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Biomedical subjects

J A Sogn

Publications and source records attributed to J A Sogn.

At least 19 recordsLinked to original sources

Cancer immunology: highlights of the NCI Extramural Immunology Program.

The long-term goal of research supported by the Immunology Program is to better understand immune mechanisms and their regulation in order to develop more effective strategies to strengthen the immune response against cancer. While there has been much progress in the field of immunology in recent years, many major questions remain unanswered. The role of MHC antigens in regulating the immune response to tumors is still unclear, as is the nature of putative tumor-associated antigens which are the targets of this response. The efficacy of various immune cell subsets in tumor cell killing is differentially affected by changes in tumor cell surface MHC antigen expression. Furthermore, although we now know much more about the cellular interactions in the immune response, little is actually known about the particular cell subsets which participate in an immune response is regressing versus progressing tumors. Interleukins have been shown to stimulate a variety of immunes response, and some of these immune modulators are now being tested in clinical trials, in various stages, to determine their antitumor effects. However, systemic administration of large quantities of interleukins can result in very different effects than those created by the local release of effector molecules from specific T-cell populations. Effector T cells can deliver lymphokines to precise target structures, whereas systemically administered lymphokines would affect preferentially those cells expressing the largest numbers of high affinity receptors for the lymphokines. The specificity of lymphokines as mediators of immunologic response rests largely or exclusively in the local release of such materials by T cells upon activation by antigen: MHC complexes on a stimulating cell. Because lymphokines show specificity only for nonantigen-specific, non-MHC-restricted receptor molecules on target cells, the effect of lymphokine injections is likely to be determined solely by the expression of these receptors. Thus, lymphokines function well as effector molecules in a number of specific immune reactions, but it remains to be determined whether they will be useful in regulating immune responses in specific disease situations. It may be critical to recruit specific immune cells to the area of tumor growth where they, in turn, can release lymphokines to activate appropriate antitumor effector cells. Adoptively transferred T cells of the helper phenotype can induce an effective antitumor immune response in recipient mice.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Viral gene inhibition of class I major histocompatibility antigen expression: not a general mechanism governing the tumorigenicity of adenovirus type 2-, adenovirus type 12-, and simian virus 40-transformed Syrian hamster cells.

The association between the level of class I major histocompatibility (MHC) antigen expression and the tumorigenic phenotype was determined for cells from a series of 15 lines of adenovirus type 2 (Ad2)-, Ad12-, and simian virus 40 (SV40)-transformed hamster cells and 16 lines of cells established from hamster tumors induced by SV40 mutants. These cells range from nontumorigenic to highly tumorigenic in both syngeneic and allogeneic adult hamsters. The Ad2-transformed cells--cells that were nontumorigenic in syngeneic adult hamsters--expressed either high levels or low levels of class I MHC antigens. The SV40-transformed cells--cells transformed in vitro that produced tumors with equal efficiency in both syngeneic and allogeneic adult hamsters--or cells derived from SV40-induced tumors expressed very high levels of class I MHC antigens. The Ad12-transformed cells uniformly expressed low levels of class I MHC antigens; these cells produced tumors 200- to 1,000-fold less efficiently in allogeneic adult hamsters than in syngeneic adult hamsters and produced tumors with about the same efficiency in immunoimmature newborns and immunocompetent syngeneic adult hamsters. We conclude that the expression of either high levels or low levels of class I MHC antigens is, at most, a minor factor in the differences observed among these adenovirus- and SV40-transformed cells in their tumor-inducing capacity in naive, immunocompetent hamsters.

Adenoviridae

Expression patterns of MHC class II genes in rabbit tissues indicate close homology to human counterparts.

