920 resultados para Oligosaccharide Epitopes


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Treatment of human cancers with an inherent antigen-processing defect due to a loss of peptide transporters (TAP-1 and TAP-2) and/or MHC class I antigen expression remains a considerable challenge. There is now an increasing realization that tumor cells with down-regulated expression of TAP and/or MHC class I antigens display strong resistance to cytotoxic T lymphocyte (CTL)mediated immune control, and often fail to respond to the conventional immunotherapeutic protocols based on active immunization with tumor-associated epitopes (TAE) or adoptive transfer of tumor-specific T cells, In the present study, we describe a novel approach based on immunization with either genetically modified tumor cells or naked DNA vectors encoding TAE fused to an endoplasmic reticulum (ER) signal sequence (ER-TAE) which affords protection against challenge by melanoma cells with down-regulated expression of TAP-1/2 and MHC class I antigens. In contrast, animals immunized with a vaccine based on TAE alone showed no protection against tumor challenge. Although MHC-peptide tetramer analysis showed a similar frequency of antigen-specific CTL in both ER-TAE- and TAE-immunized mice, functional analysis revealed that CTL activated following immunization with ER-TAE displayed significantly higher avidity for TAE when compared to animals immunized with the TAE alone, These observations provide a new strategy in anti-cancer vaccine design that allows activation of a highly effective and well-defined CTL response against tumors with down-regulated expression of TAP and MHC class I antigens.

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This study investigates the hierarchy of cytotoxic T cell (CTL) responses to twelve HLA A2-restricted epitopes from the latent, lytic and structural proteins of Epstein–Barr virus (EBV) in acute infectious mononucleosis and in healthy seropositive donors and the relative immunogenecity of these epitopes in transgenic mice. Responses to the lytic epitope were uniformly strong in all healthy seropositive individuals and acute infectious mononucleosis donors while moderate or low responses were observed to the latent and structural epitopes, respectively in both groups studied. In contrast, when HLA A2/Kb transgenic mice were immunised with these peptide epitopes, CTL responses were observed to all epitopes with a maximal response to the epitopes within the structural proteins and low to moderate responses to the latent epitopes. This hierarchy of CTL responses in mice was also reflected in an MHC stabilisation analysis. These contrasting CTL responses in humans following natural infection compared to the immunogenicity of these epitopes and their ability to stabilise MHC may need to be considered when designing an EBV vaccine.

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The small envelope protein of hepatitis B virus (HBsAg-S) can self-assemble into highly organized virus like particles (VLPs) and induce an effective immune response. In this study, a restriction enzyme site was engineered into the cDNA of HBsAg-S at a position corresponding to the exposed site within the hydrophilic a determinant region (amino acid [aa] 127-128) to create a novel HBsAg vaccine vector allowing surface orientation of the inserted sequence. We inserted sequences of various lengths from hypervariable region 1 (HVR1) of the hepatitis C virus (HCV) E2 protein containing immunodominant epitopes and demonstrated secretion of the recombinant HBsAg VLPs from transfected mammalian cells. A number of different recombinant proteins were synthesized, and HBsAg VLPs containing inserts up to 36 aa were secreted with an efficiency similar to that of wild-type HBsAg. The HVR1 region exposed on the particles retained an antigenic structure similar to that recognized immunologically during natural infection. VLPs containing epitopes from either HCV-1a or -1b strains were produced that induced strain-specific antibody responses in immunized mice. Injection of a combination of these VLPs induced antibodies against both HVR1 epitopes that resulted in higher titers than were achieved by vaccination with the individual VLPs, suggesting a synergistic effect. This may lead to the development of recombinant particles which are able to induce a broad anti-HCV immune response against the HCV quasispecies or other quasispecies-like infectious agents.

