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Proteolytic release of antigenic fragments corresponding to normal fecal antigen and non-specific cross-reacting antigen from carcinoembryonic antigen.

Three immunogenic parts have so far been identified in the carcinoembryonic antigen (CEA) molecule. These are: determinants cross-reactint with the normal fecal antigen (NFA) (NFA determinant); determinants cross-reacting antigen (NCA) (NCA determinant); and determinants which appear to be more cancer-specific (cancer determinant). The chemical nature of these parts of the CEA molecule was investigated by digestion with proteolytic enzymes together with anti-CEA preparations with which these three immunogenic parts of CEA molecule could be identified. The CEA digest obtained with pepsin did not react in immunodiffusion and radioimmunoassay, indicating that pepsin completely destroyed all the antigenic parts. Digestion by pronase E destroyed only the cancer determinant and liberated two antigenic fragments corresponding to the NFA determinant and the NCA determinant, respectively. These results suggest that the cancer determinant may reside in a protein or a peptide part of the molecule. The chemical nature of the NFA and NCA determinant remains to be clarified.

Antigens

Immunogenic properties of modified antigen E. III. Effect of repeated injections of modified antigen on immunocompetent cells specific for native antigen.

It has been shown that ragweed antigen E loses its major antigenic determinants after denaturation in 8 M urea, but urea-denatured (UD) antigen and an alpha-polypeptide chain isolated from the denatured molecules are capable of priming mouse T cells specific for native antigen. Weekly injections of 10mug UD antigen or alpha-chain into antigen E-primed animals depressed the ongoing IgE antibody response, whereas injections of the same dose of antigen E failed to depress the antibody response. It was found by adoptive transfer experiments that helper activity of antigen E-primed splenic T cells was depressed by the treatment of the donors with either modified antigen or native antigen E. The same treatment of antigen E-primed animals depressed the DNA synthetic response of their splenic T cells to antigen E. The treatment of antigen E-primed animals with UD antigen resulted in a decrease of antigen E-specific IgE-B cells and IgG-B cells in their spleen, whereas the treatment with native antigen expanded the B cell populations. In view of the results obtained in the mouse, cellular basis for the immunologic effects of hyposensitization treatment is discussed.

Animals

Immunohistological localisation of two hydatid antigens (antigen 5 and antigen b) in the cyst wall, brood capsules and protoscoleces of Echinococcus granulosus (ovine and equine) and E. multilocularis using immunoperoxidase methods.

Cyst wall, brood capsules and evaginated protoscoleces of E. granulosus (ovine and equine) and E. multilocularis were fixed in 10% formol-saline, embedded in paraffin and cut at 8 micrometer. Specific rabbit antisera to antigen 5 and antigen B of hydatid cyst fluid were used with immunoperoxidase methods to localise the antigens in the histological sections. Antigen 5 was found in all parasites and was associated with cells of the subtegumental area of the protoscolex, the brood capsule wall and the germinal membrane. The labelled antigen appeared as distinct granules in all areas. It is suggested that antigen 5 may be synthesised in all of these sites and that a source of the antigen in cyst fluid may be the germinal and brood capsule membranes. The laminated membranes of E. granulosus (ovine and equine) were, except for the superficial layers, free from antigen 5. Antigen B was present in all parasites. It was distributed diffusely throughout the laminated membrane, germinal membrane and brood capsule wall. There were areas of densely labelled antigen B on the surface of the distal cytoplasm of the protoscolex tegument and the surface of calcareous corpuscles. The distribution of antigen B in relation to PAS positive material and possible complement activating substances is discussed. The laminated membrane of E. granulosus was apparently more permeable to antigen B than to antigen 5. It is suggested that differences in the diffusion of these antigens through the laminated membranes of hydatid cysts in the same or different host species may account for variable serological responses during infection.

Animals

Immunologic, virologic, and genetic aspects of mammary tumor virus-induced cell-surface antigens: presence of these antigens and the Thy 1.2 antigen on murine mammary gland and tumor cells.

