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Imaging of immunogold labelled antigens on capping thymocytes by confocal reflection contrast scanning optical microscopy.

Confocal laser scanning optical microscopy (CLSM) in the reflection contrast mode has been used to image single 40 nm gold particles, and to study changes in the distribution of gold label associated with capping of the leukocyte sialoglycoprotein (LSGP) antigen on the surface of fixed rat thymocytes, labelled with the mouse monoclonal antibody W3/13 and a goat anti-mouse IgG immunogold conjugate. This imaging method has also been applied to live thymocytes labelled with gold-conjugated antibodies, to study the dynamics of the capping process.

Animals↗

[Immunological tolerance: induction and abrogation].

The induction of a state of immune tolerance is a complex event which can take place at different stages of the immune response since it depends both upon the chemical structure and the experimental manipulation of the antigen. This paper deals mainly with the relationship between antigen structure and the kinds of tolerance induced.

Animals↗

Cofilin peptide homologs interfere with immunological synapse formation and T cell activation.

The formation of supramolecular activation clusters within the immunological synapse, crucial for sustained signaling and T lymphocyte activation, requires costimulation-dependent reorganization of the actin cytoskeleton. Here we have identified the actin-remodeling protein cofilin as a key player in this process. Cell-permeable peptides that block costimulation-induced cofilin/F-actin interactions in untransformed human T lymphocytes impair receptor capping and immunological synapse formation at the interface between T cells and antigen-presenting cells. As a consequence, T cell activation, as measured by cytokine production and proliferation, is inhibited.

Actin Depolymerizing Factors↗

Impaired HLA capping capacity of peripheral blood lymphocytes in Duchenne muscular dystrophy.

The cap capacity in nine Duchenne muscular dystrophy (DMD) patients and in 23 healthy male subjects (14 adults and nine neonates) has been investigated by inducing capping of HLA molecules. The evaluation of capping percentages ranged in healthy controls from 44 to 61 with a mean value of 53.39 +/- 4.89, while DMD patients displayed cap capacity of percentages varying from 15 to 38 with a mean value of 31.5 +/- 7.42. Statistical significance of the differences between the two groups, assessed by the Mann-Whitney U test, was p less than 0.00003. A correlation was found in DMD patients between cap capacity and age (tau = +0.657, p = 0.012). The results confirm previous reports of Ig capping impairment noted in B cells of the whole lymphocyte population, supporting the hypothesis of a systemic cellular defect in DMD patients. The data obtained suggest that HLA capping could overcome some of the technical difficulties of Ig capping and could be used as a diagnostic aid in antenatal detection of DMD.

Adult↗

Molecular identification of human T-lymphocyte antigens defined by the OKT5 and OKT8 monoclonal antibodies.

Three human lymphocyte differentiation antigens, specific of the entire T-cell population, of the helper/inducer T-cell subset, and of the cytotoxic/suppressor T-cell subset have been identified, using mouse monoclonal antibodies obtained from Dr. P. Kung. Various T-cell populations were radio-labelled, the antigens were isolated by immunoprecipitation with the monoclonal antibodies and the resulting immune complexes subjected to sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The OKT3 antigen, present on peripheral T-lymphocytes and on functionally mature thymocytes has been identified as an oligomeric protein, composed of 23,000 mol. wt subunits. The OKT4 antigen, specific for the helper/inducer subset, is a single protein of 53,000 mol. wt. The OKT8/OKT5 antigen, defining the cytotoxic/suppressor subpopulation is composed of two subunits of 31,000 and 33,000. From co-capping experiments and biochemical data, the hypothesis is established that OKT5 recognizes a dimer of 140,000 mol. wt and OKT8 recognizes a determinant present on both the monomer 70,000 and the dimer. This hypothesis could explain the OKT5- OKT8+ phenotype of some T-cells.

Antibodies, Monoclonal↗

Receptor patching and capping of platelet membranes induced by monoclonal antibodies.

Redistribution of glycoproteins (GP) Ib, glycocalicin, IIb, and IIIa on the surface of human platelets in response to stimulation with corresponding monoclonal antibodies (MoAb) and a polyclonal antiglycocalicin antibody was studied by immunofluorescence, immunoelectron microscopy, and a quantitative radioimmune assay. Immobilization of the antigens by prefixation with formaldehyde showed a uniform distribution over the surface of the platelet. Incubation of unfixed platelets with specific MoAb against various epitopes on GPIIb and/or IIIa resulted in a time-dependent patching, subsequent capping, and after prolonged exposure to the antibody/label complex, internalization of the complex, possibly by endocytosis. In contrast, GPIb could not be shown to cap. From these results we conclude that platelet GPIIb and/or IIIa undergo spatial rearrangement in a manner analogous to that observed in lymphocytes, whereas GPIb does not. Since both GPIb and GPIIb and/or IIIa seem to be transmembraneous GP associated with the cytoskeleton, a special, though unidentified, role of GPIIb/IIIa in the induction of lateral membrane mobility is postulated.

