Search results for "Complex."

showing 10 items of 5824 documents

Co-activation of naive CD4+ T cells and bone marrow-derived mast cells results in the development of Th2 cells

1995

Activation of naive dense CD4+ T cells by plate-bound anti-CD3 antibodies favors the development of Th1 cells which, upon re-stimulation, produce significant amounts of IFN-gamma but no IL-4. However, co-activation of such naive T cells in the presence of IgE [anti-dinitrophenyl (DNP)]-loaded bone marrow-derived mast cells (BMMC) on plates coated with anti-CD3 antibodies and DNP-BSA led to the development of IL-4-producing Th2 cells. The same result could be observed if irradiated (800 rad) BMMC were applied as co-stimulators. Moreover, BMMC could be replaced by the supernatant of IgE-activated BMMC suggesting that a soluble mediator, presumably IL-4, was responsible for this effect. This a…

CD4-Positive T-LymphocytesMaleCD3 ComplexT cellImmunologyBone Marrow CellsLymphocyte ActivationMiceInterleukin 21Th2 CellsmedicineAnimalsImmunology and AllergyCytotoxic T cellMast CellsIL-2 receptorCells CulturedInterleukin 3Mice Inbred BALB CReceptors IgEChemistryIonomycinDegranulationGeneral MedicineMolecular biologyInterleukin 33medicine.anatomical_structureImmunologyInterleukin 12CytokinesFemaleInterleukin-4International Immunology
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PD-1 signalling in CD4+T cells restrains their clonal expansion to an immunogenic stimulus, but is not critically required for peptide-induced tolera…

2010

Summary The ultimate outcome of T-cell recognition of peptide–major histocompatibility complex (MHC) complexes is determined by the molecular context in which antigen presentation is provided. The paradigm is that, after exposure to peptides presented by steady-state dendritic cells (DCs), inhibitory signals dominate, leading to the deletion and/or functional inactivation of antigen-reactive T cells. This has been utilized in a variety of models providing peptide antigen in soluble form in the absence of adjuvant. A co-inhibitory molecule of considerable current interest is PD-1. Here we show that there is the opportunity for the PD-1/PD-L1 interaction to function in inhibiting the T-cell r…

CD4-Positive T-LymphocytesOvalbuminTransgeneProgrammed Cell Death 1 ReceptorImmunologyAntigen presentationMice TransgenicCell SeparationCD8-Positive T-LymphocytesBiologyLymphocyte ActivationMajor histocompatibility complexMiceImmune systemBlocking antibodyImmune ToleranceAnimalsImmunology and AllergyT-cell receptorOriginal ArticlesFlow CytometryAntigens DifferentiationPeptide FragmentsCell biologyMice Inbred C57BLTolerance inductionPhenotypeImmunologybiology.proteinCD8Signal TransductionImmunology
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Tcgfiii/p40 is produced by naive murine cd4+ t cells but is not a general t cell growth factor*

1989

Several antigen-specific T cell lines were found to secrete a lymphokine upon activation by antigen or lectin that was provisionally termed T cell growth factor III (TCGF III) because it induced the proliferation of a CD4+ T cell clone independently from IL2 and IL4. Amino acid sequence analysis (and the functional properties of TCGF III) revealed that TCGF III was identical with a recently identified lymphokine termed P40. TCGF III/P40 was not only produced by long-term cultured T cell lines but also upon stimulation of freshly isolated Mlsa-reactive T cells. In addition, naive CD4+ T cells secreted TCGF III/P40 upon activation by lectin or allo-major histocompatibility complex structures.…

CD4-Positive T-LymphocytesT cellMolecular Sequence DataImmunologyMice Inbred StrainsBiologyMajor histocompatibility complexCell LineMiceAntigenmedicineAnimalsImmunology and AllergyCytotoxic T cellInterleukin 9Amino Acid SequenceGrowth SubstancesInterleukin 4GlycoproteinsLymphokinesInterleukin-9LymphokineT-Lymphocytes Helper-InducerT lymphocyteVirologyMolecular biologymedicine.anatomical_structurebiology.proteinInterleukin-2Interleukin-4Lymphocyte Culture Test MixedEuropean Journal of Immunology
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Highly focused T cell responses in latent human pulmonary Mycobacterium tuberculosis infection.

2005

Abstract The elucidation of the molecular and immunological mechanisms mediating maintenance of latency in human tuberculosis aids to develop more effective vaccines and to define biologically meaningful markers for immune protection. We analyzed granuloma-associated lymphocytes (GALs) from human lung biopsies of five patients with latent Mycobacterium tuberculosis (MTB) infection. MTB CD4+ and CD8+ T cell response was highly focused in the lung, distinct from PBL, as assessed by TCR-CDR3 spectratyping coupled with a quantitative analysis of TCR VB frequencies. GALs produced IFN-γ in response to autologous macrophages infected with MTB and to defined MTB-derived HLA-A2-presented peptides Ag…

