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Binding of antibodies onto the thylakoid membrane. I. Maximal antibody binding and adsorption of antibodies to lipids.

The binding of antibodies onto the lamellar system of Antirrhinum majus was determined in dependence on the serum addition. The unspecific adsorption of serum proteins was taken into account or eliminated. The binding of antibodies as a function of the amount of serum added is seem from a saturation curve. From an antiserum obtained by hyperimmunization with stroma-freed chloroplasts, the chloroplasts bind maximally 1 gram antibodies per gram stroma-freed chloroplasts. From an antiserum to the proteins of the thylakoid membrane prepared in the same way an equal amount of antibodies is adsorbed. It is assumed that with this amount the surfaces of the lamellar system accessible to antibodies is completely covered by antibodies. For an antiserum to monogalactosyl diglyceride a maximal antibody binding of 0.16 g, for sulphoquinovosyl diglyceride 0.12 g and for phosphatidyl glycerol 0.13 of antibodies per gram stroma-freed chloroplasts are obtained. The significance of these results with respect to the molecular surface structure of the thylakoid membrane is discussed.

Agglutination

Allotypic suppression in rabbits: competition for target cell receptors between isologous and heterologous antibody and between native antibody and antibody fragments.

Neonatal injection with various foreign proteins (normal goat serum, human Cohn fraction II, human albumin) caused a stimulation of immunoglobulin synthesis. This effect was not antigen-specific and did not constitute a conventional antibody response directed against the injected substance. When this stimulatory effect of foreign protein was minimized, the heterologous (goat) anti-rabbit allotype antibody and rabbit antibody F(ab') 2 fragments not only failed to induce suppression but also competed with the suppression-inducing native rabbit antibody. Allotypic suppression in a rabbit can thus only be induced by an antibody molecule possessing an intact Fc portion of isologous, rabbit origin. Antibody to Ae14, an allotypic specificity located on the Fc portion, failed to induce suppression or stimulation of immunoglobulin synthesis. This was attributed to the position of Ae14 in the cell membrane which reduced its accessibility to antibody.

Albumins

Regulation of antibody response in different immunoglobulin classes. II. Induction of in vitro IgE antibody response in murine spleen cells and demonstration of a possible involvement of distinct T-helper cells in IgE and IgG antibody responses.

In vitro induction of anti-DNP IgE as well as IgG1, IgG2a antibody responses was shown in murine spleen cell culture. Spleen cells primed three times with 1 mug of DNP-OA or DNP-Asc produced significant amounts of anti-DNP IgE as well as IgG antibodies by the in vitro stimulation with DNP-OA or DNP-Asc, respectively. Collaboration between DNP-primed B cells and carrier-primed T cells was required for the induction of both IgE and IgG antibodies with DNP-coupled T-dependent antigen. Carrier-specific T cells induced with a low dose of Asc (0.01 mug) showed helper function only on IgE antibody response, whereas T cells primed with a higher dose of Asc (10 mug) cooperated only with IgG-B cells. T cells primed with Asc in CFA showed helper function mainly on IgG antibody response but not on IgE antibody response. The result indicated the presence of a distinct population of T helper cells for IgE and IgG antibody responses. T-independent antigen (DNP-Ficoll) induced both anti-DNP IgE and IgG antibody responses in DNP-primed spleen cell population without the requirement of the collaboration of helper T cells.

Animals

Identification of paramyxovirus-specific haemolysis-inhibiting antibodies separate from haemagglutinating-inhibiting and neuraminidase-inhibiting antibodies. 1. Sendai virus haemolysis-inhibiting antibodies.

Egg-grown Sendai virus was used for preparation of rabbit hyperimmune sera directed against purified whole virus and pronasetreated projectionless virus particles. These sera and convalescent sera after natural Sendai infection in guinea pigs were studied in haemolysis-inhibition (HLI), haemagglutination-inhibition (HI) and neuraminidase-inhibition (NI) tests both before and after absorption with Tween 80-ether (TE) treated virus preparations. In addition, neutralization tests using the different sera were carried out. HI and NI antibodies and the major population of neutralizing antibodies in convalescent sera were removed by absorption with TE treated virus material without changing the titre of non-HI HLI antibodies. Rabbit hyperimmune sera directed against projectionless virus particles exhibited HLI antibody titres in marked excess of HI and NI antibody titres, whereas this was not found in sera against purified whole virus. In contrast, absorption of sera against projectionless particles eliminated HI antibodies without changing the titre of non-HI HLI antibodies. The protein composition of antigenic preparations used in absorption experiments and for preparation of sera was investigated by SDS-polyacryladmie-gel electrophoresis. TH treatment had no significant effect on the polypeptide pattern of Sendai virus. Pronase-treatment predominantly affected the two glycosylated proteins of Sendai virus. The larger glycoprotein was not detectable in pronasetreated projectionless virus particles, whereas the smaller glycoprotein was present in reduced quantities.

