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L Emorine

Publications and source records attributed to L Emorine.

15 recordsLinked to original sources

Grafts of immortalized chromaffin cells bio-engineered to improve met-enkephalin release also reduce formalin-evoked c-fos expression in rat spinal cord.

Transplantation of adrenal medullary tissue for terminal cancer pain has been tested clinically, but this approach is not practical for routine use because of the shortage of organ donors and lack of tissue homogeneity. As a first alternative step, we have generated immortalized chromaffin cells over-expressing opioid peptides, namely met-enkephalin. Rat chromaffin cells have been genetically modified with vectors containing expression cassettes with either synthetic met-enkephalin or pro-enkephalin gene coding regions, fused with the nerve growth factor signal peptide for secretion. After stable transfection and differentiation in vitro, met-enkephalin and pro-enkephalin cells had higher met-enkephalin immunoreactivity and secreted met-enkephalin levels, compared to control cells containing the expression vector only. In the formalin hindpaw-injection model, 15 days after subarachnoid transplant of cells, grafts of met-enkephalin and pro-enkephalin cells significantly reduced the number of formalin-evoked c-fos immunoreactive spinal neurons in the spinal cord, compared to grafts of vector-alone chromaffin cells. The use of such expandable cell lines, for chronic spinal delivery of opiates, could offer an attractive and safe alternative strategy based on ex vivo gene therapy for the control of opioid-sensitive chronic pain.

Analysis of Variance↗

Anti-HV3 peptide antibodies as probes for conformational changes in immunoglobulins.

Recent studies have shown that monoclonal anti-alprenolol antibody 37A4 could mimic the beta-adrenergic receptor with respect to binding properties and alprenolol-induced changes in intrinsic fluorescence. We prepared and characterized polyclonal antibodies against a synthetic tetradecapeptide corresponding to residues 92-105 of the 37A4 VH domain. In ELISA and immunoblotting assays, the anti-peptide antibodies bound to the intact IgG molecule as well as to the isolated heavy chain. They failed to interact with the native IgG protein but recognized with high specificity the conformationally modified Ig molecule; as a consequence, their reactivity to the entire protein was found to vary with the conditions of the assay. This study illustrates that anti-peptide antibodies might be used as probes for the detection of conformational changes occurring in the Ig hypervariable regions.

Animals↗

Human beta 2-adrenergic receptors expressed in Escherichia coli membranes retain their pharmacological properties.

The coding region of the gene for the human beta 2-adrenergic receptor gene was fused to the beta-galactosidase gene of the lambda gt11 expression vector. The Y1089 Escherichia coli strain was lysogenized with this modified vector and transcription of the fusion gene was induced. Expression of this transcription unit was shown by the appearance in the bacteria of proteins of molecular weight higher than that of native beta-galactosidase, which are immunoreactive with anti-beta-galactosidase antibodies. Production of beta 2-adrenergic receptors was shown by the presence, on intact bacteria, of binding sites for catecholamine agonists and antagonists possessing a typical beta 2-adrenergic pharmacological profile. Binding and photoaffinity labeling studies performed on intact E. coli and its membrane fractions showed that these binding sites are located in the inner membrane of the bacteria. Expression of pharmacologically active human beta 2-adrenergic receptors in E. coli further supports the similar transmembrane organization proposed for bacteriorhodopsin and eukaryotic membrane-embedded receptors coupled to guanine nucleotide-binding regulatory proteins. Moreover, this system should facilitate future analyses of the ligand-binding properties within this family of membrane receptors.

Affinity Labels↗

Biochemical and immunochemical analysis of avian beta 1 and mammalian beta 2-adrenergic receptors.

We have studied the molecular properties of avian beta 1-adrenergic receptor and human beta 2-adrenergic receptor. The turkey erythrocytes beta 1-receptor has been solubilized in active form by digitonin and has been purified to homogeneity by affinity chromatography followed by electroelution from polyacrylamide gel. The photoactivable ligand, iodocyanopindololdiazirine, labels specifically a major 45 kDa and minor 55 kDa polypeptide in turkey erythrocytes, whereas in A431, it labels two polypeptides of molecular weights 65 kDa and 55 kDa. Both types of receptors are N- and possibly O-glycosylated but the turkey beta 1 receptor has only complex carbohydrates whereas the human beta 2 receptor has in addition oligo mannosidic polysaccharidic moiety. Polyclonal and monoclonal antibodies were raised against the beta 1- and beta 2-adrenergic receptors. Polyclonal antibodies were found to mimic beta-adrenergic agonists by stimulating adenylate cyclase upon binding to the receptors. The monoclonal antibodies precipitated both intact and affinity labeled receptors which they also revealed on immunoblots.

