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I Pecht

Publications and source records attributed to I Pecht.

At least 127 records · Page 7Linked to original sources

[The relationship between Ca++ ions and a protein specific to cromolyn in the degranulation of mast cells and basophils in the rat].

Previous research has shown that cromolyn (disodium cromoglycate) binds specifically to the membrane of rat mast and basophil leukemia (RBL) cells, forming a ternary complex with Ca++, blocking of the Ca++ results in inhibition of histamine release upon immunologic triggering. The specific cromolyn binding protein (CBP) has been isolated by using its high affinity form cromolyn. Specific monoclonal anti CBP antibodies have been obtained in mice and polyclonal anti-cromolyn antibodies in rabbits. These antibodies have been used for further purification and characterization of the CBP. Experiments on RBL cell lines have shown that CBP is essential for Ca++ influx and histamine liberation upon immunologic triggering by these cells. Variant CBP deficient RBL do not take up Ca++ and do not degranulate in response to immunologic triggering but their ability to respond normally can be induced by incorporating CBP into their membranes with help of Sendai virus carrier vesicles. This shows that CBP plays a crucial role for the RBL cells Ca++ influx and histamine release following IgE crosslinking.

Animals↗

Pseudomonas aeruginosa cytochrome oxidase. Product inhibition by low thermodynamic driving force.

The steady-state kinetics of Pseudomonas aeruginosa cytochrome oxidase were studied. Reduced cytochrome c551 and azurin from the same bacteria were used as the electron-donating substrates, while dioxygen served as the electron acceptor. Oxidized cytochrome c551 and azurin exhibited product inhibition of the reaction. However, apo-azurin and azurin derivatives in which the copper was substituted by the redox-inert ions Ni2+, Co2+, Cd2+ and Zn2+, did not show any effect on the kinetics. These observations implied that complex formation between the substrates or the products and the enzyme is not a rate-limiting step and is not the cause for product inhibition. The integrated rate law for a reaction scheme in which we assumed that complex formation was not rate limiting was fitted to the complete reaction traces. The results suggested that it is the low thermodynamic driving force, expressed in the small differences in redox potential between the substrates and heme c of the enzyme, which cause the observed product inhibition.

Azurin↗

Characterization of the ion channel activity in planar bilayers containing IgE-Fc epsilon receptor and the cromolyn-binding protein.

Electric conductance was studied across micropipette-supported planar lipid bilayers, reconstituted with IgE-Fc epsilon receptor and the cromolyn-binding protein (CBP) isolated from membranes of rat basophilic leukemia cells (RBL-2H3). Currents were observed following the addition of aggregating agents, specific for either of the two proteins. The results show that the two proteins are necessary and sufficient for the opening of cation channels. Both aggregation of Fc epsilon receptor via IgE with a specific antigen and of CBP by anti-CBP induce channels with similar conductances and open-time distributions. In the presence of 1.8 mM calcium, the most frequently observed channels have a conductance of 1-2 pS. At 100 mM calcium conductance increased to 4-5 pS. Channels induced by antigen were susceptible to blocking by the anti-allergic drug cromolyn. These results suggest that CBP acts as the core of the cation channel and that the channel conductance and open-time characteristics are independent of the mode of aggregation.

Animals↗

Mutual relationship among cytosolic pH, Na+ and Ca2+ ions in the degranulation of rat leukemic basophils.

Reagents which affect the cytosolic concentrations of protons and sodium ions markedly affect the degranulation process of mast cells. The proton-sodium exchanging ionophore, monensin, is found to cause noncytolytic dose dependent serotonin release from the rat leukemic basophils (line RBL-2H3). Its half maximal dose of ca. 2 microM leads to secretion of ca. 20% of these cells' serotonin content. Monensin induced serotonin secretion increases with external pH and decreases upon lowering external sodium ion concentrations, yet is independent on external calcium. Monitoring cytosolic pH and free Ca2+ concentrations with BCECF and quin2, respectively, shows that a rise in pHi and [Ca2+]i is caused by the ionophore. Amiloride, the blocker of cellular Na+/H+ antiporter, is found to be an effective inhibitor of antigen or monensin induced serotonin release. However, it does not by itself cause secretion. In contrast, ouabain, which inhibits the cellular Na+/K+ ATPase, does induce secretion. Cellular levels of pH, Na+ and Ca2+ ions are evidently linked and involve a manifold of activities. Though exchanging protons for sodium seems to be effective in causing mediator release, the present results do not provide sufficient support for proton/sodium ions having a second messenger role in the immunologically induced mediator release.