Genomic clones corresponding to five distinct major histocompatibility complex class II alpha-chains have been described for the rabbit; four of these encode complete, potentially functional alpha-chains. Hybridization analysis and preliminary sequence analysis indicate that one of these clones is structurally related to HLA-DP alpha, one to -DR alpha, one to -DQ alpha and one to -DZ alpha. Probes specific for the four class II genes were used to screen RNA samples from normal rabbit tissues to determine which of these genes are transcribed and whether expression of any particular gene is tissue specific. All four of the genes are transcribed, but there are variations in the levels of expression, in tissue distribution, and in transcript size. The highest levels of RLA-DR alpha, -DQ alpha, and -DP alpha transcription were found in lymphoid tissues. Lower levels of transcription were also detectable in several nonlymphoid tissues. Transcripts observed were about 1.3 kb, a size expected for these class II alpha-chain genes based on experience with their human homologues. The RLA-DZ alpha probe corresponding to HLA-DZ alpha hybridized weakly with a band of 3.6 kb; its expression could be detected only in lymphoid tissues. The size of the DZ alpha transcript, its tissue distribution, and partial sequence data confirm its homology with the human gene DZ alpha. In blots of total cellular RNA, a probe for a recently described human beta-chain, DO beta, hybridized to a transcript of about 1.3 kb in lymphoid tissues. These data indicate that RNA transcripts corresponding to all HLA class II loci described to date can be detected in rabbit tissues.

Animals

Partial amino acid sequence and genetic control of latent a2 allotype induced in rabbits by immunization with anti-a2 antibody.

We have shown that after immunization of homozygous a1 rabbits of the B immunoglobulin (Ig) heavy chain haplotype with anti-a2 antibody (Ab) a population of molecules appears that has all of the serologic characteristics of the a2 allotype. We have now isolated these putative latent a2 molecules, have separated the heavy chains, and after enzymatic deblocking, have determined the first 19 N-terminal amino acids. For all eight allotype-associated residues, these putative latent a2 molecules have the amino acid residues typical of a2 allotype. As expected, the preimmune IgG from this a1a1 rabbit has the amino acids typical of the a1 allotype. Thus by partial amino acid sequence analysis, we provide additional evidence that the latent a2 allotype can be induced in a1a1 rabbits of the B heavy chain haplotype by immunization with anti-a2 Ab. Rabbits of other heavy chain haplotypes were also immunized with anti-a2 Ab and were tested for their ability to synthesize latent a2 allotype. Thus far, a1a1 rabbits of the A, B, C, and I heavy chain haplotypes all synthesize latent a2 allotype. In contrast, a3a3 rabbits of the G and H heavy chain haplotypes did not synthesize latent a2 allotype.

Amino Acid Sequence

Phagocytic rabbit cell lines expressing class II MHC products: establishment of cell lines by viral transformation.

Continuous rabbit macrophage-like cell lines were established after in vitro infection of spleen cells with either Simian virus 40, lymphotropic papovavirus or herpesvirus sylvilagus. These cell lines are characterized as morphologically similar to mature macrophages, esterase positive, and have unrearranged immunoglobulin genes. They possess macrophage functionality because they are highly phagocytic and are able to mediate an antibody dependent cell mediated cytotoxicity assay on chicken red blood cells. Northern blot analysis of total cellular RNA with a DQ alpha probe indicates that the cell lines constitutively express message for class II gene products. In addition, cell sorter analysis indicates that two of these lines display class II antigen at the cell surface.

Alkaline Phosphatase

Tumorigenicity of hamster and mouse cells transformed by adenovirus types 2 and 5 is not influenced by the level of class I major histocompatibility antigens expressed on the cells.

Inbred hamster and mouse cells transformed by the nononcogenic adenovirus (Ad) serotypes, Ad2 and Ad5, are nontumorigenic in syngeneic adult animals, while cells from these species transformed by the highly oncogenic Ad12 are tumorigenic in such rodents. By immunoprecipitation and flow cytometry, cells from four of six Ad2- and Ad5-transformed hamster and mouse lines expressed high levels of cell-surface class I major histocompatibility complex (MHC) antigens, while cells from two of these six lines expressed low levels of cell-surface class I MHC antigens. The levels of class I MHC proteins expressed by cells from these latter two lines were comparable to the levels of cell-surface class I MHC proteins expressed by cells from Ad12-transformed hamster and mouse lines. Moreover, an Ad2-transformed line that had become highly oncogenic after in vivo adaptation showed the same high level of MHC expression as the nononcogenic parent. The amounts of class I mRNA, analyzed by RNA blotting, were, in general, consistent with the levels of class I antigens expressed on the surfaces of these cells. These results indicate that there is no correlation between the tumorigenicity in immunocompetent syngeneic adult rodents of Ad2- and Ad5-transformed hamster and mouse cells and the level of class I MHC antigens expressed on the surfaces of these cells. Thus, the expression of different levels of class I MHC proteins does not seem to explain the differences in the oncogenicity between nononcogenic and highly oncogenic human Ad serotypes.

