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B Seligmann

Publications and source records attributed to B Seligmann.

27 records · Page 2Linked to original sources

Organelle-depleted human neutrophil cytoplasts used to study fmet-leu-phe receptor modulation and cell function.

Organelle-depleted human neutrophil cytoplasts were used to study N-formylmethionylleucylphenylalanine (fmet-leu-phe) receptor regulation and adaptation, aggregation, chemotaxis, and chemoattractant-elicited changes in shape, volume, and surface charge. Cytoplasts aggregated in response to the chemoattractant fmet-leu-phe, but the magnitude of the response was less than that in neutrophils. Unlike neutrophils, cytoplasts did not exhibit a second wave of aggregation with the addition of cytochalasin B and also failed to disaggregate. In chemotactic assays, cytoplasts migrated poorly into cellulose nitrate filters, and compared with intact neutrophils required a 100-fold greater concentration of fmet-leu-phe to elicit shape change. In contrast to neutrophils, cytoplasts did not decrease their surface charge in response to fmet-leu-phe and did not exhibit an increase in the binding of fmet-leu-[3H]phe after stimulation with phorbol myristate acetate. However, receptor adaptation and induced changes in membrane potential, as measured by using the membrane probe di-O-C5(3), were similar in cytoplasts and in neutrophils. The data suggest that the presence of functional intracellular organelles is required for normal aggregation and disaggregation, chemotaxis, and shape change induced by fmet-leu-phe, and also peptide receptor upregulation in response to secretagogues. The data show that peptide receptor adaptation occurs in the absence of secretory granules and is independent of receptor upregulation .

Carbocyanines↗

Differential binding of chemoattractant peptide to subpopulations of human neutrophils.

Binding of the fluoresceinated chemoattractant N-formylmethionylleucylphenylalanyllysine to neutrophils was measured simultaneously with cell membrane potential by flow cytometry to determine how chemoattractant was bound by different populations of responding neutrophils. Cells exhibiting an apparent depolarization of membrane potential bound more chemoattractant than cells which did not respond or which exhibited a small hyperpolarization. Approximately 45% of the peptide bound to depolarized cells was displaced by unlabeled peptide, whereas only 3% was displaced from the nonresponding cells. By utilizing the well-known observation that extracellular fluorescein fluorescence is quenched by acid pH, it was determined that approximately one-half of the nondisplaceable peptide of both cell types was internalized, but a significant amount remained tightly bound to the extracellular membrane surface and accessible to lowering of the extracellular pH to 5.5. Treatment of cells with cytochalasin B to convert nonresponding cells to depolarizing cells also resulted in expression of displaceable binding by these cells, suggesting a close correlation between displaceable peptide binding and depolarization. Differential binding of chemoattractant among neutrophils and its modulation may account for observations of functional heterogeneity of neutrophils.

Cytochalasin B↗

Selective defect in human neutrophil superoxide anion generation elicited by the chemoattractant N-formylmethionylleucylphenylalanine in pregnancy.

Pregnancy has been associated with alterations of polymorphonuclear neutrophil (PMN) function. Superoxide anion production was studied in pregnant women paired with nonpregnant women of childbearing age. There was a significant decrease in the amount of cytochrome c reduced in response to 1 microM N-formylmethionylleucylphenylalanine (fMet-Leu-Phe) but not to phorbol myristate acetate, 4 or 20 ng/ml. Chemotaxis was also depressed. Binding of tritiated fMet-Leu-Phe to PMNs from pregnant women was not defective. Incubation of normal cells in up to 10(-6) M estradiol or progesterone did not mimic the defect, but 10(-7) M progesterone caused a decrease in chemotaxis. Serum pooled from women with the defect had no effect on superoxide anion production by normal PMNs. PMN rosetting with IgG-sensitized human erythrocytes was normal. Defective production of superoxide anion may contribute to the amelioration of connective tissue disease and increased susceptibility to infection often seen during pregnancy.

Chemotaxis, Leukocyte↗

Human neutrophil heterogeneity identified using flow microfluorometry to monitor membrane potential.

Previous studies of neutrophil nitroblue tetrazolium dye reduction in response to endotoxin and rosetting of IgG-coated erythryocytes have suggested functional heterogeneity of peripheral blood neutrophils. In the following study we utilized flow microfluorometry and the membrane potential-sensitive fluorescent dye 3-3'-dipentyloxacarbocyanine to assess the heterogeneity of neutrophils upon activation by a variety of stimuli. Unstimulated neutrophils from normal subjects exhibited a unimodal distribution of fluorescence, suggesting that all the cells possessed the same resting membrane potential. As neutrophils aged (>5 h), some cells lost fluorescence producing a bimodal distribution. In studies with fresh cells, the secretagogue phorbol myristate acetate (20 ng/ml) stimulated a uniform loss of fluorescence (apparent depolarization). The chemoattractant N-formyl-methionyl-leucyl-phenylalanine (f-Met-Leu-Phe) (0.1 muM) caused the neutrophils to assume and maintain (for > 30 min) a bimodal fluorescence distribution in which 65+/-5% of the neutrophils first decreased and then increased fluorescence (apparent depolarization/partial repolarization), and 35+/-5% of the cells exhibited either an increase in fluorescence (apparent hyperpolarization) or no change. Treatment of neutrophils with cytochalasin B before stimulation caused the cells to respond homogeneously to f-Met-Leu-Phe. Additional studies using neutrophils from patients with chronic granulomatous disease, which exhibit abnormal membrane potential responses, indicated that this defect affected all such neutrophils uniformly. These observations demonstrate the need to investigate the physiological significance of the heterogeneity of neutrophil function and indicate that the f-Met-Leu-Phe-induced changes in membrane potential observed in bulk population cell studies are the summation of two different responses.

Calcium↗

Peptide-encoding for structure determination of nonsequenceable polymers within libraries synthesized and tested on solid-phase supports.

A method of indirectly determining the structure of nonpeptidic or nonsequenceable compounds that have been synthesized on individual particles of solid support is described. The technique permits the parallel synthesis of a compound that is not susceptible to Edman degradation (e.g., N-terminal-blocked peptide), or one containing components that cannot be identified by amino acid sequencing, together with a corresponding "coding" peptide. Each coupling step in the assembly of the nonsequenceable compound is followed by the coupling of an amino acid to a different attachment site of the same carrier particle, whereby the amino acid unambiguously codes for the previously coupled building block of the nonsequenceable compound. The rationale is to enable the sequence determination of a biologically active compound that has been identified through the screening of a library of nonequenceable compounds, by translating the sequence of its "coding" peptide, determined by Edman degradation, into the structure of the active compound. The technique facilitates the construction and screening of nonpeptidic libraries for the discovery of important pharmaceutical compounds.

Amino Acid Sequence↗