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F Hudecz

Publications and source records attributed to F Hudecz.

At least 37 records · Page 2Linked to original sources

Effect of solution conformation on antibody recognition of a protein core epitope from gastrointestinal mucin (MUC2).

Antibody recognition of the tandem repeat unit of MUC2 glycoprotein was investigated. To clarify the role of secondary structure, the immunoreactivity and conformation of overlapping and truncated peptides were investigated. For this several MUC2 peptides have been synthesized and their secondary structure has been analyzed by circular dichroism and Fourier transform infrared spectroscopical methods. For the binding studies a MUC2 mucin protein core-specific monoclonal antibody was used in competition RIA experiments. The minimal size peptide functioning as epitope was peptide 18PTGTQ22. Within the immunodominant 13TPTPTPTGTQTPTT26 region we found that all peptides recognized by the 996 monoclonal antibody adopted beta-turns secondary structure. Peptides 15TPTPTGTQ22 and 16PTPTGTQ22, containing the most prominent beta-turn(s), had the strongest immunoreactivity. It was also observed that peptides with Pro on their N-termini (16PTPTGTQ22, 18PTGTQ22) adopt a different type of beta-turn in TFE than peptides with Thr at their N-terminal. Based on the antibody binding, molecular dynamics calculations, and secondary structure analysis, we propose a model for the epitope structure of the MUC2 mucin tandem repeat.

Amino Acid Sequence↗

Synthesis of cyclic Herpes simplex virus peptides containing 281-284 epitope of glycoprotein D-1 in endo- or exo-position.

We have prepared two types of cyclopeptides containing the 281DPVG284 sequence from the 276-284 region of glycoprotein gD-1 of the Herpes simplex virus (HSV). The syntheses were performed by solid phase methodology using MBHA or BHA resin and orthogonal protection schemes. Head-to-side-chain cyclization included the N-terminal part of the epitope, while side-chain-to-side-chain lactam bridge formation resulted in a peptide containing a C-terminal cycle. Peptides elongated by Cys at the N-terminal of the sequence were also prepared. Boc chemistry using Fmoc and OFm orthogonal protection was applied for on-resin cyclization. Based on the orthogonality of Bzl and cHex esters under a 1 M TMSOTf-thioanisole/TFA cleavage condition, a new approach for the cyclization on BHA-resin has also been developed. Preliminary studies on solution conformation of the cyclic peptides by CD spectroscopy indicated the importance of the location and the size of the cycle within the epitope sequence.

Amino Acid Sequence↗

Enhancement of the T cell response to a mycobacterial peptide by conjugation to synthetic branched polypeptide.

A peptide-based approach towards improving the immunodiagnosis of, and vaccination against, tuberculosis faces the problems of MHC restriction of T cell recognition and the poor immunogenicity of peptides in the absence of adjuvant. We sought to compensate this by the use of synthetic branched polypeptides of the poly[Lys-(Xi-DL-Alam)] type, containing a glutamic acid residue (EAK), and further modified either by succinylation (SucEAK) or acetylation (AcEAK). These carriers were conjugated to two permissively recognized peptides of Mycobacterium tuberculosis. The 38p350 - 369-SucEAK conjugate enhanced IFN-gamma production more than 13-fold (from 22.6 to 294 pg / ml, p = 0.001) in peripheral blood mononuclear cells from healthy subjects, and 8.7-fold (p = 0. 012) in cells from tuberculosis patients. The effect was dependent on the carrier used and on covalent linkage of SucEAK to 38p350 - 369. An increased response occurred best in cells from subjects bearing at least one HLA-DR allele for which 38p350 - 369 had high binding affinity and required cellular processing of the conjugate as inhibitors (chloroquine and wortmannin) blocked the IFN-gamma response. SucEAK conjugation of peptide 16p91 - 110 did not significantly increase IFN-gamma production, indicating that the ability of conjugation to enhance the response was peptide structure dependent. These data indicate that the use of SucEAK polymer coupled with permissively recognized peptides could contribute to the development of an improved immunodiagnostic or vaccine reagent for tuberculosis.

