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O Majdic

Publications and source records attributed to O Majdic.

At least 73 records · Page 4Linked to original sources

Co-ligation of CD31 and Fc gamma RII induces cytokine production in human monocytes.

The CD31 (PECAM-1) cell surface glycoprotein is considered to be involved in intercellular recognition and adhesion. Cytokines play a major role in cellular interactions, and therefore it was of interest to study whether engagement of CD31 affects synthesis and release of proadhesive cytokines. Here we demonstrate that immobilized CD31 mAb 1B5 induces the release of TNF-alpha, IL-1 beta, and IL-8 from human PBMCs. CD11b mAb VIM12 and HLA-D mAb VID1, both of which are of the same Ig subclass as mAb 1B5 (IgG1), as well as nonbinding isotype control mAb VIAP, were ineffective. That the effect was caused by the mAb, but not endotoxin contamination, was shown by negative Limulus amebocyte lysate tests and coculture with polymyxin B, which did not abolish TNF-alpha release. Cytokine production through intact mAb 1B5 was completely blocked by soluble F(ab) fragments of anti-IgG Fc gamma RII mAb IV.3, suggesting a significant contribution of that FcR. Cross-linking of neither CD31 nor Fc gamma RII molecules with the respective F(ab) fragments induced TNF-alpha release, but nonbinding control IgG1 Ab was able to restore the response of PBMC to 1B5 F(ab) fragments, when both Ab preparations were coated concomitantly. Therefore, only coligation of CD31 and Fc gamma RII appears to transduce activation signals leading to cytokine production. Our findings thus indicate a novel functional aspect of CD31 molecules that might play an important role in the propagation of an ongoing immune response as well as in the regulation of cell-cell interactions during inflammatory reactions.

Antibodies, Monoclonal↗

Signaling and induction of enhanced cytoadhesiveness via the hematopoietic progenitor cell surface molecule CD34.

The transmembrane glycoprotein CD34 shows a highly restricted expression on a crucial subset of hematopoietic cells. We show here that engagement of particular determinants of CD34 can lead to signal transduction and to enhanced adhesiveness of CD34+ hematopoietic cells. Monoclonal antibodies (MoAbs) directed against O-sialoglycoprotease-sensitive epitopes of CD34 (QBEND10, ICH3, BI.3C5, MY10) but not MoAbs against O-sialoglycoprotease-resistant epitopes (9F2, 8G12) induce actin polymerization in KG-1a and KG-1 cells and strongly enhanced cytoadhesiveness. The capacity to induce adhesion requires cellular energy, divalent cations, and intact cytoskeleton but not de novo protein synthesis. The observed cytoadhesion seems at least in part to be caused by a concomitant activation of the beta 2 integrin cytoadhesion pathway. It can be significantly inhibited with lymphocyte function-associated antigen-1 and intercelluar adhesion molecule-1 antibodies. Protein kinase inhibition analyses suggest that the pathways initiated by engagement of the CD34 molecule with certain CD34 MoAbs involves protein tyrosine kinases but that protein kinase C is not critically involved.

Antibodies, Monoclonal↗

Inhibition of peptide binding to DR molecules by a leupeptin-induced invariant chain fragment.

