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Biomedical subjects

P Perlmann

Publications and source records attributed to P Perlmann.

At least 127 records · Page 7Linked to original sources

Studies on the role of lymphocyte function-associated antigen 1 (LFA-1) in T cell activation.

The effect of polyclonal (anti alpha and beta chain) and monoclonal (anti alpha-chain) antibodies against lymphocyte function-associated antigen 1 (LFA-1) on T cell activation was studied. When added at the beginning of activation but not after 24 h or later the antibodies as well as the F(ab')2 or Fab fragments of polyclonal antibodies inhibited concanavalin A (Con A)-induced proliferation, interleukin 2 (IL-2) production, and the expression of receptors for IL-2 and transferrin. The inhibitory effect reached a maximum at the same time as optimal proliferation (72 h). Inhibition of proliferation lasted for 5 days or longer, although IL-2 production was only inhibited during the first 48 h of culture. Receptors for IL-2 and transferrin were re-expressed to the original level after 3 days of activation. Addition of external IL-2 at the beginning of the anti-LFA-1 containing culture prevented the inhibition of IL-2 receptor expression, while inhibition of transferrin receptor expression was unaffected, supporting the conclusion that the expression of these two receptors is regulated by partially independent signals. The polyclonal and monoclonal anti-LFA-1 antibodies also inhibited phorbol ester (PMA)-dependent OKT3 activation of highly purified T cells. The results suggest that the LFA-1 antibodies block an early step in the reactions necessary for IL-2 production, and that the LFA-1 molecule participates not only in T cell-accessory cell interaction but also in T-T interaction during the early phases of the activation process.

Antibodies, Monoclonal↗

Enhancement of human spontaneous cell-mediated cytotoxicity by a monoclonal antibody against the large sialoglycoprotein (CD 43) on peripheral blood lymphocytes.

A murine monoclonal antibody, MoAb B1B6 (IgG1 chi), which recognizes the large sialoglycoprotein (LSGP) on human peripheral blood lymphocytes (PBL) effectively enhanced the spontaneous cytotoxicity of these cells against the natural killer (NK)-sensitive target cells K562 and Molt-4. Whereas preincubation of the lymphocytes with MoAb B1B6 resulted in increased cytotoxicity, preincubation of the target cells had no effect, indicating that the MoAb amplified cytotoxicity at the effector cell level. Kinetic analysis of the data revealed no differences between the control and the MoAb-treated lymphocytes with regard to Vmax, usually considered to reflect the overall lytic potential of the cells. The slopes of the saturation curves, however, differed significantly for the two cell populations, indicating a substantial increment in the activity of the MoAb-treated cells. When studied at the single cell level and with K562 as targets, treatment of PBL with the MoAb resulted in the recruitment of new effector lymphocytes from the pool of non-binding cells. In contrast, when Molt-4 cells were employed as targets, no additional effector cells were recruited. These results indicate that the enhanced cytotoxicity induced by MoAb B1B6 is the result of either recruitment of new effector lymphocytes or of an increased recycling capacity of preexisting effector cells. Together with previous observations, these findings support the conclusion that LSGP belongs to the set of surface molecules which regulate human lymphocyte activation.

Antibodies, Monoclonal↗

Plasmodium chabaudi antigen Pch105, Plasmodium falciparum antigen Pf155, and erythrocyte band 3 share cross-reactive epitopes.

By immunoblotting with a number of monoclonal antibodies raised in human and murine malaria systems, we have been able to establish the presence of cross-reactive epitopes on the Plasmodium falciparum vaccine candidate antigen Pf155/RESA and its proposed Plasmodium chabaudi analog Pch105. These findings were confirmed when the same antibodies were tested in an immunofluorescence assay. By using short synthetic peptides corresponding to repeated sequences in the C terminus of the Pf155 and enzyme-linked immunosorbent assays, the cross-reacting epitope was found to be localized to this repeat segment. Furthermore, a monoclonal antibody to murine erythrocyte band 3 which also cross-reacted with human band 3 bound to both Pch105 and Pf155 as well as to the synthetic peptides, suggesting that these proteins share a related epitope. The cross-reactions reflect the existence of sequence homologies of band 3 with these plasmodial proteins. This molecular similarity may be used by the parasite to disturb the rigidity of the erythrocyte membrane, thereby facilitating its entrance into the cell.

