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H Stockinger

Publications and source records attributed to H Stockinger.

At least 55 records · Page 3Linked to original sources

Oligomycin F, a new immunosuppressive homologue of oligomycin A.

Oligomycin F, a new homologue of oligomycin A (1), was isolated from a Streptomyces species and structure 2 was deduced by NMR methods. Compound 2 is highly active against plant pathogenic fungi and is an extremely potent suppressive agent for various immunological systems.

Animals↗

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↗

Binding of recombinant variants of human tissue-type plasminogen activator (t-PA) to human umbilical vein endothelial cells.

Endothelial cells synthesize and secrete hemostatic components like tissue-type plasminogen activator (t-PA) which is thought to be the major determinant of fibrinolytic activity in the blood. Most recently, a receptor protein for t-PA on human umbilical vein endothelial cells (HUVEC) in culture has been described (1); there are, however, in addition low affinity binding sites for t-PA on HUVEC. The sites of binding are of particular interest, because they are potential regulators of t-PA activity and clearance. We analysed the low affinity binding of recombinant t-PA (rt-PA) to normal diploid HUVEC and to the permanent human cell lines Jurkat, Daudi, HL 60 and K562 by flow cytometry applying t-PA specific monoclonal antibodies. Using this test system binding of both recombinant glycosylated human t-PA produced in Chinese hamster ovary cells (CHO-t-PA) and of nonglycosylated t-PA, produced in E. coli (BM 06.021) was investigated. Analysis of the binding pattern to HUVEC and other cell lines revealed that deglycosylation of full length rt-PA increases non-specific binding. Additionally, we investigated the binding properties of an unglycosylated t-PA deletion variant which comprises the kringle 2 and the protease domains (BM 06.022). Data obtained show that deletion of these domains most drastically reduces non-specific binding to HUVEC and other human cell lines.

Antibodies, Monoclonal↗

Human leukocyte activation antigen M6, a member of the Ig superfamily, is the species homologue of rat OX-47, mouse basigin, and chicken HT7 molecule.

Peripheral granulocytes from rheumatoid arthritis and reactive arthritis patients were recently found to express higher levels of a newly defined Ag, termed M6, in comparison to granulocytes from healthy subjects. We present here the molecular characterization of M6 Ag and show that it is a novel human leukocyte activation-associated cell surface glycoprotein. Peripheral lymphocytes do not significantly express M6 Ag, however, it appears upon 3-day PHA-activated T blasts. On monocytes, which constitutively express M6 Ag, it is down-regulated on day 1 but re-induced on day 3 of granulocyte-macrophage CSF stimulation. SDS-PAGE analysis of M6 immunoprecipitates shows a single band of 54 kDa under nonreducing conditions that shifts to 65 kDa under reducing conditions. Endoglycosidase F treatment of M6 immunoprecipitate reveals that 50% of the M6 molecule is composed of N-linked carbohydrates. By modifying the COS cell cloning strategy, we have isolated cDNA clones encoding M6 Ag. M6 cDNA hybridizes with a single mRNA transcript of approximately 1.7 kb in Northern blotting. Comparison analysis of the M6 sequence indicates that M6 Ag is a member of the Ig superfamily and the species homologue of rat OX-47 Ag, mouse basigin (gp42), and chicken HT7 molecule. The highly conserved remarkable transmembrane domain suggests that the M6 Ag may be a component of a multichain complex in the plasma membrane.

Amino Acid Sequence↗

Phenotype of human T cells expressing CD31, a molecule of the immunoglobulin supergene family.

The CD31 molecule is a leucocyte-surface glycoprotein of 130 kDa with homology to the immunoglobulin gene superfamily. In this study we report on the expression of CD31 on human T cells and demonstrate that it subdivides peripheral blood T lymphocytes into two novel subsets. CD31 is expressed by 38% of CD3+ lymphocytes. About 85% of CD31+ T cells display the CD45RA phenotype, 35% the CD45RO phenotype, 24% the CD4 phenotype and 72% the CD8 phenotype. There is also a correlation between CD31 expression and CD45RA expression in cord blood T cells; 89% of CD3+ cord blood cells express CD31, and most of them have the CD45RA phenotype. A discrepancy was found with thymocytes, which are positive for CD31 but negative for CD45RA. Stimulation of human T cells leads to down-regulation of CD45RA, while CD31 continues to be expressed. In functional studies, CD31 antibody binding to T lymphocytes does not lead to mobilization of intracellular calcium, proliferation or modulation of T-cell proliferation.

Antibodies, Monoclonal↗

GPI-anchored cell-surface molecules complexed to protein tyrosine kinases.