Loading of peptides onto DR molecules was studied by characterizing precursors of the mature peptide-DR complexes expressed at the surface of B cells. Since invariant chain (Ii) prevents binding of peptides by DR molecules, it was speculated that analysis of complexes between DR heterodimers and proteolytic fragments of Ii offers the possibility to examine how DR molecules and peptides assemble. Using a procedure combining a two-step affinity chromatography and gel filtration, we isolated from leupeptin-treated B cells complexes between DR molecules and N-terminal Ii fragments previously called "leupeptin-induced polypeptides" (LIP; Blum and Cresswell, 1988, Proc. natn. Acad. Sci. U.S.A. 85, 3975-3979). It was observed that the most prominent LIP fragment has a relative molecular mass (M(r)) of 16 kDa. In addition, we show that this polypeptide species does not bear N-linked glycans, indicating that this fragment does not extend beyond residue 129 of Ii. Similarly to DR alpha beta heterodimers associated with the full length 33 and 35 kDa Ii forms, DR alpha beta heterodimers associated with LIP fragments are unstable in sodium dodecyl sulfate (SDS) at ambient temperature, whereas mature DR alpha beta heterodimers are resistant to dissociation with SDS. These results are indirect evidence that LIP-DR complexes are devoid of bound peptides. This possibility was supported by showing that LIP-DR complexes fail to bind a radioiodinated tetanus toxin peptide (125I-p2), while DR molecules, which are spontaneously released from complexes with LIP fragments, bind the labeled peptide. These results demonstrate that association with LIP fragments is sufficient to prevent binding of peptides by DR molecules. This notion was further documented by showing that binding of 125I-p2 on DR heterodimers is inhibited by preparations of LIP fragment. By contrast, a soluble recombinant fragment corresponding to the extracytoplasmic region of Ii did not block 125I-p2 binding. The results presented in this study indicate that the cytoplasmic and/or transmembrane region of Ii is required to prevent peptide binding by DR molecules, while the extracytoplasmic portion of Ii, though capable of associating with DR molecules, lacks the capacity to block peptide binding.

Amino Acid Sequence↗

Transforming growth factor-beta inhibits IL-4 and IFN-gamma production by stimulated human T cells.

The present study investigates the effect of transforming growth factor (TGF)-beta on the production of IL-4 and IFN-gamma by the leukemia Th0 type cell line HUT78, by freshly isolated human T cells, and by antigen specific human T cell clones. We found that IL-4 and IFN-gamma, but not IL-2, production by stimulated HUT78 cells was inhibited by TGF-beta 1. TGF-beta 1 also reduced the accumulation of IL-4 and IFN-gamma specific mRNA in stimulated HUT78 cells. However, IL-2 and IL-7 co-stimulated IL-4 and IFN-gamma production, whereas IL-1, IL-3, IL-5, IL-6, IL-8, tumor necrosis factor-alpha or granulocyte macrophage colony stimulating factor had no effect. Because IL-2 is an important helper cytokine for the production of IL-4 and IFN-gamma, we investigated whether signal transduction through the IL-2 receptor is impaired by TGF-beta 1. We found that tyrosine phosphorylation in response to IL-2 in HUT78 cells was strongly inhibited by a short preincubation with TGF-beta 1. Evidence for an antagonistic role for TGF-beta 1 and IL-2 comes from the finding that high doses of IL-2 could partially overcome TGF-beta 1 mediated inhibition of IL-4 and IFN-gamma production. Similar to its effect on HUT78 cells, TGF-beta 1 also inhibited IL-4 and IFN-gamma production by freshly isolated T cells as well as by human T cell clones. Taken together, our experiments show that the IL-2 dependent cytokines IL-4 and IFN-gamma are both negatively controlled by TGF-beta under conditions where IL-2 production is unaffected by a mechanism which partially involves an inhibition of IL-2/IL-2R signal transduction. These data identify TGF-beta and IL-2 as mutual antagonists in the regulation of IL-4 and IFN-gamma production.

Blotting, Northern↗

Enhancement of human lymphocyte proliferative response to purified protein derivative by an anti-interleukin-2 receptor alpha chain antibody (CD25).

While it is clear that the beta subunit of interleukin-2 receptor (IL-2R) plays a pivotal role in IL-2-induced signal transduction, the function of the alpha subunit, other than modulating the association rate of IL-2, is still unknown. It has been reported that the interaction between IL-2 and the IL-2R alpha subunit of several IL-2-dependent murine T-cell lines may result in a negative regulatory signal. To confirm this finding, we investigated the effect of an anti-IL-2R alpha antibody, CD25-8D8, on the proliferative response of human peripheral blood lymphocytes. Lymphocytes from purified protein derivative (PPD)-positive donors were cultured with PPD and various concentrations of CD25-8D8 for up to 9 days, and [3H]thymidine uptake was measured. Whereas the proliferative response of human lymphocytes to PPD was suppressed by high concentrations of CD25-8D8, subinhibitory amounts of CD25-8D8 enhanced lymphocyte proliferation by 3.5-fold (range 2.2-6.2-fold) on the second day after maximal [3H]thymidine uptake had occurred. By itself, CD25-8D8 could not induce proliferation of washed 5-day PPD-activated lymphocytes during reculturing; instead, growth enhancement by CD25-8D8 was dependent on the presence of PPD-activated culture supernatant or moderate levels of exogenous IL-2. The enhancing effect of anti-IL-2R alpha antibody, observed in both murine and human systems, reinforces the possibility that binding of IL-2 to the IL-2R alpha chain plays a negative regulatory role in signal transduction.

