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Biomedical subjects

B Berggård

Publications and source records attributed to B Berggård.

6 recordsLinked to original sources

Related bindings of aggregated beta 2-microglobulin, IgG Fab, kappa and lambda light chains to group A streptococci.

Aggregates of various mammalian beta 2-microglobulin (beta 2m) homologues were tested in binding experiments with group A streptococcal strains of different M types. The binding patterns obtained were similar, suggesting that evolutionarily conserved parts of the beta 2m molecule are responsible for the interaction with group A streptococci. An N-terminally abnormal beta 2m showed binding characteristics similar to those of normal human beta 2m, indicating that the amino-terminal does not participate in this interaction. Aggregates of human IgG Fab fragments, kappa chains and lambda chains, were also analyzed. Whereas several of the beta 2m-reactive M types did not interact with any of these aggregates, all strains binding aggregated Fab, kappa or lambda, also bound aggregated beta 2m. Strains of M types 4, 12, 23 and 53 bound all the tested proteins; M type 1 bound all but IgG Fab, whereas M types 46, 49 and 53 showed affinity for beta 2m and lambda chains only. In inhibition experiments, unlabelled aggregated beta 2m in excess completely blocked the uptake of radiolabelled aggregated IgG Fab, kappa and lambda chains. Conversely, Fab, kappa and lambda aggregates inhibited the binding of radiolabelled beta 2m aggregates. Our results indicate that the differences in reactivity recorded between beta 2m and IgG Fab, kappa and lambda chains, all structurally related, are quantitative rather than qualitative. Thus, a common binding structure for these aggregated proteins on group A streptococci appears probable.

Animals

beta 2-Microglobulin.

In the sixties, Ingemar Berggård discovered, isolated and characterized the low molecular weight protein beta 2-microglobulin. The relations of beta 2-microglobulin to the immune system have led to intensive research on this protein. The present work reviews the purification and characterization of human beta 2-microglobulin and animal homologues, the association of beta 2-microglobulin to other molecules, the functional studies with beta 2-microglobulin and antibodies against beta 2-microglobulin, and the evolutionary studies on beta 2-microglobulin.

Animals

alpha 1-Microglobulin.

A new low-molecular weight plasma protein was discovered and isolated from human urine by Ingemar Beggård. He named it alpha 1-microglobulin. The protein has a molecular weight of 26,000, contains about 20% carbohydrate, is electrophoretically heterogenous, carries a brown-coloured, unidentified substance, and is present in serum in free, as well as in high molecular weight complexes. alpha 1-Microglobulin seems to interfere with the in vitro response of lymphocytes to some antigens. The site of synthesis of alpha 1-microglobulin is unclear.

Alpha-Globulins

In search of alpha 1-microglobulin on the lymphocyte surface.

alpha 1-Microglobulin was found by immunofluorescence not to be associated with human lymphoid and nonlymphoid cell lines. No accumulation of alpha 1-microglobulin was detected in culture media of these cell lines. A weak membrane fluorescence with anti-alpha 1-microglobulin on peripheral lymphocytes could not be blocked by the purified protein. No release of alpha 1-microglobulin into the growth medium was seen by normal cultured leukocytes. Treatment of normal lymphocytes, erythrocytes, and various cell lines with solubilization techniques did not yield any alpha 1-microglobulin. alpha 1-Microglobulin and protein HC display immunologic and biochemical identity. However, anti-protein HC stained almost all of the tested cell lines and normal lymphocytes. Blocking experiments with the purified protein were not successful. Antibodies reacting with a minor impurity (50,000 d) in the alpha 1-microglobulin or protein HC preparations could be absorbed from anti-alpha 1-microglobulin with normal leukocytes and a lymphoid cell line.

Absorption

Relationships between beta2-microglobulin and alloantigens coded for by the major histocompatibility complexes of the rabbit and the guinea pig.

Treatment of rabbit and guinea pig lymphocytes with Fab' fragments of anti-beta2-microglobulin completely inhibited the cytotoxic effects of alloantisera to RLA or GPLA antigens, respectively. Aggregation of beta2-microglobulin on the lymphocyte surface by successive incubations with goat anti-beta2-microglobulin on the lymphocyte surface by successive incubations with goat anti-beta2-microglobulin and F(ab')2 fragments of rabbit anti-goat IgG also made rabbit lymphocytes resistant to lysis by anti-RLA, and guinea pig lymphocytes resistant to lysis by anti-RLA, and guinea pig lymphocytes resistant to lysis by anti-GPLA. The two kinds of pretreatment of guinea pig lymphocytes did not affect the cytotoxicity of antisera directed against guinea pig Ia antigens. These results in conjunction with previous findings in the mouse and in man suggest that beta2-microglobulin on the lymphocyte surface in mammals is generally associated with major serologically defined histocompatibility antigens but not with I-region-associated antigens.

Animals