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Ultrastructural localization of gamma-chain and immunoglobulin G in human lymphocytes using enzyme-labeled Fab fragment.

By the use of rabbit antibodies against the heavy chain of human immunoglobulin G (IgG), the gamma-chain and IgG molecules were successfully localized at the ultrastructural level in human peripheral lymphocytes. The rabbit Fab fragment was coupled to horseradish peroxidase by means of glutaraldehyde and the resulting conjugate could penetrate the intact plasma membrane. Discernible reaction product was observed in cisternae of the nuclear envelope, rough endoplasmic reticulum and Golgi apparatus as well as on the surface of the lymphocytes. In normal human individuals under no specific antigenic stimulation, only a few peripheral lymphocytes showed a rare positive intractoplasmic reaction. Reaction product may represent either the whole IgG molecule, the half molecule consisting of one heavy and one light chain or nascent gamma-chain.

Animals

The class of surface immunoglobulin on virgin and memory B lymphocytes.

The class of surface immunoglobulin receptors for antigen on B cell precursors of different classes of antibody-forming cells was determined by utilizing a technique of class-specific antigen suicide. Spleen cells are first treated with a class-specific antiserum under conditions that result in the stripping of that class from the cell surface. The cells are then permitted to bind a highly radioactive trinitrophenyl (TNP)-conjugated protein, which leads to lethal irradiation of all TNP-specific B cells except those whose TNP receptors had been removed by the class-specific stripping of surface immunoglobulin. In this way, the class of antibody-forming cells resulting from TNP stimulation of B cells with different classes of surface immunoglobulin can be examined. It was found that the virgin B cell precursors of IgM-producing cells are two types: cells bearing IgM receptors only and those bearing both IgM and IgD receptors. All virgin B cells that gave rise to IgG1 antibody-forming cells had both IgM and IgD on their surfaces, demonstrating that an antigen-dependent switch from IgM and IgD to IgG1 production is a common feature of B cell maturation. In contrast, memory B cell precursors of IgG1 antibody-forming cells had predominantly IgG1 as their surface antigen receptor. The implications of these findings on current models of B cell maturation are analyzed.

Animals

[Production of rabbit precipitating antisera to subclasses of human IgG].

Precipitating antisera to human subclasses IgG were obtained by immunization of rabbits by whole molecules IgG2, IgG3, IgG4 and gamma 1-chains derived from IgG1H (Pr). Analysis of the antisera obtained demonstrated that rabbits produced specific antibodies to the antigenic subclass determinants IgG3 well, to IgG2, IgG4--much worse, and failed to produce specific antibodies to subclass IgG1 (in immunization with whole molecules of this protein). Antisera contained antibodies to the antigenic determinants common of IgG, and antibodies to light chains which were removed by immunosorption, for which purpose a sorbent on the basis of BrCN sepharose conjugated with IgG of the three other subclasses and Fab-fragment was used.

Animals

Human lymphoid cells of the intestinal mucosa showing specificity for both immunoglobulin light and heavy chains.

The presence of single human lymphoid cells expressing on the one hand both kappa and lambda light chain and on the other hand either both mu and alpha or both mu and gamma heavy chains, was observed in the intestinal mucosa. The variability of the frequency of such cells, both from one subject to another, or in the same sample, is a characteristic of this population.

Humans

Crystallographic studies of bovine beta2-microglobulin.

Crystals of the bovine milk protein lactollin yield x-ray diffraction data extending to a resolution of 2.8 A. Lactollin is a bovine analogue of beta2-microglobulin, a protein that is homologous in amino acid sequence to the constant domains of immunoglobulins and is the light chain of the human and murine major histocompatability antigens. The protein crystallizes in the orthorhombic space group P2(1)2(1)2(1) with a = 77.4, b = 47.9, and c = 34.3 A. The unit cell parameters and physical chemical solution studies indicate that the molecule exists in the crystal and in solution as a single polypeptide chain of 12,000 daltons.

Amino Acid Sequence

IgG2a-producing variants of an IgG2b-producing mouse myeloma cell line.

