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Selective and unidirectional membrane redistribution of an H-2 antigen with an antibody-clustered viral antigen: relationship to mechanisms of cytotoxic T-cell interactions.

We have studied the co-redistribution of vesicular stomatitis virus (VSV) antigen and of individual H-2 antigens on the surfaces of mouse cells, and in parallel we have also used these VSV-infected cells as targets in cytotoxic T-cell killing experiments. Antibody-induced patching and capping of the VSV antigen caused an extensive co-patching and co-capping of the H-2Kb antigen but not of the H-2Db antigen. In reciprocal experiments, the antibody-induced patching of the H-2Kb or H-2Db antigen did not result in a co-patching of the VSV antigen. Radioimmunoassays showed that the relative numbers of H-2Kb, H-2Db, and VSV antigens on the surfaces of the cells exhibiting such nonreciprocal co-redistributions were closely similar. Furthermore, the H-2 restricted cytotoxic T-cell lysis of these target cells showed a marked preference for H-2Kb compared to H-2Db compatibility. We propose that the VSV and H-2 antigens are molecularly independent entities in the unpreturbed target cell membrane but that the antibody-induced clustering of the VSV antigen causes a selective and unidirectional co-redistribution (which we designate as syn-capping) of H-2Kb with the VSV antigen clusters. It is suggested that such a T-cell-induced syn-capping process involving an antigen and an H-2 molecule on the target cell may play a critical role in the mechanism of cytotoxic T-cell killing.

Antibodies, Viral↗

Two closely linked loci and one apparently independent locus code for bovine lymphocyte antigens.

Twenty different antigens have been detected on bovine lymphocytes. Family studies suggested that 19 of the antigens were under the control of two closely-linked loci. The remaining antigen was apparently coded for by an independent locus. The distribution of the antigens in the population also suggested that three loci control the expression of lymphocyte antigens. A co-capping study on two antigens which were inherited together on one haplotype showed that these antigens were expressed on different molecules on the lymphocyte membrane, providing further evidence for the existence of two linked loci.

Animals↗

Structure-activity relationship of thirty-nine cytochalasans observed in the effects on cellular structures and cellular events and on actin polymerization in vitro.

The effects of twenty-three natural cytochalasans and sixteen synthetic derivatives on actin-distribution and alteration in morphology of C3H-2K cells, inhibition of lymphocyte capping, and inhibition of actin filament elongation were compared. The effects on cellular level and the in vitro effects showed positive correlation and the structure-activity relationship observed is discussed.

Actins↗

Capping and freeze-fracture analysis of Sézary cells.

The functional integrity of blood and skin Sézary cells was examined in regard to motility, capping proficiency, and intramembranous particle (IMP) mobility. In contrast with chronic lymphocytic leukemia lymphocytes, which are relatively inert in these respects, variable proportions of Sézary cells are motile and are able to cap and cluster their IMP's. Since these functions may reflect a cell's propensity for diapedesis, these observations may help to explain the inverse relationship between the size of the skin infiltrate and the number of circulating Sézary cells often observed in this condition.

Freeze Fracturing↗

Spectrin immunofluorescence distinguishes a population of naturally capped lymphocytes in situ.

Immunofluorescence analysis of mammalian lymphocytes using antiserum directed against chicken erythrocyte alpha-spectrin revealed a lymphocyte population in which spectrin antigen was arranged in the form of a discrete cap (hereafter referred to as capped lymphocytes). This subset could be easily distinguished from other lymphocytes in which the spectrin antigen was diffusely distributed near the plasma membrane (noncapped lymphocytes). The subset of capped lymphocytes could be visualized in situ and in isolated cells in the absence of added ligand. Using frozen sections of lymphoid organs that were fixed in formaldehyde prior to the immunofluorescence procedure, capped lymphocytes were found in characteristic locations depending on the tissue examined. In the thymus, the major population of medullary lymphocytes were capped whereas cortical lymphocytes were mostly noncapped. In Peyer's patches, capped lymphocytes were interspersed with noncapped lymphocytes throughout the tissue. In the spleen, capped lymphocytes were concentrated in the periarterial lymphoid sheath of the white pulp and in lymph nodes they were found predominantly in the paracortical and cortical regions. Capped lymphocytes were not visible in the thymus until just before birth and did not appear in the spleen until 3 d after birth. When lymphocytes were isolated from lymphoid organs, fixed in formaldehyde and prepared for immunofluorescence, capped and noncapped lymphocytes were still identifiable and present in the same relative proportions as seen in situ. Results identical to those described above are obtained using antisera directed against guinea pig fodrin. Natural capping of proteins previously shown to co-migrate with a variety of cell surface macromolecules after cross-linking may be a new means of identifying various stages of lymphocyte activation or differentiation.