Binding of ligand or antibody to certain cell-surface proteins that are anchored to the membrane by glycophosphatidylinositol (GPI) can cause activation of leukocytes. However, it is not known how these molecules, which lack intracellular domains, can transduce signals. The GPI-linked human molecules CD59, CD55, CD48, CD24, and CD14 as well as the mouse molecules Thy-1 and Ly-6 were found to associate with protein tyrosine kinases, key regulators of cell activation and signal transduction. A protein tyrosine kinase associated with the GPI-linked proteins CD59, CD55, and CD48 in human T cells, and with Thy-1 in mouse T cells was identified as p56lck, a protein tyrosine kinase related to Src. This interaction of GPI-linked molecules with protein tyrosine kinases suggests a potential mechanism of signal transduction in cells.

Animals↗

[Phenotypical and functional characterization of leukocytes--the CD-system].

In several workshops held over the past few years 89 different cluster molecules have been identified on the surface of human leukocytes by the use of monoclonal antibodies. In this review we describe the principal of the CD clustering system and present a short survey of its application in clinic and basic research along with a complete listing of the CD molecules.

Antibodies, Monoclonal↗

Molecular characterization and functional analysis of the leukocyte surface protein CD31.

The CD31 Ag is a surface glycoprotein of 130 kDa with a broad cellular distribution. We show that among peripheral human blood cells, it is expressed on monocytes, granulocytes, platelets, and a subpopulation of lymphocytes. Activation of granulocytes leads to down-regulation of CD31 molecule expression. Sequence analysis and quantitative measurements of the relatedness of the CD31 molecule to other known proteins demonstrate that it consists of six Ig constant domains and that each domain bears substantial similarity to Fc gamma R domains. We find, however, that the CD31 molecule does not bind Ig Fc domains. On human monocytes we demonstrate that CD31 mAb recognizing certain epitopes of the CD31 molecule induce the generation of reactive oxygen metabolites. No such effect was seen with human granulocytes. By using two CD31 mAb, termed 1B5 and 7E4, we analyzed the requirements for activation of the monocyte respiratory burst via CD31 Ag in more detail. We show that signal transduction occurs via formation of a CD31 Ag-mAb-Fc gamma R complex involving either Fc gamma RI (CD64) or Fc gamma RII (CDw32) molecules.

Amino Acid Sequence↗

Activated human T lymphocytes express MHC class I heavy chains not associated with beta 2-microglobulin.

We present here the molecular characterization of a new activation-induced surface structure on human T lymphocytes, termed LA45, with high homology (93% at protein level) to MHC class I molecules. Antigen modulation and sequential immunoprecipitation experiments revealed that LA45 and HLA class I proteins do not crossreact with the corresponding antibodies. Furthermore, LA45 is not associated with beta 2-m. On the other hand, we could show that the separation of HLA-A,B,C and beta 2m molecules, induced by SDS-denaturation, leads to a conformational change in the heavy chain in such a way that it becomes reactive with LA45. The 90/45 kD LA45 proteins thus appear to be non-beta 2m-associated MHC class I alpha chains that are selectively expressed by activated but not by resting human T lymphocytes.

Amino Acid Sequence↗

Human blood basophils synthesize interleukin-2 binding sites.

Recent data suggest that basophils express receptors for a variety of lymphokines. In this study we present the biochemical characterization of the interleukin-2 (IL-2) receptor on the basophil surface membrane. Highly enriched populations (purity: 92% to 99%) of blood basophils were obtained from chronic granulocytic leukemia (CGL) patients (n = 3) by negative selection using monoclonal antibodies (MoAbs) and complement. CGL basophils were found to bind CD25 MoAbs (n = 4) directed against different epitopes of the 55- to 60-Kd subunit of the IL-2 receptor (= Tac peptide). Immunoprecipitation experiments with lysates of purified CGL basophils and CD25 MoAbs showed a protein with a molecular weight of 60 Kd, equivalent to the Tac peptide on human T blasts. Quantitative binding studies and Scatchard plot analysis using radiolabeled recombinant human (rh) IL-2 indicated the presence of 12,000 +/- 4,700 low affinity IL-2 binding sites (kd = 66 nmol/L) per purified CGL basophil. Northern blot analysis with enriched CGL basophils showed two messenger RNA bands of 3.5 and 1.5 kilobases hybridizing to radiolabeled Tac cDNA. Immunoprecipitation of the Tac peptide from enriched basophils metabolically labeled with 35S-methionine showed active synthesis of the IL-2 receptor. Our results show that human blood basophils synthesize and express receptors for IL-2.

Antibodies, Monoclonal↗

Cell cycle-dependent DHFR and t-PA production in cotransfected, MTX-amplified CHO cells revealed by dual-laser flow cytometry.