Animals↗

A rapid method for detection of cellular proliferation using carboxyfluorescein. Assay of growth factors (IL-2, IL-1) and growth inhibiting antibodies.

The uptake of carboxyfluorescein diacetate (CFDA) into live cells was used as the basis for a simple, rapid and fully automated micromethod for determination of cell growth. The aim of the investigation was to adapt the CFDA method for detection of cell growth factors from cell culture supernatants. Thus, the biological activities of the growth factors IL-2 or IL-1 could be detected and quantitated at the same level of sensitivity as with the conventional [3H]thymidine incorporation. Similarly, the method was well suited to assay inhibition of IL-2-dependent lymphocyte growth by the monoclonal antibody anti-Tac, binding to the human lymphocyte membrane receptor for IL-2. The CFDA method proved to be rapid, reliable and well suited for several applications involving limiting numbers of cells and biological reagents.

Antibodies, Monoclonal↗

Synthetic gene construct expressing a repeated and highly immunogenic epitope of the Plasmodium falciparum antigen Pf155.

The Plasmodium falciparum-derived antigen Pf155 contains two blocks of tandemly repeated amino acid sequences. A pair of complementary oligonucleotides, encoding the C-terminally located repeat Val-Glu-His-Asp-Ala-Glu-Glu-Asn, were synthesized. The oligonucleotides were polymerized by ligation, and the resulting multimers were cloned into an expression vector. One construct that contained four copies of the repeat was expressed in Escherichia coli. The product, a fusion protein, was soluble and produced in high amounts. It reacted in immunoblotting with a monoclonal antibody to a synthetic octapeptide (Glu-Glu-Asn-Val-Glu-His-Asp-Ala). Rabbits immunized with partially purified fusion protein, either with or without adjuvant, formed antibodies against this octapeptide. These antibodies reacted with Pf155 both in parasite extracts and when deposited in the membrane of infected erythrocytes. Furthermore, these antibodies inhibited merozoite reinvasion in vitro as efficiently as human antibodies to the octapeptide sequence in Pf155, induced by natural infection. The results suggest that products of synthetic gene constructs may be a suitable basis for an anti-merozoite vaccine.

Amino Acid Sequence↗

T lymphocytes displaying major histocompatibility complex-unrestricted cytotoxicity after activation by K46M, a mitogenic monoclonal antibody against leucoagglutinin-reactive human T lymphocyte surface components.

Activation of human peripheral blood lymphocytes (PBL) with the mitogenic monoclonal antibody (MoAb) K46M, which recognizes 1-5% of PBL, resulted in the expansion of cells with cytolytic activity. Thus, after culture of the activated lymphocytes in medium containing interleukin 2 (IL-2), they lysed a variety of cultured cell lines. The majority of the activated lymphocytes reacted with MoAb to CD8, CD3, and to the T cell antigen receptor heterodimer (Ti) but not with antibodies to antigens expressed on natural killer (NK) cells. The cytotoxicity was not inhibited by MoAb to CD3 or Ti. However, the killing of K562, but not of other cell lines, was enhanced by three to four times in the presence of anti-Ti antibodies. Anti-CD3 or other control antibodies had no effect. Cold target inhibition experiments indicated that the cytolytic lymphocytes recognized closely related structures on the target cells. Phenotypically and functionally similar effector cells emerged after activation of PBL with the anti-CD3 MoAb OKT3. Taken together, the results indicate that activation of PBL with MoAb K46M induces cytotoxic cells that differ from classical NK cells but that resemble mature cytotoxic T lymphocytes (CTL). However, unlike CTL, cytotoxicity was not MHC-restricted and the conventional T-cell receptor complex (CD3/Ti) appeared not to be involved in target cell recognition and cytolysis.

Agglutinins↗

Functional characterization of human B cells carrying the lymphocyte large sialoglycoprotein gp150.