Animals

Comparison of antibody-dependent cellular cytotoxicity and complement-dependent antibody lysis of herpes simplex virus-infected cells as methods of detecting antiviral antibodies in human sera.

An antibody-dependent cellular cytotoxicity (ADCC) assay was used to detect antibodies to the herpes simplex viruses in humans sera. The assay utilized the release of 51Cr from BHK-21 cells infected with the viruses, hamster peritoneal exudate cells as effector cells, and antiviral antibodies in human sera. The technique was found to be far more sensitive than complement-dependent antibody lysis of infected cells and virus neutralization. The ADCC assay was useful in detecting antibodies in sera that had low titers or no antibodies detectable by other methods. In a sample of 100 sera from university students, 40 were positive by complement-dependent lysis whereas 73 were positive by ADCC. Of 400 sera from women with cervical cancer, 17 did not have detectable antibodies by microneutralization or complement-dependent lysis; however, all sera were positive by ADCC, suggesting that all of the women had been infected in the past with one or both types of herpes simplex virus.

Antibodies, Viral

Modulation of the immune response by passive antibodies. I. Anti-hapten antibodies enhanced delayed hypersensitivity to the carrier and depressed antibody synthesis to the hapten.

The modulating effects of passive antibodies on both delayed hypersensitivity to the carrier and antibody synthesis to carrier and hapten determinants were studied in guinea pigs. Animals were injected with antibodies directed against either the carrier or the hapten prior to immunization with the hapten-carrier conjugate in Freund's complete adjuvant. Anti-hapten antibodies have been shown to have an enhancing effect on delayed hypersensitivity to the carrier and a suppressive effect on antibody synthesis to the hapten. In this experiment, anti-carrier anti-bodies seemed to have had no effect on delayed hypersensitivity to the carrier and on antibody synthesis to the hapten.

Animals

Complement activation by measles virus cytotoxic antibodies: alternative pathway C activation by hemagglutination-inhibition antibodies but classical activation by hemolysin antibodies.

Antibodies against measles virus hemagglutinating (HA particles and hemolysin were shown to activate C differently. HA antibodies of rabbit or human origin activated C via the alternative pathway in cytotoxicity against chronically measles-infected cells. This cytotoxicity was expressed in C-4 deficient guinea-pig C or in rabbit C in the presence of 3 mM EGTA (ethylene-glycol-tetraacetic-acid) but not in 3 mM EDTA (ethylene-diamine-tetraacetic-acid). In contrast, human hemolysin antibodies activated C only via the classical way. F (ab')2 fragments from rabbit or human anti-HA IgG antibodies were as efficient in C activation via the alternative pathways as intact IgG antibodies with a corresponding hemagglutination-inhibition titer.

Animals

Antibody class and complement requirement of neutralizing antibodies in the primary and secondary antibody response of cattle to infectious bovine rhinotracheitis virus vaccine.

Calves responded to a single intramuscular injection of an attenuated strain of infectious bovine rhinotracheitis virus by producing IgM followed by IgG antibody. Both IgM and IgG antibody produced during the first month were primarily complement-requiring neutralizing antibody (CRNAb), especially IgM antibody. After a month, IgG had replaced IgM as the predominant immunoglobulin, and titers with and without complement (C') decreased in both IgG and IgM fractions. The largest decrease was in the IgM CRNAb fraction. Seven days after a second injection given on day 196, calves responded with an anamnestic IgG response in which CRNAb titers were 1 or 2 two-fold dilutions higher than non-CRNAb titers. One calf developed an IgM response similar to its primary response, whereas inhibition of the IgM response occurred in the other 3 calves which had much lower IgM antibody titers than those attained in the primary response. Twenty-eight days after the second injection the titers of IgG were the same or only a 2-fold dilution less than their 7-day secondary titers, whereas IgM titers generally decreased considerably more than this. Guinea pig and rabbit sera were equally effective as C' sources in potentiating CRNAb, whereas bovine serum was a poor C' source.

Animals

Local antibody response in chickens: analysis of antibody synthesis to Newcastle disease virus by solid-phase radioimmunoassay and immunofluorescence with class-specific antibody for chicken immunoglobulins.

