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Biomedical subjects

J W Goding

Publications and source records attributed to J W Goding.

At least 55 records · Page 3Linked to original sources

Monoclonal antibodies to the murine Ly-2.1 cell surface antigen.

Six monoclonal anti-Ly-2.1 antibodies are described that arose from a single fusion using the spleen from a 129/ReJ mouse immunized with CBA/H thymus cells. The specificity was determined from the strain distribution, and testing of congenic strains where all six monoclonal antibodies detected the Ly-2.1 alloantigen. Furthermore, the antibodies fall into two groups: Group I (four antibodies) detected the expected number of Ly-2+ thymocytes and peripheral T cells, whereas Group II (two antibodies) detected 10% fewer peripheral T cells. Functional studies demonstrated that the Ly-2.1 determinant detected by a Group I antibody (49-31.1) was presented on cytotoxic T cells (Ly-1+2+), on concanavalin A (Con A)-induced suppressor T cells (Ly-1-2+), but absent from helper T cells (Ly-1+2-). One antibody (49-11.1) precipitated a 68,000-75,000 mol.wt glycoprotein, which on reduction yielded 30,000 and 35,000 mol.wt moieties. Thus, by functional, genetic and biochemical criteria these antibodies detected the Ly-2.1 specificity. In addition, a monoclonal, noncytotoxic, IgGl, anti-Thy-1.2 antibody is described.

Animals

Structure of the murine plasma cell alloantigen PC-1: comparison with the receptor for transferrin.

The plasma cell alloantigen PC-1 was isolated from C1.18 myeloma cells by immunoprecipitation and was analyzed by polyacrylamide gel electrophoresis. It was found to consist of two similar or identical disulfide-bonded polypeptide chains, each of Mr 115,000. The mobility of PC-1 in nonequilibrium pH gradient electrophoresis was similar to that of bovine serum albumin (pI 4.9). The PC-1 antigen is therefore similar to the transferrin receptor in Mr, charge, subunit composition, disulfide bonding, and developmental regulation. Similarities can also be detected by peptide mapping with subtilisin, but not with staphylococcal V8 protease. It is suggested that the PC-1 protein and the transferrin receptor may have had a common evolutionary origin, and may have similar functions.

Animals

Asymmetrical surface IgG on MOPC-21 plasmacytoma cells contains membrane heavy chain and one secretory heavy chain.

Membrane proteins from the B lymphomas WEHI-231 and 2PK3 and from the plasmacytomas MPC-11 and MOPC-21 were radioiodinated in situ by the lactoperoxidase method and were subjected to two-dimensional (nonreduced, reduced) polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate. Few heavily labeled membrane proteins were composed of disulfide-bonded subunits. One such protein (m.w. 200,000 intact and 116,000 reduced) shared some properties with the PC-1 alloantigen, although it was not conclusively identified. A second major disulfide-bonded protein (m.w. 200,000 intact and 95,000 reduced) has been identified previously as the receptor for transferrin. Membrane immunoglobulins of WEHI-231 (IgM) and 2PK3 (IgG2a) had the expected subunit structure, whereas membrane immunoglobulin was not detected on MPC-11. In contrast, surface IgG1 of MOPC-21 appeared to consist almost entirely of hybrid molecules containing one membrane gamma 1 chain and one secretory gamma 1 chain. This hybrid IgG molecule appeared to exist in both monomeric and dimeric forms. It is concluded that i) the synthetic and assembly mechanisms of secretory and membrane IgG1 are shared; ii) there are no special mechanisms to prevent pairing of membrane and secretory gamma 1 chains; iii) the presence of one hydrophobic tail is sufficient for membrane insertion of gamma 1 chains; and iv) the C-terminal extension cysteine residues of membrane gamma 1 chains in hybrid IgG molecules are either unpaired or may allow the formation of hybrid IgG dimers.

Animals

Subunit structure of cell surface proteins: disulfide bonding in antigen receptors, Ly-2/3 antigens, and transferrin receptors of murine T and B lymphocytes.

The surface proteins of lymphocytes from spleen and thymus and several cultured lymphoid tumor lines were radioiodinated in situ, solubilized with Triton X-100, and examined for the presence of disulfide-bonded subunits by two-dimensional (intact, reduced) NaDodSO4/polyacrylamide gel electrophoresis. [Hynes, R. O. & Destree, A. (1977) Proc. Natl. Acad. Sci. USA 74, 2855-2859]. Few lymphocyte surface proteins were found to consist of disulfide-bonded subunits, and the most prominent of these could be identified. In normal B lymphocytes and B-lymphoma cells, IgD or IgM (or both) were the major disulfide-bonded proteins, and these were easily detectable, even without immunoprecipitation. In contrast, analysis of thymocytes and T-lymphoma cells did not reveal any protein resembling immunoglobulin in its chain structure. The major labeled thymocyte membrane protein consisting of disulfide-bonded subunits was identified as the Ly-2/3 antigen. It appeared to contain disulfide-bonded homodimers of Mr 35,000 (alpha 2) noncovalently associated with a second pair of homodimers of Mr 30,000 (beta 2). Peptide mapping showed these polypeptides to be homologous. A third disulfide-bonded homodimer, which was heterogeneous in apparent Mr, appeared to be part of the Ly-2/3 complex. All cultured T- and B-lymphoma lines examined were found to possess a major surface protein that appeared to be a disulfide-bonded homodimer of a polypeptide of Mr 95,000. This protein was identified as the receptor for transferrin. It is suggested that the presence of two or more subunits in cell surface receptors renders their ligand functionally bivalent, making ligand-induced receptor aggregation possible.

