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J Hoebeke

Publications and source records attributed to J Hoebeke.

At least 73 records · Page 4Linked to original sources

Direct detection of peptide-dependent HLA variability by surface plasmon resonance.

Cytotoxic T lymphocytes (CTL) recognize antigens as peptides associated with molecules of the major histocompatibility complex (MHC). The accurate characterization of antigenic peptides requires knowledge of how peptides bind to MHC molecules, and hence the conformational changes they can induce. Several reports have indicated that the conformation of the MHC class I molecule plays a role in T cell recognition. We therefore studied the interaction of a series of viral epitopes with HLA-A2, -A3, -B7 and -B8 molecules to determine how peptides could induce conformational changes in HLA molecules. This was done either directly with class I heavy chains in lysates of peptide-loading deficient T2 cells, or with purified material from B-EBV transformed cell lines. The peptide-induced HLA conformations were assessed using monoclonal anti-HLA antibodies (mAbs) and detected by surface plasmon resonance (SPR). Antigenic peptides specifically bound to the HLA molecule, even when assembly occurred in a mixed solution of HLA molecules. Distinct patterns of reactivity to a given peptide-bound class I molecule were obtained with monomorphic and allele-specific anti-HLA mAbs.

Amino Acid Sequence↗

Structural basis of autoimmunity against G protein coupled membrane receptors.

The structural basis of the function of G protein coupled membrane receptors will be considered taking the beta 2-adrenergic receptor as model. The immunogenicity and antigenicity of the same receptor will be studied to examine the immunological properties of the G protein coupled membrane receptors. From the two first parts will be derived the conditions which could lead to the building-up of a functional autoimmune response. Finally, the possible application of the structural knowledge on antibody-receptor interactions will be discussed.

Animals↗

Beta 1-adrenoceptor autoimmunity in cardiomyopathy.

A growing body of studies have confirmed that autoantibodies against beta 1-adrenoceptors are present in different types of cardiomyopathy. This suggests that they play a role in the pathophysiology of the disease. This article will review the data indicating the presence of anti-beta 1-adrenoceptor autoantibodies in cardiomyopathy. It will focus upon their structural and functional properties which could explain their possible role in the induction and development of cardiomyopathic diseases.

Autoantibodies↗

Agonistic effects of anti-peptide antibodies and autoantibodies directed against adrenergic and cholinergic receptors: absence of desensitization.

Affinity-purified autoantibodies and anti-peptide antibodies directed against the second extracellular loop of the beta 1-adrenoceptor increase the beating rate of cultured cardiomyocytes just like the beta-adrenergic agonist isoprenaline. Their positive chronotropic action is blocked by beta-adrenergic antagonists. Affinity-purified autoantibodies and anti-peptide antibodies directed against the muscarinic cholinergic M2 receptor exert in these myocytes, like the muscarinic cholinergic agent carbachol, a negative chronotropic effect that is antagonized by atropine. In contrast to the agonism of isoprenaline and carbachol, the described agonistic effects of the antibodies are not subject to desensitization.

Adrenergic beta-Agonists↗

Molecular mimicry between the immunodominant ribosomal protein P0 of Trypanosoma cruzi and a functional epitope on the human beta 1-adrenergic receptor.

Sera from chagasic patients possess antibodies recognizing the carboxy-terminal part of the ribosomal P0 protein of Trypanosoma cruzi and the second extracellular loop of the human beta 1-adrenergic receptor. Comparison of both peptides showed that they contain a pentapeptide with very high homology (AESEE in P0 and AESDE in the human beta 1-adrenergic receptor). Using a competitive immunoenzyme assay, recognition of the peptide corresponding to the second extracellular loop (H26R) was inhibited by both P0-14i (AAAESEEEDDDDDF) and P0-beta (AESEE). Concomitantly, recognition of P0-beta was inhibited with the H26R peptide. Recognition of P0 in Western blots was inhibited by P0-14i, P0-beta, and H26R, but not by a peptide corresponding to the second extracellular loop of the human beta 2-adrenergic receptor or by an unrelated peptide. Autoantibodies affinity purified with the immobilized H26R peptide were shown to exert a positive chronotropic effect in vitro on cardiomyocytes from neonatal rats. This effect was blocked by both the specific beta 1 blocker bisoprolol and the peptide P0-beta. These results unambiguously prove that T. cruzi is able to induce a functional autoimmune response against the cardiovascular human beta 1-adrenergic receptor through a molecular mimicry mechanism.