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Proteolipid protein (PLP) is the most abundant protein of CNS myelin, and is posttranslationally acylated by covalent attachment of long chain fatty acids to cysteine residues via a thioester linkage. Two of the acylation sites are within epitopes of PLP that are encephalitogenic in SJL/J mice (PLP104-117 and PLP139-151) and against which increased immune responses have been detected in some multiple sclerosis patients. It is known that attachment of certain types of lipid side chains to peptides can result in their enhanced immunogenicity. The aim of this study was to determine whether thioacylated PLP peptides, as occur in the native protein, are more immunogenic than their nonacylated counterparts, and whether thioacylation influences the development of autoreactivity and experimental autoimmune encephalomyelitis. The results show that in comparison with nonacylated peptides, thioacylated PLP lipopeptides can induce greater T cell and Ab responses to both the acylated and nonacylated peptides. They also enhanced the development and chronicity of experimental autoimmune encephalomyelitis. Synthetic peptides in which the fatty acid was attached via an amide linkage at the N terminus were not encephalitogenic, and they induced greater proportions of CD8(+) cells in initial in vitro stimulation. Therefore, the lability and the site of the linkage between the peptide and fatty acid may be important for induction of encephalitogenic CD4(+) T cells. These results suggest that immune responses induced by endogenous thioacylated lipopeptides may contribute to the immunopathogenesis of chronic experimental demyelinating diseases and multiple sclerosis.

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Rheumatic fever (RF)/rheumatic heart disease (RHD) and post-streptococcal glomerulonephritis are thought to be autoimmune diseases, and follow group A streptococcal (GAS) infection. Different GAS M types have been associated with rheumatogenicity or nephritogenicity and categorized into either of two distinct classes (I or II) based on amino acid sequences present within the repeat region ('C' repeats) of the M protein. Sera from ARF patients have previously been shown to contain elevated levels of antibodies to the class I-specific epitope and myosin with the class I-specific antibodies also being cross-reactive to myosin, suggesting a disease association. This study shows that immunoreactivity of the class I-specific peptide and myosin does not differ between controls and acute RF (ARF)/RHD in populations that are highly endemic for GAS, raising the possibility that the association is related to GAS exposure, not the presence of ARF/RHD. Peptide inhibition studies suggest that the class I epitope may be conformational and residue 10 of the peptide is critical for antibody binding. We demonstrate that correlation of antibody levels between the class I and II epitope is due to class II-specific antibodies recognizing a common epitope with class I which is contained within the sequence RDL-ASRE. Our results suggest that antibody prevalence to class I and II epitopes and myosin is associated with GAS exposure, and that antibodies to these epitopes are not an indicator of disease nor a pathogenic factor in endemic populations.

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We investigated the use of mice transgenic for human leucocyte antigen (HLA) A*0201 antigen-binding domains to test vaccines composed of defined HLA A*0201-restricted cytotoxic T-lymphocyte (CTL) epitopes of human papillomavirus (HPV) type 16 E7 oncoprotein. HPV is detected in >90% of cervical carcinomas. HPV16 E7 oncoprotein transforms cells of the uterine cervix and functions as a tumour-associated antigen to which immunotherapeutic strategies may be directed. We report that although the HLA A*0201 E7 epitope peptides function both to prime for E7 CTL responses, and to sensitize target cells for E7-directed CTL killing in situations where antigen processing is not required, the epitopes are not processed out of either endogenously expressed or immunization-introduced E7, by the mouse antigen-processing and presentation machinery. Thus (1) CTL induced by HLA A*0201 peptide immunization killed E7 peptide-pulsed target cells, but did not kill target cells expressing whole E7; (2) immunization with whole E7 protein did not elicit CTL directed to HLA A*0201-restricted E7 CTL epitopes; (3) HLA A*0201-restricted CTL epitopes expressed in the context of a DNA polytope vaccine did not activate E7-specific T cells either in 'conventional' HLA A*0201 transgenic (A2.1K(b) ) mice, or in HHD transgenic mice in which expression of endogenous H-2 class 1 is precluded; and (4) HLA A*0201 E7 peptide epitope immunization was incapable of preventing the growth of an HLA A*0201- and E7-expressing tumour. There are generic implications for the universal applicability of HLA-class 1 transgenic mice for studies of human CTL epitope presentation in murine models of human infectious disease where recognition of endogenously processed antigen is necessary. There are also specific implications for the use of HLA A2 transgenic mice for the development of E7-based therapeutic vaccines for cervical cancer.

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Lipoamino acid-based synthetic peptides (lipid core peptides, LCP) derived from the type-specific and conserved region determinants of group A streptococci (GAS) were evaluated as potential candidate sequences in a vaccine to prevent GAS-associated diseases, including rheumatic heart, disease and poststreptococcal acute glomerulonephritis. The LCP peptides had significantly enhanced immunogenicity as compared with the monomeric peptide epitopes. Furthermore, the peptides incorporated into the LCP system generated epitope-specific antibodies without the use of any conventional adjuvant.