Antibodies, Monoclonal↗

Signal transduction via Fc gamma R and Mac-1 alpha-chain in monocytes and polymorphonuclear leucocytes.

Some (VIM12, Leu-15, 5A4.C5), but not all, Mac-1-specific monoclonal antibodies (mAb) induced a clear respiratory burst in unprimed monocytes but not in unprimed polymorphonuclear leucocytes (PMN). We showed that this monocyte stimulation occurred via formation of Mac-1 mAb-Fc gamma RI or Mac-1 mAb-Fc gamma RII complexes, as human monomeric IgG1 could completely block the respiratory burst induced by the murine IgG2a subclass anti-Mac-1 mAb Leu-15 and the Fc gamma RII-specific mAb IV.3 inhibited respiratory burst formation by IgG1 subclass anti-Mac-1 mAb VIM12 and 5A4.C5, respectively. F(ab')2 fragments of mAb VIM12 did not stimulate. This association between Mac-1 and Fc gamma RII may be due to a near spatial association between these molecules in monocytes, as we observed partial inhibition of FITC-labelled anti-Fc gamma RII mAb IV.3 binding after prior incubation with mAb VIM12. If monocytes were preincubated with mAb IV.3 or aggregated IgG, there was partial inhibition of mAb VIM12 binding. The non-stimulating anti-Mac-1 mAb (JML.H11,44, OKM1, LM2/1, Mo1) did not show any significant competition with mAb IV.3 binding to Fc gamma RII. Both non-stimulating CD18-specific mAb, however, showed strong competition with mAb IV.3 binding to Fc gamma RII. On unprimed PMN, the situation was different. No Mac-1-specific mAb induced a respiratory burst and there was no competitive inhibition between anti-Mac-1 mAb and antibodies binding to Fc gamma RII. In interferon-gamma (IFN-gamma)-primed PMN, however, we observed a functional association between Mac-1 and Fc gamma RI as IgG2a subclass mAb Leu-15 induced a respiratory burst which could be inhibited by monomeric human IgG1, as observed in monocytes. However, no other anti-Mac-1 mAb was able to induce a respiratory burst in IFN-gamma-primed PMN. Therefore, a similar signal transducing capability may exist between Mac-1 and Fc gamma RI on both monocytes and PMN, despite a different relationship between Mac-1 and Fc gamma RII on these cell populations. As no Mac-1 beta-chain-specific (CD18)mAb were able to induce a respiratory burst in monocytes, despite being able to interact with Fc gamma R via their Fc regions, as detected by competition with mAb IV.3 for binding to Fc gamma RII, we conclude that intracellular signalling via Mac-1 mAb-Fc gamma RII complexes requires the alpha-chain.

Antibodies, Monoclonal↗

Monocytes do not make mast cells when cultured in the presence of SCF. Characterization of the circulating mast cell progenitor as a c-kit+, CD34+, Ly-, CD14-, CD17-, colony-forming cell.