Animals↗

The immune response towards beta-adrenergic ligands and their receptors. VI. Idiotypy of monoclonal anti-alprenolol antibodies.

Four murine monoclonal antibodies specific for alprenolol, a synthetic beta-adrenergic ligand, with different binding properties towards alprenolol and other beta-adrenergic antagonists and agonists (as described in a previous report) were used to induce anti-idiotypic responses in rabbits and mice. Three of the rabbit anti-idiotypes inhibited, and one increased the binding of tritiated dihydroalprenolol to the Ab1 against which they were induced. The syngeneic mouse anti-idiotypes all had an inhibitory effect on the ligand binding to their corresponding Ab1. Cross-reactivity tests of the xenogeneic and syngeneic anti-idiotypes were positive only for two monoclonal anti-alprenolol antibodies. Cross-reaction could be shown neither on a panel of 15 other monoclonals, nor on polyclonal anti-alprenolol antibodies of the BALB/c and the C57BL/10 mice. These results suggest that the immune response against alprenolol results in antibodies with mostly private idiotypic determinants. Moreover, the properties of the anti-idiotypic response against the same monoclonal antibody seem to be different according to the species used for anti-idiotypic induction.

Alprenolol↗

A genomic gene encoding the b5 rabbit immunoglobulin kappa constant region: implications for latent allotype phenomenon.

We previously reported that domestic rabbits of five immunoglobulin kappa allotype strains (b4v, b4, b5, b6, and b9) harbor at least two DNA sequences that hybridize strongly to kappa constant region probes in Southern blots. One of these sequences ("type A") has been identified as encoding the constant region of the kappa 2 isotype, an immunoglobulin chain that most rabbits express only at low levels, if at all. We identified the second sequence--for rabbits of the b4 allotype--as encoding the nominal b4 kappa chain (or kappa 1 isotype), but for rabbits of other allotypes no definite identification for this "type B" sequence could be made. Here we suggest that the type B sequence in rabbits of the other domestic allotypes also encodes the nominal kappa 1 immunoglobulin chain. We show this directly for the b5 allotype; a type B sequence cloned from b5 DNA has been found to contain an apparently functional gene encoding the b5 constant region sequence. Indirect arguments suggest the corresponding conclusion for the b4v, b6, and b9 allotypes. We have considered the implications of these results for the phenomenon of "latent allotype" expression.

Animals↗

Structure of a germline rabbit immunoglobulin V kappa-region gene: implications for rabbit V kappa-J kappa recombination.

Rabbit kappa-immunoglobulin chains exhibit diversity in the number of amino acids between the invariant residues Cys 88 and Phe 98; this length diversity is formally similar to that found in the human and mouse heavy chain systems, in which it results from interposition of the D element between V and J. To explore the molecular basis for this length diversity in rabbit kappa-chains we have determined the nucleotide sequence of a rabbit germline V kappa immunoglobulin gene. The spacing between the 7-mer and 9-mer signal elements of this gene suggest that it could recombine with J kappa without a D element. We discuss alternative explanations for the length diversity of rabbit kappa-chains.

Amino Acid Sequence↗

Structural analysis of a rabbit immunoglobulin kappa 2 J-C locus reveals multiple deletions.

We previously reported that domestic rabbits harbor at least two DNA sequences that hybridize strongly to immunoglobulin kappa C region probes in Southern blots. One of these was cloned from a domestic b4 rabbit and identified as the gene for the nominal b4 allotype kappa chain which is expressed at high levels. We now have cloned (from a b4 rabbit) the other homologous sequence and find that it encodes a kappa chain nearly identical to the kappa 2 chain of "bas" rabbits, which is not normally expressed at detectable levels in domestic rabbits. Sequence analysis of this kappa 2 chain reveals a J kappa -C kappa locus with no obvious coding sequence defects that could explain its low expression. However, several base changes in a putative enhancer region as well as deletions (totalling about 1.5 kb) in the J-C intron might be related to low expression. The comparison between these two kappa genes raises questions about the selective pressures operating during the evolution of this gene system.

Amino Acid Sequence↗

cDNA clone encoding a complete rabbit immunoglobulin kappa light chain of b4 allotype.