Adult↗

C1q autoantibodies in HIV infection: correlation to elevated levels of autoantibodies against 60-kDa heat-shock proteins.

Antibodies to solid phase C1q (C1qAb) were determined in 295 serum samples from 132 HIV-infected subjects and in sera from 140 HIV-seronegative healthy individuals as control. An ELISA method applied for the determination of C1qAb in other diseases was used. In part of these sera, other autoantibodies (antibodies reacting with 60-kDa human heat shock protein (hsp60) or mycobacterial hsp65; IgA and IgG class antibodies against the Fab and F(ab')2 moieties of IgG) as well as complement-mediated antibody-dependent enhancement/neutralization (C'-ADE) were also determined. Increased amount of C1qAb was found in HIV-infected subjects as compared with HIV-seronegative controls (P = 0.0138). In 17 of 132 (13.0%) seropositive individuals but only in 7/140 (5.0%) samples from the controls, the amount of C1qAb exceeded the upper limit (95th percentile) of the normal values (P = 0.031). The amount of C1qAb significantly decreased during a follow-up period of 65 months. C1qAb levels were found to strongly correlate to hsp60/65 autoantibodies but did not correlate or only weakly correlated to the amount of anti-Fab or anti-F(ab')2 autoantibodies measured in the same serum samples. Anti-C1q antibodies recognized the solid phase hsp60/65. Three predicted epitope regions of M. paratuberculosis hsp65 were able to bind efficiently C1q antibodies. An inverse correlation was found between C1qAb and C'-ADE, neutralization was more frequent in the sera with detectable C1qAb, whereas sera without C1qAb more likely enhanced HIV infection in vitro.

Antigens, Bacterial↗

Regulation of the contact sensitivity response to urushiol with anti-urushiol monoclonal antibody ALG 991.

The objective of the studies was to demonstrate that the contact sensitivity (CS) response to poison ivy/oak could be downregulated following treatment with a monoclonal antibody (mAb) reacting with the allergen urushiol. Conjugation of urushiol and its synthetic analogue 3-n-pentadecylcatechol (PDC) to N-acetylcysteine yielded hydrosoluble derivatives which induced humoral immune responses in BALB/c mice. Hybridomas secreting monoclonal antibodies (mAbs) reacting with urushiol and PDC were generated by fusion of B lymphocytes from immunized mice with mouse myeloma P3NS0 cells. The specificity of mAb ALG 991 (IgM isotype) was defined by inhibition of antibody binding by PDC analogues. This demonstrated that mAb ALG 991 reacted with the catechol moiety of urushiol, the region of the allergen being critically important in the induction of contact dermatitis. The CS response to urushiol in BALB/c mice was suppressed by stimulation with mAb ALG 991 and the role of sensitized T cells, including suppressor T cells, has been considered. Suppression of CS was most effective with low doses (1 microg) of mAb incorporated into a vaccine with Freund's adjuvant. This treatment suppressed CS responses in BALB/c mice already sensitized to urushiol.

Allergens↗

Stability of Asp-Pro bond under high and low energy collision induced dissociation conditions in the immunodominant epitope region of herpes simplex virion glycoprotein D.

A series of truncated Herpes simplex virion peptides studied by fast atom bombardment mass spectrometry under high and low energy collision induced dissociation conditions showed preferential fragmentation of the aspartyl-proline amide bond, compared to other peptide bonds. Electrospray ionization investigation proved that this favoured fragmentation can not be attributed to only the known proline effect, as a change from Asp to Asn in the peptide yielded an Asn-Pro bond which was found to be stable under the same ionization conditions. This mass spectrometric behaviour is in good agreement with the observation that DP bonds are sensitive to acidic conditions.

Amino Acid Sequence↗

Localisation of a protein core-specific epitope from gastrointestinal mucin (MUC2). The effect of epitope immobilisation on antibody recognition.