Mast cells (MC3) belong to the hemopoietic system and arise from hemopoietic precursor cells. Human MC progenitors can be detected in the bone marrow as well as in the peripheral blood (pb) and are responsive to the mast cell growth factor SCF, the ligand of the c-kit tyrosine kinase receptor. However, little is known about the subsets of cells that become committed to and differentiate into mature human MC. In this study, the identity of the circulating MC progenitor, previously felt to be a monocyte (Mo) or basophil (Ba), was investigated. For this purpose, CD14+ pb monocytes, CD17+ pb basophils and CD34+ cord blood cells were purified to homogeneity (> 95%) from mononuclear cells (normal adult donors, n = 17, cord blood, n = 2) by counter-flow centrifugation followed by cell sorting with mAb. In the presence of rhSCF, MC developed in long term suspension culture from pure CD34+ cells but not from pure Mo, pure Ba, or Ly (MC-tryptase levels on day 42: CD14+ Mo: 3.7 +/- 0.8 vs CD17+ Ba: 3.2 +/- 0.5 vs Ly: 2.0 +/- 1.5 vs control: 196.5 +/- 92.5 ng/ml, p < 0.001). Depletion of CD34+ cells from MNC resulted in a loss of MC in long term suspension culture, whereas depletion of either Mo, Ba, or Ly did not. In methyl-cellulose cultures in the presence of rhSCF, MC and tryptase could be detected in pure (CFU-mast) and mixed (CFU-myeloid/mast) MC colonies. Together, MC do not originate from circulating Mo, Ba, or Ly. The circulating MC progenitor is a CD34+, c-kit+, Ly-, CD14-, CD17- colony-forming cell. This is the first definitive demonstration that mast cells are replenished directly from early hemopoietic progenitors and thus form a unique cell lineage within the hemopoietic system.

Antigens, CD↗

Myeloperoxidase expression in CD34+ normal human hematopoietic cells.

Bone marrow (BM), adult peripheral blood (aPB), and umbilical cord blood (CB) samples contain small proportions of CD34+ cells that include virtually all hematopoietic progenitor cells. Myeloperoxidase (MPO) is considered to be selectively expressed in cells committed to granulomonocytic differentiation. Using flow cytometry and an antibody against MPO, we studied at which stage of normal hematopoietic differentiation CD34+ cells being to express MPO. We consistently observed a characteristic MPO/CD34 staining pattern and found that 35% +/- 9% of CD34+ BM cells express MPO. The MPO+ CD34+ subset and the CD33+ CD34+ subset were of similar size and overlapped considerably. MPO+ CD34+ cells expressed high levels of HLA-D molecules, were weakly CD71/transferrin receptor positive to negative, were CD45RA+ and lacked the CD45RO isoform of the leukocyte common antigen. Additionally, MPO+ CD34+ cells were on average larger in size than MPO- CD34+ cells. Virtually identical phenotypic features have previously been described for in vitro colony-forming granulomonocytic progenitor cells. In vitro clonogenic assays performed with MPO-enriched and MPO-depleted fractions of CD34+ BM cells performed by us also suggest, but do not formally prove, that at least a portion of MPO+ CD34+ cells have in vitro cluster (10 to 50 cells/colony) or colony-forming unit granulocyte-macrophage (> or = 50 cells/colony) forming capacity. CD34+ cells from CB and aPB resembled CD34+ BM cells in that considerable proportions of them coexpressed CD33. However, in contrast to BM, CD34+ cells from CB and aPB samples lacked significant MPO expression and, in line with this, the majority of them (CB, 59% +/- 7%; aPB, 66% +/- 5%) coexpressed CD45RO.

Adult↗

The soluble pool of beta 2-microglobulin free HLA class I alpha-chains. Qualitative and quantitative characterization.

Previous studies have demonstrated that HLA class I heterodimers are present in plasma and cell culture supernatants. They can be precipitated by mAb the binding of which is dependent on the proper association of the polymorphic alpha-chain with beta 2-microglobulin (beta 2-m). The molecular mass of the alpha-chain ranges from 45 to 35 kDa with a number of intermediate products. We report on the identification of 35-kDa soluble beta 2-m free HLA class I H chains immunoprecipitated by mAb LA45 from cell culture media of activated B and T cells. Furthermore, a peptide-based competitive immunosorbent assay was established to determine the amounts of soluble HLA class I alpha-chains. By means of this assay, we formally proved the specificity of mAb LA45 for a linear epitope on HLA class I H chains centered on residues arginine-asparagine at positions 62 and 63 of the alpha 1-domain. PHA or rIL-2 were identified as efficient stimuli for PBMC leading to the generation of soluble beta 2-m free HLA class I H chains. Testing of cell lines representing distinct stages of hematopoietic differentiation demonstrated a significant correlation between cell surface expression of beta 2-m free HLA class I H chains and amounts of soluble LA45 reactive molecules. However, three of six human T lymphotropic virus type I transfected cell lines, although expressing beta 2-m free H chains, do not generate soluble molecules. Finally, human sera were found to contain considerable amounts of beta 2-m free HLA class I H chains. The average amount of these molecules in sera of individuals with one positive LA45 allele was determined to be 46.9 +/- 38.6 nM/liter.

