Search PubMedSearch

Biomedical subjects

B Seligmann

Publications and source records attributed to B Seligmann.

At least 19 recordsLinked to original sources

An ex vivo method for studying inflammation in cynomolgus monkeys: analysis of interleukin-1 receptor antagonist.

Nonhuman primates have been used as models for testing the role of interleukin-1 (IL-1) in inflammatory diseases, including endotoxemia. The objective of this investigation was to develop a reproducible and rapid method for in vivo evaluation of IL-1 antagonists using cynomolgus monkeys. IL-1 alone can induce many of the symptoms of endotoxemia in monkeys including fever, loss of appetite, and lethargy, however, test animals are slow to recover and may become desensitized to IL-1. We have developed an ex vivo method using whole blood for analysis of IL-1 antagonists administered in vivo to the monkeys and report here results for the naturally occurring IL-1 receptor antagonist, IL-1ra. In this procedure, animals are given an i.v. infusion of IL-1ra, and blood samples are taken preinfusion and during the infusion. The samples are incubated with or without IL-1 beta and the subsequent ex vivo induction of IL-6 determined. This allows analysis of the effects of in vivo pharmacodynamics on the efficacy of antagonists without exposing the test animals to IL-1. In this ex vivo protocol, each animal serves as its own control, eliminating from the assessment the large animal to animal variation observed with in vivo responses. By testing various doses, we estimate that 50% inhibition of IL-1 induced IL-6 can be achieved with an infusion of IL-1ra at 5 micrograms/kg/15 min. This method allows simple and efficient analysis of inhibitors and antagonists of IL-1 and, potentially, other effectors.

Animals

One-bead-one-structure combinatorial libraries.

Combinatorial libraries employing the one-bead-one-compound technique are reviewed. Two distinguishing features characterize this technique. First, each compound is identified with a unique solid support, enabling facile segregation of active compounds. Second, the identity of a compound on a positively reacting bead is elucidated only after its biological relevance is established. Direct methods of structure identification (Edman degradation and mass spectroscopy) as well as indirect "coding" methods facilitating the synthesis and screening of nonpeptide libraries are discussed. Nonpeptide and "scaffold" libraries, together with a new approach for the discovery of a peptide binding motif using a "library of libraries," are also discussed. In addition, the ability to use combinatorial libraries to optimize initially discovered leads is illustrated with examples using peptide libraries.

Amino Acid Sequence

Identification of a receptor-binding region in the core segment of the human anaphylatoxin C5a.

In order to identify regions of C5a that contribute to receptor binding and functional activity of the anaphylatoxin, a series of peptides was synthesized in which core segments have been attached to C-terminal segments via native peptidic or disulfide bonds. It has been found that residues Arg40 and Arg46 in the loop-3 region of the core induce a 1000-fold increase in the affinity of the disordered C-terminal segment of C5a. The results obtained from this work lead to the conclusion that the loop-3 region is most likely the core binding site of C5a.

Amino Acid Sequence

The pharmacophore of the human C5a anaphylatoxin.

We have determined which amino acids contribute to the pharmacophore of human C5a, a potent inflammatory mediator. A systematic mutational analysis of this 74-amino acid protein was performed and the effects on the potency of receptor binding and of C5a-induced intracellular calcium ion mobilization were measured. This analysis included the construction of hybrids between C5a and the homologous but unreactive C3a protein and site-directed mutagenesis. Ten noncontiguous amino acids from the structurally well-defined 4-helix core domain (amino acids 1-63) and the C-terminal arginine-containing tripeptide were found to contribute to the pharmacophore of human C5a. The 10 mostly charged amino acids from the core domain generally made small incremental contributions toward binding affinity, some of which were independent. Substitutions of the C-terminal amino acid Arg 74 produced the largest single effect. We also found the connection between these 2 important regions to be unconstrained.