Human intestinal mucins are high molecular weight glycoproteins which protect and lubricate the epithelium of the gastrointestinal tract. In cases of malignant disease, mucins are abnormally expressed, overproduced or underglycosylated. This feature may enable the mucins to serve as tumour markers. The MUC2 mucin largely consists of a variable number of tandem repeats of a 23 amino acid sequence, 1PTTTPITTTTTVTPTPTPTGTQT23. In this study we have localised the minimal and the optimal epitope within this region by the previously developed protein core specific 996 monoclonal antibody using synthetic peptides. Several overlapping and truncated peptides related to the tandem repeat unit have been prepared by solid-phase methodology. Other mucin peptides were synthesised on the tips of polyethylene pins, and these remained C-terminally attached to the pins for comparative investigations. The interaction of the 996 monoclonal antibody with the synthetic peptides was studied either in solution by competition RIA or on immobilised peptides by indirect ELISA experiments. These experiments show that the minimal epitope recognised by the 996 antibody is the Ac-19TGTQ22 (IC50=3100 microM in solution). For the optimal 996 antibody binding in solution the 16PTPTGTQ22 heptapeptide (IC50 = 3 microM) is required.

Antigen-Antibody Reactions↗

Characterization of intertype specific epitopes on adenovirus hexons.

The specification and differentiation of eighteen intertype specific (IT) epitopes of adenovirus hexons defined by monoclonal antibodies are given by two groups of hexon types: on which they are and on which they are not present. The close specificity relationship among some groups of epitopes determined by pairwise analysis according to their presence on the hexon types indicate that they could be continuous (sequential), overlapping or discontinuous (topographic) epitopes. Based on the identification of the hydrophilic regions and the localization of beta-turns sixteen IT epitope sites were predicted on human adenovirus (HAdV) type 2 and nineteen on HAdV-41 hexon's amino acid (aa) sequences beside the type and genus specific ones. The 16 predicted IT epitopes on HAdV-2 hexon show good coincidency with the 14 IT epitopes demonstrated with monoclonal antibodies (MAbs) on this hexon type. The predicted number of common epitopes between HAdV types 2 and 41 also corresponds well with the eight IT epitopes determined by MAbs, but the 17 predicted non-common epitopes indicate the possibility of the existence of more epitopes on these hexon types. The location of the predicted epitopes of HAdV-2 were determined by alignment of their sequence numbers on the three dimensional ribbon representation of the hexon subunit. Most of the predicted IT epitopes were found between the type and genus specific epitopes i.e. in the "upper" regions of pedestal domains P1 and P2 orientated toward the virion surface and in the "lower" part of loop 1 region orientated inside the virion. Two peptides representing potential IT epitopes were synthesized corresponding to residues 309-320 from the "lower" part of loop 1 and 399-408 from the "upper" part of P1 region of HAdV-2 hexon. Antibodies raised against the peptide-carrier conjugates recognized different purified native hexon types in ELISA.

Adenoviruses, Human↗

Low toxicity and high antitumour activity of daunomycin by conjugation to an immunopotential amphoteric branched polypeptide.

The acid labile derivative of Daunomycin cis-aconityl Daunomycin (cAD), was coupled to an amphoteric polypeptide, poly[Lys-(Glui-DL-Alam)] (EAK), which was selected for conjugation on the basis of its pharmacological and immunological properties. The systemic toxicity of covalently attached Daunomycin was studied by monitoring body weight, life-span, bone marrow and haematological parameters of BDF1 mice. More than 3-fold the lethal dose of free Daunomycin could be applied without serious toxic effect when the drug was attached to EAK. The dose- and time-dependent modulatory effect of free drug and [cAD]-EAK conjugate on the humoral and cellular immune response to sheep red blood cell antigens in mice was studied. The conjugation of Daunomycin to EAK carrier polypeptide compensated for the immunosuppression induced by free Daunomycin. [cAD]-EAK conjugate at Daunomycin doses of 2-10 mg/kg was very effective against L1210 leukaemia producing 66-100% long-term survivors (> 60 days), while Daunomycin in itself increased the mean survival only by 52%, with no long-term survivors. The mixture of free Daunomycin and EAK polypeptide had similar toxicity and antitumour activity as free Daunomycin, indicating the important role of covalent attachment in increased therapeutic efficacy.