Animals

Evidence for linkage of murine beta 2-microglobulin to H-3 and Ly-4.

Murine beta 2-microglobulin exists in 2 electrophoretically distinct forms; C57BL/6 mice possess the basic allele whereas BALB/c, CBA, AKR, and NZB possess the acidic allele. Mice heterozygous for beta 2-microglobulin express both alleles. Analysis of recombinant inbred mice suggests linkage of beta 2-microglobulin to H-2 or H-3. B10.C (28NX) mice (which possess the H-3c allele of BALB/c on a C57BL/10 background) possess the acid allele. Taken together, these results are consistent with the beta 2-microglobulin gene lying on chromosome 2, and being linked to H-3 and Ly-4.

Alleles

The regulation of growth and differentiation of a murine B cell lymphoma. I. Lipopolysaccharide-induced differentiation.

The B cell lymphoma WEHI 231 has been previously characterized as resembling a resting B cell, bearing large amounts of IgM on the cell surface, but not secreting immunoglobulin. When WEHI 231 cells were cultured together with low concentrations of lipopolysaccharide (LPS) (0.01 to 3 micrograms/ml), increased levels of immunoglobulin were detected in culture supernatants. Analysis by immunoprecipitation and gel electrophoresis demonstrated that this was secreted (19S) IgM. It was noted that small amounts of secretory IgM were produced even in control cultures not deliberately exposed to LPS. Analysis of the cell lysates showed that LPS treatment resulted in a reduction of synthesis of the surface form of IgM. In contrast, the cytoplasmic pool of IgM precursors was considerably expanded by LPS treatment, reflecting the overall increase in synthesis of IgM in LPS-treated cells. These changes in IgM metabolism appear to parallel closely those occurring in normal B cells after mitogen or antigen challenge. This cloned tumor line promises to be a valuable system in which to investigate some of the molecular events in B cell differentiation.

Animals

Monoclonal antibody OKT-9 recognizes the receptor for transferrin on human acute lymphocytic leukemia cells.

The monoclonal antibody OKT-9 recognizes a surface protein of human lymphocytes that consists of a disulfide bonded homodimer of m.w. 200,000 intact and 95,000 reduced. A similar protein is precipitated by transferrin-agarose, but not by agarose alone. Peptide mapping by limited proteolysis shows that the proteins precipitated by OKT-9 antibodies and transferrin-agarose are homologous. It is concluded that OKT-9 antibodies recognize the transferrin receptor. Expression of receptors for transferrin may be useful as a marker for activated or dividing cells.

Animals

Identification and characterization of protein antigens of Leishmania tropica isolates.

Promastigotes of 4 Leishmania tropica isolates were biosynthetically labeled with 35S-methionine or surface radioiodinated, and the detergent lysates were analyzed by 2 dimensional gel electrophoresis. The protein patterns of cytoplasmic and membrane proteins detected in two independent isolates from simple cutaneous leishmaniasis cases were similar to each other, but were different from 2 isolates taken over a 20-yr interval from a case of leishmaniasis recidiva. The analysis of radioiodinated membrane proteins of L. tropica promastigotes revealed a simple pattern of 6 to 7 labeled major proteins and some minor ones. Unlike cytoplasmic proteins, membrane proteins were highly resistant to digestion by proteases. Partial cleavage of radioiodinated surface proteins by staphylococcal V-8 protease in the presence of 4.5 M urea and peptide mapping confirmed the presence of shared and isolate-specific proteins. The significance of these findings for the classification of Leishmania spp. and the pathogenesis of the different disease states that they cause are discussed.

Animals

Allelic forms of beta 2-microglobulin in the mouse.

Spleen cells from BALB/c and C57BL/6 mice were cultured separately or together, and the biosynthetically labeled supernates were examined by two-dimensional polyacrylamide gel electrophoresis. Although there were no major labeled proteins in the mixed group that were not present in the separate cultures, there was a major low-molecular-weight protein that differed in charge in the two strains. This protein was identified as beta 2-microglobulin; it could be labeled with 125I on the cell surface by using the lactoperoxidase technique, was noncovalently attached to the H-2K molecule, and had the expected size and charge when compared with human beta 2-microglobulin. Both acidic and basic forms were present in (BALB/c X C57BL/6) F1 hybrids, suggesting codominant expression, although allelic exclusion was not ruled out. Either parental form could combine with one parental form of the H-2K molecule. The beta 2-microglobulin gene does not appear to be closely linked to either the H-2 or th immunoglobulin heavy-chain complexes. It is proposed that beta 2-microglobulin is an "effector subunit" of histocompatibility antigens and that its physiological role is to interact with a specific killing structure on the surface of cytolytic T lymphocytes and thereby initiate cell destruction.