Amino Acid Sequence↗

Analysis of human CD4-antibody interaction using the BIAcore system.

Interaction between CD4 cell surface protein and HIV-bearing gp120 has been described as the initial step for HIV entry into host cells. Some anti-CD4 antibodies were shown to inhibit this interaction. Biosensor studies using the BIAcore were performed to determine kinetic and thermodynamic parameters of the interaction of one of these antibodies (i.e. IOT4a, clone 13B8-2) with immobilized recombinant soluble CD4 (rsCD4). A non-linear regression method was used to analyze the sensorgrams, showing the existence of a double exponential time curve. A KA of 5.2 x 10(7) M-1 was calculated at 25 degrees C. The complex formation was exothermic (-4.5 kcal.mol-1( and entropically positive (+20 cal.mol-1.K-1). The reaction rate (0.234 x 10(5) M-1.s-1 at 25 degrees C) as well as the enthalpy change of the activated complex (+9.7 kcal.mol-1) are not compatible with a diffusion controlled reaction. The thermodynamic values calculated from equilibrium data corresponded to those calculated from kinetic data confirming the validity of the theoretical approach. As for most antigen-antibody interactions, complex formation was enthalpy driven. The overall positive entropy contribution to the stabilization of the complex is in contrast to that observed for the lysozyme-anti-lysozyme model and is probably due to electrostatic interaction between the epitope and the antibody combining site.

Antibodies, Monoclonal↗

High prevalence of antibodies against beta 1- and beta 2-adrenoceptors in patients with primary electrical cardiac abnormalities.

OBJECTIVES: This study sought to determine the prevalence of autoantibodies directed against the beta-adrenoceptors in patients with primary electrical cardiac abnormalities, including atrial arrhythmias, ventricular arrhythmias and conduction disturbances, in the absence of any other cardiac abnormality. BACKGROUND: Using synthetic peptides corresponding to the predicted sequences for the second extracellular loop of the human beta 1- and beta 2-adrenoceptors as antigenic targets, autoantibodies directed against the beta-adrenoceptors were recently shown to occur in patients with idiopathic dilated cardiomyopathy and Chagas' heart disease. METHODS: Eighty-six patients (57 with primary electrical abnormalities, 29 with idiopathic dilated cardiomyopathy) and 101 healthy and cardiopathic control subjects were studied. Antibodies against the beta 1- and beta 2-peptides were detected with an enzyme immunoassay performed in blinded manner. In nine selected (seropositive) cases, the immunoglobulin G (IgG) fraction was tested for functional effects on the rate of beating of cultured neonatal rat cardiomyocytes. RESULTS: Antibodies recognizing the beta 1- and beta 2-peptides were found in 11 (52.3%) of 21 patients with ventricular arrhythmias (p < 0.01), 5 (35.7%) of 14 patients with conduction disturbances (p < 0.05), 3 (13.6%) of 22 patients with atrial arrhythmias (p > 0.05) and 11 (37.9%) of 29 patients with dilated cardiomyopathy (p < 0.05) compared with 15 (14.8%) of 101 control subjects. A rapid increase in the rate of beating of the cultured cardiomyocytes was induced by IgG from a selected group of patients, suggesting an agonist-like interaction with a functional epitope. This response was mediated by stimulation of both the beta 1- and beta 2-adrenoceptors in the patients with primary ventricular arrhythmias but only the beta 1-adrenoceptors in the patients with idiopathic dilated cardiomyopathy. CONCLUSIONS: Primary ventricular arrhythmias and conduction disturbances, like idiopathic cardiomyopathy, show a high prevalence of antibodies interacting with functional epitopes of the beta-adrenoceptors, suggesting a common or similar abnormal immunoregulatory process.

Adult↗

Functional epitope analysis of the second extracellular loop of the human heart muscarinic acetylcholine receptor.