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Merozoite surface protein 1 (MSP1) of malaria parasites undergoes proteolytic processing at least twice before invasion into a new RBC. The 42-kDa fragment, a product of primary processing, is cleaved by proteolytic enzymes giving rise to MSP1(33), which is shed from the merozoite surface, and MSP1(19), which is the only fragment carried into a new RBC. In this study, we have identified T cell epitopes on MSP1(33) of Plasmodium yoelii and have examined their function in immunity to blood stage malaria. Peptides 20 aa in length, spanning the length of MSP1(33) and overlapping each other by 10 aa, were analyzed for their ability to induce T cell proliferation in immunized BALB/c and C57BL/6 mice. Multiple epitopes were recognized by these two strains of mice. Effector functions of the dominant epitopes were then investigated. Peptides Cm15 and Cm21 were of particular interest as they were able to induce effector T cells capable of delaying growth of lethal P. yoelii YM following adoptive transfer into immuno-deficient mice without inducing detectable Ab responses. Homologs of these epitopes could be candidates for inclusion in a subunit vaccine.

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Multiple HLA class I alleles can bind peptides with common sequence motifs due to structural similarities in the peptide binding cleft, and these groups of alleles have been classified into supertypes. Nine major HLA supertypes have been proposed, including an A24 supertype that includes A*2301, A*2402, and A*3001. Evidence for this A24 supertype is limited to HLA sequence homology and/or similarity in peptide binding motifs for the alleles. To investigate the immunological relevance of this proposed supertype, we have examined two viral epitopes (from EBV and CMV) initially defined as HLA-A*2301-binding peptides. The data clearly demonstrate that each peptide could be recognized by CTL clones in the context of A*2301 or A*2402; thus validating the inclusion of these three alleles within an A24 supertype. Furthermore, CTL responses to the EBV epitope were detectable in both A*2301(+) and A*2402(+) individuals who had been previously exposed to this virus. These data substantiate the biological relevance of the A24 supertype, and the identification of viral epitopes with the capacity to bind promiscuously across this supertype could aid efforts to develop CTL-based vaccines or immunotherapy. The degeneracy in HLA restriction displayed by some T cells in this study also suggests that the dogma of self-MHC restriction needs some refinement to accommodate foreign peptide recognition in the context of multiple supertype alleles.

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Sera of Chaga's disease patients containing anti-T. cruzi lytic antibodies were submitted to affinity chromatography using Sepharose 4B conjugated with antigen extracted from epimasiigote or trypomasiigote forms of the parasite. Epimastigotes were obtained from culture at the exponential growth phase and the trypomastigotes from blood of infected and immunosuppressed mice. Antigen of both parasite forms was obtained by sonication of the parasites followed by centrifugation. Both antigens were then conjugated to activated Sepharose 4B. Affinity chromatography was performed by passing sera from chagasic patients through an immunoadsorbent column containing either epimasiigote or trypomasiigote antigens. Antibodies bound to the column were eluted with cold 0,2 M glycine buffer pH 2,8. The eluted antibodies were analysed regarding their isotype and lytic activity. The results showed that anti-T. cruzi lytic antibodies present in sera from chagasic patients are mainly located in the IgG isotype and recognize epitopes present in both trypomasiigote and epimastigote forms. A brief report of this work has already been published12.

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Microbiology 154 (2008) 2719-2729