12 variant cell lines producing an IgG2a (kappa) immunoglobulin derived via different routes from the IgG2b (kappa) synthesizing MPC 11 were studied. These variants all have the parental MPC 11 idiotype as shown by a radioimmunoassay. A comparison of the variants by charge, peptide maps, and assembly patterns has shown that most of them differ from one another, and some can be grouped. One group consists of three primary variants generated with two mutagenic agents: these three have almost indistinguishable peptide maps. Two other primary variants which arose in a similar fashion differ markedly from each other and from this group. A second group is comprised of the four secondary variants which arose from two short heavy chain producing primary variants. Other secondary variants and the one spontaneously arising variant cannot be grouped. Possible genetic mechanisms such as translocation, expression of previously silent genes and recombination are discussed.

Cell Line

A new case of gamma heavy chain disease: clinical, immunochemical and structural characterization.

A new case of gamma heavy chain disease (gamma HCD) is described in a 77-year-old woman. The serum and urine contain an M-component and electrophoretic, antigenic and ultracentrifugal properties resembling those of the Fc fragment of IgG globulin. Analysis on SDS-polyacrylamide gel electrophoresis and ultracentrifugal studies show that gamma HCD portein is present in the serum as a dimer with a molecular weight of 58,000 daltons. Analysis of isotypic and allotypic markers along with the structural studies show that this HCD protein belongs to the IgG subclass and that deletion includes the total VH and CH1 regions with sequence starting at residue 225 in the middle of the hinge region.

Aged

A new case of gamma-3 heavy chain disease. Biochemical and immunological investigations.

A new gamma 3 heavy chain disease (gamma 3-HCD) protein (Emm) is described. A molecular weight of 70,000-80,000 daltons was estimated. Antigenic analysis showed that protein Emm lacks light chains and the CH1 domain of heavy chains, whereas the antigenic determinants of the gamma 3 Fc fragment (CH2 and CH3 domains) as well as those of the gamma 3 hinge region were present. Since the anomalous protein was temporarily present in serum Emm, a transient triggering of a cell clone which produces the gamma 3-HCD protein is suggested.

Chemical Phenomena

A spontaneously occurring complex of beta2-microglobulin and a fragment of gamma-chain of IgG: isolation from the urine of a patient with plasma cell leukemia and characterization.

A complex of a fragment of gamma-chain of IgG and beta2-microglobulin (beta2M) was isolated from the urine of a patient with plasma cell leukemia. The approximate m.w. of the gamma-fragment was 19,000 and this gamma-fragment was found to be associated with beta2M noncovalently. The complex could be dissociated in 7.5% (v/v) n-propanol which suggests an important role of hydrophobic bonds in the association of the gamma-fragment and beta2M. The beta2M did not bind monoclonal IgG from this patient. Several anti-beta2M antisera tested which had been prepared with free beta2M did not react with the beta2M associated with the gamma-fragment, but reacted with the free beta2M obtained by the dissociation of the complex.

Beta-Globulins

Gamma heavy chain disease in man: synthesis of a deleted gamma3 immunoglobulin by lymphoid cells in short and long term tissue culture.

Bone marrow cells were obtained from a patient with gamma heavy chain disease (HCD) whose serum contained a deleted immunoglobulin heavy chain. Incubation of the marrow cells with radioactive amino acids in short term tissue culture resulted in the synthesis of the labelled HCD protein. A permanent cell line was established from the peripheral blood of the patient. Similar labelling studies with the cell line and its cloned progeny demonstrated the synthesis of a protein identical in size and antigenicity to that synthesized by the marrow cells and found in the patient's serum. These experiments clearly demonstrated that, in this case of heavy chain disease, the deleted protein was the synthetic product of a clone of malignant lymphoid cells.

Amino Acids

Human triclonal anti-IgG gammopathy. II. Determination of the antigenic specificity patterns of the IgG, IgA and IgM autoantibodies for the subclasses of IgG.