Two synthetic peptides corresponding to amino acids 172-181 and 169-193 of the second extracellular loop of the human M2 muscarinic receptor respectively were used to raise antibodies in rabbits. Affinity-purified antibodies were able not only to recognize a major band with a molecular weight of about 80 kDa on the electrotransferred membrane proteins of rat ventricular membranes but also to localize the muscarinic receptors on the sarcolemma and t-tubules of rat cardiomyocytes. Antibodies were also able to mimic muscarinic agonist stimulation as demonstrated by a negative chronotropic effect on cultured neonatal cardiomyocytes. In contrast with the antibodies raised against the peptide 169-193, the antibodies against the peptide 172-181 were unable to inhibit muscarinic ligand binding. These results suggest that the decapeptide 172-181 contains the B-cell epitope responsible for the functional effect of antibodies directed against the second extracellular loop of the receptor. Coupling this peptide by cystein 177 blocks the induction of antibodies with pharmacological effects but induces antibodies which are able to recognize the denatured receptor protein and to exert a negative chronotropic effect.

Amino Acid Sequence↗

Localization of muscarinic receptors in human heart biopsies using rabbit anti-peptide antibodies.

Immunocytochemistry of muscarinic receptors on human heart biopsies from patients with heart disease was studied using rabbit antibodies against a synthetic peptide corresponding to amino acids 168-192 of the second extracellular loop of the human M2 muscarinic receptor. By using both light and electron microscopic immunocytochemistry techniques, muscarinic receptors were visualized on sarcolemma of human myocytes from patients with different heart diseases such as coronary heart disease and dilated cardiomyopathy in adults and congenital heart disease in children. The patchy distribution of immunoreactivity suggests a muscarinergic activity in vivo. These reactivities were abolished by preincubation of antibodies with antigenic peptide and were not shown in the absence of antibodies. Moreover, these antibodies were able to interfere with muscarinic ligand binding in myocardium from human dilated cardiomyopathy as shown by decreases in binding sites and antagonist affinity. These results demonstrate that the antibodies against the second extracellular loop of the human M2 muscarinic receptor can specifically recognize muscarinic receptors in human tissue and display pharmacological activity in human diseased myocardium, confirming their usefulness for the study of localization and function of muscarinergic activity in the human heart.

Adult↗

Characterization of pharmacologically active anti-peptide antibodies directed against the first and second extracellular loops of the serotonin 5-HT1A receptor.

The immunological properties and the functional role of the first (loop I) and second (loop II) extracellular loops of the human serotonin 5-HT1A receptor were studied with three populations of anti-peptide antibodies: Ab-1 (loop I; sequence Y-Q-V-L-N-K-W-T-L-G-Q-V-T-C-D-L; residues 96-111), Ab-2 (loop II; sequence G-W-R-T-P-E-D-R-S-D-P-D-A-C-T-I-S-K-D-H-G; residues 173-193), and Ab-12 (produced against loop I but cross-reacting with loop II). Chemical modification of peptide amino acid residues revealed the importance of the polyanionic stretch near the N-terminal domain of loop II for Ab-2 antibody binding and the role of the cysteine residues in both loops for the binding of Ab-1 and Ab-12 antibodies. Antibodies Ab-2 and Ab-12 recognized only the nonglycosylated form of the receptor (42 kDa) on immunoblots with transfected HeLa cells expressing the human 5-HT1A receptor but recognized the glycosylated forms (55 and 65 kDa) of rat 5-HT1A receptor from hippocampus membranes. The Ab-1 antibodies recognized no protein band from any cell type studied. Preincubation of transfected HeLa cell membranes with Ab-2 antibodies revealed two affinity binding sites of the 5-HT1A receptor (KDH = 0.54 +/- 0.09 nM and KDL = 13.74 +/- 4.9 nM) for the agonist 8-hydroxy-2-(di-n-[3H]propylamino) tetralin ([3H]8-OH-DPAT) binding, but Ab-1 and Ab-12 revealed only one site (KD of approximately 2.5 nM). In contrast to the Ab-2 antibodies, Ab-1 and Ab-12 antibodies decreased the Bmax of the [3H]8-OH-DPAT binding to 42 and 31%, respectively. These findings suggest that there are at least two epitopes on the extracellular loops: one inducing a high-affinity state for agonist binding and the other interfering with the accessibility of the ligand binding pocket.