Amiloride↗

The role of the Fc epsilon receptor in calcium channel opening in rat basophilic leukemia cells.

The role of the Fc epsilon, receptor (Fc epsilon R), isolated from rat basophilic leukemia cells (line RBL-2H3) in antigen induced Ca++ channel opening has been studied by following ion conductance in reconstituted model membranes. Planar bilayers were constructed from lipid vesicles containing the purified Fc epsilon R alone, or together with the cromolyn binding protein (CBP). Changes in conductivity of these bilayers were measured as a monitor for channel activity, following specific aggregation of Fc epsilon R. Antigen-induced, Fc epsilon R mediated channel activity could only be elicited in membranes containing both proteins. This conductance was abrogated upon disaggregating the complexes with a monovalent hapten (epsilon-N-DNP-L-lysine). No channel activity was observed following antigen-induced aggregation of Fc epsilon R if CBP was not present in the bilayer. The single channels recorded were of approximately equal to 2 pS conductance. The open-time values varied significantly with individual experiments and depended on the protein composition of the membrane and the nature of the aggregating agent. These observations strongly indicate that the Fc epsilon R isolated from RBL cells does not form cation (Ca++) channels by itself. Furthermore, in line with earlier reports, the present data suggest that the CBP is responsible for this activity, and that it interacts directly with Fc epsilon R to open channels upon aggregation.

Animals↗

A selenomethionine-containing azurin from an auxotroph of Pseudomonas aeruginosa.

The production and spectroscopic properties of an L-selenomethionine-containing homolog of Pseudomonas aeruginosa azurin are described. The amino acid substitution was carried out by developing an L-methionine-dependent bacterial strain from a fully functional ATCC culture. Uptake studies monitored using L-[75Se]methionine indicated that L-selenomethionine was incorporated into the protein synthetic pathway of Pseudomonas bacteria in a manner analogous to L-methionine. Several batches of bacteria were grown, and one sample of isolated and purified selenoazurin (azurin in which methionine was substituted by selenomethionine) was found (by neutron activation analysis) to contain 5.2 +/- 0.8 seleniums/copper. Correspondingly, a residual 0.35 methionines, relative to 6.0 in the native protein, were found by amino acid analysis in this azurin sample. The redox potential and extinction coefficient of this selenoazurin were found to be 333 +/- 1 mV (pH 7.0, I = 0.22) and 5855 +/- 160 M-1 cm-1 at 626 +/- 1 nm, respectively. Visible electronic, CD, and EPR spectra are reported and Gaussian curve fitting to the former spectrum allowed assignment of the selenomethionine Se----Cu(II) transition to a band found at 18034 cm-1, based upon an observed 450 cm-1 shift to the red from the analogous band position in the native protein. The data are consistent with a relatively more covalent copper site stabilizing the reduced, Cu(I), form in the selenoprotein. A role for the methionine as a modulator of the blue copper site redox potential by metal----ligand back bonding from Cu(I) is discussed in terms of a ligand sphere which limits the valence change at copper to much less than 1 during a redox cycle.

Azurin↗

Low affinity of kappa chain bearing (4-hydroxy-3-nitrophenyl)acetyl (NP)-specific antibodies in the primary antibody repertoire of C57BL/6 mice may explain lambda chain dominance in primary anti-NP responses.