The antibody response to Newcastle disease virus was monitored in the sera and salivas of adult chickens immunized by two methods: (i) combined intratracheal-intranasal vaccination followed by intratracheal revaccination or (ii) intramuscular vaccination followed by intratracheal revaccination. By solid-phase radioimmunoassay, only immunoglobulin G (IgG) and IgA antibodies to Newcastle disease virus were detected in the salivas, whereas IgA and IgM antibodies were present in egg whites. The first method produced the highest antibody levels in both serum and saliva and, in addition, prevented detectable virus multiplication in the respiratory tracts upon revaccination 4 weeks later. Plasma cells of all three classes were distributed throughout the tissues lining the oral cavities. The highest densities of plasma cells were in the Harderian glands; IgG was the predominant class, whereas IgA and IgM plasma cells were present in almost equal but lower numbers. The Harderian plasma cells were the most likely source of the antibody found in saliva.

Animals

An immunoprecipitation-dissociation technique for large scale antibody purification and an antigen consumption electroimmunoassay for antibody quantitation. A model study with antibodies to pregnancy zone protein.

A simple immunoprecipitation--dissociation technique for large scale purification of antibodies is described, which comprises selective denaturation of the antigen and recovery of the antibody fraction by exclusion chromatography at low pH. Its use is illustrated by the purification of antibodies to pregnancy zone protein. A purification factor of about 60 was achieved. An antigen consumption electroimmunoassay was also developed which permits quantitative determination of the antigen binding activity of antibodies with a given specificity. The methods have general application.

Antibodies

Fluorescent probes for antibody active sites. I. Production of antibodies specific to the N-methyl-2-anilinonaphthalene-6-sulfonyl group in rabbits and some fluorescent properties of the hapten bound to the antibodies.

1. Rabbits were immunized with N-methyl-2-anilinonaphthalene-6-sulfonyl (MANS) bovine serum albumin (MANS-BSA) prepared by the reaction of bovine serum albumin with N-methyl-2-anilinonaphthalene-6-sulfonyl chloride to obtain IgG fraction containing anti-MANS antibodies. 2. Both N-methyl-2-anilinonaphthalene-6-sulfonate (MANSate) and N-methyl-2-anilinonaphthalene-6-sulfonamide (MANSamide), which are virtually non-fluorescent in aqueous solution, became strongly fluorescent, with a blue shift of about 100 nm, when they were specifically bound to the antibodies against the hapten group contained in the IgG fractions. 3. IgG fractions were obtained from five immunized rabbits at intervals after the primary immunization. The fluorescence characteristics of the hepten were carefully examined with preparations of IgG fraction differing in source and time of bleeding. One of the rabbits showed a very interesting immune response. The rabbit produced two groups of anti-MANS antibodies which were significantly different in their effect on the fluorescence properties of the hapten group. One of the groups was exclusively produced at the early stage in the immune response. The other group appeared at the late stage. It is suggested that the two groups differ as regards the structure of the hepten combining sites. 4. The above findings indicate that the MANS group can be successfully used as a hapten with useful properties as a fluorescent probe.

Anilino Naphthalenesulfonates

Antigen modulation of antibody forming cells: the relationship between direct plaque size, antibody secretion rate and antibody affinity.

Using the mathematical theory of direct plaque growth, we have analyzed the expected variation of plaque size with IgM affinity and secretion rate. We use the theory to comment on recent effector cell blockage experiments and show how the theory can be used to determine the change in the secretion rate of a single antibody-forming cell subjected to blockage by a multivalent antigen. We also argue, using the mathematical theory, that under the usual experimental conditions employed in the plaque assay, cells that produce low affinity IgM antibodies will give rise to smaller plaques than cells that produce high affinity IgM antibodies.

Antibody Formation

Studies of idiotypic antibodies: reactions of isologous and autologous anti-idiotypic antibodies with the same antibody preparations.