Animals↗

B-cell tolerance. IV. Differential role of surface IgM and IgD in determining tolerance susceptibility of murine B cells.

During ontogeny IgD appears later than IgM on splenocytes of neonatal mice (1) and at a time when mice develop a markedly increased immune responsiveness (2). Based on these observations, it was suggested that IgD serves as a "triggering" isotype for induction of immune responses, whereas surface IgM functions as a tolerizing receptor (3). To test this hypothesis, the susceptibility of adult splenocytes (which are predominantly mu(+)delta(+)[4-6]) and neonatal splenocytes (which bear predominantly IgM [mup(+); 1, 4-6]) to tolerance induction were compared. The results indicate that neonatal splenic B cells responsive to thymus dependent (TD) antigens are exquisitely susceptible to tolerance induction compared with those from adult mice (7-9). However, cells from both adult and neonatal mice were highly susceptible to tolerance induction when thymus independent (TI) antigen was used as immunogen (8). These results suggest that the major precursor for the TD response is a mu(+)delta(+)-cell which appears late in ontogeny and is resistant to tolerance induction and that the mup(+)-cell is the major precursor for the TI response and is highly susceptible to tolerance induction. Other differences between responders for TI and TD antigens have been described previously (10-12). To test this concept, adult splenocytes were treated with papain under conditions in which IgD, but not five other surface molecules, was removed (13). Such treated splenocytes were shown to be markedly susceptible to tolerance induction, resembling TD responders from neonatal animals. This experiment was interpreted as indicating that IgD confers resistance to tolerance induction on mu(+)delta(+)-cells. To prove this interpretation, it is necessary to show that specific removal of IgD with anti-delta also results in increased susceptibility to tolerance induction and that treatment with anti-mu does not have a similar effect. In the present studies, we have removed surface IgM or IgD by antibody-induced capping and assessed the tolerance susceptibility of the treated cells. Our results demonstrate that removal of IgD, but no IgM, from TD responders increases their susceptibility to tolerance induction.

B-Lymphocytes↗

Hepatitis B virus and host cell membrane antigens on a primary hepatocellular carcinoma cell line.

We have defined some membrane antigens of the cultured hepatocellular carcinoma cell line PLC/PRF/5, which contains the integrated genome of hepatitis B virus. Using fluoresceinated antibodies, we identified HLA Class 1 glycoprotein and HB surface antigen on the membrane. Only in a minority of cells was physical association of these antigens demonstrated by co-capping. The presence of a "division" antigen was indicated by reactivity of the cells with the murine monoclonal antibody OKT9.

Animals↗

I and i antigens of human peripheral blood lymphocytes cocap with receptors for concanavalin A.

Surface immunofluorescence experiments using a human anti-i and two anti-I antisera have been performed on human peripheral blood lymphocytes. These are known to contain cold-reactive monoclonal IgM antibodies against the carbohydrate sequence: (formula: see text). A high proportion of B- and T-type lymphocytes express these I and i determinants. In the presence of anti-human immunoglobulin, the cold-reactive membrane-associated complexes of I-anti-I and i-anti-i become stabilized, and redistribution (with patching and capping) can be elicited at 37 degrees C. Dual fluorescence experiments have shown striking concordant staining of I or i (fluorescein) caps and patches with concanavalin A (rhodamine) reactive sites on normal and leukemic cells, suggesting that a proportion of I and i active structures of lymphocyte membranes are structurally associated or physiologically coupled with glycoproteins carrying oligosaccharides with branched mannosyl cores.

Antigens, Surface↗

Two distinct mechanisms for redistribution of lymphocyte surface macromolecules. II. Contrasting effects of local anesthetics and a calcium ionophore.

In the previous study, lymphocyte surface molecules were separated into two subsets depending on whether capping was associated was associated with redistribution of cytoplasmic myosin. In the present study, the effects of the local anesthetic chlorpromazine and of the Ca2+ ionophore A23187 were compared. Both drugs affected the surface redistribution of immunoglobulin (Ig), Fc receptors, and the TL antigen--molecules that appear to cap by association with microfilaments--but had no effect on the Thy.1 (theta) and H2 antigens--molecules that cap slowly, apparently unlinked to microfilament function. The capping of Ig, Fc receptor, and TL was inhibited while that of H2 and theta was not. Both drugs reversed the Ig Fc receptor, and TL caps but not the H2 and theta caps. In the former group, the reversal of caps was accompanied by a parallel reversal of the myosin segregated to the cap area. The appearance of myosin after drug treatment varied: chlorpromazine resulted in a diffuse pattern similar to that of normal lymphocytes, whereas A23187 produced an array of aggregates and coarse filaments. The results are compatible with the view that two mechanisms for capping exist in the lymphocyte. The Ca2+ ionophore may affect capping of microfilament-dependent caps by producing a systemic activation of contractile proteins while chlorpromazine may act by disrupting a Ca2+-dependent link between surface complexes and the contractile proteins.