Human B cell-enriched populations were prepared from buffy coats of healthy donors. By means of affinity chromatography, the B cells were separated into two fractions, one enriched in and the other depleted of cells expressing gp150, the large sialoglycoprotein of lymphocytes. In the presence of autologous T cells, monocytes and pokeweed mitogen B cell populations enriched for gp150+ cells gave rise to significantly more plasma cells (cIg+ cells) and secreted significantly more IgG than gp150-depleted populations. In contrast, more or an equal amount of IgM was secreted in cultures containing gp150-depleted cells. The differences between the fractions could not be ascribed to uneven distribution of T3+ cells, OKM1+ cells or B1+ (CD20) cells. However, the gp150-enriched population contained significantly more B2+ (CD21) cells than the gp150-depleted population. These results suggest that the gp150+ B cells differ from gp150- B cells, not only in their responsiveness to T cell differentiation signals but also in their commitment to Ig heavy chain isotype secretion.

Antigens, Surface↗

Antibodies to Pf155, a major antigen of Plasmodium falciparum: longitudinal studies in humans.

Antibodies to Pf155, a major Plasmodium falciparum antigen detected in the membrane of glutaraldehyde-fixed and air-dried erythrocytes infected with P. falciparum, were studied in serum samples collected from patients treated for neurosyphilis by induced P. falciparum infection. In 3 patients with no previous documented exposure to malaria, the antibodies were detected late and reached low titers. In 5 patients with extensive previous malaria infections, the antibodies appeared rapidly and reached high titers. The immunofluorescence findings were confirmed by immunoblots. No correlation was observed between antibodies to Pf155 and antibodies detected by standard immunofluorescence with whole parasite antigen.

Adult↗

Regulation of the immune response in Plasmodium falciparum malaria: IV. T cell dependent production of immunoglobulin and anti-P. falciparum antibodies in vitro.

T cells from patients with acute Plasmodium falciparum malaria were investigated for induction of immunoglobulin- or anti-malaria antibody secretion in vitro. Stimulation of autologous T/B cell mixtures (2T:1B) with low concentrations of P. falciparum antigen and cultured for 12 days gave rise to a T-dependent IgG secretion which was significantly elevated over that in medium controls. This was achieved with both a crude P. falciparum antigen and a partially purified preparation enriched in Pf 155, a merozoite-derived antigen deposited in the red cell membrane at invasion (Perlmann et al., 1984). Control antigen (RBC ghosts) induced IgG secretion only when added at high concentrations (greater than 10 micrograms/ml). Neither of the antigens induced IgG secretion at concentrations of less than or equal to 10 micrograms/ml in control cultures of lymphocytes from patients with P. vivax malaria. Supernatants from cultures of P. falciparum patients frequently contained anti-P. falciparum antibodies when nanogram quantities (10-100 ng/ml) of either one of the two malaria antigen preparations was used for stimulation. No anti-P. falciparum antibodies were induced by the control antigen at any concentration. The induced anti-P. falciparum antibodies were directed to intracellular parasites and. at lower frequencies, to Pf 155 as detected on the surface of infected erythrocytes. The induction in vitro of anti-P. falciparum antibodies appeared to be correlated with the presence of such antibodies in the sera of the lymphocyte donors. The lymphocytes of only one out of eight P. vivax patients responded to antigen stimulation by secreting anti-P. falciparum antibodies. However, this donor (but not any of the others), was also P. falciparum seropositive. Taken together, these results indicate that the induction of anti-P. falciparum antibody secretion reflects a secondary response in vitro of cells primed in vivo. The present experimental system should be well suited to map parasite antigen for their capacity to induce T cell dependent responses in P. falciparum malaria.

Acute Disease↗

Isolation and characterization of two bladder carcinoma-associated antigens.

By the use of mouse monoclonal antibodies we have earlier defined five distinct antigens associated with transitional cell carcinoma of the human urinary bladder (TCC). Two of these antigens have now been purified and partially characterized. For their purification from isolated tumor cell membranes, a rapid and efficient method of affinity chromatography was developed in which the coupling of monoclonal antibodies to protein A-Sepharose was fortified by treatment with glutaraldehyde. From these columns, 60-80% of the antigenic activity present in membrane lysates could be recovered by acid elution, corresponding to approximately 0.25-0.5 micrograms antigen protein per mg membrane protein added. The two isolated antigens are relatively hydrophobic membrane components not found in normal bladder tissue. The antigen defined by the monoclonal antibody S2C6 is confined to bladder carcinoma and B cells. It is a glycosylated, ConA-binding polypeptide with Mr 50 000 as established by SDS-PAGE. It is acidic with an IP of 3.2, heat stable up to 85 degrees C, stable at low pH (2.0) but sensitive to SDS. The antigen defined by the monoclonal antibody 7E9 is confined to bladder carcinoma but is also weakly expressed in some blood vessel endothelium. It consists of two main polypeptides of Mr 29,000 and 23,000 which do not bind to ConA. It has an IP of 7.4 and its antigenic activity is abolished by heating to 50 degrees C for 5 min. As the S2C6 antigen, it is stable at low pH but susceptible to SDS.