The primary anti-(4-hydroxy-3-nitrophenyl)acetyl (anti-NP) antibody response of C57BL/6 mice was analyzed by several methods. Serum analyses by solid-phase radioimmunoassay (RIA) showed that stimulation with the thymus-independent (TI) type 1 antigen NP-LPS results in an anti-NP antibody response dominated by kappa (kappa) light chain bearing antibodies, whilst responses to NP-Ficoll (a TI-2 antigen) and NP-KLH (a thymus dependent antigen) are dominated by lambda (lambda) 1 light chain bearing antibodies. However, in all these responses NP-specific plaque-forming cells (PFCs) were predominantly heteroclitic, and inhibitable by anti-lambda antiserum. In addition, kappa-bearing IgM-producing hybridomas obtained by fusion of spleen cells from NP-LPS-immunized mice, although producing NP-specific antibodies detectable by RIA, were unable to produce NP-specific plaques. Direct determination of the affinity of 5 of those hybridomas by fluorometric titrations showed that their affinity is indeed lower than 10(-5) M. These results suggest that most NP-specific antibodies stimulated by NP-LPS are of too low affinity to be detected in a direct PFC assay, with the exception of a population of lambda-bearing antibodies. Therefore, the differential expression of kappa- or lambda-bearing antibodies in primary responses to the hapten NP presented on different carriers may be due to different affinity requirements for B-cell triggering via different activation pathways.

Animals↗

Structural changes induced in rat leukemic basophils by immunological stimulus.

We have examined morphological events in RBL-2H3 basophilic leukocyte-derived cells following stimulation to secrete with specific antigen. Following stimulation, the cell surface undergoes a rapid and pronounced ruffling concomitant with an overall flattening. Secretory granules which are located in one area before stimulation becomes rapidly dispersed throughout the cytoplasm. Since secretion has been shown to be a relatively slow process in the RBL-2H3 cell line our observations suggest that ruffling and flattening precede the secretion process.

Animals↗

NMR spectroscopic identification of a hexacyanochromate(III) binding site on Pseudomonas azurin.

Studies of redox reactions between the blue copper protein azurin and inorganic reagents have suggested the formation of discrete complexes between the reaction partners prior to the actual electron-transfer step. To get an insight into the structural nature of the complexes formed, we have studied the interaction (i) between oxidized Pseudomonas aeruginosa azurin and the anion Fe(CN)6(3-) and (ii) between reduced azurin and Cr(CN)6(3-). At low ionic strengths, stoichiometric binding of one Fe(CN)6(3-) ion to the oxidized protein is observed. In the high-resolution proton magnetic resonance spectra of the reduced protein, specific broadening of the assigned residues is observed upon titration with the redox-inert Cr(CN)6(3-) ion. Analysis of this paramagnetic spectral broadening in terms of the three-dimensional structure of the protein has led to the proposal that the binding site of the anions lies approximately midway between lysine residues 85 and 92. Evidence in support of this conclusion is provided by parallel studies on Alcaligenes faecalis azurin, which lacks these lysine residues. A similar site on the surface of Pseudomonas azurin has recently been identified by affinity labeling with chromous ions as an electron-transfer locus [ Farver , O., & Pecht , I. (1981) Isr . J. Chem. 21, 13-17]. The results presented here suggest that this region on the protein surface also may be employed by anionic electron-transfer agents.

Alcaligenes↗

Resolution of cellular compartments involved in membrane potential changes accompanying IgE-mediated degranulation of rat basophilic leukemia cells.

The overall membrane potential of rat basophilic leukemia cells (RBL-2H3) calculated from the transmembrane distribution of the lipophilic, tritium-labelled cation tetraphenyl-phosphonium [( 3H]TPP+) was resolved into its mitochondrial and plasma membrane potential components. Using the mitochondrial uncoupler carbonylcyanide-p-trifluormethoxyphenyl hydrazone (FCCP) which collapses the mitochondrial potential, it was shown that about one third of the overall potential resulted from the mitochondrial contribution. Degranulation of the RBL cells induced by two different IgE-cross-linking agents (specific antigen and anti-IgE antibodies), was accompanied by, and well correlated with, a decrease in the overall potential. However, evaluation of the source of these observed potential changes revealed that the FCCP-insensitive fraction of the overall potential, delta psi P, (representing the plasma membrane potential), was not affected. In contrast, the FCCP-sensitive component due to the mitochondrial potential decreased when receptor cross-linking increased. Thus, the observed decrease in the overall potential is most probably a secondary event in the sequence leading from stimulus to secretion. Indeed, exposure of the RBL cells either to a high external concentration of K+ ions or to a high amount of external TPP+, both causing depolarization, failed to trigger degranulation. It is suggested that the apparent decrease in the measured overall potential is a reflection of the mitochondrial membrane depolarization. The latter is most probably caused by mitochondrial Ca2+ uptake initiated by the increase in the intracellular concentration of Ca2+ which follows cells activation.