Alleles

Biosynthesis of lymphocyte surface IgD in the mouse.

The synthesis of IgD was studied in mouse spleen cells by using [35S]methionine labeling followed by immunoprecipitation with monoclonal antibody and two-dimensional gel electrophoresis. After a 15-min pulse of [35S]methionine, a relatively basic form (IgD1) of apparent m.w. 59,000 was precipitated. Conversion into more acidic forms of m.w. 63 to 72,000 (IgD2) took place during a chase period of several hours. The acidic form was identical in mobility to that of IgD labeled by surface radioiodination, and was almost completely removed by treatment of intact cells with pronase. Neuraminidase treatment of the surface form (IgD2) produced a form resembling IgD1 in charge, but with no detectable change in m.w. Treatment of IgD1 with endoglycosidase H resulted in a form with an apparent m.w. of 50,000, whereas IgD2 was resistant to this enzyme. Both IgD1 and IgD2 bound to lentil lectin, whereas only IgD2 bound to Ricinus communis hemagglutinin, which binds to terminal galactose residues. These results indicate that IgD is synthesized as an incompletely glycosylated precursor possessing "high mannose" type oligosaccharide moieties, and passes relatively slowly through the cell. Shortly before surface appearance, galactose and sialic acid are added. No specific association with any other labeled protein was observed, and any IgD secretion was below the limits of detectability.

Animals

Detection and characterization of membrane antigens of Toxoplasma gondii.

Toxoplasma gondii tachyzoites were surface radioiodinated by the lactoperoxidase technique, and the solubilized membrane proteins were analyzed by two-dimensional polyacrylamide gel electrophoresis. Four major labeled proteins with apparent m.w. of 43,000, 35,000, 27,000, and 14,000 were detected. None of the radioiodinated proteins bound to concanavalin A-Sepharose. When a panel of eight different fluorescein-conjugated lectins was used in an attempt to characterize further the nature of the cell membrane, none of the lectins bound to intact tachyzoites. Two-dimensional polyacrylamide gel electrophoresis did not reveal any significant differences among three different strains of Toxoplasma. Each of the radioiodinated surface proteins was precipitable by sera from mice chronically infected with the same strain as well as by a series of sera from mice infected with other strains. Sera from humans with acute Toxoplasma infection showed more variability in that some precipitated all labeled proteins whereas others precipitated only two or three of them. Monoclonal antibodies (2G11 and 3E6) prepared by hybridization of spleen cells from Toxoplasma-immune mice with myeloma cells consistently precipitated both the solubilized 35,000 and 14,000 dalton proteins, whereas 1E3 precipitated the 43,000-dalton protein and 1E11 the 27,000-dalton protein.

Animals

Allotypes of IgM and IgD receptors in the mouse: a probe for lymphocyte differentiation.

Antibodies to IgD and IgM are present in many mouse alloantisera made against lymphocytes. Antibodies to IgM are also present in a small minority of conventional antiallotype sera made against pertussis/anti-pertussis complexes. These antibodies reflect different allelic forms of IgD and IgM in different mouse strains, and allowed the mapping of the delta- and mu-chain genes (Ig-5 and Ig-6, respectively) to the heavy-chain complex. The variable portions of IgM and IgD receptors on individual cells bearing both chains are similar or identical. Both receptors show allelic exclusion and come from the same chromosome on individual cells (haplotype exclusion). It is suggested that very early in B lymphocyte differentiation there is a commitment to a given chromosome, and translocation of one copy of a given variable region gene to each heavy-chain gene. Subsequent switches of immunoglobulin class then involve differential gene activation. Immature B cells possess IgM receptors only and mature into cells bearing both IgM and IgD receptors. After activation with antigen, IgD is probably lost. These findings are discussed within the framework of the clonal abortion theory of B-lymphocyte tolerance.

Animals

Use of staphylococcal protein A as an immunological reagent.

This brief review summarises the major uses of staphylococcal protein A in immunology. Protein A is covalently linked to the cell wall of most strains of Staphylococcus aureus, and binds immunoglobulin molecules with high affinity. The principal molecule bo-nd is IgG, although in many cases binding is restricted to certain IgG subclasses. Some IgM and IgA binds in certain species. This property allows rapid, simple and economical methods for the purification and analysis of immunoglobulins, and the fractionation of subclasses which are difficult to separate by other means. Fractionation on protein A affinity columns is a simple and efficient way of separating immunoglobulin F (ab) and F (ab')2 from Fc fragments. Intact staphylococci are useful as a solid phase adsorbent for isolating antigen-antibody complexes, membrane antigens and receptors, and to replace 'second antibody' in radioimmunoassay. Finally, protein A has proven useful for the study of antigens and receptors on the surface of intact cells, and for the detection of antibody-secreting cells. Thus, the use of protein A is now the method of choice for many preparative and analytical purposes in immunology.

Animals