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M Hoffmann

Publications and source records attributed to M Hoffmann.

At least 235 records · Page 13Linked to original sources

Isolation and characterization of the carboxypeptidase Y inhibitor from yeast.

Rapid acetone fractionation of crude yeast extract at low temperature separates carboxypeptidase Y inhibitor from the carboxypeptidase Y-inhibitor complex. On a protein basis the inhibitor has been purified 890-fold, resulting in homogeneity as determined by disc electrophoresis and filtration on Sephadex G-75. The molecular weight was calculated to be about 25,000. The inhibitor is heat-labile in crude extracts, whereas in the purified form it loses only 11% of its activity when it is heated at 100 degrees for 5 min. The inhibitor is inactivated by the yeast proteinases A (EC 3.4.23.8) and B (EC 3.4.22.9), respectively, but not by carboxypeptidase Y (EC 3.4.12.8). The inhibitor inhibits carboxypeptidase Y at a 1.5:1.0 protein-based weight ratio by 80%. At the same concentration ratios, proteinases A and B from yeast, as well as bovine pancreas carboxypeptidases A and B, are not inhibited.

Acetone↗

Regulation of the immune response. 3. Kinetic differences between thymus- and bone marrow- derived lymphocytes in the proliferative response to heterologous erythrocytes.

The kinetics of the in vivo response to SRBC was studied in mouse spleen at both the B cell and T cell levels. The B cell response was assayed by following the appearance of antibody-secreting cells in the spleen using the hemolytic plaque assay. The T cell response was monitored by following the increase in or "priming" of helper activity in the spleen using a quantitative in vitro assay. The role of cellular proliferation in both responses was established with the inhibitor of mitosis, vinblastine. The results show that, although the development of T cell activity precedes that of anti-SRBC PFC by as much as 1 day, T cells lag at least 1 day behind B cells in the onset of cellular proliferation. The evidence suggests either that the helper T cell which proliferates in response to SRBC does so after helping in the initiation of the primary B cell response or that the proliferative T cell response and the initiation of the primary B cell response involve two different subpopulations of T cells.

Animals↗

Regulation of the immune response. II. Qualitative and quantitative differences between thymus- and bone marrow-derived lymphocytes in the recognition of antigen.

The specificity of antigen recognition by thymus-derived helper cells (T cells) and antibody was examined in mice, heterologous erythrocyte antigens from sheep (SRBC), goat (GRBC), burro (BRBC), chicken (CRBC), and toad (TRBC) being used. Antibody specificity was tested by a number of functional assays: hemagglutination, hemolysis, and immune suppression. The specificity of T cells was determined by titrating their ability to help the in vitro antitrinitrophenol (TNP) responses of mouse spleen cultures immunized with the hapten coupled to the various test erythrocytes as carrier. Anti-SRBC antibody cross-reacted with GRBC, but not with BRBC, CRBC, or TRBC. In contrast, SRBC-primed helper T cells cross-reacted with both GRBC and BRBC, but not with CRBC or TRBC, indicating a difference in the specificity of antigen recognition between the cellular and the humoral immune responses.

Animals↗

Regulation of the immune response. I. Differential effect of passively administered antibody on the thymus-derived and bone marrow-derived lymphocytes.

The effect of passively transfered antiserum against sheep erythrocytes (SRBC) on the antigen stimulated increase of SRBC-specific plaque-forming cells (anti-SRBC-PFC) and SRBC-specific thymus-derived lymphocytes (SRBC-specific T-cells) in the mouse spleen was examined. A dose of antiserum which severely suppressed the development of anti-SRBC-PFC did not prevent the increase in SRBC-specific T-cells, as measured by their ability to cooperate in the in vitro response to trinitrophenylated (TNP) SRBC. It was shown that the insensitivity of these T-cells to antiserum could not be explained by their low antigen requirement as compared to that of PFC. In the in vivo response of mice to TNP-SRBC, antibody specific for TNP suppressed the appearance of both anti-TNP- and anti-SRBC-PFC. The presence of free SRBC specifically prevented the suppression of the anti-SRBC-PFC. These observations are consistent with opsonization by phagocytic cells as the primary means of the observed suppression of PFC development by antibody.

Animals↗

Immune response restoration with macrophage culture supernatants.

Depression of the in vitro immune response of mouse spleen cell suspensions to sheep erythrocytes by removal of macrophages can be reversed by the addition of supernatants from peritoneal macrophage cultures. Supernatant activity can be absorbed by the red cell antigen, and supernatant-treated red cells are stimulatory in the absence of macrophages or supernatant.

Animals↗