Amino Acid Sequence↗

[A new alpha chain of jacalin from two wild species of jack-fruit seeds].

Jacalins, from jack-fruit seeds of 2 wild species (Artocarpus asperulus, Artocarpus masticata) were purified by mucine-sepharose 4B affinity chromatography. The alpha and beta chains were separated by reverse phase high pressure liquid chromatography (HPLC). Analysis by HPLC with a C8 column and the determination of the N-terminal sequence of the alpha-chain of these jacalins allowed the identification of a new alpha-chain. Immunological cross-reactivity and carbohydrate specificity indicate that jacalins possessing the new alpha-chain conserve structural and functional properties of the other members of Artocarpus genus.

Amino Acid Sequence↗

Functional autoimmune epitope on alpha 1-adrenergic receptors in patients with malignant hypertension.

Because of the growing evidence that hypertensive disease is accompanied by immunological dysfunction, we have investigated autoimmunity in patients with malignant hypertension. Peptides corresponding to the sequence of the second extracellular loops of the human alpha 1-adrenergic receptor and the M2-muscarinic receptor were used as antigens in an ELISA. Serum from 4 (12%) of 33 healthy controls, 3 (20%) of 15 patients with malignant essential hypertension, and 7 (64%) of 11 with secondary hypertension showed positive responses in the ELISA for the alpha 1-adrenergic receptor peptide. Positive responses were significantly more common among the patients with secondary hypertension than in the other two groups (p < 0.01). By contrast, no autoantibodies against the M2-muscarinic receptor peptide were detected in either hypertensive group. Autoantibodies against the alpha 1-adrenergic receptor, affinity-purified from patients with positive responses, specifically recognised bands with molecular masses of 68, 40, and 37 kDa on immunoblotted membrane proteins of rat ventricles. The patients' autoantibodies caused a decrease in tritiated prazosin binding sites and an increase in heart beating frequency of neonatal cultured rat cardiomyocytes; antibodies purified from the controls had no effect. Circulating autoantibodies against the alpha 1-adrenergic receptor are present in a subgroup of patients with malignant hypertension. These autoantibodies have pharmacological activity in vitro, which suggests that they may be involved in the pathogenesis of malignant hypertension.

Adult↗

A simple assay for detection of peptides promoting the assembly of HLA class I molecules.

Synthetic peptides derived from influenza virus and human immunodeficiency virus were tested for their ability to promote the assembly of HLA-A2 and HLA-B51 molecules in T2 cell lysates. Specific assembly was detected by an enzyme-linked immunosorbent assay. The most significant HLA-A2 assembly was obtained in the presence of peptides known to be targets for HLA-A2-restricted cytotoxic T lymphocytes (influenza matrix M.58-66 and HIV Pol 476-484). Three of a batch of Nef peptides corresponding to epitopic regions for cytotoxic T lymphocytes, caused significant assembly of HLA-A2 (Nef 83-91, 137-145 and 144-153), but only at high concentrations (100 microM). As these peptides bound relatively weakly, it is unlikely that they are good candidates for HLA-A2-restricted CTL epitopes. Peptides matrix M.60-68, Nef 186-194, and Plasmodium falciparum sh.77-85 produced the most significant assembly of HLA-B51. These peptides have a dominant hydrophobic anchor residue (V, L. I) at position 9 that could occupy pocket "F". Our results also suggest that another hydrophobic residue (V, L) at position 3 or 4 may anchor to hydrophobic pocket "D" of HLA-B51. Proline at position 2 greatly increases HLA-B51 anchoring.

Amino Acid Sequence↗

Autoantibodies against cardiac G-protein-coupled receptors define different populations with cardiomyopathies but not with hypertension.