Animals↗

Synthesis, solution conformation and interleukin-6-related activities of interleukin-6 peptides.

Interleukin-6 (IL-6) is a member of the cytokine superfamily characterised by a wide variety of biological activities on various cell types. IL-6 exerts pleiotropic activities on hematopoiesis in the immune response and it is the main regulator of acute-phase protein synthesis in liver cells. According to structure-function studies, residues of helix A located at the N-terminal part and/or helix D of the C-terminal part of the protein are involved in the induction of acute-phase responses. Two groups of synthetic peptides corresponding to the 18-46 N-terminal and the 168-185 C-terminal regions of the IL-6 were prepared by solid-phase synthesis to identify structural requirements for induction of fibrinogen or complement factor B synthesis. These peptides were characterised by amino acid analysis, analytical reversed-phase high-performance liquid chromatography, fast atom bombardment mass spectrometry, and circular dichroism (CD) spectroscopy. CD results showed that under appropriate conditions both 18-46 and 168-185 related peptides are able to adopt markedly ordered conformation. We demonstrated that even octapeptides from the N-terminal part and truncated derivatives of the C-terminal region preserved some tendency to display the CD curve of periodic conformation. The ability of the peptides to induce de novo synthesis of acute-phase proteins was evaluated by measuring fibrinogen and complement factor B levels in the supernatants of human HepG2 cells. These results showed that residues 21-34 are critical for eliciting fibrinogen synthesis in the presence or absence of IL-6. In contrast, the full-length 168-185 peptide is required for the induction of complement factor B response.

Acute-Phase Proteins↗

Defensins purified from human granulocytes bind C1q and activate the classical complement pathway like the transmembrane glycoprotein gp41 of HIV-1.

The transmembrane glycoprotein gp41 of HIV-1 contains a C1q binding domain (HIVenv 583-610) and activates the human complement system through the classical pathway. Based on structural and functional similarities between human defensins (human neutrophil peptide, HNP 1-3) and synthetic peptides representing the env 583-610 region of HIV-1, we found it interesting to investigate the C1q binding and complement activating ability of human defensins. Human defensins were purified and characterized by size exclusion chromatography, ultrafiltration, gel electrophoresis and HPLC. The complement activating ability of the purified peptides was assessed in a solid-phase immunoassay. Defensins, fixed to an ELISA plate, were able to bind the C1q subcomponent of the first complement component (C1), triggering the classical pathway of complement activation which led to C4b binding to the plate. Reduction and subsequent alkylation of disulfide bridges of defensins greatly decreased the C1q binding ability but complement activation (C4b binding) remained high. Further acetylation of the reduced defensin peptide resulted in a molecule which bound very little or no C1q but still activated the complement cascade. These phenomena indicate that defensins interact with the complement system via C1q-dependent and C1q-independent mechanisms, and extend the number of functional similarities between defensins and gp41 of HIV-1 to include C1q binding and complement activation.

Anti-Infective Agents↗

Modulation of peptide specific T cell responses by non-native flanking regions.

The deduced core (75RYPNVTI81) from a T-cell stimulatory epitope of the 38 kDa protein of M. tuberculosis was studied to identify the structural elements required for the creation of a synthetic peptide antigen from an epitope core, which alone was not capable of inducing CD4+ T-cell responses. Peptides were prepared with extensions composed of native and/or non-native sequences to clarify the role of the flanking regions adjacent to the epitope core. Their binding to isolated H-2-Ab MHC glycoprotein as well as T-cell stimulatory capacity were assayed using a specific murine hybridoma T-cell line [38.H6], lymph node cells from the native 20-mer peptide primed C57BL/10 mice and human PBMCs from sensitised individuals. Elongation of the epitope core by four alanines at both N- and C-terminals resulted in a 15-mer peptide A4-75-81-A4 which was stimulatory for hybridoma T-cells and showed a small decrease in H-2-Ab binding. Substitution of one Ala by Ser in the N-terminal flank had pronounced effect and peptide A2SA-75-81-A4 proved to be more effective than the native 20-mer sequence in the hybridoma as well as in the LN cell proliferation assays. The binding of this peptide and that of the native one were similar. Testing in human PBMC cultures from eight PPD positive individuals showed that in 50% of the donors' cells responded to the 'artificial' A2SA-75-81-A4 peptide. These results suggest that it is possible to construct simple, synthetic CD4+ T-cell stimulatory peptides of high potency from a non-stimulatory, 'silent' epitope core by addition of flanking residues not part of the native sequence.