The distribution of the normal differentiation antigen Thy 1 and the mammary tumor virus (MTV)-induced antigens or antigen complexes MLm and MLr were studied in mouse mammary gland cells, mammary tumor cells, and other cell types, by use of ascites leukemia cells of the GR mouse strain as target cells in the cytotoxicity test. The Thy 1.2 antigen was detected by an AKR antiserum to C3Hf thymocytes. MLm was shown by a homologous C57BL antiserum to GRSL2 leukemia (absorbed in vivo in GR mice); MLr was detected by a rabbit heterologous antiserum (absorbed in vivo in C57BL or GR mice and in vitro with BALB/c milk) prepared against Tween 80- and ether-treated purified B particles. Sera from Sprague-Dawley rats bearing murine leukemia virus (MuLV)-producing syngeneic tumors were not cytotoxic or only slightly cytotoxic for GR leukemias transplanted in vivo, which indicated that MuLV-induced antigens were absent or present in very low quantity in such leukemias. The MLr and MLn antigens or antigen complexes were possibly identical to the mammary leukemia (ML) antigen, since they could be detected not only on GR but also on DBA/2 leukemia cells and since their distribution was exactly the same as that of MTV. Both the MLr and MLm antigens were present in purified B particles, and antigenic activity were present in purified B particles, and antigenic activity was enhanced by destruction of the purified virus particles. The antigens were about eightfold enriched in a preparation of B-particle envelopes, as shown by quantitative cytotoxicity absorption (CYTA) tests. Purified nucleoid fractions of B particles were only lightly positive for the antigen, probably due to envelope contamination. One dominant gene was responsible for the expression of MLr, as shown by CYTA tests with mammary glands of individual animals of segregating crosses between the GR strain with high mammary cancer incidence and strains with low incidence. This gene was closely linked with or was possibly identical to 1) the gene for cytoplasmic MTV gs antigen expression as seen by fixed cell immunofluorescence, and 2) the gene causing mammary tumors in the GR mouse strain.

Animals

Friend erythroleukemia antigen. A viral antigen specified by spleen focus-forming virus and differentiation antigen controlled by the Fv-2 locus.

Serum from C57BL/6 (B6) mice hyperimmunized with NB-tropic Friend virus complex (FV) was cytotoxic for FV-induced erythroleukemic spleen cells and B6 Friend-murine leukemia virus (F-MuLV) lymphoma cells. Cytotoxic activity for erythroleukemia cells remained after repeated absorption of B6 anti-FV antiserum with Friend-Moloney-Rauscher MuLV lymphoma cells but was removed by absorption with erythroleukemia cells induced by FV or Rauscher Vrus. This serologic test system identified a previously unrecognized cell-surface antigen of mouse leukemia, designated Friend Erythroleukemia (FE) antigen to signify its appearance as a determinant of virally induced erythroleukemic differentiation. FE antigen was not detected on 15 transplanted or primary hematopoietic neoplasms, nor was it detected on cells infected with ecotropic, xenotropic, or dualtropic MuLV isolates in tissue culture. Two spleen focus-forming virus (SFFV) nonproducer cells of rats and one of mice express FE antigen in amounts comparable to primary erythroleukemia cells. Absorption tests with FE typing serum indicated that FE antigen was expressed on bone marrow and spleen but not thymus, lymph node, or peripheral blood of uninfected AKR, BALB/c, DBA, and SWR mice; all five tissues from B6 and C57L were negative. Quantitiative absorption tests indicated that the expression of FE antigen, though much lower than on erythroleukemic cells, was greatest on fetal liver, less on bone marrow, and lowest on spleen from BALB and SWR mice. Treatment of BALB/c or SWR fetal liver, bone marrow, spleen, thymus, or lymph node cells with FE typing serum did not result in significant lysis. These observations are consistent with the interpretation that FE antigen is expressed by a minor cell population present in fetal liver, bone marrow, and spleen. Expression of FE antigen, determined by absorption with bone marrow cells, cosegregated with inheritance of the Fv-2s allele in the 17 inbred, 7 recombinant inbred, and 4 congenic mouse strains tested. In summary, the FE antigenic system identifies a cell-surface determinant that has the properties of a SFFV-specified antigen and hematopoietic differentiation alloantigen controlled by the Fv-2 locus. The similarity of FE antigen to Abelson antigen may provide insight into the pathogenic properties of defective transforming MuLV.

Animals

Presence of the p27 antigenicity and absence of the gp52 antigenicity and leukemia virus antigens in intracytoplasmic A particles (iAp) of mouse mammary tumour origin.