Outbred rabbits were immunized with keyhole limpet hemocyanin diazotized to p-aminophenyl-N-trimethylammonium chloride (TMA). Anti-TMA antibodies were specifically purified and the F(ab')2 fragments were isolated after pepsin digestion. Glutaraldehyde-polymerized anti-TMA F(ab')2 fragments were reinjected back into the same animal that synthesized the antibodies to elicit an autologous anti-idiotypic (AAI) antiserum and were also injected into an allotypically matched recipient to elicit isologous anti-idiotypic (IAI) antiserum. AAI and IAI antisera reactive with the same F(ab')2 preparation were compared by assaying the populations of anti-TMA molecules reactive with each antiserum. The assays showed that the AAI antiserum reacted with smaller populations of molecules than did the IAI antiserum. The population of molecules recognized by the AAI antiserum was contained within the larger population recognized by the IAI antiserum. Hapten inhibition studies showed that the differences in the populations of molecules recognized by each antiserum were not related to the hapten-binding properties of the idiotypic antibodies: in one case both AAI and IAI reactions were equally inhibited by hapten; in another, the AAI reaction was inhibited more than was the IAI; in another, the IAI reaction was inhibited more.

Animals

Separation of cell-dependent antibody (CDA) and inhibitory antibody by protein-A affinity chromatography and the effect of fractions on antibody-dependent cellular cytotoxicity (ADCC).

The nature of cell-dependent antibody (CDA) and the mechanism of inhibition of antibody-dependent cellular cytotoxicity (ADCC) were studied in the ADCC assay system in which culture cells of methylcholanthrene-induced rat fibrosarcoma (KMT-50) were used as target cells, xenogeneic antiserum (rabbit anti-KMT-50) as the CDA, and human peripheral blood leucocytes (PBL) as effector cells, respectively. By using protein-A Sepharose CL-4B affinity column chromatography of rabbit anti-KMT-50 serum, CDA was shown to bind protein A. Complement dependent-cytotoxicity (CDC), however, was demonstrated in both the adsorbed fraction (eluate) and the non-adsorbed fraction (effluent) to protein A from the same affinity column chromatography. These data confirmed that CDA was IgG with an intact Fc portion. Inhibition of ADCC occurred by pretreatment of effector cells with rabbit anti-effector (human PBL) serum even with extremely small amounts of antiserum. Such inhibition was demonstrated with the eluate but not with the effluent from protein-A Sepharose CL-4B affinity column chromatography of rabbit anti-effector serum. F(ab')2 fragments of the same eluate (IgG) did not inhibit the ADCC activity. These data showed that the inhibition of ADCC was induced by the blocking of Fc receptors of effector cells with the Fc portions of IgG in anti-effector serum. The data obtained indicate the usefulness of protein A in separation and analysis of CDA and in investigation of the inhibitory mechanisms of ADCC.

Animals

Antibody suppression and antiallotype antibodies. II. Interference of circulating antiallotype antibodies with prophylactic treatment against Rh sensitization.

Sera from Rh-sensitized women representing presumable failure of the prophylactic treatment with IgG anti-D (Rh) have been examined for activity against allotype markers on IgG1. Antiallotype antibodies were found with increased frequency compared with a nonsensitized control. In general, however, interference of antiallotype antibodies is not considered to be a great risk of Rh prophylaxis at present. Some requirements which, in this context, may be of importance to the composition and dose of the IgG anti-D-containing preparations used are stressed.

Agglutination Tests

Identification of measles virus-specific hemolysis-inihibiting antibodies separate from hemagglutination-inhibiting antibodies.

The occurrence of antibodies giving hemolysis inhibition (HLI) but not hemagglutination inhibition (HI) was examined in human convalescent and rabbit hyperimmune sera. HI antibodies, which through their interaction with hemagglutinin components display HLI activity, were removed by absorption with Tween 80-ether (TE)-treated measles virus material. This absorption did not change the titer of non-HI HLI antibodies. After removal of HI antibodies from 16 late measles convalescent sera and three batches of gamma globulin. HLI antibody titers showed a two- to eightfold reduction. The titers of neutralizing antibodies were reduced from 1/4 to 1/20 of the original titers. There was a good correlation between the titers of neutralizing and HLI antibodies both in sera from which HI antibodies had been removed by absorption and in sera spontaneously showing markedly higher HLI than HI antibody titers. HLI antibodies with these characteristics could be identified in HI tests when whole virus instead of TE-treated material was used an antigen and anti-antiserum was added to the tests. In contrast to the situation in human sera, antibodies remaining after removal of HI antibodies from rabbit hyperimmune sera against purified virus particles were detectable in neutralization and HLI tests only in the presence of anti-antiserum. However, virus particles from which the major fraction of all envelope projections had been removed by treatment with 0.004% trypsin induced the production of non-HI HLI antibodies active also in the absence of anti-antiserum. TE and formalin treatment destroyed the hemolytic activity of virus preparations and also their capacity to induce a production of non-HI HLI antibodies.

Absorption