Animals↗

A monoclonal antibody with selectivity for human kappa myeloma and lymphoma cells which has potential as a therapeutic agent.

K-1-21 is a monoclonal antibody which binds to human free kappa light chains and recognises a determinant, KMA selectively expressed on kappa myeloma and lymphoma cells. KMA is absent on plasma cells and resting B cells from normal adults but can be detected on some foetal B cells and a small proportion of activated B cells. Expression of KMA is greatest on cycling cells. K-1-21 is an IgG1 antibody that elicits ADCC but will not cap the KMA determinant unless a second ligand is present. K-1-21 has potential for practical application.

Antibodies, Anti-Idiotypic↗

[The capping effect and possibilities of its use in clinical practice].

A modified procedure for parametric studies of the capping effect is described and the significance of this effect in some clinical situations is demonstrated. The authors discuss the possibility of applying this phenomenon to assessment of the immunocompetent cell functional activity, to the diagnosis of immune deficiency states, and to monitoring the patients' clinical status.

Asthma↗

Mobility of lymphocyte surface membrane concanavalin A receptors of normal and feline leukemia virus-infected viremic felines.

The virus-associated depression of concanavalin A mitogenesis which accompanies feline leukemia virus-induced cat lymphoma was investigated by comparing lymphocyte surface receptor mobility of normal cats to that of viremic diseased animals. The mechanics of feline lymphocyte receptor mobility were studied using fluorescein-conjugated concanavalin A to quantitate lymphocyte capping. The results of a study of 21 disease-free animals showed that cat lymphocytes undergo appreciable concanavalin A capping, with a mean capping rate of 17% under conditions developed in this study. In contrast, morphologically normal peripheral blood lymphocytes of six feline leukemia virus-infected viremic cats, with or without lymphoma, exhibited a mean capping of only 7%, significantly less than that of the control animals (p less than 0.005). These findings suggest that a membrane-related lymphocyte deficiency accompanies the development of virus-induced lymphoma in the cat.

Animals↗

Endocytosis and shedding of the decay accelerating factor on human polymorphonuclear cells.

The decay-accelerating factor (DAF) is a cell membrane glycoprotein that functions in the control of C activation. We studied the modulation of membrane DAF on polymorphonuclear cells (PMN) by using anti-DAF antibodies. Fluorescence-activated cell sorter analysis showed that DAF expression was reduced by 43 +/- 7% on resting or stimulated cells that were held at 37 degrees C for 30 min when compared with those kept on ice. Most of this reduction occurred within the first 15 min, and was followed by a gradual further decrease in surface DAF. PMN that were held at 37 degrees C for varying periods of time before DAF measurement had a gradual decrease suggestive of release of DAF from the PMN membrane or endocytosis. To examine the latter, PMN were reacted with anti-DAF at 0 degree C, followed by 125I-Fab'2 secondary antibodies at either 0 degree C or 37 degrees C, and subsequently treated with pronase. Thirty +/- 11% of the 125I remained bound to cells kept at 37 degrees C compared to 2% in those held at 0 degrees C. Internalization was further confirmed by electron microscopy. In PMN that were not exposed to pronase, 26 +/- 2% of the surface-associated 125I was released at 37 degrees C compared with 7% at 0 degrees C. Immunoprecipitation and SDS-PAGE of surface-labeled PMN showed that the temperature-dependent released DAF had a lower m.w. than membrane DAF. Immunofluorescent studies revealed that 37 degrees C mediated the redistribution of DAF from a homogeneous pattern into caps. These results show that under the conditions studied DAF is partially internalized and partially released from the PMN membrane to the fluid phase; the latter may contribute to the presence of DAF in body fluids.

Antibodies, Monoclonal↗

Ligand-induced association of surface immunoglobulin with the detergent-insoluble cytoskeletal matrix of the B lymphocyte.

Ligand binding is believed to induce surface immunoglobulin (Ig) to form a physical association with the underlying cell cytoskeleton. We investigated this interaction by use of nonionic detergents, which are known to dissolve membrane proteins but preserve a detergent-insoluble cytoskeletal residue. In the absence of ligand treatment, surface Ig in the B cell plasma membrane was fully dissolved by nonionic detergent; however, interaction with a ligand converted the receptor to a novel, detergent-insoluble state. The conversion of surface Ig to a detergent-insoluble form required receptor cross-linking but occurred independently of capping. Several types of experiments demonstrated that this form of Ig was not due to the size insolubility of immune complexes and involved a stable, noncovalent association of the receptor with the detergent-insoluble, cytoskeletal residue. Incubation of ligand-bound cells at 37 degrees C promoted the degradation of surface Ig and the appearance of new, lower m.w. species, including a major soluble protein (50,000 daltons) that was antigenically related to surface Ig. These events corresponded to receptor endocytosis by several criteria (time course, temperature sensitivity, and energy dependence). Taken together, these results were consistent with the ligand-induced transmembrane attachment of receptors to the underlying cytoskeletal matrix followed by receptor internalization and catabolism.

