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A Chersi

Publications and source records attributed to A Chersi.

At least 55 records · Page 3Linked to original sources

Binding of labelled influenza matrix peptide to HLA DR in living B lymphoid cells.

T cells recognize protein antigens as fragments (peptides) held in a defined binding site of class I or class II major histocompatibility (MHC) molecules. The formation of complexes between various immunologically active peptides and different MHC molecules has been demonstrated directly in binding studies between the peptides and solubilized, purified molecules of class II MHC. Studies with intact cells, living or fixed, have not directly demonstrated the binding of the peptides to MHC molecules on antigen-presenting cells, but the formation of such complexes has been shown indirectly through the capacity of antigen-presenting cells to stimulate specific T cells. Here we report evidence that supports directly the binding of radiolabelled influenza matrix peptide 17-29 to products of the human class II MHC locus HLA-DR, on living homozygous B-cell lines, and we show that the kinetics of such binding is much faster with living cells than with fixed cells. Furthermore, whereas the peptide reacts with HLA-DR molecules of all alleles, it binds preferentially to DR1, the restricting element in antigen presentation.

Amino Acid Sequence↗

Profile of sequential determinants in tissue polypeptide antigen BrCN:B fragment.

A synthetic approach has been applied to determine the profile of sequential determinants of one immunodominant region of Tissue Polypeptide Antigen (TPA). Five overlapping peptides, covering 30 of the 32 amino acid residues of this fragment, were chemically synthesized, and their antibody-binding activities for rabbit anti-TPA antibodies determined by enzyme-linked immunoadsorbant assays. Anti-TPA reacted with two overlapping fragments at the COOH-terminal end of the fragment, but not with peptides that include Arg 15 considered as essential for the antigenicity of the whole fragment. This might suggest that this critical residue is involved in the formation of a complex conformational determinant.

Amino Acid Sequence↗

14C-labeling of synthetic peptides.

Two methods are described for the labeling of synthetic peptides using iodo[14C]acetic acid. The first procedure may be employed when the synthetic fragment contains a cysteine with a free sulfhydryl group. Alternatively, a commercial amino-protected cysteine may be carboxymethylated using radioactive iodoacetic acid. This derivative can be added to the growing peptide chain in the manual or automatic solid-phase synthesis of the fragment.

Amino Acid Sequence↗

Restriction of anti-peptide antibody specificity by enzyme-modified Sepharose-peptide immunoadsorbents.

Sepharose-peptide immunoadsorbents, employed for the isolation of specific antibodies from the sera of rabbits immunized with carrier protein-peptide conjugates, were digested with suitable proteolytic enzymes, in order to obtain the splitting of a part of the peptide bound to the gel. This new modified immunoadsorbent can be advantageously used for the isolation of antibody subsets, that do not cross-react with related peptides exhibiting high sequence homology with the immunogens.

Amino Acid Sequence↗

Generation of rabbit antipeptide antibodies to HLA-class II antigens by the use of synthetic peptides.

A group of eight synthetic peptides, corresponding in sequence to selected regions of HLA-DQ histocompatibility antigens, was used for rabbit immunization to examine their antigenicity and for localizing exposed regions in the native glycoproteins. Those antibodies were then tested in their ability to recognize the HLA-DQ alloantigens. Seven peptides elicited rabbit antibodies, four of which reacted with human glycoproteins prepared from chronic lymphocytic leukaemia cells. The results indicate that sequence stretches 63 to 79 and probably 82 to 93 of the beta chain correspond to exposed regions in DQw1, DQw2 and DQw3 molecules. However, the specificity of those antipeptide antibodies was low, due to extensive crossreactions with amino acid sequencies of high homology occurring in DQ alloantigens.

Amino Acid Sequence↗

Identification of linear HLA class II amino acid sequences recognized by rabbit antisera against native molecules.

