0000000000236130

AUTHOR

F. Thomas Wunderlich

showing 10 related works from this author

Regulation of B cell homeostasis and activation by the tumor suppressor gene CYLD

2007

B cell homeostasis is regulated by multiple signaling processes, including nuclear factor-kappaB (NF-kappaB), BAFF-, and B cell receptor signaling. Conditional disruption of genes involved in these pathways has shed light on the mechanisms governing signaling from the cell surface to the nucleus. We describe a novel mouse strain that expresses solely and excessively a naturally occurring splice variant of CYLD (CYLD(ex7/8) mice), which is a deubiquitinating enzyme that is integral to NF-kappaB signaling. This shorter CYLD protein lacks the TRAF2 and NEMO binding sites present in full-length CYLD. A dramatic expansion of mature B lymphocyte populations in all peripheral lymphoid organs occur…

TRAF2Tumor suppressor geneImmunologyCellBiologyArticleDeubiquitinating Enzyme CYLDMiceB cell homeostasismedicineAnimalsHomeostasisImmunology and AllergyB-cell activating factorEmbryonic Stem CellsSequence DeletionB-LymphocytesRELBGenetic VariationExonsArticlesFibroblastsDeubiquitinating Enzyme CYLDAlternative SplicingCysteine Endopeptidasesmedicine.anatomical_structureProtein BiosynthesisCancer researchSignal transductionSignal TransductionJournal of Experimental Medicine
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Active Akt signaling triggers CLL toward Richter transformation via overactivation of Notch1

2021

Abstract Richter’s transformation (RT) is an aggressive lymphoma that occurs upon progression from chronic lymphocytic leukemia (CLL). Transformation has been associated with genetic aberrations in the CLL phase involving TP53, CDKN2A, MYC, and NOTCH1; however, a significant proportion of RT cases lack CLL phase–associated events. Here, we report that high levels of AKT phosphorylation occur both in high-risk CLL patients harboring TP53 and NOTCH1 mutations as well as in patients with RT. Genetic overactivation of Akt in the murine Eµ-TCL1 CLL mouse model resulted in CLL transformation to RT with significantly reduced survival and an aggressive lymphoma phenotype. In the absence of recurren…

0301 basic medicineTumor microenvironmentChronic lymphocytic leukemiaImmunologyNotch signaling pathwayMedizinAggressive lymphomaCell BiologyHematologyBiologymedicine.diseaseBiochemistrySomatic evolution in cancerLymphoma03 medical and health sciencesLeukemia030104 developmental biology0302 clinical medicineimmune system diseaseshemic and lymphatic diseasesmedicineCancer researchneoplasmsProtein kinase B030215 immunology
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Endogenous CD83 Expression in CD4+ Conventional T Cells Controls Inflammatory Immune Responses

2020

Abstract The glycoprotein CD83 is known to be expressed by different immune cells including activated CD4+Foxp3+ regulatory T cells (Tregs) and CD4+Foxp3− conventional T cells. However, the physiological function of endogenous CD83 in CD4+ T cell subsets is still unclear. In this study, we have generated a new CD83flox mouse line on BALB/c background, allowing for specific ablation of CD83 in T cells upon breeding with CD4-cre mice. Tregs from CD83flox/flox/CD4-cretg/wt mice had similar suppressive activity as Tregs from CD83flox/flox/CD4-crewt/wt wild-type littermates, suggesting that endogenous CD83 expression is dispensable for the inhibitory capacity of Tregs. However, CD83-deficient CD…

Adoptive cell transferCD40biologyChemistryT cellImmunologyMedizinCD11cFOXP3chemical and pharmacologic phenomenahemic and immune systemsEndogenyMolecular biologyIn vitro03 medical and health sciences0302 clinical medicineImmune systemmedicine.anatomical_structurebiology.proteinmedicineImmunology and Allergy030215 immunologyThe Journal of Immunology
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A Cre-inducible diphtheria toxin receptor mediates cell lineage ablation after toxin administration.