Animals↗

Protein kinase C, a coupling element between stimulus and secretion of basophils.

Protein kinase C plays a crucial role in the transmission and control of secretory cell membranal signals. This Ca2+ and phospholipid dependent kinase have been isolated and partially purified from histamine secreting rat basophilic leukemia cells (RBL-2H3 line). The tumor promoter 12-O-tetradecanoyl phorbol-13-acetate ester (TPA) directly activated this isolated enzyme. In the intact RBL-2H3 cells, TPA did not significantly affect free intracellular Ca2+ ions concentration or induce secretion. However, at low concentrations it synergistically enhanced secretion induced either by antigen or ionophore. Significantly, at TPA concentrations exceeding 25 ng/ml both the increase in cytosolic free Ca2+ and the ensuing degranulation were inhibited. The synergism between TPA and the ionophore reaches saturation. These findings suggest that free cytosolic Ca2+ and kinase C-mediated protein phosphorylation are synergistically involved in the mediation of the cellular response. Moreover, kinase C appears to play a dual role both in the activation and termination of secretion. The latter is most probably achieved by closure of the Ca2+ channels in the cells.

Animals↗

Preparation and characterization of pentaammineruthenium-(histidine-83)azurin: thermodynamics of intramolecular electron transfer from ruthenium to copper.

The reaction between a5RuH2O2+ (a is NH3) and Pseudomonas aeruginosa azurin at pH 7, followed by oxidation, yields a5Ru(His-83)3+-azurin(Cu2+) as the major product. Spectroscopic measurements (UV-visible, CD, EPR, and resonance Raman) indicate that the native structure is maintained in the modified protein. The site of ruthenium binding (His-83) was identified by peptide mapping. The a5RuHis/Cu ratio in the modified protein, determined from the EPR spectrum, is 1:1, and the reduction potentials (vs. normal hydrogen electrode, pH 7.0, 25 degrees C) are blue copper (Cu2+/1+), 320 +/- 2 mV; a5Ru(His-83)3+/2+, 50 +/- 10 mV. From measurements of the reduction potentials at several temperatures in the 5-40 degrees C range, delta H degree for intramolecular Ru2+ ----Cu2+ electron transfer was estimated to be -12.4 kcal mol-1 (1 cal = 4.184 J). Analysis of kinetic data in light of the electron transfer exothermicity indicates that the reorganizational enthalpy of the blue copper site can be no larger than 7.1 kcal mol-1.

Azurin↗

The cromolyn binding protein constitutes the Ca2+ channel of basophils opening upon immunological stimulus.

Ca2+ channel opening has been proposed to be induced in the plasma membrane of mast cells and basophils upon crosslinking their Fc epsilon receptors. Here we report direct conductance measurements on planar lipid bilayers containing membrane components of rat basophils (RBL-2H3 line). These studies identify the Ca2+ channel-forming membrane component as the cromolyn binding protein [CBP, in which cromolyn is the anti-asthmatic drug 1,3-bis(2-carboxy-chromon-5-yloxy)-2-hydroxypropane]. Planar membranes were first formed from lipid vesicles containing unfractionated plasma membrane components prepared from RBL-2H3 cells. Conductance of these bilayers was induced by crosslinking IgE bound to the Fc epsilon receptors of this membrane by a specific polyvalent antigen. Channel conductance in the presence of only Ca2+ ions (2 mM) was 2 pS. When only sodium ions were present (150 mM), conductance was 10 pS. Upon addition of Ca2+ (2 mM) to the Na+ ion-containing solution, the conductance decreased from 10 pS to that of the Ca2+ ions--namely, 2pS. Open channel times were in the range of several hundred milliseconds. Conductance amplitudes and time characteristics were independent of the applied voltage. As our earlier studies revealed the essential role of the CBP in Ca2+ conductance of basophil membranes, we formed planar bilayers containing this isolated protein alone. Crosslinking of the CBP by a monoclonal antibody specific to it resulted in the appearance of channel conductances. All characteristics of these channels exhibited great similarity to those observed in planar membranes containing unfractionated RBL-2H3 membrane components. Moreover, in the latter membranes, the monoclonal anti-CBP antibody induced channel conductances that display an even closer similarity to those observed in membranes containing CBP alone. Conductances of both types of planar membranes, irrespective of the mode of activation used, were inhibited by cromolyn. Furthermore, the conductance induced in RBL membranes by polyvalent antigen was inhibited on dissociation of the crosslinked aggregates by a monovalent hapten. The detailed resemblance in channel behavior observed in experiments with the two types of planar bilayers provides compelling evidence that the CBP is the essential and sufficient component forming Ca2+ channels in basophil plasma membranes.