Adenoviruses, Human

Rabbit-mouse hybridomas secreting intact rabbit immunoglobulin.

Rabbit-mouse hybridomas offer the potential for production of monoclonal rabbit antibodies by immortal cell lines. In previous studies, it was possible to produce and stabilize rabbit-mouse hybrid cells secreting either a rabbit heavy or light chain. These have been useful for structural characterization of the individual rabbit immunoglobulin polypeptides and for isolation of large amounts of immunoglobulin mRNA for molecular studies. For some studies, however, it would be useful to have intact rabbit immunoglobulin molecules comparable to the myeloma proteins available in the human and mouse. The availability of rapid, sensitive and specific assays for rabbit heavy and light chains and allotypes located on specific chains has now permitted the early identification of clones secreting intact rabbit immunoglobulin. Vigorous cloning efforts have resulted in isolation and partial stabilization of three such clones. The first, H105, secretes a product with a kappa light chain bearing the b6 allotype and a mu-chain bearing the a1 allotype. Biochemical and serologic analyses of the product show that it is secreted as a fully assembled IgM pentamer and that the rabbit heavy and light chains are covalently associated. No rabbit J-chain gene was detected in H105 by Southern blot analysis. The second hydridoma, H134, secretes a product with a mol. wt of 150 K, consisting of a b4 light chain and an a1 heavy chain. The third, H171, secretes an alb4 IgG with antibody specificity for group C streptococcal carbohydrate. An additional rabbit-mouse hybridoma, H89, have been produced which secretes a rabbit heavy chain lacking group a allotypic activity. The rabbit heavy chain, which is associated with a mouse light chain, has an N-terminal amino acid sequence identical to a2-positive molecules although thorough serologic analysis revealed no group a allotypic activity.

Amino Acid Sequence

The detection of HLA-DR, MB and MT determinants on purified class II molecules by inhibition of microcytotoxicity.

An assay has been developed which makes it possible to determine the HLA allospecificities carried by molecules in purified fractions of detergent lysates from EBV-transformed human lymphocytes. It is based on inhibition of the standard microlymphocytotoxic test used for identifying HLA class I and II antigens with alloantisera. Soluble cell membrane products from EBV-transformed cell lines homozygous for the HLA region gave specific inhibition of standard typing antisera. The test requires preincubation of microliter volumes of soluble antigen preparations maintained in 0.05% NP-40 with selected antisera prior to adding EBV-transformed cells as target cells. It was possible using this assay to follow isolation of the structurally related human class II molecules bearing the MB and DR specificities. Detergent lysates of cells were fractionated on affinity columns prepared from monoclonal antibodies directed against distinct class II antigens. Eluates from these columns contained the expected DR and MB specificities. The assay is easy to perform, highly reproducible and allows multiple determinations.

Antibodies, Monoclonal

Primary structural sequence polymorphism in the human class II MHC antigen 33.1.

Monoclonal antibody 33.1 defines a non-DR, class II, human major histocompatibility complex antigen, 33.1, which appears to be distinct from other class II antigens in its cellular distribution and primary structure. To characterize the structure more fully and to determine the degree of polymorphism within 33.1, a comparative N-terminal sequence study has been undertaken using a series of ten B lymphoblastoid cell lines with different DR and MB types. The results confirm that both the alpha and beta chains of 33.1 are homologues of the corresponding chains of the murine I-A antigen and indicate that while 33.1 does not appear to be identical with MB, it is closely related. Sequence analyses revealed two major variants of 33.1, corresponding to cells with specificities MB1 and MB3, respectively. Within each MB type, other polymorphisms have been detected. Cells that are MB2 do not react with monoclonal antibody 33.1. Suggestive evidence is presented that monoclonal antibody 33.1 reacts predominantly with the beta chain of the antigen. The preferential expression of 33.1 on activated B cells suggests that expression of at least the 33.1 beta chain gene is greatly enhanced in the course of B-cell activation, but the specific function of 33.1 remains to be determined.

