Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Immunologic Capping”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 757 records · Page 42Linked to original sources

Cross-linking of insulin receptors to MHC antigens in human B lymphocytes: evidence for selective molecular interactions.

Molecular interactions between insulin receptors and MHC antigens were investigated in human B cells. Two B lymphoblastoid cell lines, IM-9 and 526, chosen for their high insulin binding capacity, were found to express 15,000 and 25,000 insulin receptors per cell, respectively. Insulin receptors were labeled with a 125I-photoreactive insulin analogue, and all other surface proteins by lactoperoxidase-catalyzed radioiodination. Neighbor proteins were cross-linked with a cleavable homobifunctional reagent dithio-bis-(succinimidyl propionate) (DSP) and solubilized before immunoprecipitation by anti-HLA monoclonal antibodies. Gel analysis of the precipitated proteins showed that 90% of insulin receptors precipitable by anti-insulin receptor antibodies were precipitated by anti-class I antibodies (anti-heavy chain and anti-beta 2-microglobulin) after cross-linking with 2 mM DSP. In neither IM-9- nor 526 cells could HLA antigens be precipitated by anti-insulin receptor antibodies, suggesting that the concentration of class I antigens largely exceeds the concentration of insulin receptors at the cell surface. In 526 lymphocytes, class I MHC antigens were also found to adjoin class II antigens, since both molecules could be coprecipitated with anti-HLA A, B, C and with anti-HLA-DR antibodies after chemical cross-linking. Down-regulation of insulin receptors by chronic exposure of IM-9 cells to insulin did not affect the amount of MHC molecules present on the cell surface, and conversely, class I MHC molecules were internalized in 526 cells irrespective of the presence of insulin. These results thus show that insulin receptors and MHC antigens form multimolecular complexes in the plasma membrane of cultured human B cells. These interactions, which do not appear to influence the regulation of these proteins on the cell surface, may be involved in the mechanism of hormone signaling.

B-Lymphocytes↗

Effect of altered membrane structure on NK cell-mediated cytotoxicity. II. Conversion of NK-resistant tumor cells into NK-sensitive targets upon fusion with liposomes containing NK-sensitive membranes.

There is a large body of evidence that supports the notion that NK cells exert important immune surveillance functions in vivo, against a variety of virus-infected and neoplastic cells. However, certain targets are not susceptible to lysis by NK cells. The exact mechanism by which resistance or sensitivity is conferred on target cells is not known. We investigated whether the selectivity to NK lysis is a property of the membrane of the target cell. This was examined by the application of a recently developed method which is aimed at changing the membrane structure of the target cell by cell-liposome fusion. Our studies demonstrate that NK-resistant tumor cells acquired sensitivity to lysis by NK cells after fusion with reconstituted vesicles which contained membrane components derived from NK-sensitive target cells. The fusion required the presence of Sendai virus envelope glycoproteins and exogenous lipids (soybean lecithin and cholesterol) for maximal efficiency. This finding was demonstrated in both the human system (with U937 and Raji as NK-sensitive and -resistant cell lines, respectively) and the rat/murine system (with YAC-1 as NK-sensitive target and P815 and YAC-asc as NK-resistant targets). Both the 51Cr-release assay and the single cell assay showed lysis of the modified target cells in a 3-hr incubation period. The magnitude of the cytotoxic activity was found to depend on the concentration of reconstituted vesicles used in the fusion step. The effect seen was specific because target cells were not lysed when fused with vesicles which contained membrane constituents derived from either NK-resistant targets or NK-sensitive targets from another species (human vs mouse). The resistance of modified target cells to lysis by xenogeneic NK cells was not due to failure of membrane fusion, as detected by immunofluorescence, or to failure to form conjugates. These results demonstrate the feasibility of converting a resistant NK target to a sensitive target by cell-liposome fusion. Furthermore, the data indicate that susceptibility to lysis by NK cells is a property of the membrane composition of the target cell. The significance of these findings is discussed.

Animals↗

[Activity of the T- and B-lymphocyte systems in microbial eczema].

The author demonstrated a marked reduction in number of T-spontaneously rosette-forming lymphocyte and B-cells tested by direct immunofluorescence in the peripheral blood of patients suffering from microbial eczema. Reduction in number of B-lymphocytes was accompanied by a decrease in serum immunoglobulins (of M and G classes) content, of the titre of normal antibodies of E. coli, in parallel with increase in concentration of immunoglobulins, class A, and of agglutinating titre to staphylococcus P-209.

Adult↗

New aspects of cell membrane radiobiology and their impact on radiation protection.

Recent developments in the field of the membrane biology of eukaryotic cells have revived relevant radiobiological studies. The supramolecular structures of membranes built up by the various chemical components that ensure certain functions and connections of the cells seem to react sensitively to ionizing radiations. Data concerning those radiation-induced alterations that reflect changes of such features and functions as surface charges, membrane-bound enzyme activities and receptor functions are reviewed. As the new concepts arising from the results obtained so far may have consequences in the theory and practice of radiation protection, a few areas are mentioned where the impact of the relevant accumulated knowledge might be expected to result in practical applications.

