Further evidence for the serologic association of the O (H) and I blood groups.
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Biomedical subjects
Publications and source records attributed to L N Chessin.
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Immunoglobulin synthesis by 16 long-term suspension cultures of mononuclear cells derived from peripheral blood of nine patients with heterophile-positive infectious mononucleosis (IM) has been demonstrated by radioimmunoelectrophoretic techniques. All cell lines synthesized molecules with IgG (gamma) heavy chain specificity. 14 cell lines produced molecules with IgM (mu) heavy chain specificity and 11 cell lines produced molecules with IgA (alpha) heavy chain specificity. No detectable synthesis of molecules with IgD (delta) heavy chain specificity was observed by these cell lines derived from peripheral blood of patients with IM. 13 cell lines produced molecules with type K (kappa) light chain specificity and 6 cell lines produced molecules with type L (lambda) light chain specificity. Of interest, 9 of 16 lines produced IgG (gamma), IgA (alpha), and IgM (mu) heavy chain molecules and 5 of these cell lines produced molecules with type K (kappa) and type L (lambda) light chain specificity as well. Further characterization by combined polyacrylamide gel filtration, immunodiffusion, and radioautography indicated the presence of newly synthesized immunoglobulin molecules with both heavy and light polypeptide chains in close association as well as free light polypeptide chain synthesis. Investigation of the localization of immunoglobulin in single cells by immunofluorescent techniques revealed that 5-22% of cells in these lines were strongly reactive with a fluorescein isothiocyanate-conjugated rabbit antisera directed against the antigenic determinants of human IgG and cross-reactive with the determinants common to IgA and IgM. No heterophile antibody, heteroagglutinin, or hemolytic antibody could be demonstrated in these cell lines derived from peripheral blood of patients with heterophile-positive infectious mononucleosis.
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The saline extract from the roots of Phytolacca americana (pokeweed) possesses three biological properties; hemagglutinin, leukagglutinin, and mitogen. Fractionation and further purification on calcium phosphate column chromatography revealed that the biologically active substance was eluted in the front moving fraction with 0.05 M phosphate buffer pH 7.5. Analytical separation on polyacrylamide gels in disc electrophoresis yielded a single homogeneous band with an R(f) value of 0.43 containing all three biological activities. This fraction had an ultraviolet absorption spectrum similar to PHA, was stable to both periodate and mercaptoethanol treatment and gave a single band in double diffusion and immunoelectrophoretic analysis against the antibody prepared to the crude PWM saline extract. Absorption studies with red cells or stroma revealed that the hemagglutinin could be selectively removed without significantly altering the mitogen, whereas absorption with leukocytes resulted in loss of both the mitogenic and leukagglutinating activities.
A study of the kinetics of RNA and DNA synthesis in PWM-stimulated lymphocytes revealed that RNA synthesis preceded the onset of DNA synthesis by approximately 24 hr and that DNA synthesis and transformation was maximal between 66 to 78 hr. Histochemical and radioautographic studies on PWM stimulated cultures indicated that at 72 hr 50 to 60% of the cell population had been transformed by PWM, and that a distinct cell type bearing cytologic resemblance to the early plasma cell had emerged. The RNA sedimentation profile for newly synthesized RNA in PWM-stimulated cells showed that a large peak of 45 to 50 S material was formed after 24 and 40 hr. PWM thus produces a distinctive transformation of human peripheral blood lymphocytes.
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