It was previously shown that the second extracellular loop of cardiovascular G-protein-coupled receptors is an antigenic target for pharmacologically active autoantibodies in patients with idiopathic dilated cardiomyopathy. To extend these observations to cover patients with the same disease from different geographical origins or to patients with other cardiac diseases, peptides corresponding to the sequences of the second extracellular loops of the human M2 muscarinic receptors and beta adrenoceptors were used as antigens in an enzyme immunoassay. Sera from patients from Sweden and Japan with idiopathic dilated cardiomyopathy (DCM, n = 32), hypertrophic cardiomyopathy (HCM, n = 23), malignant essential hypertension (MEH, n = 11), malignant secondary hypertension (MSH, n = 10), and sera from healthy blood donors (HBD, n = 49) were tested. Sera from patients with DCM recognized the muscarinic receptor peptide in 38% of cases and the beta 1 adrenoceptor peptide in 31% of cases. In 50% of the positive patients, autoantibodies against both peptides coexisted as shown by competition experiments using both peptides as inhibitors. In HCM patients, there was a lower frequency of autoantibodies but with a higher but not significant predominance against the M2 peptide. No autoantibodies were detected in sera from patients with MEH or MSH. Autoantibodies against the M2 muscarinic receptors, affinity-purified from positive patients, displayed pharmacological activity as demonstrated by changes in the affinity and number of radioligand binding sites. In contrast, antibodies purified from positive HBD had no effect. These results confirm that autoantibodies displaying pharmacological activity against G-protein-coupled cardiovascular receptors are mainly restricted to patients with idiopathic dilated cardiomyopathy and that different autoantibody populations are responsible for the recognition of the different receptors.

Adult↗

Epitopic analysis of the Toxoplasma gondii major surface antigen SAG1.

T and B cell epitopes of the major Toxoplasma gondii surface antigen SAG1 were studied following CNBr fragmentation. Three fragments, F1, F2 and F3, were obtained, of 19, 16.5 and 14 kDa, respectively. The positions of F1 F2 and F3 within the SAG1 protein were identified by N-terminal sequence determination. The F1 fragment located on residues 125-269 contains the C-terminus, and the fragment F2 (residues 1-124) is located at the N-terminal region. F3 is a C-terminal peptide about 40 amino acids shorter than the F1 fragment (residues 165-269). Polyclonal antibodies obtained from infected animals or humans and a monoclonal anti-SAG1 antibody did not recognize either the reduced protein or the reduced fragments on immunoblotting. The monoclonal antibody 1E5 did not recognize fragment F1. Mouse IgA and IgG antibodies from infected mouse sera and intestinal secretions, as well as human IgG antibodies, only recognized the whole protein and the F1 fragment. These results suggest that the fragment F1 encompasses all B cell epitopes recognized on the SAG1 protein after infection with the parasite and that the sequence 125-165 is essential for the structural integrity of these B cell epitopes. Murine anti-SAG1 T cell proliferation was observed in SAG1 immunized CBA/J mice (H-2k) and BALB/c mice (H-2d), but not in C57BL/6 mice (H-2b). The three fragments F1, F2 and F3 were able to induce specific proliferation of anti-SAG1 T cells from CBA/J mice, while only the F1 and F2 fragments induced specific blastogenesis of anti-SAG1 T cells from BALB/c mice.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Epitope analysis of T- and B-cell response against the human beta 1-adrenoceptor.

Several reports have recently raised the possible significance of the presence of autoantibodies against the beta 1-adrenoceptor in patients with idiopathic dilated cardiomyopathy. An investigation was thus initiated to study the immune response against this receptor at the T-cell and the B-cell level. Using membranes of E coli transfected with the human beta 1-adrenoceptor gene as immunogen, T-helper cells of the immunized mice were stimulated with synthetic peptides derived from the receptor and predicted to be immunogenic to assess the T-cell immunodominant regions of the receptor. Three peptides derived from the second transmembrane region, from the second extracellular loop and from the C-terminal domain were shown to be stimulatory. Synthetic peptides, derived from two domains of the receptor which could be potential targets for autoantibodies, yielded an antibody response after immunization with the free peptides. The peptide derived from the N-terminal region yielded antibodies which recognized the receptor in immunoblot and by immunoprecipitation but they had no functional effect on the receptor. The peptide derived from the second extracellular loop yielded antibodies which recognized the receptor in immunoblot and by immunoprecipitation of the free receptor and which had a pharmacological effect on the receptor. The second extracellular loop thus contains T- and B-cell epitopes which could be involved in the autoimmune process.

Animals↗