Amino Acid Sequence↗

Characterization of CD7+CD19+ lymphoid cells after Epstein-Barr virus transformation.

The early stages of lymphoid differentiation preceding T and B lineage commitment remain poorly defined. We hypothesized that early lymphoid precursor cells are possibly common progenitors and would express a very early T cell-associated Ag (CD7) and a very early B cell-associated Ag (CD19) simultaneously. We therefore transformed CD7+CD19+ fetal bone marrow lymphoid cells using EBV. Extensive characterization of the resulting cell lines indicated that two cell lines corresponded to pre-B and early B cells co-expressing CD7. The third cell line resembled a thymocyte, which co-expressed a number of B cell-associated Ag including CD19 and the stem cell Ag CD34. The two predominantly B lineage cell lines have their Ig genes rearranged, whereas the predominantly T lineage cell line has TCR and Ig H chain genes rearranged. Cross-lineage Ag were not expressed any more after culturing for a prolonged period of time, i.e., B lineage cells became CD7 negative and the thymocyte lineage became negative for the B cell-associated Ag. However, in all three cell lines TCR and/or Ig gene rearrangements remained unchanged. These observations support the existence of a common lymphoid precursor co-expressing CD7 and CD19 that gives rise to either T or B cells.

Antigens, CD↗

CD1 molecule expression on human monocytes induced by granulocyte-macrophage colony-stimulating factor.

In this paper we demonstrate that granulocyte-macrophage CSF (GM-CSF) specifically induces the expression of CD1 molecules, CD1a, CD1b and CD1c, upon human monocytes. CD1 molecules appeared upon monocytes on day 1 of stimulation with rGM-CSF, and expression was up-regulated until day 3. Monocytes cultured in the presence of LPS, FMLP, PMA, recombinant granulocyte-CSF, rIFN-gamma, rTNF-alpha, rIL-1 alpha, rIL-1 beta, and rIL-6 remained negative. The induction of CD1 molecules by rGM-CSF was restricted to monocytes, since no such effect was observed upon peripheral blood granulocytes, PBL, and the myeloid cell lines Monomac1, Monomac6, MV4/11, HL60, U937, THP1, KG1, and KG1A. CD1a mRNA was detectable in rGM-CSF-induced monocytes but not in those freshly isolated. SDS-PAGE and immunoblotting analyses of CD1a mAb VIT6 immunoprecipitate from lysate of rGM-CSF-activated monocytes revealed an appropriate CD1a polypeptide band of 49 kDa associated with beta 2-microglobulin. Expression of CD1 molecules on monocytes complements the distribution of these structures on accessory cells, and their specific induction by GM-CSF strengthens the suggestion that CD1 is a family of crucial structures required for interaction between accessory cells and T cells.

Antibodies, Monoclonal↗

Monoclonal antibodies to the carbohydrate structure Lewis(x) stimulate the adhesive activity of leukocyte integrin CD11b/CD18 (CR3, Mac-1, alpha m beta 2) on human granulocytes.

Several carbohydrate structures on human granulocytes have been discussed as potential ligands for C-type lectins (selectins) on endothelial cells. Among them are the lacto-series type II chain antigens sialyl-Lewis(x) (SLe(x), Lewis(x) (Le(x)), and VIM2. We demonstrated in this study that monoclonal antibodies (mAbs) to Le(x) and to SLe(x), but not other anticarbohydrate mAbs (VIM2, CDw17, CD24), can stimulate granulocytes to form homotypic aggregates. This effect was particularly noticeable with three distinct anti-Le(x) mAbs (3C6, 4D1, 6C7). Much less impressive effects were also seen with nine other anti-Le(x) mAbs and with the anti-SLe(x) mAb CSLEX1. Aggregation was shown to be an active process. It is temperature and energy dependent, requires divalent cations, and is selective in terms of mAb specificity. Anti-Le(x)-induced homoaggregate formation could be inhibited with CD11b mAb JML-H11 and CD54 (ICAM1) mAb LB-2 and thus seems to be associated with activation of the beta 2-integrin cytoadhesion pathway.