Animals↗

Cell surface modulation of CD26 by anti-1F7 monoclonal antibody. Analysis of surface expression and human T cell activation.

In this paper, we examined in detail the ability of anti-1F7 to modulate 1F7 (CD26) surface expression as well as analyzed the functional relationship between the surface expression of CD3, CD2, and CD26 and human T cell activation. We showed that anti-1F7-induced modulation is an energy-dependent process that occurs via capping and internalization of the Ag-antibody complex. Although the recovery rate for Ag reexpression of 1F7 following optimal modulation is relatively delayed, reexpression of 1F7 is greatly accelerated following phorbol ester treatment. Most importantly, we demonstrated that modulation of the CD26 Ag leads to an enhancement in the proliferative activity of modulated human T cells treated with anti-CD3 or anti-CD2, which is preceded by an enhancement in Ca2+ mobilization. CD26 modulation also led to an increase in anti-CD3- or anti-CD2-mediated T cell clone proliferation. Finally, whereas modulation of the CD26 Ag has an effect on CD3- or CD2-induced T cell activation, modulation of the CD3/TCR complex inhibits the proliferative response of T cells incubated with anti-CD3 plus anti-1F7 or anti-CD2 plus anti-1F7. However, modulation of the CD2 structure does not affect anti-CD3- plus anti-1F7-induced human T cell activation. The above results thus provide additional evidence that the CD26 Ag plays an integral role in the regulation of human T cell activation.

Antibodies, Monoclonal↗

Antibodies to ganglioside GM1 induce mitogenic stimulation and cap formation in rat thymocytes.

Antibodies towards the ganglioside GM1 [galactosyl-N-acetylgalactosaminyl-(N-acetylneuraminyl)-galactosyglucosyl ceramide] stimulated DNA synthesis in rat thymocytes. No mitogenic stimulation was observed with the monomeric Fab fragment of anti-GM1, suggesting that cross-linking of the gangliosides or associated components was required for activation by these antibodies. Incubation of thymocytes with anti-GM1 and fluorescein-labeled anti-rabbit IgG at 0 degree C resulted in uniform ring-like or patchy staining that developed into a pronounced cap upon elevation of temperature. The cap had a characteristic uropod form, enriched with intracellular organelles. Sodium azide and cytochalasin B completely inhibited cap formation, while colchicine was without effect. These results imply a possible direct or indirect association between surface gangliosides and submembraneous cytoskeletal assemblies that control modulation of these surface components and may transmit stimuli to the interior of the cell.

Animals↗

Participation of tyrosine kinase in capping, internalization, and antigen presentation through membrane immunoglobulin in BAL17 B lymphoma cells.

BAL17 cells pulsed with goat anti-IgM or anti-IgD as antigens stimulated a goat IgG specific T cell clone in terms of inositol phosphate production. The antigen-presenting capacity of BAL17 cells was inhibited by pretreatment with the tyrosine kinase inhibitors herbimycin A or genistein. Furthermore, ligand-induced capping and endocytosis of membrane immunoglobulin, monitored at the single cell level, was also blocked by herbimycin A. These results indicate that tyrosine phosphorylation plays an important role in receptor-mediated antigen presentation by B cells.

Antibiotics, Antineoplastic↗

Rapid capping in alpha-spectrin-deficient MEL cells from mice afflicted with hereditary hemolytic anemia.

A spectrin-based membrane skeleton is important for the stability and organization of the erythrocyte. To study the role of spectrin in cells that possess complex cytoskeletons, we have generated alpha-spectrin-deficient erythroleukemia cell lines from sph/sph mice. These cells contain beta-spectrin, but lack alpha-spectrin as determined by immunoblot and Northern blot analyses. The effects of alpha-spectrin deficiency are apparent in the cells' irregular shape and fragility in culture. Capping of membrane glycoproteins by fluorescent lectin or antibodies occurs more rapidly in sph/sph than in wild-type erythroleukemia cells, and the caps appear more concentrated. The data support the idea that spectrin plays an important role in organizing membrane structure and limiting the lateral mobility of integral membrane glycoproteins in cells other than mature erythrocytes.

Animals↗