We have cloned a cDNA encoding a kappa light chain of the b4 allotype. The clone, pB4D5, was derived from the allotype-specific mRNA of a rabbit-mouse hybridoma 12F2, which secretes a monoclonal rabbit b4 kappa chain. Nucleotide sequence analysis of the entire pB4D5 insert reveals complete variable (V) and constant (C) regions and portions of the signal peptide and 3' untranslated region. The translated pB4D5 region amino acid sequence matches the NH2-terminal sequence of the kappa chain secreted by 12F2 and is similar, though not identical, to several other b4 kappa sequences. A V region-specific probe isolated from pB4D5 hybridizes to more than 25 bands on a genomic Southern blot of b4 rabbit DNA and yields a similar pattern with DNA from other allotypes. Sequence comparisons between pB4D5, a cloned germ-line precursor of the pB4D5 joining (J) region, and published b4 amino acid sequences reveal a peculiar feature of rabbit kappa V-J recombination in which this system resembles mouse and human heavy chain recombination more than any known kappa system.

Amino Acid Sequence↗

Rabbit immunoglobulin kappa genes: structure of a germline b4 allotype J-C locus and evidence for several b4-related sequences in the rabbit genome.

To investigate the genetic mechanism by which certain rabbits can express immunoglobulins unexpected on the basis of their pedigree (i.e., "latent" allotypes), we have begun a study of the rabbit immunoglobulin kappa gene locus. Here we report the structure of a germline genomic clone that encodes the b4 allotype of rabbit kappa immunoglobulin and corresponds to the kappa gene expressed by the rabbit-mouse hybridoma 12F2. The nucleotide sequences of the joining (J) and constant (C) regions reveal structures generally similar to the homologous mouse and human loci, although only one of the five J-like sequences of this rabbit gene is apparently expressed. Southern blotting analysis of DNA from several rabbit allotypic strains by using probes derived from the cloned b4 gene demonstrates that, in contrast to mouse and human, rabbits possess multiple kappa-related sequences. Rabbits of the nominal b4, b5, b6, and b9 allotypes each contain at least two b4-related sequences that are associated with their own J regions and that are highly homologous to the cloned b4 gene in both coding and flanking regions.

Animals↗

Idiotypy of catecholamine-binding proteins.

The idiotypic and antiidiotypic response to alprenolol, a beta-adrenergic antagonist, was studied both in rabbits and in mice. Rabbit polyclonal anti-alprenolol antibodies showed binding properties for catecholamine analogs, agonists as well as antagonists, similar to those of the beta-adrenergic receptors. The variability of the anti-alprenolol response was studied by using mouse monoclonal antibodies specific for alprenolol. While the binding properties showed great variations in affinity, the response seemed restricted to the heavy chain classes gamma 1 and gamma 2a. N-terminal sequencing of the light and heavy chains and restriction maps of the corresponding genes suggest that the antibodies use particular subgroups infrequently found in antibodies specific for other antigens. The cyclical antiidiotypic response in rabbits immunized with polyclonal antibodies and in mice immunized with monoclonal antibodies were compared. The response of the latter was dependent on the choice of the monoclonal antibody used to elicit the antiidiotypic response. Finally, the agonist-like properties of a monoclonal antiidiotypic antibody directed against one of the monoclonal anti-alprenolol antibodies were studied extensively. The ability to recognize beta-adrenergic receptors was documented by Western blot and direct immunoprecipitation and visualized by immunofluorescence. The antiidiotypic antibody stimulated catecholamine-sensitive adenylate cyclase and this effect was blocked by the beta-adrenergic antagonist propranolol.

Adenylyl Cyclases↗

A conserved sequence in the immunoglobulin J kappa-C kappa intron: possible enhancer element.

Several functionally important genetic elements (such as the TATA box, mRNA splice sequences, poly(A) addition signal) were first detected as short segments of unexplained sequence homology within non-coding regions of different genes. A short region of unknown sequence in the intron between the human J kappa and C kappa immunoglobulin coding regions was found to be sufficiently homologous to the corresponding segment of the mouse gene to form stable heteroduplexes. Although no specific function has yet been definitely ascribed to this region (which we call the kappa intron conserved region, or KICR), some functional significance has been inferred from the findings that (1) activation of B lymphocytes induces a DNase hypersensitivity site in this region and (2) deletions including this region reduce expression of kappa genes introduced into lymphoid cells. To delineate the KICR more precisely and to test the generality of the sequence conservation in a third species, we have sequenced this region of the human and mouse genes and have examined the corresponding region of a recently cloned rabbit kappa gene. We find a segment of about 130 base pairs (bp) that shows striking conservation in all three species, demonstrating homology significantly higher than within the C kappa coding region itself. Two short sequences from the J kappa-C kappa intron that were noted by other investigators to be homologous to proposed 'enhancer' sequences both lie within the conserved region.

Animals↗