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E S Rector

Publications and source records attributed to E S Rector.

27 records · Page 2Linked to original sources

Determinants of ryegrass pollen cytochrome c recognized by human IgE and murine monoclonal antibodies.

In attempts to produce fragments of an allergenic molecule which would retain allergenic and/or antigenic determinant(s), the cytochrome c of ryegrass (RG) pollen, which had been shown to be an allergenic constituent of this pollen, was digested with trypsin and chymotrypsin and the resulting fragments were separated by high performance liquid chromatography. Several of these fragments were shown, with the aid of the radioallergosorbent test and solid phase radioimmunoassays, to bind IgE antibodies present in a pool of six sera from grass-sensitive patients and three murine monoclonal antibodies, designated as Mab 41, Mab 42 and Mab 43, which had been originally produced against the crossreacting cytochrome c of Kentucky bluegrass (KBG). In summary, (i) fragments C-67 and C-74 reacted with all antibodies, (ii) fragments T-45, T-46 and C-69 bound to human IgE antibodies as well as to Mab 41 and Mab 42, but not to Mab 43, (iii) fragment T-44 reacted only with Mab 41 and Mab 42, and (iv) fragment C-83 bound only Mab 42 and Mab 43. On the basis of these results, it is concluded that (i) immunochemically active fragments of the RG cytochrome c can be readily produced by enzymatic degradation, (ii) there is significant crossreaction between the antigenic determinants of RG and KBG cytochromes c, (iii) whereas all fragments possessed at least two of the original antigenic determinants, fragments C-83 and T-44 were devoid of allergenic determinants, (iv) the antigenic determinants recognized by Mab 41 and Mab 42 were different from those reacting with human IgE antibodies and Mab 43, (v) each of the three monoclonal antibodies recognized a distinct antigenic determinant, (vi) fragments C-67 and C-74 possessed all determinants recognized by the human IgE and mouse antibodies used.

Animals↗

Immunochemical properties of some monoclonal IgE antibodies to 4-hydroxy-3-nitrophenylacetyl (NP).

Several hybridoma cell lines secreting NP-specific, murine IgE antibodies were generated by fusion of P3-X20 (gamma, kappa) tumour cells with spleen cells from (BALB/c X C57B1/6)F1 (CB6F1) mice previously immunized with NP-ovalbumin. Four subclones (designated NP-epsilon-3.57, NP-epsilon-15.88, NP-epsilon-91.58 and NP-epsilon-95.31) were propagated in vivo and milligram quantities of the corresponding IgE antibodies were purified from ascitic fluid by gel filtration, ion exchange chromatography and affinity chromatography. Immunological analyses and sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS-PAGE) indicated that NP-epsilon-15.88, NP-epsilon-91.58 and NP-epsilon-95.31 all possessed lambda 1 (or possibly lambda 3) light chains; and that NP-epsilon-3.57 possessed lambda 2 light chains; NP-epsilon-95.31 also expressed the P3-X20 derived, MOPC-21 kappa light chain. Radioallergosorbent test (RAST) titration curves, generated from the interaction of the four monoclonal IgE antibodies with NP-BSA attached to paper discs (NP-BSA-P) were found to be non-overlapping. Measurements of the relative amounts of NP-epsilon-aminocaproic acid (NP-CAP) and 4-hydro-3-iodo-5-nitrophenylacetyl-epsilon-aminocaproic acid (NIP-CAP) that were required to inhibit by 50% the binding of the 4 IgE antibodies to NP-BSA-P indicated that these antibodies were all heteroclitic, since their affinity for NIP appeared to be higher than their affinity for NP. These results, in conjunction with other findings reported in the literature, suggested that the V regions of NP-specific IgE antibodies are similar to the V regions of NP-specific IgM and IgG antibodies, produced by the same mouse strains. Finally, in vitro histamine release measurements demonstrated that two of these monoclonal IgE antibodies could mediate antigen induced histamine release from passively sensitized rat peritoneal mast cells.

Animals↗

The enumeration of mouse IgE-secreting cells using plaque-forming cell assays.

With the aid of a specific rabbit antibody preparation to purified monoclonal murine IgE, two plaque-forming cell (PFC) assays have been developed for the detection and enumeration of mouse IgE-secreting cells. The first assay, utilizing protein A-coated sheep red cells (protein A-SRC), detected antibody-secreting cells on the basis of the class of the secreted Ig irrespective of antigen specificity. With this assay, 30% of the class of the viable cells of two distinct IgE-secreting hybridoma cell lines were scored as PFC. Under these conditions, plaques were not obtained with IgG1 or IgG2a-secreting hybridoma cells. The second PFC assay, which utilized SRC coated with ovalbumin (OA-SRC), enumerated cells secreting anti-OA IgE antibodies. Similar kinetic patterns were observed for the cellular (IgE PFC/spleen) and humoral (IgE serum levels) responses of (C57BL/6 x DBA/2)F1 mice following immunization with 10 micrograms of OA adsorbed to 1 mg of A1(OH)3. Thus, it is concluded that the reverse plaque assay detecting all IgE-secreting cells, as well as the antigen-specific IgE PFC assay, can be used for the quantitation of IgE responses at the cellular level.

Animals↗

The enumeration of rat IgE-secreting cells using a reverse plaque-forming cell assay.

