Amino acid sequence of a mouse myeloma immunoglobin heavy chain (MOPC 47 A) with a 100-residue deletion.
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Biomedical subjects
Publications and source records attributed to E Appella.
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A detergent-solubilized form of H-2b (dH-2b) has been purified 1500-fold from RBL-5 tumor cells. The purification was accomplished by deoxycholate solubilization of purified plasma membranes, gel filtration, Lens culinaris lectin affinity chromatography, and affinity chromatography on a sheep anti-dH-2b immunoadsorbent. Both alloantigen and beta 2-microglobulin were monitored by radioimmunoassay during purification. The final product was judged to be greater than 90% pure by the following criteria: 1) sodium dodecyl sulfate-polyacrylamide electrophoresis which showed the expected 2-component structure of histocompatibility antigens, i.e. a heavy chain and beta 2-microglobulin; 2) amino acid composition which was comparable to the known compositions of other H-2 and HLA molecules; 3) NH2-terminal sequencing which gave a unique sequence for the heavy chain, and the reported sequence for beta 2-microglobulin; and 4) immunoprecipitation of the bulk of the preparation by appropriate alloantisera.
A large scale purification of histocompatibility-2 (H-2) antigens from mouse liver is described. The antigens were solubilized by a limited papain digestion of a crude preparation of liver membranes (strain A/J) and purified by ion exchange chromatography, gel filtration, affinity chromatography, and isoelectric focusing. The overall degree of purification of H-2Kk was 1,300-fold and that of H-2Dd was 1,500-fold; approximately 8 mg of purified H-2a antigens were obtained from 1 kg of liver. The purification was followed by a sensitive radioimmunoassay in which H-2a-containing fractions were used to inhibit the binding of 125I-labeled H-2a to appropriate antisera. H-2Dd and H-2Kk co-purified through all the steps but the concentration of H-2Kk was 2- to 3-fold higher than that of H-2Dd in the liver homogenate as well as in the purified H-2 preparation. beta 2-microglobulin was initially present in a 3- to 10-fold excess over H-2 in the liver homogenate, but the purified H-2 preparation contained approximately 2 mol of alloantigenic heavy chain/mol of beta 2-microglobulin. Isoelectric focusing and disc-gel electrophoresis showed a charge heterogeneity of H-2, with a mean isoelectric point of pH 4.9. Electrophoresis on sodium dodecyl sulfate gels showed one band. Denaturing conditions were required to remove beta 2-microglobulin and small amounts of impurities from H-2. The amino acid sequence of the first 27 residues of the isolated heavy chains was determined.
Highly purified hepatic microsomal epoxide hydrase, which had been purified in the presence of proteolytic enzyme inhibitors, was subjected to carboxypeptidase Y digestion, automated Edman degradation, and carbohydrate analysis. Carboxypeptidase Y digestion resulted in the near stoichiometric release of leucine, the COOH-terminal amino acid. Automated Edman degradation permitted the identification of the first 20 amino acid residues of epoxide hydrase. Methionine was identified as the NH2-terminal residue. The NH2-terminal region of epoxide hydrase is similar in hydrophobicity to the NH2-terminal precursor segments of several secretory proteins and the NH2-terminal regions of several microsomal cytochromes P-450. Carbohydrate analyses of the enzyme revealed the presence of 0.5 to 1.0 mol of mannose/50,000 g of protein. These results provide evidence for the presence of a single polypeptide chain in our purified enzyme preparations and suggest that there may be only one enzymic form of epoxide hydrase in microsomes from phenobarbital-treated rats.
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The mRNAs coding for the histocompatibility (H-2) antigens of the mouse have been identified by cell-free translation of poly(A)-containing RNA obtained from the livers of mice (strain A/J), followed by immunoprecipitation of the cell-free products by using an antiserum directed against purified H-2a. Unlike the 47,000- and 46,000-Mr H-2 glycoproteins synthesized in splenic lymphocytes, the cell-free translation products have Mrs of 45,000 and 44,500, representing the unglycosylated forms of these antigens. The cell-free products are shown to be related to the H-2 antigens by competition immunoprecipitation with purified H-2a and by two-dimensional tryptic peptide mapping. The H-2 mRNAs which sediment at 17 S are found associated predominantly with membrane-bound polysomes and are actively translated in the liver where as many as 16 ribosomes are associated with each molecule of H-2 mRNA. The implications of these studies for molecular cloning and for an understanding of the organization and expression of the genes encoding these H-2 antigens are discussed.
A methylcholanthrene-induced tumor of BALB/c (H-2d) origin had been shown to express H-2 antigens normally associated with the H-2k haplotype. The molecules expressing the alien antigens have been partially purified and shown to be distinct from molecules expressing normal H-2d antigens. Like normal H-2 antigens, the alien antigens have a molecular weight of 48,000, are glycoproteins, and are noncovalently bound to beta 2-microglobulin. The alien antigens differ from normal H-2 antigens in their susceptibility to papain digestion, behavior during gel filtration, and overall stability. Possible mechanisms accounting for the expression of the alien antigen are discussed.