Amino Acid Sequence

Cell surface glycoproteins of rabbit lymphocytes: characterization with monoclonal antibodies.

The structural characteristics of antigens recognized by a panel of monoclonal antibodies prepared against a rabbit T-lymphocyte cell line have been investigated. Those antigens which could be isolated using immunoadsorbents prepared from the monoclonal antibodies had mol. wts of 42,000, 90,000 and 120,000. The 42,000 mol. wt molecule is similar or identical to a rabbit class I major histocompatibility complex antigen and its characterization has been reported elsewhere. Three different 90,000 mol. wt proteins can be distinguished by their reactivity with lectins and by sequential immunoprecipitation. The 120,000 mol. wt protein is a very abundant surface glycoprotein that appears to be a specific marker for T-cells in the rabbit. It is the immunodominant antigen in a lentil lectin bound glycoprotein pool. Over half of the antibodies were directed against this antigen. All antigens detected by the panel of monoclonal antibodies have been detected on normal lymphoid cells.

Animals

A genomic gene encoding the b5 rabbit immunoglobulin kappa constant region: implications for latent allotype phenomenon.

We previously reported that domestic rabbits of five immunoglobulin kappa allotype strains (b4v, b4, b5, b6, and b9) harbor at least two DNA sequences that hybridize strongly to kappa constant region probes in Southern blots. One of these sequences ("type A") has been identified as encoding the constant region of the kappa 2 isotype, an immunoglobulin chain that most rabbits express only at low levels, if at all. We identified the second sequence--for rabbits of the b4 allotype--as encoding the nominal b4 kappa chain (or kappa 1 isotype), but for rabbits of other allotypes no definite identification for this "type B" sequence could be made. Here we suggest that the type B sequence in rabbits of the other domestic allotypes also encodes the nominal kappa 1 immunoglobulin chain. We show this directly for the b5 allotype; a type B sequence cloned from b5 DNA has been found to contain an apparently functional gene encoding the b5 constant region sequence. Indirect arguments suggest the corresponding conclusion for the b4v, b6, and b9 allotypes. We have considered the implications of these results for the phenomenon of "latent allotype" expression.

Animals

A novel HLA-D/DR-like antigen specific for human B lymphoid cells. Biochemical evidence for similarity to but nonidentity with known HLA-D/DR antigens.

The polymorphic human B cell-specific antigen, 33.1, detected by a murine monoclonal antibody, was compared by genetics and structural analysis with known human Ia antigens from a panel of DR homozygous Epstein-Barr virus-transformed B lymphoblastoid cell lines. Cells homozygous for DR 1, 2, 4, 5, and w6 were positive, while cells that are DR3,3 or DR7,7 usually failed to express this antigen. Mutant DR null, DC/MB-positive cells were 33.1 positive while DR null, DC/MB-negative cells failed to express this antigen, suggesting the segregation of 33.1 with the DC antigen. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis revealed that 33.1 alpha and beta chains were of lower molecular weights than the DR alpha and beta chains isolated from the same cell line. Partial N-terminal amino acid sequence analyses were carried out for the heavy and light chains of the 33.1 antigen radiolabeled with [3H] phenylalanine. The results of these analyses, in conjunction with previous data on tissue distribution, indicate that the 33.1 antigen is a non-DR but Ia-like antigen closely related to the previously defined I-A homologues, DC and DS.

Amino Acid Sequence

Long lived nonadherent rabbit macrophages obtained from spleen cell cultures.