The cell cycle-dependent regulation of the cellular dihydrofolate reductase content (DHFR) and tissue plasminogen activator (t-PA) production and secretion in plasmid-amplified cells was investigated in the DHFR-negative CHO cells transfected with the plasmid pSV-tPA.dhfr. This plasmid, carrying the dhfr and t-PA gene under control of different promotors, was amplified by serial passages in 5 microM methotrexate (MTX) for dhfr gene amplification. The intracellular amount of DHFR was quantitated in viable cells by MTX-FITC labeling and flow cytometric analysis of the FITC fluorescence. In comparison with the original CHO cells, the pSVtPA.dhfr-amplified cells showed a greater than 230-fold increase in MTX-FITC fluorescence. Using dual laser flow cytometry (uv: vital cell cycle with Hoechst 33342; 488 nm: DHFR with MTX-FITC), we show a maximum increase in the intracellular DHFR content during G1 and/or at G1/S transition (100 to 157%), followed by a continuous increase to 200% during S and G2/M. To determine t-PA production CHO cells were sorted from G1-, early/late S-, and G2/M-phase. After 1-, 2-, and 4-h incubation periods, t-PA production was quantitated using a sensitive t-PA ELISA technique. We found that t-PA production and secretion (2-h assay), unlike the expression of DHFR, increased continuously from relatively 100% in G1 to 127% in early S and reached its maximum of 159% in late S, whereas in G2/M-phase it decreased to 118%. Our results show that in pSVtPA.dhfr-coamplified CHO cells gene products DHFR and t-PA both exhibit different cell cycle-correlated accumulation and secretion, respectively, indicating that the brightest MTX-FITC-positive cells (G2/M) do not display the highest t-PA secretion rate.

Animals↗

M5, a phosphoinositol-linked human myelomonocytic activation-associated antigen.

When investigating the previously described monoclonal antibody (MoAb) VIM-5, raised against THP1 cells and binding to human monocytes and granulocytes, we found that the antigen detected by this antibody, designated M5, becomes very strongly expressed on monocytes after overnight culture with phorbol myristate acetate (PMA) or lipopolysaccharide (LPS) but not with recombinant human interferon-gamma (rhIFN-gamma). Granulocytes stimulated with formyl-methionyl-leucyl-phenylalanine (FMLP) become negative for binding VIM-5. Immature granulocytes from bone marrow do not express M5, thus its expression on granulocytes is differentiation linked. The antigen bound by VIM-5 is sensitive to hydrolysis by phosphoinositol-specific phospholipase C (PI-PLC). The immunoprecipitated M5 antigen on monocytes is a broad band, with a peak of 50 kD (unreduced) and two bands of 53 kD and 44 kD (reduced). We have therefore detected an antigen that is upregulated on stimulated monocytes but, conversely, down-regulated on FMLP-stimulated granulocytes.

Antigens, Differentiation, Myelomonocytic↗

Terminal deoxynucleotidyl transferase and CD7 expression in acute myeloid leukemias are not associated with a high frequency of immunoglobulin and/or T cell receptor gene rearrangement.

Within normal hemopoiesis, the intranuclear DNA polymerase TdT seems to be exclusively expressed by T and B lymphoid precursor cells. Double staining experiments showed that TdT can also be expressed in blast cells of certain acute myeloid leukemias. Recent reports described a very strong association between TdT expression and rearrangements of IgH and TcR genes in such AML specimens, suggesting a predominant lymphoid commitment of these TdT positive AML blasts. When submitting 24 serologically and morphologically well-characterized TdT positive AML specimens for additional genotypic analysis to determine the IgH and TcR gene configuration, we observed that only four had clonally rearranged IgH and/or TcR genes, whereas 20 had germ line configuration. This frequency is clearly lower than previously reported and not necessarily different from rearrangement frequencies reported for TdT negative AML (4-40%). It would seem to us, therefore, that the expression of TdT in otherwise well-defined AML blasts is not necessarily associated with a higher frequency of immunoglobulin and/or T cell receptor gene rearrangement.

Antigens, CD7↗

Complex Ca2+ flux inhibition as primary mechanism of staurosporine-induced impairment of T cell activation.

The inhibitory effect of the highly effective drug staurosporine on the early activation signal Ca2+ flux was investigated via multiparameter flow cytometry in human peripheral blood T lymphocytes. Staurosporine has been reported to be a specific inhibitor of protein kinase C. However, we show that it inhibits the Ca2+ influx in anti-CD3 and phytohemagglutinin-stimulated human CD4+ and CD8+ lymphocytes at concentrations between 1.0 and 10.0 ng/ml. Staurosporine decreases the number of Ca2+-positive CD4+ and CD8+ lymphocytes as well as the Ca2+ influx per cell; the drug also delays the time of the maximum response to polyclonal stimulation. In addition, we demonstrate that staurosporine affects the primary Ca2+ response via inhibition of the release of the membrane-bound Ca2+ from the endoplasmic reticulum in CD4+ and CD8+ lymphocytes. Binding studies of the anti-CD3 antibody to T lymphocytes indicate normal binding capacities in the presence of staurosporine. With respect to the classical scheme of T cell activation via phospholipase C, our data suggest that staurosporine may inhibit T cell activation primarily by its effect on the early Ca2+ flux signal.