Antibodies, Monoclonal↗

Moloney lymphoma cells express a polyprotein containing the GAG gene-coded p15 and the Moloney leukemia virus-induced cell surface antigen (MCSA).

The relationship between MCSA and the viral structural proteins in YAC Moloney lymphoma cells was further investigated by using membrane immunofluorescence and immunoadsorbent columns. As previously observed, MCSA showed only minimal capping and thereby differed in behaviour from gp70, p30 and p12 virion antigens. Whereas antibody-induced capping of gp70 did not change the membrane distribution of MCSA, co-capping was observed between MCSA and p30 and p12 gag protein antigens. This indicated that, whereas MCSA is distinct from gp70, it is linked to p30 and p12 on the membrane of living cells. It was then attempted to isolate MCSA on anti-p30 and anti-p15 immunoadsorbent columns from solubilized YAC cells. Contrary to what was expected, no MCSA was found to the anti-p30 column. On the other hand, a part (10-15%) of the MCSA was bound to the anti-p15 column, indicating that MCSA is linked to the gag p15.

Animals↗

Isoform-specific associations of CD45 with accessory molecules in human T lymphocytes.

Association of CD45 with surface molecules was investigated in human T lymphocytes by co-capping. CD45 appeared to be associated with the CD3/T cell receptor complex and with CD4 or CD8 molecules in memory, but not in naive T cells, as previously reported in the mouse. Associations of CD45 isoforms with accessory molecules were then identified with seven anti-CD45R monoclonal antibodies (mAb). An isoform-specific association pattern was observed: CD2 co-capped with CD45 molecules recognized by UCHL1 mAb (CD45R0). LFA-1 with molecules bound by 2H4 mAb (CD45RA), and both CD4 and CD8 with molecules reacting with MCA.347 mAb (whose isoform specificity was not known). Further information on the CD45 isoform(s) associated to CD4 and CD8 was sought by assessing the isoform specificity of MCA.347. Cross-competition experiments showed that it reacts with an epitope clearly different from those recognized by 2H4 and UCHL1, and only partially overlapping the PD7/26 epitope (CD45RB). Moreover, the competition between MCA.347 and PD7/26 was maximal in naive T cells and minimal both in memory T cells and in a subset expressing CD11b, a marker of granular lymphocytes. Immunoprecipitation experiments showed that MCA.347 binds to CD45 molecules with a molecular mass of 220, 205 and 190 kDa, the 190-kDa molecules not being recognized by 2H4, PD7/26 or UCHL1. These data indicate that MCA.347 recognizes amino acid sequences different from those coded by the exon A or B of the gene, and not expressed by CD45R0, suggesting that it binds to sequences coded by the exon C. In conclusion, this work shows that in human T cells different CD45 isoforms are associated to different surface molecules: LFA-1 is associated to CD45RA, CD2 to CD45R0 and CD4 and CD8 presumably to CD45RC. This peculiar behavior of CD45 suggests that it may play a crucial role in lymphocyte activation, probably by modulating the signals delivered to the cell by different receptor systems.

Antibodies, Monoclonal↗

Functional studies with anti-CD3 heavy chain isotype switch-variant monoclonal antibodies. Accessory cell-independent induction of interleukin 2 responsiveness in T cells by epsilon-anti-CD3.

A series of heavy chain isotype switch-variant anti-CD3 monoclonal antibodies (mAb) was used to study the proliferation requirements of purified T cells. None of the variant antibodies was able by itself to induce proliferation. In the presence of exogenous interleukin 2 (IL-2) strong mitogenesis was observed upon stimulation with epsilon-anti-CD3, whereas gamma 1, gamma 2b, gamma 2a, and alpha-anti-CD3 failed to induce T cell proliferation. All variant antibodies induced vigorous proliferation in combination with phorbol myristate acetate. Purified T cells, cultured in the presence of epsilon-anti-CD3, in the absence of IL-2, did not express detectable amounts of TAC-antigen (CD25). The binding of the variant antibodies to the CD3 antigen was evaluated in cross-blocking experiments. It was demonstrated that the epsilon-anti-CD3 antibody, in comparison with the other variant mAb, has a relatively low avidity for the CD3 antigen. In modulation experiments, the IgE variant antibody was unable to induce a substantial loss of CD3 antigen. T cell triggering was investigated at the level of Ca2+ mobilization by means of the dye Indo-1. In contrast to the gamma 1, gamma 2b, gamma 2a, and alpha mAb, which induced a rapid and high rise in the free intracellular calcium level, epsilon-anti-CD3 caused a slow and low rise. These studies indicate that the epsilon-anti-CD3 antibody has a low avidity for the CD3 antigen, compared with the other variant mAb, possibly as a result of monovalent binding. Apparently, the avidity and/or valency of CD3 antigen binding not only has a major influence on CD3 modulation and anti-CD3-induced Ca2+ mobilization, but also sets T cell requirements for IL-2 responsiveness.