Amino Acid Sequence↗

Analysis of macromolecular branched chain polypeptides by capillary electrophoresis and micellar electrokinetic chromatography.

Amphoteric poly(Lys-[Glu1.0-DL-Ala4.1]), (EAK) and anionic poly(Lys-Ac-Glu0.98-DL-Ala3.98]), (AcEAK) branched chain polypeptides were analyzed by capillary electrophoresis (CE) and micellar elektrokinetic chromatography (MEKC) in the following buffers. A1: 0.25 N triethyl ammonium phosphate (TEAP) buffer (pH 2.25); A2: 100 mM sodium dodecyl sulfate (SDS) in buffer A1; B1: Na-borate buffer (pH 7.7); B2: 100 mM SDS in buffer B1; C1: Na-borate buffer (pH 11.0); C2: 100 mM SDS in buffer C1. Both EAK and AcEAK could be separated by a CE mechanism at pH 2.25 and by an MEKC mechanism at pH 11.0. Optimum results were achieved with CE in buffer A1 and with MEKC in buffer C2.

Buffers↗

Biodistribution in tumour-bearing mice of polycationic, amphoteric and polyanionic branched polypeptides with a poly(L-lysine) backbone labelled with 125I and 111In: tumour accumulation less than that of labelled serum proteins.

The biodistribution has been studied in mice with subcutaneously transplanted solid tumours (mammary carcinoma and melanoma) of synthetic branched-chain polypeptides based on poly(L-lysine). The polypeptides were a poly(L-lysine) backbone with side-chains of three DL-alanine residues (AK, which is polycationic), AK with additional glutamic acid residues at the end of the side-chains (EAK, which is amphoteric) and EAK in which the terminal glutamic acid amino groups had been acetylated (AcEAK, which is polyanionic) or succinylated (SucEAK, which is highly polyanionic). Polypeptides were labelled with 125I by reaction with Bolton and Hunter reagent, or with 111In by chelation to diethylenetriaminepentaacetic acid previously conjugated to them. As controls, natural plasma proteins (immunoglobulin G, albumin and transferrin) were similarly labelled. Over a study period of up to 7 days, even with the polypeptides showing most prolonged blood survival (EAK and AcEAK) there was no particular uptake or retention in tumour tissue, over and above what was seen with control plasma proteins and/or in normal tissues. Overall these findings suggest that any enhanced permeability and retention in tumour tissue, reported by other workers with other synthetic macromolecules, operates poorly with the present polypeptides and/or tumours. Specific tumour targeting, for example with monoclonal antibodies, would seem a better option than non-specific accumulation of macromolecules.

Animals↗

Gamma scintigraphy of 111In-labelled branched chain polypeptides (BCP) with a poly(L-lysine) backbone in mice with mammary carcinoma: effect of charge on biodistribution and tumour imaging potential.