A rabbit was immunized with B lymphoblastoid cells, and subsets of the antibodies produced were isolated on affinity columns made from synthetic peptides corresponding to known amino acid sequences from the human class II antigens DQ and DP. Those peptides for which specific antibodies were isolated could be assumed to contribute to the antigenic properties of the intact antigen. The antibody subsets were tested for binding to synthetic peptides, to glycoprotein fractions isolated from cells with different DR and DQ specificities, and to the cells used for immunization of the rabbit. The isolation of those antibodies directed against well-defined amino acid stretches of the histocompatibility antigens is proof of the role of those regions in determining the antigenic properties of these molecules.

Amino Acid Sequence↗

Human major histocompatibility complex class I antigens: residues 61-83 of the HLA-B7 heavy chain specify an alloreactive site.

A chemically synthesized peptide (sequence in text) homologous to residues 61-83 of the HLA-B7 heavy chain, induced antibodies that specifically recognized the HLA heavy chain-beta 2-microglobulin complex and the free heavy chain of the HLA-B7 antigen. These antibodies specifically immunoprecipitated the HLA-B7 beta 2-microglobulin complex solubilized from human lymphoblastoid cells by nonionic detergents and reacted with free HLA-B7 heavy chains in blots on nitrocellulose. These observations suggest that the antigenic conformation of this region of the HLA-B7 molecule is independent of the presence of beta 2-microglobulin and that amino acid residues 61-83 mimic an alloreactive site expressed by the HLA-B7 antigen.

Amino Acid Sequence↗

Immunologic and functional characterization of anti-HLA-DR rabbit antibodies induced by synthetic peptides.

Three peptides selected from the amino acid sequence of the alpha- and beta-chains of DR2 histocompatibility antigens were chemically synthesized and coupled to carrier proteins to be used as immunogens in rabbits. This immunization resulted in the production of specific antibodies that readily recognized the antigen. However, only one of the four antibody preparations, antibody 6148, elicited by a short peptide from the beta-chain (residues 61-73), reacts with native membrane glycoproteins as well as intact human lymphoblastoid cells in enzyme-linked immunosorbant assays. This antibody was found to react also with membrane glycoproteins solubilized by nonionic detergents from cells bearing a different HLA-DR specificity: therefore it is likely that the peptide responsible for eliciting antibody 6148 represents a common framework determinant of DR alloantigens that is accessible on the surface of lymphoblastoid cells. The ability of antibody 6148 to bind to intact cells was confirmed by indirect immunofluorescence and by fluorescein-activated cell sorter analysis. This antibody is also capable of mediating antibody-dependent cellular cytotoxicity as determined by a 51Cr-release assay.

Amino Acid Sequence↗

Rabbit antipeptide antibodies against restricted domains of the histocompatibility complex.

The work reported here concerns the specificity of four antibodies elicited by synthetic peptides corresponding to three domains of the HLA-B7 glycoprotein, and one of the beta 2 microglobulin. One of the four peptides had been previously investigated, but the data obtained by its elicited antibodies were uncomplete. Of the three HLA-B7 peptides assayed, one was unable to raise an immune response. The other two produced antibodies in good titer that reacted with the antigen peptide, but were unable to recognize antigenic determinants when tested on membrane glycoproteins solubilized from human lymphoblastoid cells. In contract, the antibody elicited by the only fragment from the beta 2microglobulin recognized the native beta 2microglobulin molecule as well as HLA/beta 2m complexes, and reacted with intact human cells, as determined by ELISA and by FACS analysis. This peptide, which contains one of the most hydrophylic fragment of the whole molecule, is likely an important antigenic site, since it is also recognized by traditional antisera raised against native beta 2microglobulin.

Amino Acid Sequence↗

Purification of Pseudomonas cytochrome oxidase (or nitrite reductase) by immunological methods.

A new purification procedure for the cytochrome oxidase from Pseudomonas aeruginosa based on immunoaffinity chromatography has been compared with the biochemical method and shown to be (i) fully competitive in terms of chemical homogeneity and enzymatic properties of the purified protein (ii) slightly less efficient in terms of total recovery and (iii) much more convenient in terms of the time required. A further evolution of the method that minimizes the number of purification steps and any stress to the native structure of the protein is suggested.

Amino Acids↗