Using the Ouchterlony immunodiffusion method and indirect immunofluorescence tests on tissue slices the antigenic structure of iAp of mouse mammary tumour origin has further been investigated. Antisera against iAp, MTV-B particles, B particle polypeptide p27 and glycoprotein gp52, and leukemia C-type particles were used in these studies. The most prominent antigen of iAp in mammary tumours was found to be identical to the p27 antigen of B particles. This finding was not unexpected in view of recently published data by other authors showing the presence of p27 in iAp of leukemia cells and Leydig cell tumours. The p27 polypeptide is considered to be a group-specific antigen of mouse mammary tumour viruses associated with iAp of different tissue sources and inner structural components of mature B particles. On the other hand, the gp52 antigen and leukemia virus antigens were shown to be absent from iAp of mammary carcinomas. Therefore, the assumption is confirmed that the gp52 glycoprotein represents a group-specific antigen of B type viruses, presumably located at the virion surface. The failure to demonstrate leukemia virus antigens in iAp supports the suggestion that this kind of particles is not related to C type viruses.

Animals

Antigenic studies of a VH fragment: demonstration of three sets of antigens, idiotypic, VH subgroup, and VH framework-specific antigens.

The antigenic properties of the VH region of immunoglobulin heavy chains were studied by means of a fragment corresponding to the variable part of the heavy chain of an IgG3 myeloma protein (KUP) and an antiserum made against this fragment. By hemagglutination, hemagglutination inhibition, and immunofluorescence techniques, it was shown that the anti-VH antiserum detected three sets of antigens in the VH region, namely idiotypic antigens, VH subgroup-specific antigens, and VH domain-(framework) specific antigens. The VH fragment inhibited in a VHII subgroup-specific hemagglutination inhibition test system. The VH fragment was thus antigenically similar to the tvh region found in the intact molecules and the light chains were not needed to express the VH subgroup antigens or the VH framework antigens.

Alkylation

Abelson antigen: a viral tumor antigen that is also a differentiation antigen of BALB/c mice.

We report here the serologic detection of a cell surface antigen common to cells transformed by the Abelson murine leukemia virus (A-MuLV) and to normal hematopoietic cells from certain strains of mice. Serum from C57BL/6 mice hyperimmunized with syngeneic A-MuLV lymphoma cells was cytotoxic for the immunizing cells; this reaction was used as the serologic test system for recognition of A-MuLV antigens. Absorption analysis using 40 tumors and 21 cell lines revealed that two serologic specificities were detected by this test system: (i) FMR antigen(s) related to the Moloney MuLV helper (the virus from which A-MuLV was originally derived), and (ii) an antigen expressed on all cells transformed by A-MuLV. The A-MuLV-specific antigen was also present on uninfected cells from BALB/c bone marrow, spleen, and fetal liver but not from adult liver, thymus, lymph nodes, or peripheral blood. Abelson antigen was not expressed on bone marrow or spleen cells of 12 other mouse strains. In light of the original isolation of A-MuLV from a BALB/c mouse infected with Moloney virus, it is possible that Abelson antigen is a serologic marker for a gene of BALB/c mice, normally encoding a cell surface molecule, that was incorporated into the Moloney virus genome during the generation of A-MuLV.

Animals

Role of nominal antigen and Ia antigen in the binding of antigen-specific T lymphocytes to macrophages.

We have previously demonstrated that when primed T lymphocytes were repeatedly incubated on monolayers of antigen-pulsed macrophages (M phi), the cells that failed to adhere to the monolayer demonstrated a marked depletion of their proliferative response that was specific both for the antigen used for pulsing the M phi and for Ia determinants on the M phi. In order to further analyze the contribution of the nominal antigen and Ia antigens to the physical binding of T lymphocytes to M phi, we have attempted to block the absorption of T lymphocytes to M phi with a large excess of soluble antigen and with anti-Ia sera. Our results demonstrate that anti-Ia sera inhibit but that soluble antigen augments the binding of specific T lymphocytes to M phi. The implications of these findings for "dual recognition" and "linked recognition" models of T lymphocyte receptors are discussed.

Animals

Cell surface antigens of chemically induced sarcomas of the mouse. I. Murine leukemia virus-related antigens and alloantigens on cultured fibroblasts and sarcoma cells: description of a unique antigen on BALB/c Meth A sarcoma.