Alkaloids↗

Anti-CD4 antibody treatment of patients with rheumatoid arthritis: I. Effect on clinical course and circulating T cells.

Eight patients with arthritis (seven with rheumatoid, one with psoriatic arthritis) were treated for 7 d with a daily injection of 10 mg of mouse monoclonal anti-CD4 antibodies (three with VIT4, five with MT151). With the exception of a short-lasting low-grade fever in one patient, no side effects were observed. Clinical symptoms (morning stiffness, number of swollen joints, pain assessment and Ritchie articular index) improved in all patients within 7 d of treatment. Improvement lasted from 3 weeks to greater than or equal to 5 months (mean approximately 11 weeks). Rheumatoid factors, immune complexes and other laboratory parameters did not change during or after treatment. Skin reactivity to recall antigens was suppressed in four out of six patients during treatment but returned to pretreatment levels within 6 weeks. Immunofluorescent analysis revealed a short-lasting drop of T cells, mainly of the CD4+ CDw29+ subset, but monocytes were also affected. The injected antibody was detectable on circulating cells for about 10 h. Within 20-24 h, the cell distribution returned to pretreatment levels. In six out of eight patients an anti-mouse-Ig response was seen. We conclude that mouse anti-CD4 monoclonal antibody (MoAb) treatment is well tolerated and that the cellular immunological changes observed are short-lasting. The low incidence of side effects may justify further clinical studies to evaluate the clinical efficacy of such treatment.

Antibodies, Anti-Idiotypic↗

[Comparison of the sporocidal effects of two different disinfectants i a model experiment with pathogenic and nonpathogenic clostridial spore as well as with Bacillus cereus].

Official methods concerning the examination of sporocidal effects of disinfectants are presently lacking in the Federal Republic of Germany. Spore resistance of selected clostridial species towards formaldehyde and peracetic acid was examined by suspension tests and germ-carrier tests in comparison to spores of Bacillus cereus. Formaldehyde in concentrations between 5% and 20% as well as peracetic acid in concentrations between .004% and .125% were tested. Spore concentration of 10(6) spores/ml in the suspension-tests and 10(4) spores/ml in the germ-carrier tests with wooden germ-carriers were used. Against formaldehyde spores of Cl. septicum had the lowest resistance in the suspension tests followed by Cl. difficile, Cl. tertium, Cl. bifermentans and Cl. perfringens. Cl. sporogenes strain NCTC 532 had the most resistant spores. Concerning peracetic acid the situation was nearly the same. The resistance of all spores of pathogenic species under investigation towards chemical disinfectants was covered by those of Cl. sporogenes NCTC 532 treated with isopropanol. Isopropanol treated spores of B. cereus offer an alternative solution for practical disinfectant testing because spore production as well as growth of clostridia entail great expense. In order to cover the resistance of spores of Cl. perfringens A, the most resistant pathogenic clostridial species tested here, increased spore concentrations of B. cereus would be necessary.

Bacillus cereus↗

Regulation of the CD2 alternate pathway of T cell activation by CD3. Evidence for heterologous desensitization.

Normal resting T cells were stimulated through the alternate CD2 pathway. A CD3 mAb VIT3 completely blocked their proliferative response. The time interval for 50% inhibition lasted for 24 h after the onset of CD2 stimulation. Mitogen-activated cloned long term cultured T cells could also be stimulated via CD2. This proliferative response was again inhibitable by VIT3, indicating that CD3 regulates the CD2 pathway not only in resting cells, but also in lymphocytes actively involved in an Ir. T cells were further loaded with Quin2 and their free cytoplasmic Ca2+ levels were monitored in response to CD3 and CD2 stimulation. Antibodies directed against both surface R triggered a rapid elevation of Ca2+ levels. Both responses were abrogated when the cells had been treated overnight with VIT3. The free cytoplasmic Ca2+ levels of VIT3-pretreated cells, however, were not higher than those of control cells. These results point to a functional interaction between CD3 and CD2 possibly at the level of signal transducing proteins. Finally, cholera toxin was found to inhibit the Ca2+ response in Jurkat T cells. Both the CD3 and CD2 stimulation were sensitive to cholera toxin, indicating that a GTP-binding protein may be involved in signal transduction for both surface structures.

Antibodies, Monoclonal↗