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Este proyecto se propone realizar un estudio de antígenos y epitopes del Trypanosoma cruzi comprometidos en la evolución de la infección con este protozoario. Se aprovechará la información obtenida anteriormente sobre protección y/o patogénesis inducida en ratón con antígenos acídicos liberados por las formas infectivas del parásito (tripomastigotes) designados exoantígenos (Eas) u obtenidos del citosol de epimastigotes, designados FIII y FIV. A los fines de avanzar en la identificación de epitopes comprometidos en los fenómenos estudiados, se realizarán en paralelo estudios con los antígenos mencionados y antígenos químicamente definidos que demostraron reactividad cruzada con ellos, como cruzipaína y péptidos sintéticos. El esquema experimental comprende, Tema 1: El estudio de la presencia de células mononucleares capaces de ser estimuladas por los distintos antígenos mencionados en pacientes con enfermedad de Chagas pertenecientes a diferentes grupos clínicos. Tema 2: El análisis, en ratones inmunizados, de la capacidad de los antígenos seleccionados para inducir respuestas inmunes humorales y celulares con efectos protectores o patogénicos. Se estudiará la especificidad de los anticuerpos y células inducidas por la inmunización. Se caracterizarán las poblaciones celulares según sus marcadores de membranas y las citoquinas liberadas en cultivo. Estudios histológicos e inmunocitoquímicos permitirán evaluar el daño tisular y las células comprometidas. Tema 3: Investigar la presencia de Cruzipaína entre los exoantígenos liberados por el parásito. La información obtenida, además de brindar conocimientos básicos en el tema y contribuir a la formación de recursos humanos, informará sobre el rol de los antígenos ensayados en la inmunomodulación hacia una respuesta protectora o patogénica.

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El estudio de los epitopes de los antígenos permitirá no sólo la diferenciación de cepas sino también la interpretación correcta de la respuesta inmune. Modelo1: Rubeola es una enfermedad infecciosa caracterizada por una erupción localizada, fiebre y adenopatías, que por lo general se produce en niños de edad escolar o preescolar. El virus de la rubeola es el único miembro del género ribivirus en la familia de los Togavirus. Se sabe que es una partícula esférica que mide 60-90 nm y lleva la información genética en una sola cadena de RNA de polaridad positiva formando una cápside icosahédrica. Estructuralmente está compuesto por tres proteínas, una no glicosilada, asociada al RNA en la nucleocápside, llamada C, y dos glicoproteínas E1 y E2 que se encuentran en la envoltura del virus donde se presentan formando complejos por dímeros E1-E1 y E1-E2. Uno de los motivos por los que se realizan estudios comparativos entre diferentes cepas de virus rubeola radica en la observación de que la respuesta inmune frente a la infección con la cepa salvaje es más eficiente y duradera que la inducida por la cepa vacunal y que no se conocen fehacientemente si la capacidad teratogénica del virus depende de la cepa viral o del tipo de infección que se produce en la placenta y en el feto. La disminución o desaparición de la respuesta inmune específica puede posibilitar la reinfección de una persona vacunada, lo que adquiere particular importancia en el caso de las embarazadas. Es por ello que este estudio se centra en el análisis comparativo de las propiedades biológicas y estructurales de la cepa de virus rubeola de circulación local (cepa Córdoba y sus clones) frente a las cepas Glichrist (prototipo) y RA 27/3 (vacunal). Esta parte del trabajo contribuye al proyecto mundial de obtención de una vacuna sintética o infectiva para controlar la infección por el virus rubeola. Objetivos: 1. Estudiar la cinética de aparición de los epitopes en citoplasma y membrana celular con una técnica de inmunofuorescencia indirecta de células infectadas y bloquear a distintos pasos la vía de síntesis de proteínas en las células infectadas para producir el camino de síntesis del complejo E1-E1 hasta su aparición en membrana. 2. Realizar la técnica de mapeo peptídico para la proteína E2 en diferentes cepas. Modelo 2: Chlamydia trachomatis es una bacteria intracelular obligada de un ciclo de vida dimórfico, con una fase extracelular llamada Cuerpo Elemental (CE), que es la forma infectiva y metabólicamente inactiva y una fase intracelular llamada Cuerpo Reticular que es la forma replicada y metabólicamente activa de la bacteria. Es el agente etiológico de Enfermedades de Transmisión Sexual (ETS) más comunmente aislado en poblaciones de riesgo, además de ser la primera causa de ceguera prevenible a nivel mundial. El resultado de la infección con C. trachomatis puede terminar en inmunidad o enfermedad dependiendo de la interacción del sistema inmune del huésped con los antígenos chlamydiales específicos. El estudio de los antígenos que generan la respuesta inmune humoral como los tipos e isotipos de inmunoglobulinas producidas en esta respuesta, en las poblaciones con diferentes manifestaciones de la infección por C. trachomatis , podrían asociarse a un tipo de perfil de respuesta de linfocitos TH y dar un valor pronóstico de la evolución de la infección. Objetivo: 1. Separar y estudiar algunos de los más importantes antígenos de la bacteria Chlamydia trachomatis .