Alanine

Characterization of the binding of Bolton-Hunter labeled [125I]C5a to human neutrophil, monocyte and U-937 cell membranes.

The fifth component of the complement cascade, C5a, was iodinated using the Bolton-Hunter reagent. Results from the present study, using the high affinity ligand, [125I]Bolton-Hunter-labeled C5a ([125I]BH-C5a), revealed a single binding site on membranes prepared from human neutrophils, U-937 cells and human monocytes. Saturation studies demonstrated Bmax values in these cells of 11.5, 47.3 and 16.6 fmol/10(6) cells, respectively. The C5a receptor demonstrated a very high affinity for [125I]BH-C5a of approximately 4 pM in each cell type. Competition studies using analogs of C5a generated a similar order of potency in each of the cell types of C5a > or = C5a(1-74), Ser66Ala > C5a(1-73) > C5a(1-69). These studies indicate that [125I]BH-C5a labels a similar receptor in neutrophil, U-937 cell and monocyte membranes. Furthermore, C5a(1-73) produced shallow inhibition curves in competition experiments in each cell type. Computer analysis of the binding data revealed two components of binding. When 10 nM unlabeled C5a was used to initiate dissociation of [125I]BH-C5a binding in neutrophil membranes, two binding components were observed. In addition, dissociation of [125I]BH-C5a binding by 10 nM unlabeled C5a in the presence of 1 mM GppNHp decreased the percentage of binding to the slowly dissociating, high affinity binding component from 84 to 58%. These results suggest that multiple states of the C5a receptor exist.

Binding, Competitive

Recombinant human C5a induces transcription but not translation of interleukin-1 beta mRNA in human monocytes.

The effect of recombinant human C5a (rhC5a) on the synthesis of interleukin-1 beta (IL 1 beta) was investigated in highly purified human monocytes, isolated by leukapheresis and counter-current elutriation. RhC5a induced IL 1 beta mRNA synthesis in a dose- and time-dependent manner; maximal induction was achieved at 3 h with rhC5a concentrations of 200 to 500 ng/ml. The IL 1 beta mRNA induction with rhC5a was about 75% of the response observed using lipopolysaccharide (LPS) as the stimulus (300 ng/ml). On the other hand, rhC5a in optimal concentrations only weakly stimulated IL 1 beta protein synthesis, as measured by a two-site-directed enzyme-linked immunoassay. When LPS- or C5a-stimulated RNA was used to program IL 1 beta synthesis in an in vitro translation system from rabbit reticulocytes, no difference in translational efficiency was observed. Our results indicate that, in human monocytes, two signals for IL 1 beta gene expression are necessary, one signal for transcriptional activation and a second signal to induce translation of the mRNA.

Complement C5a

Recombinant human C5a induces transcription but not translation of interleukin 1 beta mRNA in human monocytes.

The effect of recombinant human C5a (rhC5a) on the synthesis of interleukin 1 beta (IL-1 beta) was investigated in human monocytes, isolated by leukapheresis and countercurrent elutriation. rhC5a induced IL-1 beta mRNA synthesis in a dose- and time-dependent manner. Maximal induction was achieved at 3 h with rhC5a concentrations of 200 to 500 ng/ml. The maximal rhC5a-stimulated mRNA induction was about 75% of that observed using LPS as the stimulus (300 ng/ml). The inducing activity of rhC5a could be neutralized by preincubation with a polyclonal anti-C5a antibody. On the other hand rhC5a in optimal concentrations only weakly stimulated IL-1 beta protein synthesis, as measured by a two-site directed enzyme-linked immunoassay. When compared on Northern blots, a slightly reduced mobility of C5a-stimulated IL-1 beta mRNA was observed relative to LPS-stimulated RNA. To exclude the possibility that structural defects in the IL-1 beta mRNA are responsible for the weak translational efficiency after C5a stimulation a primer extension experiment was performed. No difference in the length of the extended fragment was detected between LPS and C5a-stimulated RNA, suggesting that the 5'-regions of the RNAs are identical. When LPS- or C5a-stimulated RNA was used to program IL-1 beta synthesis in an in vitro translation system from rabbit reticulocytes, no difference in translational efficiency was observed. Our results indicate that in human monocytes two signals for IL-1 beta gene expression are necessary, a signal for transcriptional activation and another signal to induce translation of the mRNA.