Antibodies, Monoclonal↗

Human monoclonal antibodies to Pf 155, a major antigen of malaria parasite Plasmodium falciparum.

Pf 155, a protein of the human malaria parasite Plasmodium falciparum, is strongly immunogenic in humans and is believed to be a prime candidate for the preparation of a vaccine. Human monoclonal antibodies to Pf 155 were obtained by cloning B cells that had been prepared from an immune donor and transformed with Epstein-Barr virus. When examined by indirect immunofluorescence, these antibodies stained the surface of infected erythrocytes, free merozoites, segmented schizonts, and gametocytes. They bound to a major polypeptide with a relative molecular weight of 155K and to two minor ones (135K and 120K), all having high affinity for human glycophorin. The antibodies strongly inhibited merozoite reinvasion in vitro, suggesting that they might be appropriate reagents for therapeutic administration in vivo.

Animals↗

Monoclonal antibodies against leucoagglutinin-reactive human T lymphocyte surface components. Two antibodies which inhibit cell-mediated cytotoxicity at a post-binding stage.

Two out of 20 monoclonal antibodies (IgM, kappa), mAb 3192 and mAb K3G, raised against leucoagglutinin-reactive components on human T cells, effectively blocked lymphocyte-mediated cytotoxicity in vitro. No antigenic polypeptide reactive with these antibodies has been identified thus far. However, they have previously been shown to react specifically with certain neutral glycolipids obtained from spleen. Both mAb inhibited the cytotoxicity of natural killer (NK) cells against K562 cells, antibody-dependent cellular cytotoxicity (ADCC) towards antibody-coated bovine erythrocytes and cytotoxic T lymphocyte activity against allogeneic target cells. In both NK and ADCC, preincubation of the lymphocytes with different antibody concentrations resulted in a dose-dependent reduction of cytotoxicity. In contrast, preincubation of the target cells had no effect indicating that the mAb inhibited cytotoxicity at the effector cell level. When studied at the single-cell level, the mAb did not alter the number of lymphocytes forming conjugates with K562 but significantly reduced the frequency of conjugates containing dead target cells. Addition of the mAb to preformed conjugates resulted in a dose-dependent reduction in the proportion of conjugates containing dead target cells. Furthermore, mAb 3192 did not reduce the number of lymphocytes forming rosettes with bovine erythrocytes, indicating that inhibition of ADCC was not due to blocking of the effector cell-target cell interaction mediated by the Fc receptor of the effector cells. Taken together, these results suggest that the mAb inhibited cytotoxicity by interfering with a post-binding step common for the different cytotoxicity systems.

Antibodies, Monoclonal↗

Identification of a Plasmodium chabaudi antigen present in the membrane of ring stage infected erythrocytes.

A novel antigen of asexual blood stages of the rodent malaria parasite Plasmodium chabaudi, was detected by means of a modified indirect immunofluorescence assay (IFA), using glutaraldehyde fixed and air dried monolayers of P. chabaudi infected erythrocytes. P. chabaudi hyperimmune sera gave a distinct surface immunofluorescence of erythrocytes infected with early stages of the parasite. Fixation and drying of the erythrocytes was necessary for the antigenic activity to be exposed. The antigens were species specific as P. chabaudi hyperimmune serum only stained P. chabaudi but not P. yoelii or P. falciparum infected erythrocytes. The antigenic activity involved in the IFA was resistant to trypsin, phospholipases and neuraminidase but not to pronase, suggesting that the antigens were polypeptides. The surface immunofluorescence was inhibited by an extract of parasitized erythrocytes, but not by similar extracts of normal erythrocytes. The inhibitory antigens were soluble and heat stable (100 degrees C, 5 min). For identification and characterization of the antigens, antibodies were isolated by acid elution from monolayers of infected erythrocytes and monoclonal antibodies were produced. Probing in immunoblotting of extracts of parasitized erythrocytes separated by sodium dodecyl sulfate polyacrylamide gel electrophoresis with the eluted antibodies, showed that they reacted consistently with a polypeptide of Mr 105 000 (Pch105). The Pch105 antigen shares many characteristics with Pf155, a P. falciparum antigen considered as a candidate for a vaccine against that parasite.