Radiolabelled synthetic branched chain polypeptides (BCP) represent a new and novel range of materials with potential as radiopharmaceuticals. Preliminary imaging studies have been undertaken with 111In-labelled BCP in mice with subcutaneously transplanted mammary carcinoma. Four polypeptides each with a poly(L-lysine) backbone and side chains of DL-alanine residues were studied. These were AK, which is polycationic, EAK which is amphoteric, having additional glutamic acid residues at the end of the side chains, and AcEAK (anionic) and SucEAK (highly polyanionic) where the terminal glutamic acid amino groups were acetylated or succinylated respectively. Radiolabelling was achieved by previous conjugation with DTPA. Serial images up to 48 hours showed marked retention of 111In-labelled polycationic AK and polyanionic SucEAK in the liver and spleen, with renal uptake also being visible in the case of AK. 111In-labelled EAK and AcEAK showed longer blood survival with some liver uptake, but tumour uptake was also visualized by 24 hours with both of these polypeptides. These studies demonstrate the feasibility of using 111In-labelled synthetic branched chain polypeptides as radiopharmaceuticals for gamma scintigraphy and the visualization of tumours by modification of the side chain structure. These materials warrant further study.

Animals↗

The effect of WSEWS pentapeptide and WSEWS-specific monoclonal antibodies on constitutive and IL-6 induced acute-phase protein production by a human hepatoma cell line, HEPG-2.

Interleukin-6 receptor (IL-6R) is a member of the cytokine receptor superfamily characterised by the obligatory presence of WSXWS (Trp-Ser-X-Trp-Ser) sequence motif near the transmembrane domain. To more clearly understand the role of this motif, we treated the HepG2 hepatoma cell line with synthetic WSEWS peptide (E is glutamic acid) and checked the spontaneous and IL-6-induced production of acute-phase protein fibrinogen and C1-inhibitor (C1-INH). The peptide revealed a definitely stimulatory effect both on the constitutive synthesis of C1-INH and on the IL-6-induced fibrinogen synthesis of HepG2 cells. Monoclonal antibody specific for WSEWS pentapeptide was stimulatory for the spontaneous secretion of both fibrinogen and C1-INH. However, the IL-6-induced elevations of these acute-phase proteins were oppositely regulated, since the anti-WSEWS monoclonal antibody was inhibitory on the production of fibrinogen induced by IL-6 but strongly augmented the IL-6 induced production of C1-INH. Our study indicates that the WSEWS motif is critical in the effect of IL-6 on the acute-phase protein production influencing either the ligand binding by the WSEWS-containing receptor molecule or the signal transduction.

Acute-Phase Proteins↗

Design of synthetic branched-chain polypeptides as carriers for bioactive molecules.

New groups of synthetic biodegradable branched chain polypeptides have been prepared with the general formula poly[Lys-(Xi-DL-Alam)] or poly[Lys-(DL-Alam-Xi)] [AXK], where m approximately 3 and i < 1, and used to elucidate structural and functional properties required for the selection of macromolecular carriers for (i) targeting/delivery of antitumor agents (e.g. daunomycin, methotrexate, boron derivatives), peptide hormones (e.g. GnRH antagonist) or radionuclides for imaging (e.g. 123I, 111In, 51Cr) or therapy (e.g. 153Sm, 131I) or (ii) the construction of synthetic antigens with peptide epitopes of mucin or Herpes Simplex virus glycoprotein D. Principles applicable for a rational carrier design are outlined based on chemical (size, charge, solution conformation) and biological (cytotoxicity, pirogenicity, biodegradation, immunogenicity, immunomodulatory potential, biodistribution) characterization of these biopolymers and their conjugates.

Animals↗

Amino-acid conjugates of the hapten 2-phenyl-4-ethoxymethylene-5(4H)-oxazolone. Synthesis and confirmation of structure.

2-Phenyl-4-ethoxymethylene-5(4H)-oxazolone (PhOx = CHOEt) was reacted with methylamine, and 2-phenyloxazole-4-carboxylic acid was coupled with methylamine. The spectroscopic properties of the two products were compared in order to confirm that aminolysis of PhOx = CHOEt occurs by displacement of the ethoxy group to give 2-phenyl-4-(substituted-methylene)-5(4H)-oxazolones and not by attack at the oxazolone-carbonyl followed by rearrangement to give 2-phenyloxazole-4-carboxamides. Ten crystalline conjugates were prepared and characterized by reacting PhOx = CHOEt with an excess of unprotected di- and trifunctional amino acid anions followed by purification by washing them with hydrochloric acid.

Amino Acids↗