Are VH framework antigenic determinants expressed on both rabbit B and T lymphocytes?
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Biomedical subjects
Publications and source records attributed to R G Mage.
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Staphylococcal protein A and several different immunoglobulins have been radiolabeled to high specific activities (greater than 10(6) cpm/microgram) by reductive methylation with tritiated (3H) sodium borohydride. The proteins retain excellent functional and antigenic properties. The utility of these reagents in a variety of assays for cell surface antigens is illustrated. The results indicate that this radiolabeling procedure may become the method of choice for many cell surface and solution immunoassays.
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Rabbit and mouse splenic lymphocytes were radioiodinated by the lactoperoxidase technique, extracted with non-ionic detergent, immunoprecipitated with high titered rabbit anti-kappa antisera, and compared by SDS-PAGE. Mouse sIg peaks were reproducibly larger in size than rabbit sIg peaks (often greater than 10 times). Neither differences in incorporation of label into the rabbit cell surface, nor differences in average sIg density explain this result. Total TCA-precipitable radioactivity was similar in each species. Estimation of the relative amounts of sIg in the mouse and rabbit showed similar average sIg densities. Differences in detergent solubility, proteolytic lability, or antisera used also do not adequately account for this difference. Thus, these data indicate that radioactivity incorporated after lactoperoxidase catalyzed cell surface radioiodination may not reflect cell surface Ig density. Conclusions about cell surface density based upon relative incorporation of radioactivity should be confirmed by other approaches.
Pre-B cells in developing rabbits were identified by immunofluorescence as cells containing small amounts of cytoplasmic IgM (cIgM) but lacking surface immunoglobulin (sIg). During ontogeny the first pre-B cells appeared in fetal liver at 23 days gestation, 2 days before the appearance of sIgM+ B lymphocytes. Pre-B cells were relatively frequent in fetal and adult bone marrow, but were not found in other tissues except rarely in fetal spleen. Allelic exclusion is apparently established at this early stage of development, because individual pre-B cells and B lymphocytes from heterozygous rabbits expressed only one of the alternative alleles in amounts sufficient for detection. Development of isotype diversity among rabbit B lymphocytes followed the general pattern seen in mouse and man. sIgM+ cells were detected before birth. Expression of sIgG was detected in neonatal rabbits on cells which were also sIgM+ but in older animals most sIgG+ cells lacked sIgM. Cells bearing sIgA were not found until 5-6 days of age, and had no other isotype on their surface.
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Hapten-binding receptor material was isolated from sensitized rabbit lymphocytes by a method described previously for murine receptor material. The material was separated into a fraction expressing immunoglobulin determinants (anti-Ig+ fraction) and a fraction lacking known class and type-specific determinants of Ig constant domains (anti-Ig- fraction). We present evidence in support of the notion that--in analogy to the mouse system--the anti-Ig+ fraction is B-cell-derived, whereas the anti-Ig- fraction originates from T lymphocytes. Receptors of the anti-Ig- phenotype are found to express a locus allotypic determinants and, thus, appear to carry variable portions of immunoglobulin heavy chains.
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An immunopeptide bearing a3 allotypic determinant(s) was isolated from the gamma chain of an a3 homozygous rabbit (G222-2) immunized with type III pneumococcal vaccine. Immunocogical properties of peptides were studied using a radioimmunoassay that involved inhibition by these peptides of a reaction between 125I-labeled anti-a3 antibody and Sepharose-bound a3 immunoglobulin G (IgG). The gamma chain was isolated from IgG of restricted heterogeneity and then citraconylated and digested with trypsin. The tryptic digest (TD1) was passed through an anti-a3 immunoabsorbent column either directly or after an intermediate step of Sephadex G-75 chromatography. The bound peptides (T1) were eluted with 0.1 M acetic acid and further digested with trypsin. The digest (TD2) was again run on the anti-a3 immunoabsorbent column to purify the bound immunopeptide T2. In the radioimmunossay this immunopeptide was found to have major a3 determinant(s). Its molecular weight was found to be approximately 6,000, which decreased to about 3,000 after reduction and alkylation. These data, together with NH2- and COOH-terminal analyses and cysteine peptide mapping, demonstrated that T2 is composed of two polypeptide chains linked by a disulfide bond, one from the cysteine 22 region having lysine at the COOH terminus and the other from the cysteine 92 region arginine at the COOH terminus. The lysine peptide was separated from the arginine peptide and its NH2-terminal sequence was found to be Gly-Asx-Glx-Ser-Thr-Cys. Since the cysteine is at position 22, the lysine peptide starts at position 17. It has approximately 22 residues. The framework sequence from 17 to 20 is different from those reported so far. In addition, the heavy chain used in these studies has some other unusual features including a histidine, probably in the first hypervariable region. The presence of histidine in the first hypervariable region of rabbit heavy chain has not been reported previously. The other peptide which is about 30 amino acids in length and ends with arginine 94, probably includes positions 67, 70, 71, 84, and 85 that are believed to have substitutions correlating with a allotypes. In a hypothetical three-deminsional model of the Fv portion of rabbit anti-SIII antibody BS-5, residues 17 to 33 of the lysine peptide and 67 to 79 and 84 to 85 which may be present in the arginine peptide are fully exposed on the surface and are far removed from the antibody combining site.
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Genetically controlled intraspecific differences between immunoglobulins (allotypes) provide valuable markers for the study of the quantitative expression of allelic and nonallelic alternative forms of immunoglobulins (Igs) during the normal development of rabbits. Heterozygous rabbits are mosaics of cells expressing different Ig-genes since fully differentiated productive cells generally secrete only one of alternative forms of Ig. The proportions of cells that differentiate to produce allelic forms of immunoglobulins during normal development depend on the particular heterozygous genotype. The normal proportions of some markers can be drastically altered if the differentiation of lymphoid cells in the young rabbit occurs in the milieu of antibody specific for one form (allotype suppression). An initiating step in the establishment of persistent allotype suppression is probably the interaction of antiallotype antibody with allotype-bearing receptors on lymphoid cell surfaces, but the mechanism for the maintenance of a state of chronic suppression may well be more complex. Allotype suppression can be viewed as one example of numerous immunological phenomena that reflect specific and finely tuned regulatory mechanisms governing the differentiation and clonal expansion of lymphoid cells destined to secrete immunoglobulins.
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