CD4-Positive T-LymphocytesT cellReceptors Antigen T-Cell alpha-betaImmunologyAntigen presentationMolecular Sequence DataEpitopes T-Lymphocytechemical and pharmacologic phenomenaBiologyCD8-Positive T-LymphocytesEpitopeMycobacterium tuberculosisInterferon-gammaAntigenBacterial ProteinsMHC class IHLA-A2 AntigenmedicineImmunology and AllergyHumansAmino Acid SequenceTuberculosis PulmonaryAntigen PresentationAntigens BacterialGranulomaMacrophagesT-cell receptorMycobacterium tuberculosisTh1 Cellsbacterial infections and mycosesbiology.organism_classificationVirologyPeptide FragmentsClone Cellsmedicine.anatomical_structureReceptor-CD3 Complex Antigen T-CellImmunologybiology.proteinCytokinesCD8Protein BindingJournal of immunology (Baltimore, Md. : 1950)
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Increased antigen presentation efficiency by coupling antigens to MHC class I trafficking signals.

2007

Abstract Genetic modification of vaccines by linking the Ag to lysosomal or endosomal targeting signals has been used to route Ags into MHC class II processing compartments for improvement of CD4+ T cell responses. We report in this study that combining an N-terminal leader peptide with an MHC class I trafficking signal (MITD) attached to the C terminus of the Ag strongly improves the presentation of MHC class I and class II epitopes in human and murine dendritic cells (DCs). Such chimeric fusion proteins display a maturation state-dependent subcellular distribution pattern in immature and mature DCs, mimicking the dynamic trafficking properties of MHC molecules. T cell response analysis in…

CD4-Positive T-LymphocytesT cellRecombinant Fusion ProteinsImmunologyAntigen presentationMolecular Sequence DataMice Inbred StrainsCD8-Positive T-LymphocytesProtein Sorting SignalsMajor histocompatibility complexTransfectionViral Matrix ProteinsEpitopesMiceAntigens NeoplasmMHC class ImedicineImmunology and AllergyAnimalsHumansAmino Acid SequenceAntigensMHC class IIAntigen PresentationbiologyAntigen processingHistocompatibility Antigens Class IVaccinationMembrane ProteinsDendritic CellsMHC restrictionPhosphoproteinsCell biologyProtein Transportmedicine.anatomical_structurebiology.proteinCD8Journal of immunology (Baltimore, Md. : 1950)
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Mutant MHC class II epitopes drive therapeutic immune responses to cancer

2015

Tumour-specific mutations are ideal targets for cancer immunotherapy as they lack expression in healthy tissues and can potentially be recognized as neo-antigens by the mature T-cell repertoire. Their systematic targeting by vaccine approaches, however, has been hampered by the fact that every patient's tumour possesses a unique set of mutations ('the mutanome') that must first be identified. Recently, we proposed a personalized immunotherapy approach to target the full spectrum of a patient's individual tumour-specific mutations. Here we show in three independent murine tumour models that a considerable fraction of non-synonymous cancer mutations is immunogenic and that, unexpectedly, the …

CD4-Positive T-LymphocytesT cellmedicine.medical_treatmentMelanoma ExperimentalEpitopes T-LymphocyteMajor histocompatibility complexCancer VaccinesArticleEpitopeMiceImmune systemAntigenCancer immunotherapymedicineAnimalsHumansCytotoxic T cellComputer SimulationExomePrecision MedicineMultidisciplinarybiologyHistocompatibility Antigens Class IISequence Analysis DNAImmunotherapySurvival AnalysisDisease Models Animalmedicine.anatomical_structureMutationImmunologybiology.proteinFemaleImmunotherapyAlgorithmsNature
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Human Papillomavirus Type 33 E7 Peptides Presented by HLA-DR*0402 to Tumor-Infiltrating T Cells in Cervical Cancer

2000

ABSTRACTSeveral characteristics make human papillomavirus (HPV) amenable to vaccination. Anti-HPV-directed vaccines are based on the observation that HPV E6 and E7 oncoproteins are constitutively expressed in HPV-positive cervical cancer and may serve as tumor rejection antigens. Five HPV types (16, 18, 31, 33, and 45) account for 80% of cervical cancer. Until now, the type of immune response capable of mediating an effective antitumor response has not been defined. In order to define the anticancer-directed immune response in situ, we characterized CD4+and CD8+sorted T cells from peripheral blood lymphocytes, freshly harvested tumor tissue, and tumor-infiltrating lymphocytes (TIL) from a p…

CD4-Positive T-LymphocytesT-LymphocytesMolecular Sequence DataImmunologyAntigen presentationReceptors Antigen T-CellUterine Cervical NeoplasmsCD8-Positive T-LymphocytesMajor histocompatibility complexMicrobiologyEpitopeEpitopesInterferon-gammaLymphocytes Tumor-InfiltratingImmune systemAntigenVirologymedicineHumansAmino Acid SequencePapillomaviridaePapillomaviridaeCervical cancerAntigen PresentationbiologyHLA-DR AntigensOncogene Proteins ViralFlow Cytometrymedicine.diseasebiology.organism_classificationImmunohistochemistryPeptide FragmentsInsect ScienceImmunologybiology.proteinCancer researchPathogenesis and ImmunityFemaleCD8Journal of Virology
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Optimized Protocol for the Detection of Multifunctional Epitope-Specific CD4+ T Cells Combining MHC-II Tetramer and Intracellular Cytokine Staining T…