2,4-Dinitrophenol↗

The Type 3 copper site is intact but labile in Type 2-depleted laccase.

We report results of experiments designed to characterize the Type 1 and Type 3 copper sites in Rhus laccase depleted of Type 2 copper (T2D). Use of the Lowry method for determining protein concentration yielded the value 5620 +/- 570 M-1 cm-1 for the extinction of the 615-nm absorption band of this protein. Anaerobic reductive titrations with Ru(NH)3)6(2)+ and Cr(II)aq ions established the presence of three electron-accepting centers, which are reduced in a complex manner. Treatment of T2D laccase with a 70-fold excess of H2O2 induced a new shoulder at 330 nm (delta epsilon = 660 M-1 cm-1), as well as intensity perturbations at 280 and 615 nm. Comparison of difference spectra show that this 330-nm band derives from a Type 3 copper-bound peroxide and not from a reoxidized Type 3 site. Dioxygen reoxidation of ascorbate-reduced T2D laccase produced new difference bands at 330 nm (delta epsilon = 770 M-1 cm-1) and 270 nm (delta epsilon = 13,000 M-1 cm-1), the former assigned to a bound peroxide which is a dioxygen reduction intermediate. In the corresponding epr spectrum of this material new Cu(II) g parallel features (A parallel approximately 130 G) indicative of an isolated copper ion and a triplet signal near 3,400 G were observed, originating from the Type 3 sites of separate T2D laccase molecules. Reoxidation by ferricyanide or by dioxygen as mediated by iron hexacyanide did not produce these changes. Thus the magnetism of the reoxidized Type 3 site in T2D laccase can be perturbed as a consequence of aerobic turnover. The suggestion is advanced that there are presently three forms of T2D laccase, possibly metastable conformational isotypes, accounting for the apparently contradictory reports on the properties of this protein.

Copper↗

Direct measurements of the dextran-dependent calcium uptake by rat peritoneal mast cells.

The metallochromic indicator murexide has been used to monitor calcium concentration changes during the dextran-induced, phosphatidylserine-dependent degranulation of rat peritoneal mast cells. The dextran-induced Ca2+-uptake showed an absolute dependence on the presence of phosphatidylserine. The extent of Ca2+-uptake increased with phosphatidylserine in a concentration-dependent manner. At 25 degrees C the half-life of the uptake process equalled 35 +/- 5 s. Exposure of the mast cells to dextran in the presence of Ca2+, but in the absence of phosphatidylserine, desensitized the cells. The subsequent addition of phosphatidylserine failed to restore the Ca2+-uptake activity. However, the Ca2+-ionophore A23187 did promote Ca2+ uptake by the cells without PS.

Animals↗

Direct observation by EPR of a reductively decoupled type 3 site in type 2 copper depleted laccase.

New epr features consistent with a novel type of Cu(II) are observed in partially reduced Type 2 copper depleted laccase molecules. Cu(II) hyperfine lines appear near 2590 G and 2770 G, and a rhombic g1 feature is also observed. These reflect a Cu(II) emergent on reductive disruption of the binuclear Type 3 site in T2D laccase. Additionally, much of the new, magnetically isolated Cu(II) is retained on full reoxidation of partly reduced Type 2 copper depleted laccase. The proportion of disrupted Type 3 Cu(II) sites remaining after reoxidation appears to depend on the prior distribution of electrons within T2D laccase.

Aerobiosis↗