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Biomedical subjects

A Novogrodsky

Publications and source records attributed to A Novogrodsky.

At least 127 records · Page 7Linked to original sources

Transglutaminase activity in human lymphocytes: early activation by phytomitogens.

Transglutaminase activity is present in human peripheral lymphocytes and is enhanced up to 15-fold within 10-30 min after treatment of the cells with concanavalin A. Phytohemagglutinin has a similar effect. The enzyme is not detected when intact cells are assayed; it is detected only in cell lysates. Concanavalin A enhances transglutaminase activity only when it is incubated with intact cells; concanavalin A treatment of cell lysates has no effect, alpha-Methyl-D-mannoside specifically inhibits the enhancement of transglutaminase activity in cells treated with concanavalin A results from the specific interaction of the lectin with its saccharide binding site on the cell surface, rather than by direct interaction with the enzyme itself. The increased activity of transglutaminase in cells treated with concanavalin A, as compared to unstimulated cells, is maintained under assay conditions in which saturating levels of Ca2+ are present. Transglutaminase may be involved in early cellular events leading to lymphocyte blastogenesis.

Animals↗

Potentiation of lymphocyte activation by colchicine.

Proliferation of human lymphocytes induced by IO4- is potentiated by 30 min exposure to colchicine (10(-6)M), whereas the response to Con A is inhibited. Treatment with colchicine before or after IO4- modification has similar enhancing effects. Lumicolchicine does not alter proliferative responses. In addition to the proliferation of IO4--oxidized cells, irradiated IO4- modified lymphocytes induce proliferation when mixed with untreated lymphocytes. Enhancement occurs in both these conditions only when IO4--modified cells are treated with colchicine. Preliminary data indicate that proliferation in mixed lymphocyte cultures is also potentiated when either stimulating or responding cells are pretreated with colchicine. These findings suggest a selective stimulatory effect of colchicine on lymphocyte responses induced by cell-cell contact. Agents that modify microtubular assemblies might regulate the induction of immune responses that involve cellular interactions.

Adult↗

Lymphocyte mitogenesis induced by a mammalian liver protein that specifically binds desialylated glycoproteins.

A purified rabbit liver membrane protein that binds desialylated glycoproteins has been shown to be a mitogen for human peripheral lymphocytes. The mitogenic activity is specific for desialylated thymus-derived (T)-cells. The loss of mitogenicity upon exposure of the binding protein to neuraminidase and the inhibitory potency of asialo-orosomucoid support the conclusion that the site involved in the binding of asialoglycoproteins is also responsible for the mitogenic effect on desialylated lymphocytes. The potential relevance of this phenomenon to the etiology of hepatocellular necrosis is considered.

Animals↗

Stimulation of human peripheral blood lymphocytes by periodate, galactose oxidase, soybean agglutinin, and peanut agglutinin: differential effects of adherent cells.

Blastogenic responses of normal human peripheral lymphocytes to three distinct groups of mitogens were studied: Group I--phytohemagglutinin (PHA), concanavalin A (Con A), and pokeweed mitogen (PWM); Group II--soybean agglutinin (SBA) and peanut agglutinin (PNA); and Group III--galactose oxidase (GO) and sodium periodate (IO4-). SBA was mitogenic for human cells, and this effect was enhanced by treating the cells with neuraminidase (NA). PNA was mitogenic only after cells had been treated with NA. GO was effective before and activity was increased after lymphocytes were treated with NA. Responses to Group II and III mitogens were more variable than were those to Group I mitogens. Studies with purified T and B cells indicated that SBA and PNA were T cell mitogens, whereas IO4- and GO failed to stimulate either T or B cells. Adding macrophages back to this system indicated that they were both T cell mitogens with strict macrophage requirements. T cell responses to SBA and PNA were enhanced over responses to unfractionated cells to a degree that could not be explained simply by enrichment of the cultures with T cells. Removal of adherent cells from unfractionated cell suspensions again revealed a marked enhancement of responses to SBA and PNA, a consistent decrease in responses to IO4-, and a variable decrease in responses to GO. Similar results were found with 14C-leucine and 3H-uridine incorporation, as well as 3H-thymidine for the assessment of bastogenic response. Mechanisms responsible for these differential effects of macrophage depletion on lymphocyte responses to different groups of mitogens are yet to be determined. Either different mitogens require different lymphocyte to macrophage ratios for optimal stimulation, or some mitogens (i.e., SBA and PNA) form inhibitory complexees in the lymphocyte-macrophage mixture. In any case, variability in response to mitogenic agents in normal as well as pathologic states may be dependent on adherent cell populations, rather than on the lymphocytes themselves.

Alcohol Oxidoreductases↗

The requirement for tetravalency of soybean agglutinin for induction of mitogenic stimulation of lymphocytes.