As background for a serological definition of the unique antigens of chemically induced sarcomas, we have typed a series of fibroblast and sarcoma cell lines of BALB/c and C57BL/6 origin by cytoxicity and absorption tests for murine leukemia virus (MuLV)-related cell surface antigens and known alloantigens. 7 of the 17 cultured lines expressed the range of cell surface antigens associated with MuLV (GIX, GCSA, gp70, p30), and this was invariably associated with MuLV production. In nonproducer lines of C57BL/6 (but not BALB/c) origin, a MuLV-gp70-like molecule was found on the surface of fibroblasts and sarcoma cells. The alloantigenic phenotype of these MuLV+ and MuLV- cell lines was H-2D+, H-2K+, Thy-1.2+ or -, PC.1+ or -, Lyt-1.2-, Lyt-2.2-, Ia.7-, and TL.2-. A unique antigen was defined on the BALB/c ascites sarcoma Meth A with antisera prepared in BALB/c or (BALB/c X C57BL/6)F1 mice. Tissue culture lines derived from this tumor were MuLV-, which facilitated serological study of the antigen. Absorption analysis indicated that the antigen was restricted to Meth A; it could not be detected in normal or fetal BALB/c tissue MuLV+ or MuLV- fibroblast lines, 12 syngeneic or allogeneic sarcomas, or normal lymphoid cells from 13 different inbred mouse strains.

Animals

Evidence for common and distinct determinants of colon carcinoembryonic antigen, colon carcinoma antigen-III, and molecules with carcinoembryonic antigen activity isolated from breast and ovarian cancer.

This study was designed to answer the question, do molecules with carcinoembryonic antigen (CEA) activity from colon, breast, and ovarian cancer differ? Extracts of two breast and three ovarian cancers with CEA activity were compared to three colon cancer CEA preparations and to the related antigen, colon carcinoma antigen-III, in terms of lectin- and antiserum-binding properties. With the use of Farr-type radioimmunoassays with the lectins, concanavalin A and wheat germ agglutinin, the iodinated colon CEA and CEA-like preparations from breast and ovarian cancer all showed distinctly different patterns of binding. Specificity of binding was confirmed by inhibition studies with the relevant monosaccharides. Similarly, with antisera prepared against colon CEA, colon carcinoma antigen-III, or breast CEA, it was shown that, although all preparations shared some antigens, unique antigenic determinants were also present on all preparations. These data are consistent with the concept of a series of closely related CEA and CEA-like molecules with distinct characteristics for each tissue source of CEA.

Antibodies, Neoplasm

Ultrastructural immunocytochemical localization of two hydatid fluid antigens (antigen 5 and antigen B) in the brood capsules and protoscoleces of ovine and equine Echinococcus granulosus and E. multilocularis.

The unlabelled antibody method was used in the ultrastructural localization of two hydatid fluid antigens, antigen 5 and antigen B, in brood capsules and protoscoleces of Echinococcus granulosus and E. multilocularis. Antigen 5 was found in the parenchyma cells of the protoscolex and brood capsule wall and to a lesser extent in the walls of the flame cells and collecting ducts of the excretory system and in the surrounding interstitial material. It is suggested that, while some excretion of this antigen may occur from the protoscolex, it could also be liberated into the cystic cavity by degeneration of protoscoleces and parenchymal cells of the brood capsule wall. Antigen B was found mainly in the distal cytoplasm and perinuclear cytoplasm of the tegument anterior to the suckers. It is apparently secreted to the outside and was present in the brood capsule contents; it adheres to the anterior surface and the posterior periodic acid-Schiff (PAS)-positive glycocalyx of the protoscolex and to the inner surface of the brood capsule wall. The protoscolex tegument posterior to the suckers was negative. The parenchyma cells of the protoscolex and brood capsule wall were also positive although the intensity of the reaction product was variable.

Animals

Characterization of Epstein-Barr virus antigens. I. Biochemical analysis of the complement-fixing soluble antigen and relationship with Epstein-Barr virus-associated nuclear antigen.