Animals↗

Tissue localization and biochemical characteristics of a new thymic antigen recognized by a monoclonal thymocytotoxic autoantibody from New Zealand black mice.

Naturally occurring thymocytotoxic autoantibodies (NTA) have been described in both humans and mice with SLE. To define further the role of anti-thymic autoantibodies in murine lupus, we studied the cellular and molecular specificity of a spontaneous monoclonal NTA, designated TC-17, derived from a 4-mo-old New Zealand Black mouse. TC-17, an IgM autoantibody, has been shown previously to be unreactive with Lyt-1, Lyt-2, and L3T4 (T helper) antigens. We have shown further that it is also unreactive with Thy-1. TC-17 recognizes a new thymic antigen that appears to mark a distinct subpopulation of cortisol-sensitive cortical thymocytes. The antigen consists of a single glycoprotein chain with an apparent m.w. of 88,000. TC-17 shows reduced binding to thymocytes treated with tunicamycin, indicating either that glycosylation of TC-17 antigen is necessary for TC-17 to bind to it or that glycosylation is required for expression of the antigen on the cell surface. TC-17 uniquely reacts with two of 17 murine lymphoid tumor cell lines of intermediate cellular maturity. The thymocytotoxic activity of TC-17 is absorbed by single cell suspensions of murine stomach, small intestine, large intestine, kidney, and thymus. Moreover, the specific binding of TC-17 to gut tissue of normal and germfree mice can be demonstrated by indirect immunofluorescence, suggesting antigenic cross-reactions between thymic and gut tissue. TC-17 reacts with rat thymocytes as well as it does with murine cells, indicating moderate evolutionary conservation of the TC-17 antigen. The expression of this glycoprotein by a discrete thymocyte subset may prove to be a valuable probe for the study of murine T cell differentiation.

Absorption↗

Studies on the relevance of microtubules and of microfilament-dependent processes for triggering lymphocyte activation.

The effects of Isoptin i) on isolated microtubules, ii) on the anti-immunoglobulin and the Concanavalin A induced changes in the plasma membrane topography of murine lymphocytes and iii) on murine lymphocyte activation by lipopolysaccharide and by Concanavalin A was investigated. Isoptin and lidocaine (a local anaestetic) inhibited repolymerisation of tubulin into microtubules and induced depolymerisation of microtubules. Isoptin and lidocaine inhibited competitively binding of colchicine (a classical microtubules disrupting agent) to tubulin. Isoptin induced changes in the plasma membrane topography resembling effects caused by local anaesthetics or by a combination of colchicine and cytochalasin B (an agent affecting microfilament function). Isoptin, lidocaine, colchicine and hydroxyurea when present in the culture medium during the whole incubation period inhibited DNA synthesis induced by lipopolysaccharide or Concanavalin A. RNA synthesis was completely inhibited by lidocaine but not by Isoptin or by colchicine. If Isoptin, colchicine or hydroxyurea were removed from the culture medium at 20 h of culture period, the cells immediately started to incorporate 3H-Thymidine. The inhibitory action of lidocaine was irreversible. These results show that Isoptin, a drug which depolymerizes microtubules in vitro and disturbs the mitogen induced changes in plasma membrane topography of lymphocytes (believed to be controlled by microtubules and microfilaments), does not abolish commitment of the cells for DNA synthesis.

Animals↗

Primary amines inhibit the triggering of B lymphocytes to antibody synthesis.

Transglutaminase enzyme activity was demonstrated in murine splenic B lymphocytes. Preincubation of cell cultures with primary amines that are known substrates for transglutaminase inhibited the triggering of murine B lymphocytes to form clones of antibody-producing plasma cells. B cells could be rescued from this inhibition by incubating cultures with anti-immunoglobulin or multivalent antigens under nonstimulatory conditions. Rescue of B cells exhibited the same requirements as stimulation, which suggests that rescue is a dynamic process and not simply a receptor-ligand binding event. Primary amines appeared to inhibit an early, T cell-independent event in the B cell activation pathway, which was not sufficient to trigger B cells to form antibody-producing clones. Subsequent receptor-mediated events, required to further trigger B cells, were not inhibited by the presence of primary amines.

Acyltransferases↗

Serologic relatedness between Thy-1.2 and actin revealed by monoclonal antibody.

Monoclonal antibodies with affinity for Thy-1.2 on thymocytes also can bind to actin within marsupial, murine, and human cells. A similar cross-reactivity between Thy-1.1 and vimentin was revealed by Dulbecco and co-workers employing monoclonals. A computer-assisted analysis of the amino acid composition provided suggestive evidence for the occurrence of sequence homology between Thy-1.1 or Thy-1.2, actin, and vimentin that likely accounts for the serologic relatedness detected by hybridoma antibodies.