During the preparation of rabbit-mouse hybridomas, an unusual degree of cellular proliferation and a high level of rabbit immunoglobulin secretion in culture was noted. The proliferation seemed to be dependent on the use of relatively high levels (10%) of fetal bovine serum because it was not seen when spleen cells were cultured using either horse serum or autologous serum in a variety of media. The peak of the proliferative response occurs at 7 to 10 d in culture, after which the lymphoblast population dies rapidly, leaving a large, granular, nonadherent cell as the predominant component in the culture. These cells did not seem to divide further but persisted in very gradually diminishing numbers for many months. This long lived cell has been characterized as a nonadherent macrophage by its morphology, intense esterase staining, expression of an Fc receptor for rabbit IgG, phagocytosis of latex particles and opsonized sheep erythrocytes, and mediation of antibody dependent cell mediated cytotoxicity on chicken erythrocytes.

Animals

The role of rabbit immunoglobulin allotypes in an immune network.

The expression of latent allotypes is a well documented phenomenon in rabbits. Speculation about their molecular genetic basis and the mechanisms that control expression of these unexpected markers lead inevitably to questions about the Ig gene complement of the rabbit. This central question is under current study using probes derived originally from the mRNA of rabbit-mouse hybridomas secreting rabbit Ig chains. Some of the basic features of rabbit Ig genes are already clear from these studies, and DNA fragments that might encode latent allotypes have been identified with the first set of probes. Further gene closing sequencing should shortly provide a definitive answer to the question of latent allotypy and will also provide a detailed understanding of nominal Ig expression in rabbits.

Amino Acid Sequence

Allotype-defined mRNA for rabbit immunoglobulin H and L chains isolated from rabbit-mouse hybridomas.

Improved procedures have expedited the formation and propagation of stable rabbit-mouse hybridomas (RMH) that secrete rabbit immunoglobulin (Ig) chains and that serve as sources for allotype-defined mRNA, specifying both constant and variable regions of rabbit Ig. The Ig-secreting hybridomas were stabilized by multiple recloning steps and eventually attained a 90% frequency of cells secreting rabbit Ig chains. Stabilized RMH were propagated in vivo in nude (athymic) and in some instances in conventional BALB/c mice. Rabbit Ig products secreted by these RMH cell lines were isolated and were shown to have amino acid sequence characteristics of rabbit Ig chains and that are distinct from those of the mouse. Preparative amounts of polyadenylated RNA-(poly(A) RNA) encoding allotype-defined rabbit Ig chains were isolated from RMH grown as solid tumors. Poly(A) RNA encoding a b4 L chain from one RMH (12F2) and an a3 H chain from another (7D2) were purified 10-fold by sucrose density gradient centrifugation and were characterized in an in vitro translation system. The mRNA encoding the b4 allotype had an S value of 12 and directed the synthesis of a rabbit precursor L chain with m.w. 27,500. Radiochemical amino acid sequence analysis of the L chain precursor has shown it to include a 22 residue leader sequence with a leucine profile similar to that of murine L chain precursors. Analysis of the mRNA encoding the a3 H chain revealed it has an S value of 16 and directed the synthesis of an Ig chain with a m.w. identical to that of the rabbit H chain secreted by the RMH.

Amino Acid Sequence

Microdetermination of rabbit immunoglobulin allotypes by ELISA using specific antibodies conjugated with peroxidase or with biotin.

Enzyme-linked immunoadsorbent assays (ELISA) specific for the allotypes of rabbit heavy chain variable region (group a) and light chain constant region (group b) have been developed. These assays utilize affinity-purified allogeneic anti-allotype antibodies to coat polyvinyl microtiter plates. After test samples are added to the plates, the same affinity-purified antibody, coupled to the enzyme peroxidase, is used to detect binding of allotype-positive IgG samples to the coated plate. These assays can detect as little as 40 ng/ml of IgG of the appropriate allotype; the assays are highly specific and allow quantitative determination of allotype-defined IgG samples. In addition, the procedure can be modified by coupling of the antibody with biotin followed by development with avidin-peroxidase; this adaptation avoids the difficulties encountered in antibody-peroxidase conjugations. The ELISA assay is not influenced by the presence of anti-allotype antibody in the test sample, giving a distinct advantage over solid-phase radioimmunoassay procedures conventionally used for the quantitative determination of rabbit allotypes.

Animals