The mitogenic activity of soybean agglutinin was found to depend on the presence of lectin aggregates formed in lectin preparations stored in the lyophilized state. Such soybean agglutinin preparations gave maximal stimulation of untreated pig lymph node cells and neuraminidase-treated mouse spleen cells at relatively high concentrations, ranging from 100 to 2000 mug/ml. After separation into unaggregated (divalent) and polymeric (tetra-and multivalent) fractions, it was found that the unaggregated lectin did not stimulate the cells, while the tetravalent and multivalent fractions were active and gave maximal stimulation at a concentration of 10 mug/ml. These results suggest that soybean agglutinin must have at least four sugar binding sites in order to be able to stimulate lymphocytes.

Acetylgalactosamine↗

gamma-Glutamyl transpeptidase, a lymphoid cell-surface marker: relationship to blastogenesis, differentiation, and neoplasia.

gamma-Glutamyl transpeptidase, an enzyme that catalyzes gamma-glutamyl transfer from gamma-glutamyl compounds to amino acid and peptide acceptors, and which is known to be localized in the membranes of many epithelial cells, was found in a variety of lymphoid cells. The lymphoid cell enzyme is located on the cell surface, and exhibits substantially the same substrate specificity as the enzyme found in epithelial cells. Human and rat (but not mouse) lymphocyte gamma-glutamyl transpeptidase was stimulated by treatment of the cells with mitogens. Normal human peripheral B-cells were more active than T-cells, but the reverse relationship of activities was found in chronic lymphocytic leukemia lymphocytes. Human lymphoblastic lines vary markedly in activity. In general, cell lines with B- and T-characteristics from patients with lymphoproliferative diseases had much lower activities than those of B-cell lines derived from normal subjects. The highest activity found was in a human myeloma line active in synthesis of an immunoglobulin light chain. The data indicate that gamma-glutamyl transpeptidase is a surface marker reflecting differentiation in normal and neoplastic cells.

Animals↗

Peanut agglutinin, a new mitogen that binds to galactosyl sites exposed after neuraminidase treatment.

Peanut agglutinin, purified by affinity chromatography, agglutinates lymphocytes from mouse, rat, guinea pig, and man only after their treatment with neuraminidase. However, it stimulates only neuraminidase-treated rat and human cells. A similar number cell surface receptors for peanut agglutinin was found on neuraminidase-treated rat and mouse lymphocytes although the latter cells were not stimulated by the lectin. Galactose specifically inhibited the agglutination and stimulation of lymphocytes by peanut agglutinin. Sequential treatment of lymphocytes with neuraminidase and beta-galactosidase markedly reduced the response of the cells to stimulation by peanut agglutinin, soybean agglutinin, and galactose oxidase. It is suggested that the same galactosyl residue may be the target for the initial step in triggering lymphocytes by the above mentioned mitogens.

Agglutination Tests↗

Galactose oxidase-induced blastogenesis of human lymphocytes and the effect of macrophages on the reaction.

Treatment of human lymphocytes with neuraminidase and galactose oxidase induced extensive blastogenesis. A less pronounced effect was observed after treatment of the cells with galactose oxidase alone. Macrophage-depleted human lymphocytes had a markedly reduced blastogenic response after treatment with neuraminidase and galactose oxidase. Incubation of the purified lymphocytes on macrophage monolayers markedly enhanced their response to neuraminidase and galactose oxidase. Furthermore, a stimulation of thymidine incorporation into purified untreated lymphocytes was noted after incubation of the cells on neuraminidase and galactose oxidase-treated macrophage monolayers.

Alcohol Oxidoreductases↗

Induction of lymphocyte cytotoxicity by modification of the effector or target cells with periodate or with neuraminidase and galactose oxidase.

Treatment of mouse spleen cells with periodate (NaIO4) or with neuraminidase and galactose oxidase (NAGO) induces blastogenesis and renders the cells cytotoxic to mastocytoma (P815) target cells. Treatment of target cells (P815 cells and turkey erythrocytes) with NaIO4 or with NAGO renders them susceptible to cytolysis by untreated mouse spleen cells. The cytotoxicity induced by NaIO4 is reduced upon reacting the NaIO4-treated, effector or target cells with borohydride or hydroxylamine. Thus the formation of free surface aldehydes on either the effector or target cell induced a cytotoxic effect. It is postulated that cross-linkage via a Schiff base between effector and target cell initiates the cytotoxic effect. Cytotoxicity induced by NaIO4 or NAGO is immunologically nonspecific and is independent of major antigenic differences between effector and target cells. Phagocytic cells are not involved in NaIO4-or NAGO-induced cytotoxicity toward P815 target cells.

Alcohol Oxidoreductases↗