Antibodies, Monoclonal↗

E receptors and T antigens are different antigenic entities on human T lymphocytes.

ATS contains antibodies of different specificity directed against E receptors and T specific antigens, respectively. E-receptors are trypsin-sensitive, T-antigens are trypsin-resistant. Absorption of ATS with trypsinized thymocytes thus removes anti-T, but leaves anti-E antibodies unaffected. The rosette inhibitory potential of the absorbed antiserum (anti-E) remains unaltered. Immunization with trypsinized thymocytes on the other hand results in the production of anti T-cell sera highly specific in immunofluorescence and cytotoxicity tests without contaminating anti-E antibodies and, therefore, also lacking any rosette inhibitory capacity. E receptors and T antigens are independently mobile within the cell membrane as shown by differential capping.

Animals↗

Model for capping of membrane receptors based on boundary surface effects.

Crosslinking of membrane surface receptors may lead to their segregation into patches and then into a single large aggregate at one pole of the cell. This process is called capping. Here, a novel explanation of such a process is presented in which the membrane is viewed as a supersaturated solution of receptors in the lipid bilayer and the adjacent two aqueous layers. Without a crosslinking agent, a patch of receptors that is less than a certain size cannot stay in equilibrium with the solution and thus should dissolve. Patches greater than a certain size are stable and can, in principle, grow by the precipitation of the remaining dissolved receptors from the supersaturated solution. The task of the crosslinking molecules is to form such stable patches. These considerations are based on a qualitative thermodynamic calculation that takes into account the existence of a boundary tension in a patch (in analogy to the surface tension of a droplet). Thermodynamically, these systems should cap spontaneously after the patches have reached a certain size. But, in practice, such a process can be very slow. A suspension of patches may stay practically stable. The ways in which a cell may abolish this metastable equilibrium and thus achieve capping are considered and possible effects of capping inhibitors are discussed.

Cell Membrane↗

CD44 stimulation down-regulates Fas expression and Fas-mediated apoptosis of lung cancer cells.

Cytotoxic T lymphocytes (CTL) play a major role in the rejection of tumor cells, but tumor rejection does not always occur in vivo, indicating that defects in anti-tumor immune responses may be common. We here document a novel function for CD44--using lung cancer cells, we showed that stimulation of CD44 reduced Fas expression and Fas-mediated apoptosis: (i) lung cancer cells expressed high levels of CD44; (ii) engagement of CD44 on the cells by a specific antibody or fragmented hyaluronan reduced Fas expression; (iii) CD44 cross-linking reduced Fas-mediated apoptosis; (iv) stimulation of CD44 on lung cancer cells decreased IFN-gamma production by autologous CTL; and (v) CD44 stimulation prevented killing of lung cancer cells by autologous CTL. Based on these findings, we postulate a new concept--that interaction of CD44 on lung cancer cells with fragments of extracellular hyaluronan present in the surrounding extracellular matrix reduces Fas expression as well as Fas-mediated apoptosis of cancer cells. This leads to reduced susceptibility of the cells to CTL-mediated cytotoxicity through the Fas-Fas ligand pathway.

Apoptosis↗

FcR-mediated inhibition of cell activation and other forms of coinhibition.

The tripartite inactivation model proposed that coaggregation of the B cell antigen receptor (BCR) with the Fc receptor (FcR) by antigen and specific IgG antibody complexes explained the Fc-dependent inhibition of immune responses by antibody. This model has since been substantiated by many observations and its impact on studies of immune regulation has been threefold: (1) IgG antibody, via Fc gamma RIIB, mediates inhibition of cell activation in many cell types, demonstrating the general importance of this mechanism in immune regulation; (2) Fc gamma RIIB was the first receptor described that regulates immune responses by coinhibition, that is, regulation as a result of interaction between activating receptors (BCR, TCR, Fc epsilon RI, Fc gamma RIII, Fc gamma RIIA) and inhibitory receptors (Fc gamma RIIB, CTLA4, CD5, CD22, p58/70/140 KIR, gp49B1/gp91, Ly49A/C/E/F/G, NKG2-A/B, APCR, Fas (CD95), TGF beta-R, TNF-R, IFN gamma-R, and others). The list of coinhibitors is expanding, just as the list of costimulators has grown. Tolerance through multiple coinhibitors implies that Signal 1 alone is not tolerogenic; and (3) Studies of Fc gamma RIIB coinhibitory mechanisms have pointed the way to potential general inhibitory signaling pathways used by many receptors, involving the competing effects of various kinases and phosphatases, and other competitive events. Investigations of Fc gamma RIIB physiologic function and of other coinhibitory receptors, together with recent biochemical analyses, give an initial understanding of the biology of these inhibitory receptory receptors. Paradoxes within and between theoretical constructs, functional observations, and mechanistic studies point to critical questions for future study.

Animals↗