The Epstein-Barr virus-soluble (S) antigen extracted from RAJI cells was characterized by sucrose gradient centrifugation, gel filtration, and ion-exchange chromatography. The sedimentation coefficient was estimated to be 8.5S corresponding to a molecular weight of 180,000. The S antigen binds to DEAE-A25 ion exchanger from which it can be eluted with 0.3 M NaCl in Tris buffer (pH 7.2). All fractions which contained complement-fixing S antigen also inhibited the anticomplement immunofluorescence reaction as used to detect the Epstein-Barr virus-associated nuclear antigen. These results are consistent with the hypothesis that the S and Epstein-Barr virus-associated nuclear antigens are either a single antigen or that both activities are present on the same molecule.

Antigens, Viral

Antigens of a human breast carcinoma cell line (BT 20). I. Synthesis of serum proteins, membrane-associated antigens, and oncofetal-associated antigens.

The synthesis of various products by a human mammary cell line (BT 20) was studied by incorporation of 14C-labeled amino acids, choline, glucosamine, or galactosamine into nondialyzable materials. These products had molecular weights ranging from less than 12,300 daltons to more than 200,000 daltons. They were analyzed by immunoelectrophoresis and double diffusion in agar. Among the synthesized products, the following proteins were identified: beta2-glycoprotein I, alpha2HS-glycoprotein, alpha2-lipoprotein, actin, beta2-microglobulin, carcinoembryonic antigen, three oncofetal-associated antigens, and various erythrocyte membrane-associated antigens (namely, glycophorin). Synthesis of milk proteins was not detectable. Only the protein moiety of the glycophorin molecule seemed to be synthesized. The beta2-microglobulin was synthesized in an unbound state as well as bound to a glycoprotein whose relationship with the transplantation or tumor antigens must be determined. The three oncofetal-associated antigens were also synthesized in vitro by human fetal tissues and neoplastic and dysplastic human mammary tissues.

Actins

Common antigenic structures of HL-A antigens. VI. Common antigenic determinants located on the 33,000 Dalton alloantigenic fragment portion of papain-solubilized HL-A molecules.

HL-A 33,000 Dalton fragments were isolated from three papain-solubilized HL-A preparations carrying different HL-A allospecificity by the dissociation induced in the reaction with rabbit antibodies to HL-A 11,000-Dalton fragment (i.e. human beta2-microglobulin). By assaying the binding activity with rabbit antisera against papain-solubilized HL-A molecules and against each of the HL-A component fragments and also with a battery of HL-A alloantisera, the 'antibody-dissociated' 33,000-Dalton fragments were shown to retain not only the HL-A alloantigenic determinants but also the HL-A common antigenic determinants that are native to the 33,000-Dalton fragment portion of undissociated HL-A molecules and to be devoid of the cryptic HL-A common antigenic determinants that are found on HL-A 33,000-Dalton fragments obtained by dissociation with chemical reagents including acid. However, on exposure to acid, the antibody-dissociated 33,000-Dalton fragments were found to lose their HL-A alloantigenic and common antigenic characteristics and gain the cryptic HL-A common antigenic determinants. The greater part of the HL-A common antigenic determinants found here appears to be primate cross-reacting determinants.

Animals

[Comparative immunologic and physico-chemical properties of neurospecific antigens--bull antigen D and rat antigen alpha].

Immunological and physicochemical properties were compared for water-soluble acid neurospecific antigens: D of the bull and alpha of the rat. During immunoelectrophoresis in agar gel antigen D migrates as two immunologically indentical fractions having a position of prealbumins and alpha-globulins of blood serum. Antigen D from the bull brain is incompletely immunologically identical with antigen alpha from the rat brain. The molecular weight of antigen D determined under conditions of Sephadex G-100 column gel chromatography is 73000.

Animals

Study of the antigenic cross reactivity between carcinoembryonic antigen and "nonspecific cross reacting antigens" (NCA and NCA 2).

The immunochemical relationship between CEA, NCA and NCA 2 was studied in guinea-pigs. Strong cross reactions were found between these antigens, either in delayed or anaphylactic reactions. Some specific determinants for each antigen could still be demonstrated. Delayed hypersensitivity is likely to be due to the protein moiety of the molecules while anaphylactic reactivity could probably be related to their glucidic parts. Consequently, CEA and NCA have common antigenic determinants on their glucidic and peptidic moieties, perhaps more on the latter ones.

Anaphylaxis