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Biomedical subjects

F Dedeoglu

Publications and source records attributed to F Dedeoglu.

4 recordsLinked to original sources

Human autoantibodies reactive with synthetic autoantigens from T-cell receptor beta chain.

We used mapping with synthetic overlapping peptides in combination with molecular modeling to analyze the IgG antibodies that humans naturally produce against human T-cell receptor beta chains and to localize the recognized peptide autoantigens in the three-dimensional structure of the molecule. Healthy individuals produce low levels of antibodies against T-cell receptor peptides, and these can be increased in autoimmune diseases. We characterized the reactivities in detail because IgG molecules reactive with self peptides occur in preparations of intravenous immunoglobulin and can be isolated by immunoaffinity chromatography. Natural IgG antibodies were directed against three major peptides. One corresponds to the first complementarity-determining region of the variable region. A second corresponds to the third framework of the variable region. The third is located in the constant region and is predicted to be a loop that extends out of the beta-barrel structure. This peptide is one that would give a characteristic structural distinction between the beta-chain constant region and the constant regions of immunoglobulin light chains to which beta chains are homologous. The capacity to bind these peptides is found in small fractions of normal polyclonal IgG, which contains both kappa chains and lambda chains. The activity is antibody-like in being confined to the Fab fragment and in its capacity to discriminate among homologous synthetic peptides corresponding to distinct beta-chain variable-region genes. We propose that a recognition and regulatory process naturally occurs that parallels the immune network for the regulation of the production of antibodies.

Adult

Antigenic mapping of a human lambda light chain: correlation with three dimensional structure.

Although the amino acid sequence and three-dimensional structure of human immunoglobulin light chains have been known for more than 15 years, the location of antigenic markers characteristic of lambda chains has not been determined. Here, we use a set of synthetic overlapping peptides to completely model the sequence of the lambda chain Mcg and test these for the binding of rabbit and goat antisera specific for lambda chain determinants. We assess peptide contributions to lambda-antigenic reactivity and also to identify a portion of C-region where conformational factors contribute to the antigenicity. Specific determinants occur both in the constant and variable (first and third framework) domains of the molecule. The fourth framework of the variable region, a segment specified by the joining gene, is also recognized and cross-reacts antigenically with the homologous region of T cell receptor beta chains. Major lambda specific determinants are localized in the N- and C-terminal segments, which are linear and devoid of major conformational folding. Other segments that are strongly antigenic, such as the third framework of the V region (residue 78-93) and a segment of the constant region (residues 177-192), show strong conformational dependence in antigenicity.

Amino Acid Sequence

T-cell receptors of man and mouse studied with antibodies against synthetic peptides.

We used polyclonal rabbit antibodies directed against synthetic peptides predicted from the gene sequence of the human T-cell receptor (TCR) beta-chain YT35 to study the antigen receptor on human helper T-cell leukemia lines and on normal mouse thymocytes. Antibodies were raised to peptides corresponding to joining segment (J beta) and to a conserved stretch of sequence around the first cysteine in the constant region (C beta). These peptides were selected on the basis of homology with corresponding segments of immunoglobulin light chains. The specificity of the antibodies was established using synthetic overlapping peptides that modelled the complete TCR beta-chain. Western blot analysis was performed against detergent lysates of T cells. Both of the antibodies reacted strongly with 2-3 polypeptides in the mass range 40-45 kDa in mouse and human cells. Clearance experiments using monoclonal antibodies against murine TCR alpha- and beta-chains and against human TCR beta-chain and immunoprecipitations with monoclonal antibody to the murine T3 complex established that these components represented the alpha/beta heterodimer. An additional component around 31 kDa was detected by anti-J beta antibodies in murine thymus extracts. The use of the affinity-purified antipeptide antibody in two-dimensional Western blot analyses allows the clear discrimination between the characteristic individual receptors of monoclonal neoplastic T cells and the polydisperse patterns representative of heterogeneous normal populations. Antigenic cross-reactions between T-cell receptor beta-chains of man and mouse observed with monoclonal antibodies and rabbit antisera to peptides are consistent with the homology in gene sequence between the two species.

Amino Acid Sequence