Antibodies, Monoclonal↗

Immunophenotypic characterization of myelomonocytic cells in patients with myelodysplastic syndrome.

Infections, an important determining factor in the clinical course of myelodysplastic syndromes (MDS), result in activation of myelomonocytic cells. In this study we demonstrate activation-associated immunophenotypic changes of cell surface antigens on monocytes and granulocytes observed in two groups of MDS patients, one with low and another one with high clinical risk, and compared them to healthy individuals. Significantly changed expression of the complement receptors 1 (CD35) and 3 (CD11b), the Fc gamma receptor I (CD64), the leucocyte-homing receptor (CD44) and the activation associated membrane proteins CD67 and M5 were found on monocytes and/or granulocytes of MDS patients. In low-risk MDS patients we observed activation-associated phenotypic changes only in monocytes, whereas in high-risk MDS patients, both monocytes and granulocytes showed such changes. Additionally, we performed respiratory burst experiments and observed an impaired response of monocytes and granulocytes derived from MDS patients. Despite the fact that all patients were free of infection by clinical criteria, cell surface phenotyping as well as the reduced respiratory burst capacity of myelomonocytic cells suggests in vivo preactivation of these cells.

Antigens, CD↗

Induction of neutrophil homotypic adhesion via sialophorin (CD43), a surface sialoglycoprotein restricted to haemopoietic cells.

CD43 is a cell-surface sialoglycoprotein which is selectively expressed on lympho-haemopoietic cells. We studied the effects of three CD43 antibodies (6E5, 6F5 and 10G7) on human neutrophils and found that all three monoclonal antibodies (mAb) induced significant homotypic adhesion involving more than 50% of cells. Monovalent Fab fragments of CD43 mAb had no such effect but became equally effective upon cross-linkage with F(ab')2 sheep anti-mouse immunoglobulin (Ig) antibodies. The homotypic adhesion induced by CD43 antibodies was dependent on divalent cations, energy, temperature and an intact cytoskeleton, but not on de novo protein synthesis. Homotypic adhesion could be inhibited by mAb to CD11b, CD18 and CD54, indicating an involvement of the beta 2 integrin cyto-adhesion pathway. Additionally, oxidative burst formation was observed with intact CD43 mAb. No such effect was seen with monomeric or cross-linked Fab fragments. This, together with the observation that burst formation unlike adhesion induction could be completely abolished with Fc gamma RII, but not with Fc gamma RIII antibody fragments, suggests that in burst induction, heterologous cross-linkage with Fc gamma RII is involved. A Ca2+ increase with CD43 antibodies was not detectable. Adhesion induction was unaffected by H7, chelerythrin, staurosporine or lavendustin A, but was completely ablated by sphingosine and herbimycin A. This suggests an involvement of tyrosine kinases but not of protein kinase C in the signal transduction cascade leading to homotypic adhesion. CD43 mAb-induced burst formation differed from adhesion induction in that it could be additionally inhibited with staurosporine and lavendustin A.

Antibodies, Monoclonal↗

Interleukin-4 production by the malignant cell line HUT78.

Interleukin-4 (IL-4) is a cytokine difficult to induce in large quantities in freshly isolated cells. No malignant cell line has been described to date to produce IL-4 either constitutively or following activation. Here we report that HUT78 cells can be induced to produce IL-4 either by CD3 stimulation under cross-linking conditions or by soluble CD3 mAbs in the presence of PMA. IL-4-specific mRNA could be demonstrated readily under such conditions. Using this experimental model we investigated the role of IL-2 for IL-4 production. The addition of IL-2 strongly costimulated CD3-induced IL-4 production, whereas blockade of the IL-2/IL-2R pathway reduced IL-4 production by approximately 50%. IL-2 alone, however, could not induce IL-4 production. These results indicate that IL-2 is a helper of cytokine necessary, but not sufficient, for IL-4 production in HUT78 cells.