Actins↗

Antibody-dependent redistribution and release of immunological complexes in cells of human chronic leukemias.

Redistribution and the ability for removing immunological complexes in CLL and CGL cells treated with the specific anti-leukemia antigens were investigated. The immunofluorescence method at 4 and 37 degrees C was applied at different times of cell incubation with antigens. It was shown, that incubation at 4 degrees C even carried out for 18 h, neither caused a clear aggregation nor a release of immunological complexes from the leukemia cell surface, whereas at 37 degrees C considerable differences in mobility of CLL and CGL cells were observed. In CGL cells quite a rapid redistribution followed by the removal of antigen-antibody complexes was observed, while CLL cells have shown the ability for aggregation only, without clear polarization and without releasing the formed complex from the cell surface.

Antigen-Antibody Complex↗

Idiotypes on B lymphocytes: association with immunoglobulins.

Several idiotypic (Id) specificities have been identified by immunofluorescence on the membranes of B cells in the spleens of nonimmune mice. These determinants are displayed at frequencies varying from 0.22 to 1.83% of B cells and are entirely immunoglobulin (Ig) in nature. No Id determinants were observed on the membranes of four Slg- Abelson virus-transformed pre-B cell lines that are sensitive to LPS. Under our experimental conditions, we did not observe a significant increase in 3H-thymidine incorporation subsequent to the in vitro incubation of splenic lymphocytes from normal mice with various amounts of anti-Id antibodies specific for several cross-reactive (IdX) or individual Id. Similarly, in utero exposure to anti-Id antibodies against myeloma proteins specific for T-independent antigens displaying B cell mitogenic properties did not alter the proliferation of lymphocytes induced by these mitogens. In contrast, exposure to anti-Id antibodies in vitro as well as in utero had a profound and specific effect on the corresponding antibody responses and maturation of small lymphocytes into plasma cells. When normal B cells were cultured with the B cell mitogen LPS in the presence of anti-Id antibodies directed against the J558IdX, specific suppression of the maturation of IdX+ plasma cells was observed. In mice exposed to maternal anti-Id in utero, we observed a severe inability to mount an immune response to any compound that elicited antibody molecules bearing the Id that was complementary to the maternal anti-Id. These same maternally Id-suppressed mice, however, gave a normal response when the same compound was presented as a mitogen. Our results reinforce the concept that Id on membranes of B lymphocytes are associated only with Ig receptors and do not support the possibility of mitogen-like poly-clonal stimulatory properties of anti-Id antibodies.

Animals↗

[Biochemical processes on membranes during lymphocyte stimulation].

A conformational change of the antigen receptors takes place with the help of macrophages, T helper cells and soluble factors after antigen binding. This conformational change may result in the following reactions: a) activation of a receptor-associated enzyme system b) influence on the lipid matrix and indirect activation of membrane-associated enzyme systems or influence on the cell metabolism by changing the ion flux c) activation of the cytoskeleton with following movements of the ligand-receptor-complexes and indirect activation of cytoskeleton-associated enzyme systems or influence on the metabolism by changing the ion flux. The adenylate cyclase (phosphorylating cascade) or the proteases (limited proteolysis of inactive proenzymes) may be the enzyme systems with regulatory effect which can be activated.

B-Lymphocytes↗

Dissociation of autologous and allogeneic mixed lymphocyte reactivity by using a monoclonal antibody specific for human T helper cells.

A monoclonal antibody defining a population of human T helper cells was developed and shown to specifically block the autologous mixed lymphocyte reaction (AMLR). This antibody, termed KT69-7 (IgG1), recognized 62% of peripheral blood E rosette-positive (E+) cells while demonstrating negligible reactivity with E- cells, monocytes, granulocytes, EBV-transformed B cell lines, and mouse splenocytes. Separation of E+ cells into KT69-7+ and KT69-7- populations revealed that KT69-7+ T cells provided helper function in PWM-driven B cell differentiation, whereas KT69-7- T cells provided no help and may suppress this response. Modulation of membrane moieties by using KT69-7 or OKT4 plus goat anti-mouse IgG removed reactivity to both these antibodies, suggesting an association between these molecules recognized by these antibodies. In functional studies, KT69-7 selectively blocked the AMLR while demonstrating minimal or no effect on the allogeneic MLR (allo-MLR). Blocking of the autoreactivity occurred when either autologous B lymphocytes or macrophages were used as stimulators. The failure of KT69-7 to block the allo-MLR was not attributable to excessive allogeneic stimulus; KT69-7 failed to block even under conditions of limiting numbers of stimulator cells. KT69-7 thus appears to recognize a molecule on the surface of T helper cells required for recognition of autologous class II antigens.

Animals↗