The specificity and reactivity patterns of monoclonal IgG, IgA and IgM anti-IgG autoantibodies isolated from the serum of one patient (Gil) have been determined for IgGs of the four gamma chain subclasses. The haemagglutination produced by the interaction of the Gil anti-IgGs and anti-Rh IgG coated erythrocytes was inhibited by a panel of intact IgGs, their polypeptide chains, and enzymatic fragments which included purified heavy chain constant region domains. Intact IgG1, IgG2, and IgG4 produced the same patterns of reactivity with the Gil anti-IgGs. When partially reduced and alkylated IgG1 heavy chains and its tryptic digests were tested, these were much more reactive than Fc fragments isolated from IgG of the four subclasses which were weaker inhibitors, and gamma chain constant region domains which were totally non-reactive. In all instances and by use of two anti-Rh antisera, the specificity patterns obtained for the Gil anti-IgGs were identical. The data combined with previous knowledge of the identity of the Gil light chains suggests that the antibody combining sites of these molecules are very similar if not identical.

Autoantibodies

Immunochemical study of a human myeloma IgG1 half molecule.

The serum of a patient with multiple myeloma contained an IgG1 kappa monoclonal protein which existed in two molecular species: one with and one without inter-heavy chain covalent bonds, the latter dissociating into half molecules without reduction. The half molecules were present in the urine together with a kappa Bence-Jones protein. This peculiar protein was discovered because the serum and urinary IgG formed double percipitin lines when analysed by immunoelectrophoresis with an antiserum to gamma chains, the inner line being due to residual normal IgG. The isolated half molecule, as well as the major constituent of the 7 S IgG fraction, failed to precipitate with most antisera specific for the Fc fragment of IgG. The half molecule lacked the Gm(non a) marker and other antigenic determinants of the third constant region of gamma1 chains. No isotypic or allotypic antigenic determinant of another immunoglobulin class or subclass was detected. The molecular weights of the 7 S molecule, the half molecule and its covalently linked heavy and light chains were about normal, suggesting that they did not have a large deletion which could have caused the lack of interheavy chain covalent bonds. The hinge peptide appeared normal after high voltage electrophoresis of the peptic-tryptic digest of the reduced and alkylated half molecule. The carboxy-terminus of the heavy chain and the amino acid composition of the molecule were similar to those of IgG1 myeloma proteins. Two cysteinyl peptides of the CH3 domain showed on a diagonal peptidic map an electrophoretic mobility somewhat different from that of the corresponding peptides of an IgG1 myeloma protein. Another peculiar feature of this protein was the presence of galactosamine. Idiotypic determinants of the half molecule were present in the 7 S fraction, suggesting that the 7 S IgG molecules and the half molecules were derived from the same clone of tumour cells. Lack of material precluded further characterization of the structural abnormality--probably located in the third constant domain of the heavy chain--responsible for the absence of most antigenic determinants of the Fc region of IgG1 and for the formation of half molecules. This abnormality could be a small deletion undetectable by molecular weight measurements or an unidentified exchange of genetic material. Family members of the patient could not be studied in order to investigate whether this immunoglobulin abnormality reflected a minor genetic variant or a mutational event.

Amino Acid Sequence

Demonstration of Fcgamma receptors on human basophil granulocytes.

Fcgamma receptors were detected on human basophil granulocytes. The mononuclear cell fraction of human peripheral blood was incubated with heat-aggregated human IgG (HGG) followed by 125I-anti-HGG. Autoradiography of the cells showed that the majority of basophil granulocytes gave a significant number of grains. Basophils were not labeled by preincubation of the same cells with monomeric HGG followed by 125I-anti-HGG. However, the binding of aggregated HGG to basophils was inhibited by the presence of a high concentration of monomeric HGG or its Fc fragment but not by the Fab fragment. Evidence was obtained that Fcgamma receptors are distinct from IgE receptors on the same cells: i) Saturation of basophils with IgE did not affect the binding of aggregated HGG to the cells. ii) Preincubation with and the presence of aggregated HGG failed to affect the binding of 125I-IgE to basophils, or to block passive sensitization of the cells with IgE antibodies. iii) The Fcgamma receptors did not co-cap with IgE receptors. Aggregated HGG failed to induce histamine release from basophils even in the presence of D2O. It was also found that the presence of aggregated HGG on basophils did not modulate IgE-mediated histamine release from the cells.

Basophils