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Biomedical subjects

D Pressman

Publications and source records attributed to D Pressman.

At least 19 recordsLinked to original sources

Lactoperoxidase-catalyzed iodination of human IgM. Differences between 7 S IgM and 19 S IgM and between cell surface 7 S IgM and serum 7 S IgM.

We have studied the lactoperoxidase-catalyzed iodination of human IgM and have measured the ratio of radioactivity incorporated into the mu chain to that incorporated into the L chain (i.e. the mu/L ratio). Both 7 S and 19 S IgM were examined. The ratio of radioactivity was found to be larger for 7 S IgM than for 19 S IgM for all four of the monoclonal IgM proteins examined. The data suggest that some tyrosines of the mu chain which are buried and not available for iodination in 19 S IgM become exposed on conversion of 19 S IgM to 7 S IgM. The mu/L ratio for the IgM found on the cell surface of RPMI 8392 cells was significantly smaller than the ratios for all of the five 7 S IgM proteins studied in solution. It appears, therefore, that a portion of the mu chain of the cell surface IgM of the RPMI 8392 cells is buried in the membrane.

Catalysis

A tumor-associated organ-specific antigen characteristic of spontaneously metastatic rat mammary carcinomas.

An organ-specific tumor-associated antigen (TAA) was present in several metastatic and nonmetastatic mammary carcinomas induced in WF female rats by 3-methylcholanthrene. The level of TAA was high in 2 metastatic carcinomas tested (TMT-081 and SMT-2A) and much lower--by a factor of 50--200--in 2 nonmetastatic mammary carcinomas (MT-100 and MT-W9B). The TAA in the 2 metastatic tumors was identical, as demonstrated by immunodiffusion and supported by cross-reactivity with antibody against TAA from TMT-081 in a binding inhibition radioimmunoassay. The TAA was shed in relatively large amounts by the metastatic tumors maintained in short-term organ culture. The high level and shedding of TAA thus appeared to be characteristics of the metastatic tumors but not of the nonmetastatic ones. This suggests that TAA on the cell membrane or in the circulation may be involved in the metastatic process as a factor blocking potentially cytotoxic cells or in other ways leading to suppression of the immune response against the tumor.

Animals

Carcinoembryonic antigen-binding immunoglobulin isolated from normal human serum by affinity chromatography.

A human immunoglobulin that binds carcinoembryonic antigen (CEA) was isolated from four individual normal human sera by affinity chromatography with the use of a CEA-Sepharose solid adsorbent. The yield of isolated protein, termed human CEA-binding protein (HCBP), ranged from 1.8 to 10 microgram/ml serum. HCBP is a gamma-globulin of restricted electrophoretic heterogeneity as shown by immunoelectrophoresis. HCBP was shown to bind radioiodine-labeled CEA both by a radioimmune precipitation assay and by a radioimmunoelectrophoresis assay. This protein was of practical interest because of its potential usefulness as a carrier of radioactivity or therapeutic agents to a CEA-producing tumor for therapeutic or diagnostic purposes.

Antibodies, Neoplasm

Human cell membrane components dominant in T cell lineage: identification and characterization of human TL-like antigens.

Cell membrane components that contain beta 2-microglobulin were purified from cells of a human T cell-type leukemia cell line, HPB-ALL. They contained membrane components that have the same molecular size and the same subunit structure as HLA(A,B,C) antigens but are separable from the typical beta 2-microglobulin-containing cell membrane components, i.e., the HLA (A,B,C) antigens, by xenoantibody reagents. A sensitive radioimmunoassay was constructed for detection of the T cell membrane components. The assay revealed that the cell membrane components are expressed exclusively on cells of T cell-type leukemia cell lines among the human lymphoid cell lines tested, predominantly in thymus, among the human organs and tissues tested. They were not present on cells of human B cell-type cell lines or on cells of nonlymphoid organs and tissues. No alloantibodies directed to the T cell membrane components, the putative human homologues of mouse TL antigens, were found in any of the human tissue typing sera tested.

Animals

Human Ia-like antigens in non-lymphoid organs.