2004

A new system for lineage ablation is based on transgenic expression of a diphtheria toxin receptor (DTR) in mouse cells and application of diphtheria toxin (DT). To streamline this approach, we generated Cre-inducible DTR transgenic mice (iDTR) in which Cre-mediated excision of a STOP cassette renders cells sensitive to DT. We tested the iDTR strain by crossing to the T cell- and B cell-specific CD4-Cre and CD19-Cre strains, respectively, and observed efficient ablation of T and B cells after exposure to DT. In MOGi-Cre/iDTR double transgenic mice expressing Cre recombinase in oligodendrocytes, we observed myelin loss after intraperitoneal DT injections. Thus, DT crosses the blood-brain bar…

Genetically modified mouseCell SurvivalTransgeneT cellT-LymphocytesCellCre recombinaseApoptosisMice TransgenicReceptors Cell SurfaceBiologyBiochemistryCell LineMicemedicineAnimalsCell LineageDiphtheria ToxinReceptorMolecular BiologyDiphtheria toxinIntegrasesCell DifferentiationCell BiologyMolecular biologyRecombinant ProteinsOligodendrogliamedicine.anatomical_structureCell cultureIntercellular Signaling Peptides and ProteinsBiotechnologyHeparin-binding EGF-like Growth FactorNature methods
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Tolerance without clonal expansion: self-antigen-expressing B cells program self-reactive T cells for future deletion.

2008

Abstract B cells have been shown in various animal models to induce immunological tolerance leading to reduced immune responses and protection from autoimmunity. We show that interaction of B cells with naive T cells results in T cell triggering accompanied by the expression of negative costimulatory molecules such as PD-1, CTLA-4, B and T lymphocyte attenuator, and CD5. Following interaction with B cells, T cells were not induced to proliferate, in a process that was dependent on their expression of PD-1 and CTLA-4, but not CD5. In contrast, the T cells became sensitive to Ag-induced cell death. Our results demonstrate that B cells participate in the homeostasis of the immune system by abl…

T-LymphocytesProgrammed Cell Death 1 ReceptorAutoimmunityAntigens CD/biosynthesisAntigens CD5/geneticsAutoantigensInterleukin 21MiceImmunology and AllergyCytotoxic T cellHomeostasisCTLA-4 AntigenIL-2 receptorAntigens Differentiation/biosynthesisB-LymphocytesAntigens CD/geneticsB-Lymphocytes/immunologyT-Lymphocytes/metabolismNatural killer T cellCell biologymedicine.anatomical_structureHomeostasis/immunology2723 Immunology and AllergyAntigens CD5/biosynthesisAntigens Differentiation/geneticsAntigens CD5/immunologyT cellImmunologyAntigens CD/immunologyClonal Deletion610 Medicine & healthchemical and pharmacologic phenomenaMice TransgenicBiologyAutoantigens/biosynthesisCD5 AntigensAutoimmunity/physiologyAutoantigens/immunologyAntigens CDmedicineAnimalsB-Lymphocytes/metabolismAntigen-presenting cellCell Proliferation2403 ImmunologyAntigens Differentiation/immunologyGene Expression Regulation/immunologyCD40Clonal Deletion/physiologyT-Lymphocytes/immunologyAntigens Differentiation10040 Clinic for NeurologyB-1 cellGene Expression Regulationbiology.protein
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Cutting Edge: IL-6–Driven Immune Dysregulation Is Strictly Dependent on IL-6R α-Chain Expression

2020

Abstract IL-6 binds to the IL-6R α-chain (IL-6Rα) and signals via the signal transducer gp130. Recently, IL-6 was found to also bind to the cell surface glycoprotein CD5, which would then engage gp130 in the absence of IL-6Rα. However, the biological relevance of this alternative pathway is under debate. In this study, we developed a mouse model, in which murine IL-6 is overexpressed in a CD11c-Cre–dependent manner. Transgenic mice developed a lethal immune dysregulation syndrome with increased numbers of Ly-6G+ neutrophils and Ly-6Chi monocytes/macrophages. IL-6 overexpression promoted activation of CD4+ T cells while suppressing CD5+ B-1a cell development. However, additional ablation of …