Blotting, Northern

Polymorphonuclear leukocytes reduce cardiac function in vitro by release of H2O2.

Polymorphonuclear leukocytes (PMNs) have been implicated in postischemic myocardial injury and associated derangements in contractile function. To examine the direct effects of PMNs on cardiac function, isolated right ventricular papillary muscles of the rabbit were exposed to increasing concentrations of purified rabbit PMNs in the presence of cimetidine. PMNs induced a significant concentration-dependent decrease in contractile function, where 5 x 10(5) PMNs/ml reduced contractile force to 75 +/- 2.1% of control (vs. 95 +/- 5% for time control; P less than 0.005). Similar decreases were also observed for peak positive and negative first derivatives of contractile force. The degree of PMN-induced contractile dysfunction correlated with the activity of the PMNs in an aggregation assay (r = 0.82, P less than 0.01). The loss of contractile function in response to PMNs was attenuated by catalase, which metabolizes H2O2, but not by superoxide dismutase, a scavenger of the superoxide anion. PMNs can convert H2O2 to either the hypochlorite anion or the hydroxyl radical, which are removed by methionine or mannitol, respectively. However, these scavengers did not ameliorate the PMN-induced loss of cardiac function. Exposure of papillary muscles to H2O2 resulted in a concentration-dependent decrease in contractile function where 100 microM reduced contractile force to 78 +/- 4%, an effect prevented by catalase. Thus PMNs reduce the contractile function of isolated papillary muscles probably by the release of H2O2.

Animals

The role of osmotic pressure and membrane potential in K(+)-stimulated taurine release from cultured astrocytes and LRM55 cells.

The effects of [K+]o on taurine release from glial cells were studied with primary cultures of cerebellar astrocytes and with LRM55 cells, a continuous glial cell line. The characteristics of K(+)-stimulated taurine release were virtually identical in the 2 cell types. Both cerebellar astrocytes and LRM55 cells released taurine when stimulated with high-K+ medium prepared by isosmotically substituting KCl for NaCl, but neither cell type released taurine when stimulated with hyperosmotic high-K+ medium prepared by adding solid KCl to control medium. The membrane potential of LRM55 cells was measured by intracellular recording and was insensitive to changes in [K+]o below 20 mM. LRM55 cells released taurine when stimulated with nondepolarizing concentrations of K+ (13-22 mM) if the isosmotically prepared high-K+ medium was used, but the cells did not release taurine when treated with a depolarizing concentration of K+ (50 mM) if hyperosmotic high-K+ medium was used. The time course of K(+)-stimulated taurine release was quite slow, having a time to peak of 10-15 min. Small changes (2.5-10%) in the osmolarity of the medium strongly affected taurine release by cerebellar astrocytes and LRM55 cells. K(+)-stimulated taurine release from both cell types was inhibited when the osmolarity was increased with sucrose or NaCl and was enhanced when the osmolarity was reduced. Similarly, baseline taurine release was suppressed by small elevations in osmolarity and increased by reduced osmolarity.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids

Fluorometer based multi-parameter analysis of phagocytic cell activation.

Simultaneous measurements of the calcium rise, membrane potential change, and 90 degrees light scatter (shape change) responses exhibited by neutrophils upon activation, can be obtained with identical result as that obtained when independently performing each measurement. The putative intracellular mediator diacylglycerol depolarizes membrane potential and causes a decrease in light scatter. Leukotriene B4 causes a rise in calcium and a decrease in light scatter. The chemotactic peptide, N-formylmethionyl-leucyl-phenylalanine, causes a depolarization of membrane potential, a calcium rise, and a decrease in light scatter. The fura 2 measurements of intracellular free calcium indicate that the calcium concentration of unstimulated cells is much lower than previously thought based on quin 2 studies.