Antibodies, Monoclonal↗

Characterization of prostaglandin (PG)-binding sites expressed on human basophils. Evidence for a prostaglandin E1, I2, and a D2 receptor.

Recent data suggest that prostaglandins (PGs) are involved in the regulation of basophil activation. The aim of this study was to characterize the basophil PG-binding sites by means of radioreceptor assays using 3H-labeled PGs. Scatchard analysis for pure (greater than 95%) chronic myeloid leukemia (CML) basophils revealed two classes of PGE1-binding sites differing in their affinity for the natural ligand (Bmax1 = 217 +/- 65 fmol/10(8) cells; Kd1 = 0.5 +/- 0.2 nM; Bmax2 = 2462 +/- 381 fmol/10(8) cells; Kd2 = 47 +/- 20 nM; IC50 = PGE1 less than PGI2 less than PGD2 less than PGE2 less than PGF2 alpha) as well as two classes of PGI2 (iloprost)-binding sites (Bmax1 = 324 +/- 145 fmol/10(8) cells; Kd1 = 0.5 +/- 0.3 nM; Bmax2 = 2541 +/- 381; Kd2 = 27 +/- 6 nM; IC50 = PGI2 less than PGE1 less than PGD2 less than PGE2 less than PGF2 alpha. In addition, CML basophils exhibited a single class of PGD2-binding sites (Bmax = 378 +/- 98 fmol/10(8) cells; Kd = 13 +/- 4 nM; IC50: PGD2 less than PGI2 less than PGE1 less than PGE2 less than PGF2 alpha). In contrast, we were unable to detect specific saturable PGE2-binding sites. Primary and immortalized (KU812) CML basophils revealed an identical pattern of PG receptor expression. Basophils (KU812) expressed significantly (p less than 0.001) lower number of PGE1 (PGI2)-binding sites (Bmax1: 9% (20%) of control; Bmax2: 36% (50%) of control) when cultured with recombinant interleukin 3 (rhIL-3), a basophil-activating cytokine, whereas rhIL-2 had no effect on PG receptor expression. Functional significance of binding of PGs to basophils was provided by the demonstration of a dose-dependent increase in cellular cAMP upon agonist activation, with PGE1 (ED50 = 1.7 +/- 1.1 nM) and PGI2 (ED50 = 2.8 +/- 2.3 nM) being the most potent compounds. These findings suggest that human basophils express specific receptors for PGE1, PGI2 as well as for PGD2.

Alprostadil↗

IgM and IgG but not cytokine secretion is restricted to the CD27+ B lymphocyte subset.

In a recent study we reported that CD27 is expressed on a subpopulation of human B lymphocytes and presented circumstantial phenotypic evidence that CD27 expression may be acquired late during B cell differentiation. Here we present functional data showing that, after in vitro stimulation, CD27+ but not CD27- B cells secrete large amounts of both IgM and IgG. Using double immunofluorescence staining of CD27 and IgD, three functionally different B cell subsets representing distinct stages of B cell differentiation can be isolated: 1) the CD27- IgD+ B cells, which do not secrete appreciable Ig; 2) the CD27+IgD+ B cells, which exclusively secrete IgM; and 3) the CD27+IgD- B cells, which comprise the IgG-producing cells. Furthermore, costimulation of CD27- B cells with low m.w. B cell growth factor, in the presence or in the absence of a CD40 mAb, does not induce these cells to become Ig-secreting cells. Although CD27- B cells hardly secrete Ig of any isotype in response to Staphylococcus aureus+IL-2, these cells proliferate vigorously and express the IL-2R alpha chain (CD25) under these stimulatory conditions. Furthermore, both CD27- and CD27+ B cells are capable of producing similar amounts of IL-6 and TNF-alpha. Taken together, these findings indicate that CD27 is a unique non-Ig surface marker discriminating naive from primed B lymphocytes. Furthermore, the capacity to proliferate and to secrete the B cell differentiation factors IL-6 and TNF-alpha already exists at an early B cell differentiation stage at which the cells lack CD27 expression and are not induced to produce Ig.

Antigens, CD↗