Genetically modified mouseImmunologyInflammationMice Transgenicmedicine.disease_cause03 medical and health sciencesMice0302 clinical medicineRare DiseasesmedicineImmunology and AllergyAnimals2.1 Biological and endogenous factorsInflammatory and Immune SystemReceptorSTAT3biologyCell growthChemistryInterleukin-6Immune dysregulationGlycoprotein 130Receptors Interleukin-6Cell biologybiology.proteinAlternative complement pathwaymedicine.symptom030215 immunologySignal TransductionThe Journal of Immunology
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Temporal and tissue-specific requirements for T-lymphocyte IL-6 signalling in obesity-associated inflammation and insulin resistance

2017

Low-grade inflammation links obesity to insulin resistance through the activation of tissue-infiltrating immune cells. Interleukin-6 (IL-6) is a crucial regulator of T cells and is increased in obesity. Here we report that classical IL-6 signalling in T cells promotes inflammation and insulin resistance during the first 8 weeks on a high-fat diet (HFD), but becomes dispensable at later stages (after 16 weeks). Mice with T cell-specific deficiency of IL-6 receptor-α (IL-6RαT-KO) exposed to a HFD display improved glucose tolerance, insulin sensitivity and inflammation in liver and EWAT after 8 weeks. However, after 16 weeks, insulin resistance in IL-6RαT-KO epididymal white adipose tissue (EW…

Blood GlucoseMale0301 basic medicinemedicine.medical_specialtyTime FactorsT-LymphocytesT cellScienceGeneral Physics and AstronomyInflammationWhite adipose tissueBiologyDiet High-FatArticleGeneral Biochemistry Genetics and Molecular BiologyMice03 medical and health sciences0302 clinical medicineInsulin resistanceImmune systemInternal medicinemedicineAnimalsHomeostasisObesityReceptorInflammationMice KnockoutMultidisciplinaryInterleukin-6QGeneral ChemistryT lymphocyteLipid Metabolismmedicine.diseaseReceptors Interleukin-6030104 developmental biologymedicine.anatomical_structureEndocrinology030220 oncology & carcinogenesisInsulin Resistancemedicine.symptomHomeostasisSignal TransductionNature Communications
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IL-6 Regulates Neutrophil Microabscess Formation in IL-17A-Driven Psoriasiform Lesions

2014

The lack of a generally accepted animal model for human psoriasis has hindered progress with respect to understanding the pathogenesis of the disease. Here we present a model in which transgenic IL-17A expression is targeted to the skin in mice, achievable after crossing our IL-17A(ind) allele to the K14-Cre strain. K14-IL-17A(ind/+) mice invariably develop an overt skin inflammation bearing many hallmark characteristics of human psoriasis including dermal infiltration of effector T cells, formation of neutrophil microabscesses, and hyperkeratosis. IL-17A expression in the skin results in upregulated granulopoiesis and migration of IL-6R-expressing neutrophils into the skin. Neutralization …

Pathologymedicine.medical_specialty1303 BiochemistryNeutrophilsT-LymphocytesHyperkeratosisGene Expression610 Medicine & healthInflammationDermatology10263 Institute of Experimental ImmunologyBiochemistryGranulopoiesis2708 Dermatology1307 Cell BiologyPathogenesisMicePsoriasis1312 Molecular BiologymedicineAnimalsPsoriasisMicroabscessMolecular BiologyMice Knockoutintegumentary systemInterleukin-6business.industryMacrophagesInterleukin-17Cell Biologymedicine.diseaseReceptors Interleukin-6AbscessDisease Models AnimalImmunology570 Life sciences; biologyEpidermismedicine.symptombusinessInfiltration (medical)GranulocytesSignal TransductionEpidermal thickeningJournal of Investigative Dermatology
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Enzymatic Activity of HPGD in Treg Cells Suppresses Tconv Cells to Maintain Adipose Tissue Homeostasis and Prevent Metabolic Dysfunction.