Calcium

ATP-dependent calcium transport in rat parotid basolateral membrane vesicles. Modulation by agents which elevate cyclic AMP.

ATP-dependent Ca2+ transport was studied in basolateral membrane vesicles prepared from rat parotid gland slices incubated without or with agents which increase cyclic AMP. Isoproterenol (10(-5) M), forskolin (2 X 10(-6) M) and 8-bromocyclic AMP (2 X 10(-3) M) all increased ATP-dependent 45Ca2+ uptake 1.5- to 3-fold. The effect of isoproterenol was concentration-dependent and blocked by the beta-adrenergic antagonist propranolol. Enhanced uptake did not appear an artifact of vesicle preparation as apparent vesicle sidedness, 45Ca2+ efflux rates, specific activity of marker enzymes and equilibrium Ca2+ content were identical in vesicle preparations from control and 8-bromocyclic AMP-treated slices. Kinetic studies showed the ATP-dependent Ca2+ transport system in vesicles from 8-bromocyclic AMP-treated slices displayed a approximately 50% increase in Vmax and in Km Ca2+, compared to controls. The data suggest that physiological secretory stimuli to rat parotid acinar cells, which involve cyclic AMP, result in a readjustment of the basolateral membrane ATP-dependent Ca2+ pump.

8-Bromo Cyclic Adenosine Monophosphate

Induction of T cell activation by monoclonal anti-Thy-1 antibodies.

We have analyzed the requirements for T cell activation by monoclonal anti-Thy-1 antibodies (MAb). A large panel of unselected anti-Thy-1 MAb was capable of inducing a strong proliferative response in resting peripheral T cells and a rise in cytoplasmic free calcium ([Ca2+]i) in both peripheral T cells and a T cell hybridoma. Both of these responses required the interaction of a MAb bound to Thy-1 with a second layer of anti-Ig antibody. Induction of T cell proliferation also required an additional signal, which could be provided by PMA. T cell activation in this system was specific for the Thy-1 molecule, independent of the epitope on Thy-1 recognized by a given MAb, with the anti-Ig reagent was also independent of the type of anti-Ig used, as both polyvalent rabbit anti-rat Ig sera and a mouse MAb to rat Ig functioned as effective cross-linkers. All signals provided by the interaction of anti-Thy-1 MAb with anti-Ig preparations could also be reproduced by the simultaneous binding of two MAb recognizing independent epitopes on Thy-1. Although the physiological role of Thy-1 remains unknown, the model system described here should prove to be very useful in further analysis of the steps involved in the polyclonal activation of murine T cells.

Animals

Exudation primes human and guinea pig neutrophils for subsequent responsiveness to the chemotactic peptide N-formylmethionylleucylphenylalanine and increases complement component C3bi receptor expression.

