. Specifically, organisms obtained from culture medium depleted of purines contained elevated levels of enzyme activity compared to those grown in complete medium. The 3'-nucleotidase, located at the cell surface, may serve as a first step in purine salvage for these protozoa, which are unable to synthesize the purine ring de novo.

5'-Nucleotidase↗

Resistance of leishmanial phosphatases to inactivation by oxygen metabolites.

Leishmania donovani promastigotes produce large quantities of two distinct acid phosphatases; a tartrate-resistant enzyme is localized to the external surface of the plasma membrane, and a tartrate-sensitive enzyme is secreted into the growth medium. It was shown previously that preincubation of human neutrophils and macrophages with the tartrate-resistant phosphatase markedly reduced the ability of these host cells to produce superoxide anions in response to stimulation with the activator formyl-methionyl-leucyl-phenylalanine. The possibility that the cell surface acid phosphatase or the phosphatase that is secreted into the extracellular fluid might compromise other host cell functions, especially intracellular ones, depends on the ability of the enzyme to resist exposure to toxic oxygen metabolites (e.g., superoxide anion, hydrogen peroxide, hypochlorite) generated by phagocytic cells. In the present report, we show that both leishmanial acid phosphatases were relatively resistant to inactivation by oxygen metabolites. At pH 5.5, the activity of the tartrate-resistant phosphatase was reduced 50% by incubation for 1 h with each of the following: 30 mM O2-, 500 mM hydrogen peroxide, and 6 mM hypochlorite ion. These concentrations are many fold greater than the concentrations of these substances that are generated by stimulated polymorphonuclear phagocytes. The tartrate-sensitive acid phosphatase differed markedly from the tartrate-resistant phosphatase in that the former was essentially insensitive to even very high concentrations of superoxide anion and hydrogen peroxide. Furthermore, 50% inactivation of the tartrate-sensitive leishmanial phosphatase required exposure to 35 mM hypochlorite for 30 min. These results indicate that the catalytic potential of these two leishmanial acid phosphatases probably survives exposure to toxic oxygen metabolites generated by neutrophils and macrophages.

Acid Phosphatase↗

Surface membrane localization of 3'- and 5'-nucleotidase activities in Leishmania donovani promastigotes.

Distinct 3'- and 5'-nucleotidase activities were localized to the surface membrane of Leishmania donovani promastigotes using enzymatic reactions with live intact cells and fine structure enzyme-mediated cytochemical reactions with intact cells, cell homogenates, and isolated surface membranes. The results indicated that virtually all activity of both enzymes was restricted to the parasite surface membrane. Cytochemical localization results demonstrated that both activities were externally disposed on the intact organism, and were restricted to the external face of the isolated parasite surface membrane. The two activities were cytochemically differentiated by their substrate specificities and sensitivity to several inhibitors. On the basis of their cytochemical sensitivity to glutaraldehyde treatment, the two nucleotidase enzymes were distinguished from another external surface membrane enzyme, a nonspecific acid phosphatase. Results of the cytochemical assays further demonstrated the biochemical and structural asymmetry of the isolated parasite surface membrane with regard to the localization and distribution of the active sites of these two enzymes.

5'-Nucleotidase↗

Reversal of fibronectin and opsonic deficiency in patients. A controlled study.

Plasma fibronectin is an opsonic glycoprotein which augments reticuloendothelial phagocytic clearance of nonbacterial particulates. We evaluated the influence of intravenous infusion of plasma cryoprecipitate on circulating immunoreactive fibronectin and associated opsonic activity at 0.5, 2.0, 4.0, 10, and 21 hr postinfusion in septic (n = 8) and nonseptic (n = 6) surgical and/or trauma patients with documented plasma fibronectin deficiency. The study was a randomized, double-blind, crossover clinical protocol in which fibronectin-poor (0.116 +/- 0.025 mg/ml) cryoprecipitate extracted plasma (placebo) was compared to fibronectin-rich (2.139 +/- 0.161 mg/ml) plasma cryoprecipitate. Septic injured patients (149.37 +/- 17.11 micrograms/ml) had lower (p less than 0.05) plasma fibronectin levels than nonseptic injured patients (212.17 +/- 7.14 micrograms/ml) and both were less (p less than 0.05) than normal (330 +/- 30 micrograms/ml). As tested in vitro with a peritoneal macrophage monolayer assay, cryoprecipitate manifested opsonic activity related to its fibronectin concentration. Intravenous infusion of fibronectin rich cryoprecipitate reversed both the immunoreactive fibronectin and opsonic deficiency, while infusion of the placebo at a comparable total protein load did not reverse either deficient parameter. Reversal of fibronectin deficiency was more sustained in nonseptic injured patients as compared to septic injured patients. Thus, reversal of opsonic deficiency in septic and nonseptic injured patients is observed after infusion of plasma cryoprecipitate and not with infusion of fibronectin deficient plasma at comparable protein loads. Also, cryoprecipitate extracted plasma may serve as an appropriate control solution for randomized studies evaluating the therapeutic value of fibronectin-rich plasma cryoprecipitate.

Adolescent↗

Evidence for distinct 5'- and 3'-nucleotidase activities in the surface membrane fraction of Leishmania donovani promastigotes.

A surface membrane fraction isolated from Leishmania donovani promastigotes contained distinct 5'- and 3'-nucleotidase activities. These were distinguished from each other, and from a previously described surface membrane nonspecific acid phosphomonoesterase, on the basis of several properties. The 5'- and 3'-nucleotidases had p' optima of 6.5 and 8.5, respectively. In contrast to the 3'-nucleotidase, the 5'-nucleotidase was inhibited by both ammonium molybdate and fluoride ions; the latter inducing a biphasic response. Neither divalent cations nor chelators affected the 5'-enzyme activity whereas the 3'-enzyme was inactivated by EDTA. This inactivation was fully reversed following removal of the chelator, either by resuspension of the membranes in EDTA free medium or by addition of certain divalent cations in excess; Co2+ being the most effective. The 5'-nucleotidase had activity with both ribo- and deoxyribonucleotide substrates, whereas the 3'-nucleotidase did not hydrolyse deoxyribonucleotides.

5'-Nucleotidase↗