2019

Summary Regulatory T cells (Treg cells) are important for preventing autoimmunity and maintaining tissue homeostasis, but whether Treg cells can adopt tissue- or immune-context-specific suppressive mechanisms is unclear. Here, we found that the enzyme hydroxyprostaglandin dehydrogenase (HPGD), which catabolizes prostaglandin E2 (PGE2) into the metabolite 15-keto PGE2, was highly expressed in Treg cells, particularly those in visceral adipose tissue (VAT). Nuclear receptor peroxisome proliferator-activated receptor-γ (PPARγ)-induced HPGD expression in VAT Treg cells, and consequential Treg-cell-mediated generation of 15-keto PGE2 suppressed conventional T cell activation and proliferation. C…

0301 basic medicineanalogs & derivatives [Dinoprostone]Malemetabolism [Diabetes Mellitus Type 2]Adipose tissueLymphocyte Activation15-ketoprostaglandin E2T-Lymphocytes RegulatoryJurkat cellsJurkat CellsMice0302 clinical medicineimmunology [Lymphocyte Activation]genetics [Insulin Resistance]STAT5 Transcription FactorHomeostasisImmunology and AllergyTissue homeostasisgenetics [Hydroxyprostaglandin Dehydrogenases]Mice Knockoutcytology [Intra-Abdominal Fat]enzymology [T-Lymphocytes Regulatory]FOXP3hemic and immune systems3T3 CellsCell biologyInfectious Diseases030220 oncology & carcinogenesisHydroxyprostaglandin Dehydrogenasesmedicine.symptomimmunology [T-Lymphocytes Regulatory]metabolism [STAT5 Transcription Factor]Immunologymetabolism [Dinoprostone]chemical and pharmacologic phenomenaInflammationIntra-Abdominal FatBiologyDinoprostoneCell Line03 medical and health sciencesmetabolism [Hydroxyprostaglandin Dehydrogenases]immunology [Homeostasis]medicineAnimalsHumansddc:610immunology [Intra-Abdominal Fat]HEK 293 cells030104 developmental biologyHEK293 CellsDiabetes Mellitus Type 2Cell cultureInsulin ResistanceHomeostasis
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Elevated levels of Bcl-3 inhibits Treg development and function resulting in spontaneous colitis

2017

Bcl-3 is an atypical NF-κB family member that regulates NF-κB-dependent gene expression in effector T cells, but a cell-intrinsic function in regulatory T (Treg) cells and colitis is not clear. Here we show that Bcl-3 expression levels in colonic T cells correlate with disease manifestation in patients with inflammatory bowel disease. Mice with T-cell-specific overexpression of Bcl-3 develop severe colitis that can be attributed to defective Treg cell development and function, leading to the infiltration of immune cells such as pro-inflammatory γδT cells, but not αβ T cells. In Treg cells, Bcl-3 associates directly with NF-κB p50 to inhibit DNA binding of p50/p50 and p50/p65 NF-κB dimers, t…

AdultMale0301 basic medicineP50ScienceGeneral Physics and AstronomyBiologyT-Lymphocytes RegulatoryInflammatory bowel diseaseArticleGeneral Biochemistry Genetics and Molecular BiologyYoung Adult03 medical and health sciences0302 clinical medicineImmune systemB-Cell Lymphoma 3 ProteinProto-Oncogene ProteinsGene expressionmedicineAnimalsHumansColitisMice KnockoutRegulation of gene expressionMultidisciplinaryEffectorHEK 293 cellsQNF-kappa BTranscription Factor RelANF-kappa B p50 SubunitGeneral ChemistryMiddle AgedColitismedicine.diseaseMice Inbred C57BLHEK293 Cells030104 developmental biologyGene Expression Regulation030220 oncology & carcinogenesisImmunologyFemaleProtein BindingTranscription FactorsNature Communications
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