After circulating in the vascular system a short time, polymorphonuclear leukocytes (PMN) migrate to extravascular sites in response to chemotactic stimuli. Prestimulation of PMN in vitro by secretagogues has been shown to increase their number of N-formylmethionylleucylphenylalanine (fmet-leu-phe) and complement component C3bi (CR3) receptors. We investigated whether the same phenomenon occurred in vivo, comparing characteristics of human skin chamber and guinea pig peritoneal exudate and blood PMN. Exudate PMN of both species contained approximately 28% less of the specific granule marker vitamin B12-binding protein (P less than 0.01) but a similar amount of the azurophil granule marker beta-glucuronidase. The total number of fmet-leu-phe receptors was 5.9 times higher in guinea pig exudate than in blood PMN (P less than 0.01) and 2.9 times higher in human exudate than in blood PMN (P less than 0.02). All exudate PMN and most blood PMN preparations showed a high affinity receptor (Kd approximately 2.3 X 10(-8) M) and a low affinity receptor (approximately 1.5 X 10(-7) M). The upregulation of fmet-leu-phe receptors in exudate PMN correlated with an improved responsiveness to fmet-leu-phe induced membrane depolarization, oxidative metabolism, and chemotaxis. In addition, the concentration of fmet-leu-phe that produced a half-maximal response of chemotaxis, superoxide production, and membrane potential depolarization was 10-fold lower in exudate PMN than in blood PMN. Human exudate PMN had a twofold increased C3bi receptor expression compared with blood PMN. Thus, a preferential loss of specific granules is associated with increased number of high and low affinity fmet-leu-phe receptors and increased C3bi receptor expression not only in vitro, but also in vivo. The data indicate that exudation primes PMN for their subsequent responsiveness to fmet-leu-phe, a modification that may be crucial for efficient antimicrobial host defense.

Animals

Polymorphonuclear leukocyte heterogeneity in neonates and adults.

We have used a mouse monoclonal antibody (31D8) to determine whether differences in neutrophil (PMN) subpopulations might help explain decreased PMN chemotaxis in neonates compared with that of adults. 31D8 has been shown to bind heterogeneously to adult PMNs. Approximately 80% of the PMNs that strongly bind 31D8 (31D8 "bright") are the same cells that depolarize and migrate chemotactically when stimulated with the chemoattractant N-formyl-methionylleucylphenylalanine, while the 20% that weakly bind 31D8 fail to similarly respond. All neonatal PMNs bound 31D8 heterogeneously. There was a smaller population of 31D8 "bright" cells in neonates at birth (76% +/- 6%, n = 45) compared with that of neonates at three to 15 days of age (82% +/- 5%, n = 10, P less than 0.002) and both were smaller than that of adults (88% +/- 4%, n = 45, P less than 0.001 and P less than 0.001). Neonatal cord PMNs, which traversed a micropore filter in a modified Boyden chemotaxis chamber in the presence of a chemoattractant, had an increased percentage of 31D8 "bright" cells (89% +/- 7%) than did PMNs which remained above the filter (82% +/- 7%, n = 10, P = 0.034). PMN chemotaxis was less in neonates at birth (32.7 +/- 4.5 micron) than at three to six days of age (36.8 +/- 11.3 micron) and both were decreased compared with that of adults (69.1 +/- 12.4 micron, P less than 0.001 and P less than 0.001). These findings indicate that decreased PMN chemotaxis in neonates may be due in part to a smaller PMN subpopulation of highly motile cells.

Adult

An antibody binding to human neutrophils demonstrates antigenic heterogeneity detected early in myeloid maturation which correlates with functional heterogeneity of mature neutrophils.

An IgG1 mouse monoclonal antibody (31D8) labels a subpopulation of human peripheral neutrophils. Heterogeneous binding to granulocyte precursors is seen in the bone marrow as early as the myelocyte stage of maturation. 31D8 binding is not affected by the in vitro stimulation or incubation of neutrophils. We demonstrate that the cells which bind 31D8 strongly (31D8-bright) are the same cells which depolarize, reduce nitroblue tetrazolium, and migrate chemotactically when stimulated with the chemoattractant N-formylmethionylleucylphenylalanine. Treatment with cytochalasin B modulates functional activity so that all cells depolarize or reduce nitroblue tetrazolium in response to this chemoattractant, but the heterogeneous binding of 31D8 does not change. The stable binding of 31D8 at 37 degrees C and during activation permitted characterization of the functional capacity of the two populations. These results demonstrate neutrophil heterogeneity early in myeloid maturation and correlate antigenic with functional heterogeneity. 31D8 will make it possible to study the significance of neutrophil heterogeneity in a variety of clinical situations.

Antibody Specificity