Antisera prepared against BALB/c Meth A sarcoma in syngeneic or compatible F1 mice recognize a protein with an apparent molecular weight of 53,000 in extracts of [35S]methionine-labeled transformed BALB/c cells. This component, designated p53, was not detected in normal adult mouse fibroblasts, lymphoid cells, or hematopoietic cells or in mouse embryo cells or 3T3 cells. An extensive variety of antisera, including alloantisera and heterologous antisera directed against structural antigens of murine leukemia viruses, was tested for reactivity with p53; other than Meth A antisera, only comparably prepared antisera against another BALB/c sarcoma, CMS4, had anti-p53 activity. All transformed mouse cells tested were found to express p53; these tests included chemically induced sarcomas, leukemias, spontaneously transformed fibroblasts, and cells transformed by simian virus 40 and murine sarcoma virus. The presence of p53 in tumors of no known viral etiology indicates coding by resident cellular genes; this does not exclude endogenous viruses as the source of coding sequences or the possibility that transforming viruses code directly for p53.
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The effects of a wide variety of chemical modification reagents on the activity of purified rat liver microsomal epoxide hydrase have been investigated. Alkylating agents, such as the phenacyl bromides and benzyl bromide are potent inhibitors of epoxide hydrase. 2-Bromo-4'-nitroacetophenone (p-nitrophenacyl bromide) specifically and irreversibly inactivates epoxide hydrase. Pseudo-first order kinetics of inhibition is observed at higher inhibitor/enzyme ratios. The rate of inactivation is controlled by a group on the enzyme with an apparent pKa of 7.6. Inactivation of the enzyme with 14C-labeled 2-bromo-4'-nitroacetophenone leads to the incorporation of approximately 1 mol of radioactive inhibitor/mol of protein. Epoxide hydrase can be protected against this inactivation by the substrate phenanthrene-9,10-oxide. These results are consistent with the interpretation that 2-bromo-4'-nitroacetophenone acts as an active site-directed inhibitor. The site of alkylation by 2-bromo-4'-nitroacetophenone is a histidine residue of epoxide hydrase. The N-alkylated histidine derivative has been identified as 1-(p-nitrophenacyl)-4-histidine. A possible mechanism for the enzymatic hydration catalyzed by epoxide hydrase is discussed which involves a histidine residue of the enzyme serving as a general base catalyst for the nucleophilic addition of water.
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Papain solubilized H-2a histocompatibility antigens (H-2Kk plus H-2Dd) have been purified by a large-scale procedure that can routinely provide 2-3 mg of heavy chain from 1 kg of mouse liver. The heavy chains were homogeneous by sodium dodecyl sulfate electrophoresis. Disc gel electrophoresis resolved two protein bands that were identified as H-2Dd and H-2Kd by immune complex formation and autoradiography. Comparative amino acid composition and NH2-terminal sequence analyses of unfractionated H-2a, H-2Kk, and HLA suggested close structural relationships. However, the following observations suggest that papain cleaves these membrane bound antigens at different positions with respect to the COOH terminus: the molecular weight of the peptide portion of papain solubilized HLA is smaller than that of H-2 (30,000 versus 33,700); the COOH-terminal sequences are different; and, finally, papain-solubilized H-2 contains a free cysteine residue in addition to the two disulfide bridges that are present in both H-2 and HLA.
We reported previously the partial purification of detergent-solubilized specific tumor rejection antigen of a chemically induced sarcoma, Meth-A. During the course of the study, rabbit antiserum against a partially purified specific tumor rejection antigen preparation was raised and rendered specific by in vivo absorption. In this report we show that an antigenic molecule defined by in vivo-absorbed rabbit antiserum, which we tentatively refer to as tumor-specific surface antigen, was solublized by detergent Nonidet P40, and extensive attempts at purification were carried out by a sequence of procedures including gel filtration, isotachophoresis, and polyacrylamide gel electrophoresis. The most highly purified tumor-specific surface antigen retained some specific tumor rejection antigen activity, suggesting an association of the two activities. Both antigens were shown to have a molecular weight of about 60,000 and an electrophoretic mobility of alpha-globulin.
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Antigens present in gp70 and p30 purified from Rauscher virus, were tested for immunogenicity in various assays measuring the anti-tumor immune response against lymphocytic leukemias of Friend (FBL-3) or Rauscher (RBL-5) virus origin. p30 had no effect on in vitro cytotoxicity against tumor cell targets mediated by either an anti RBL-5 serum or lymphocytes from animals immunized with FBL-3 cells. gp70 had had no effect on serum-mediated cytotoxicity but used at high concentrations it inhibited cell-mediated cytotoxicity. When used to immunize mice directly against subsequent challenge with the RBL-5 and FBL-3 leukemias, p30 had no discernible effect, while gp70 afforded partial protection against RBL-5 but only at high concentrations. Cell-free preparations of tumor membranes containing negligible amounts of gp70 were antigenically superior to gp70 in both the in vitro and in vivo assays. It is concluded that antigens on these purified proteins that are also expressed on tumor cells are not major targets of the anti-tumor immune response in this system.
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