Human Ia-like antigens in liver and kidney were shown by the immunofluorescence assay to be present mostly in the endothelial-mesenchymal cells of these organs. The parenchymal cells apparently contained no human Ia-like antigens. The antigens in liver and kidney were purified and shown to have the same subunit structure as human Ia-like antigens of cultured B-lymphoid cells. The human Ia-like antigens in non-lymphoid organs, not only in liver and kidney but also in testis, heart, muscle and brain, carried all the xenoantigenic characteristics of human Ia-like antigens expressed on lymphoid cells of B-cell lineage.

Antigen-Antibody Reactions

Immunological dissection of human Ia molecules.

The immunochemical analysis of Daudi Ia molecules by a variety of alloantisera led to the recognition of at least three molecular species carrying different antigenic determinants: DRw6, DC-1, and DC-2. Genetic as well as structural evidence indicates that DRw6 and DC-1 molecules are controlled by separate, HLA-linked loci, rather than by alleles at the same locus. The alloantigenic determinants appear to be expressed on the small Ia subunit. DC-1 and DC-2 determinants discussed had not been defined by serological analysis at the population level, but were demonstrated to be present by immunochemical analysis at the molecular level.

Antigen-Antibody Reactions

Unique human glycoprotein, alpha1-microglycoprotein: isolation from the urine of a cancer patient and its characterization.

A human glycoprotein was isolated from the urine of a patient with plasma cell leukemia. It appears pure and homogeneous when examined by immunoelectrophoresis, sodium dodecyl sulfate (NaDodSO4)-polyacrylamide gel electrophoresis, gel filtration in 6 M guanidine hydrochloride (Gdn.HCl), and NH2-terminal amino acid sequence analysis. It has a brown color due to a tightly (most likely covalently) bound chromophore group(s) and migrates to the alpha1 region in immunoelectrophoresis. A molecular weight (mol wt) of 27 000 was obtained for the glycoprotein by gel filtration in 6 M Gdn.HCl. Its approximate mol wt determined by Na-DodSO4-polyacrylamide gel electrophoresis is 29 000 on 5% and 7.5% and 10% gels. Amino acid and hexosamine analyses showed that it is a glycoprotein and indicated that it contains four half-cystine residues per molecule. Based on the above observations we designated it "alpha1-microglycoprotein" (alpha1-MGP). Isoelectric focusing of alpha1-MGP showed a significant charge heterogeneity, although only a single NH2-terminal amino acid sequence was obtained for alpha1-MGP, i.e., Gly-Pro-Val-Pro-( )-Pro-Pro-Asx-Asx-Ile-Glx-Val-Glx-Glx-Asx-Phe-Phe-Ile-(Ser or Ala)-Arg. The alpha1-MGP was found in significant concentrations in the urine of many patients with neoplastic diseases.

Alpha-Globulins

Absence of reaction of a xenogenic anti-H-2 serum with mouse embryonal carcinoma cells.

A rabbit antiserum raised against papain-solubilized H-2 antigens has been used to investigate the eventual expression of H-2 antigens and related molecules on embryonal carcinoma cells and on other types of mouse cells. No material reacting with this serum could be detected on cells carrying the F9 antigen. It is concluded that no H-2 antigen or cross-reacting material is expressed on these cell types.

Animals

Human cell membrane components bound to beta2-microglobulin in T cell-type cell lines.

Cell membrane components bound to beta2-microglobulin were isolated from Renex 30 (a nonionic detergent)-solubilized membrane materials of two human T cell-type cell lines, MOLT-4 and CCRF-CEM, by gel filtration and lectin affinity chromatography. The isolation was carried out by following the beta2-microglobulin activity by radioimmune inhibition assay. The T cell membrane components bound to beta2-microblogulin had a uniform molecular size of about 200,000 daltons and most of them showed an affinity to lentil lectin. The isolated membrane components were radioiodinated and examined for identity to HLA antigens by sequential precipitation with rabbit anti-HLA antiserum (specific to HLA large components) and with rabbit anti-beta2-microblogulin antiserum. In addition to HLA antigens, the beta2-microglobulin-bound components obtained from the MOLT-4 cells were found to contain certain membrane components that are the same in molecular size as the HLA large components but that are different antigenically from the HLA large components. On the other hand, the beta2-microglobulin-bound membrane components obtained from the CCRF-CEM cells were all HLA antigens. No other membrane components were involved in the binding.

Cell Line