Animals↗

Purification of pituitary and biosynthetic human growth hormone using monoclonal antibody immunoadsorbent.

This report describes the purification of human growth hormone from crude pituitary extract and lysate of recombinant E. coli by an immunoadsorbent purification with monoclonal antibody coupled to solid phase. By a single-immunoaffinity chromatography step pure hGH can be obtained from either origin as revealed by SDS-PAGE followed by silver staining or immunoblotting. An additional ion-exchange chromatography step results in homogeneous 22 kDa hGH preparations. Furthermore, this method may be used for isolation of a pituitary hGH variant which has higher binding affinity for this monoclonal antibody than the major 22 kDa form. This study clearly illustrates the potential of monoclonal antibody immunoadsorbents for purification of different molecular forms of hGH.

Antibodies, Monoclonal↗

Rabbit and human antibodies to a repeated amino acid sequence of a Plasmodium falciparum antigen, Pf 155, react with the native protein and inhibit merozoite invasion.

The Plasmodium falciparum-derived antigen of Mr 155,000 designated Pf 155, deposited in the membrane of infected erythrocytes, contains at least two blocks of tandemly repeated amino acid sequences. The peptide Glu-Glu-Asn-Val-Glu-His-Asp-Ala, which corresponds to a subunit of a C-terminally located repeat, was synthesized. Rabbits immunized with the octapeptide conjugated with either keyhole limpet hemocyanine or tetanus toxoid formed antibodies against the octapeptide. These antibodies reacted with Pf 155 as detected by immunoblotting or a modified immunofluorescence assay. Sera from humans exposed to P. falciparum also contained antibodies binding to the octapeptide in a dot-blot immunoassay. Their anti-octapeptide titers were correlated with their immunofluorescence titers in the assay detecting Pf 155 and other parasite antigens in the membrane of infected erythrocytes. Human octapeptide-reactive antibodies were isolated on an affinity column with the octapeptide conjugated to bovine serum albumin as ligand. These human antibodies reacted with Pf 155 in immunoblotting and strongly stained the surface of infected erythrocytes in the modified immunofluorescence assay. Approximately 20% of this immunofluorescence activity in a high-titered human serum could be recovered from the octapeptide column, indicating that a significant fraction of these anti-parasite antibodies react with epitopes associated with the octapeptide. Furthermore, the human octapeptide-reactive antibodies very efficiently inhibited merozoite reinvasion into erythrocytes in vitro. Similarly purified rabbit antibodies also significantly inhibited reinvasion. Our results suggest that the C-terminal segment of repeated peptides in Pf 155 is a major antigenic region of the molecule and may contain target sites for protective immunity in P. falciparum malaria.

Amino Acid Sequence↗

A Plasmodium falciparum antigen containing clusters of asparagine residues.

A genomic DNA fragment that encodes a Plasmodium falciparum antigen has been isolated by using human antibodies eluted from the membrane of infected erythrocytes. The antigen has a very unusual primary structure; it is exceptionally rich in asparagine residues, many of which are distributed in clusters (2-15 residues) along the polypeptide chain. Unlike many P. falciparum antigens, this protein lacks tandemly repeated sequences. The antigen is distinct from Pf 155, a merozoite-derived antigen deposited in the membrane of infected erythrocytes, but contains epitopes that crossreact with anti-Pf 155 antibodies. Antisera prepared in mice against the asparagine-rich protein react with late-stage parasites in indirect immunofluorescence. In an in vitro merozoite reinvasion assay, the IgG fraction of a mouse polyclonal antiserum, as well as a mouse monoclonal antibody, gave significant inhibition. Three polypeptides (Mr 36,000, 30,000, and 15,000) were recognized by these antibodies on immunoblots of P. falciparum extracts.

Amino Acid Sequence↗