A reverse hemolytic plaque assay utilizing protein A-coated sheep red cells and a specific rabbit anti-rat IgE preparation has been adapted for the enumeration of rat IgE-secreting cells derived from the IR-162 rat plasmacytoma and from rats infected with Nippostrongylus brasiliensis. Under optimal conditions, approximately 10-15% of the viable plasmacytoma cells were scored as plaque-forming cells. In rats infected with 5000 Nippostrongylus brasiliensis larvae, a maximum of 2 x 10(6) IgE-secreting cells were found in the mesenteric lymph nodes, and no IgE plaque-forming cells in their spleens. The kinetics of the mesenteric lymph node plaque-forming cell responses closely coincided with total serum IgE levels, with maximum responses occurring 15-16 days after infection. There was a high degree of correlation between the mesenteric lymph node IgE plaque-forming cell responses and total serum IgE levels of individuals rats. It was concluded that the IgE-secreting cells in the mesenteric lymph nodes contributed, in a large way, to the elevated levels of IgE found in the circulation of these rats.

Animals↗

A method for the preparation of protein-protein conjugates of predetermined composition.

A novel procedure for the synthesis of well-defined protein-protein conjugates is described using ovalbumin (OA) and IgG as test proteins. This procedure involves the highly selective and rapid reaction of alkyl halide and sulfhydryl groups, which have been grafted, respectively, onto the proteins to be conjugated. Accordingly, iodoacetylated IgG, (ICH2CO)nIgG, was prepared by the reaction of the epsilon-amino groups of IgG with the N-hydroxysuccinimide ester of iodoacetic acid (NHIA), the degree of iodoacetylation (n) being proportional to the concentration of NHIA. OA was reacted with S-acetylmercaptosuccinic anhydride (SAMSA) under conditions yielding, on the average, a monosubstituted derivative. Following removal of the protective S-acetyl group, the resulting -SH derivative of OA was reacted with (ICH2CO)nIgG. The OAx-IgG conjugates so produced were characterized by gel filtration, specific radioactivity (using tritiated OA) and immunodiffusion. It was found that the average number of OA molecules coupled per IgG molecule could be controlled by varying the degree of iodoacetylation of IgG.

Dinitrobenzenes↗

Age-dependent changes in sensitivity to antigen: its relationship with the antigen processing system.

The relationship between the antigen processing or accessory cell system and the maturation, with age, of antibody-producing capability was investigated in the mouse. This was done by analyzing the antibody responses given by immunocompetent cells from neonatal and from adult male mice in an identical antigen-processing system environment. Specifically, 4 x 10(7) normal spleen cells from either 12-day-old or adult mice were challenged with varying numbers of SRC in adult irradiated syngeneic recipients. The subsequent IgM and IgG2a PFC responses for both age groups were analyzed in terms of antigen dose-antibody response curves. Analyses of these curves indicate: 1) the dose of antigen required to elicit the optimal antibody response is essentially identical for both age groups and (2) the bandwidths obtained using neonatal donors are significantly narrower than those obtained with adult donors. Whereas, intact neonatal and adult mice exhibit differences in antigen optimal doses, these differences are eliminated when the immunocompetent cells are stimulated in the presence of identical antigen-processing systems. It is concluded that maturation of the antigen-processing system results in an increased sensitivity to antigen. Examination of the bandwidths of the dose-response curves revealed that immunocompetent cells from the young mice, either in situ or in adult irradiated recipients exhibited narrower bandwidths than did their adult counter parts. Thus, the increase in bandwidth observed with age is attributed to changes in the population of immunocompetent cells--perhaps a reflection of increased diversity, and is not due to the antigen-processing system. Quantitation of the antigen-processing function using accessory cell-depleted and partially restored mice indicated that when IgG responses were compared a higher frequency of accessory cells was demonstrated in adultspleens as opposed to neonatal spleens.

Aging↗

Cell cycle behavior and MyoD expression in response to T3 differ in normal and mdx dystrophic primary muscle cell cultures.

Since mdx limb muscle regeneration in vivo is accompanied by rapid myoblast proliferation and differentiation compared to normal, we tested the possibility that proliferation and differentiation were differentially regulated in normal and mdx dystrophic muscle cells. Cell cycle behavior, MyoD expression, and the effects of thyroid hormone (T3) treatment were examined in primary cultures. Using a 4-hour pulse time for bromodeoxyuridine (BrdU) incorporation during S-phase, the phases of the cell cycle (early S, late S, G(2)/M, and G(0)/G(1)) were separated by 2-colour fluorescence (BrdU/PI) analysis using flow cytometry. The G(0)/G(1)-early S and the late S-G(2)/M transitions were examined under the influence of T3 in cycling normal and mdx muscle cell cultures over a 20-hour time period. Myogenesis and differentiation were assessed morphologically and by immunostaining for MyoD protein. Mdx cultures had fewer cells in G(0)/G(1) at 20 hours and more cells in early and late S-phase compared to normal cultures. T3 significantly increased the proportion of normal cells in early S-phase by 20 hours, and reduced the proportions in G(2)/M phase. Over the same time interval in parallel cultures, the proportion of MyoD+ normal cells decreased significantly. In the absence of T3, mdx cell cultures showed greater proportions of cells in S-phase than normal cultures, and similar increases in S-phase and loss of MyoD expression over time. However, mdx cultures had no change in the proportion that were MyoD+ during T3 treatment. The results confirm that T3 in primary cultures increased proliferation and prevented the de-differentiation of mdx cells to a greater degree than was typical of normal cells. The different susceptibilities to T3-related shifts between proliferation and differentiation observed in vitro support the idea that committed mdx myoblasts may be more activated and proliferative than normal myoblasts during regeneration in vivo.

Animals↗