2019

Analysis of multifunctional CD4+ T cells is fundamental for characterizing the immune responses to vaccination or infection. Major histocompatibility complex (MHC)/peptide tetramers represent a powerful technology for the detection of antigen-specific T cells by specific binding to their T-cell receptor, and their combination with functional assays is fundamental for characterizing the antigen-specific immune response. Here we optimized a protocol for the detection of multiple intracellular cytokines within epitope-specific CD4+ T cells identified by the MHC class II tetramer technology. The optimal procedure for assessing the functional activity of tetramer-binding CD4+ T cells was based o…

CD4-Positive T-Lymphocyteslcsh:Immunologic diseases. Allergymedicine.medical_treatmentImmunologyEpitopes T-LymphocyteMajor histocompatibility complexEpitopeimmune responseMice03 medical and health sciences0302 clinical medicineImmune systemMHC-II tetramersTetramerMethodsmedicineAnimalsImmunology and Allergy030304 developmental biology0303 health sciencesMHC class IIMHC-II tetramers ICS cytokines multifunctional T cells flow cytometry immune response vaccinationStaining and LabelingbiologyChemistryflow cytometryHistocompatibility Antigens Class IIvaccinationmultifunctional T cellscytokines3. Good healthCell biologyCytokineICSbiology.proteinFemaleAntibodyPeptideslcsh:RC581-607Intracellular030215 immunologyFrontiers in Immunology
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H2-M, a facilitator of MHC class II peptide loading, and its negative modulator H2-O are differentially expressed in response to proinflammatory cyto…

2000

H2-M is a major histocompatibility complex (MHC) class II-like molecule that catalyzes peptide binding to MHC class II molecules. Recently, the H2-O heterodimer, encoded by H2-Oa and H2-Ob in the MHC class II region, has been shown to be physically associated with H2-M in B cells and to downregulate H2-M function. Examination of H2-O expression in freshly isolated mouse organs revealed that H2-Oa- and H2-Ob-specific transcripts are present in both lymphoid and nonlymphoid tissues. To evaluate the gene regulation and functional impact of H2-O on antigen presentation, we examined the effects on MHCII, invariant chain (Ii), H2-M, and H2-O gene expression of interleukin (IL)-4, IL-10, and inter…

CD74ImmunologyAntigen presentationchemical and pharmacologic phenomenaMajor histocompatibility complexInterferon-gammaMiceMHC class IGeneticsCIITAAnimalsTissue DistributionRNA MessengerAntigen PresentationHLA-D AntigensMHC class IIbiologyAntigen processingHistocompatibility Antigens Class IINuclear ProteinsMHC restrictionMolecular biologyInterleukin-10Antigens Differentiation B-LymphocyteGene Expression RegulationMice Inbred DBATrans-Activatorsbiology.proteinInterleukin-4PeptidesImmunogenetics
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Efficient Targeting of Protein Antigen to the Dendritic Cell Receptor DEC-205 in the Steady State Leads to Antigen Presentation on Major Histocompati…

2002

To identify endocytic receptors that allow dendritic cells (DCs) to capture and present antigens on major histocompatibility complex (MHC) class I products in vivo, we evaluated DEC-205, which is abundant on DCs in lymphoid tissues. Ovalbumin (OVA) protein, when chemically coupled to monoclonal alphaDEC-205 antibody, was presented by CD11c+ lymph node DCs, but not by CD11c- cells, to OVA-specific, CD4+ and CD8+ T cells. Receptor-mediated presentation was at least 400 times more efficient than unconjugated OVA and, for MHC class I, the DCs had to express transporter of antigenic peptides (TAP) transporters. When alphaDEC-205:OVA was injected subcutaneously, OVA protein was identified over a …

CD8-Positive T-LymphocytesMice0302 clinical medicineImmunology and AllergyCytotoxic T cellMice KnockoutAntigen Presentation0303 health sciencesMembrane GlycoproteinstoleranceAntibodies MonoclonalDEC-205 receptorrespiratory systemFlow CytometryEndocytosismedicine.anatomical_structureMHC class IFemaleOvalbuminT cellImmunologyAntigen presentationReceptors Cell Surfacechemical and pharmacologic phenomenaBiologyMajor histocompatibility complexArticleMinor Histocompatibility Antigens03 medical and health sciencesAntigenAntigens CDMHC class IImmune TolerancemedicineAnimalsLectins C-Typedendritic cellsAntigensCD40 Antigens030304 developmental biologyHistocompatibility Antigens Class IDendritic cellMolecular biologyCD11c AntigenMice Inbred C57BLCD8 T cellbiology.proteinLymph NodesCarrier ProteinsCD8030215 immunologyJournal of Experimental Medicine
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