TY - JOUR A1 - Klein-Hessling, Stefan A1 - Muhammad, Khalid A1 - Klein, Matthias A1 - Pusch, Tobias A1 - Rudolf, Ronald A1 - Flöter, Jessica A1 - Qureischi, Musga A1 - Beilhack, Andreas A1 - Vaeth, Martin A1 - Kummerow, Carsten A1 - Backes, Christian A1 - Schoppmeyer, Rouven A1 - Hahn, Ulrike A1 - Hoth, Markus A1 - Bopp, Tobias A1 - Berberich-Siebelt, Friederike A1 - Patra, Amiya A1 - Avots, Andris A1 - Müller, Nora A1 - Schulze, Almut A1 - Serfling, Edgar T1 - NFATc1 controls the cytotoxicity of CD8\(^{+}\) T cells JF - Nature Communications N2 - Cytotoxic T lymphocytes are effector CD8\(^{+}\) T cells that eradicate infected and malignant cells. Here we show that the transcription factor NFATc1 controls the cytotoxicity of mouse cytotoxic T lymphocytes. Activation of Nfatc1\(^{-/-}\) cytotoxic T lymphocytes showed a defective cytoskeleton organization and recruitment of cytosolic organelles to immunological synapses. These cells have reduced cytotoxicity against tumor cells, and mice with NFATc1-deficient T cells are defective in controlling Listeria infection. Transcriptome analysis shows diminished RNA levels of numerous genes in Nfatc1\(^{-/-}\) CD8\(^{+}\) T cells, including Tbx21, Gzmb and genes encoding cytokines and chemokines, and genes controlling glycolysis. Nfatc1\(^{-/-}\), but not Nfatc2\(^{-/-}\) CD8\(^{+}\) T cells have an impaired metabolic switch to glycolysis, which can be restored by IL-2. Genome-wide ChIP-seq shows that NFATc1 binds many genes that control cytotoxic T lymphocyte activity. Together these data indicate that NFATc1 is an important regulator of cytotoxic T lymphocyte effector functions. KW - cytotoxic T cells KW - lymphocyte activation KW - signal transduction KW - gene regulation KW - immune cells KW - NFATc1 Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-170353 VL - 8 IS - 511 ER - TY - JOUR A1 - Oberländer, Uwe A1 - Pletinckx, Katrien A1 - Dähler, Anja A1 - Müller, Nora A1 - Lutz, Manfred A1 - Arzberger, Thomas A1 - Riederer, Peter A1 - Gerlach, Manfred A1 - Koutsilieri, Eleni A1 - Scheller, Carsten T1 - Neuromelanin is an Immune Stimulator for Dendritic Cells in vitro N2 - Background: Parkinson’s disease (PD) is characterized at the cellular level by a destruction of neuromelanin (NM)-containing dopaminergic cells and a profound reduction in striatal dopamine. It has been shown recently that antimelanin antibodies are increased in sera of Parkinson patients, suggesting that NM may act as an autoantigen. In this study we tested whether NM is being recognized by dendritic cells (DCs), the major cell type for inducing Tand B-cell responses in vivo. This recognition of NM by DCs is a prerequisite to trigger an adaptive autoimmune response directed against NM-associated structures. Results: Murine DCs were treated with NM of substantia nigra (SN) from human subjects or with synthetic dopamine melanin (DAM). DCs effectively phagocytized NM and subsequently developed a mature phenotype (CD86high/MHCIIhigh). NM-activated DCs secreted the proinflammatory cytokines IL-6 and TNF-a. In addition, they potently triggered T cell proliferation in a mixed lymphocyte reaction, showing that DC activation was functional to induce a primary T cell response. In contrast, DAM, which lacks the protein and lipid components of NM but mimics the dopamine-melanin backbone of NM, had only very little effect on DC phenotype and function. Conclusions: NM is recognized by DCs in vitro and triggers their maturation. If operative in vivo, this would allow the DC-mediated transport and presentation of SN antigens to the adaptive immune system, leading to autoimmmunity in susceptible individuals. Our data provide a rationale for an autoimmune-based pathomechanism of PD with NM as the initial trigger. KW - Immunstimulation KW - Dendritische Zelle Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-69210 ER - TY - THES A1 - Müller, Nora T1 - Masern Virus Interferenz mit T-Zell-Aktivierung : Einfluß auf Zytoskelettdynamik, Mobilität und Interaktion mit Dendritischen Zellen T1 - Measles Virus interference with T cell activation: effect on cytoskeleton dynamics, mobility and interaction with dendritic cell N2 - Der Kontakt humaner T-Zellen mit dem MV Glykoproteinkomplex interferiert mit der CD3/CD28 stimulierten Aktivierung von PI3/Akt-Kinase Signalwegen. Damit verbunden ist der ineffiziente Transport PH-Domänen-enthaltender Proteine in Membran-rafts, wie der Akt-Kinase und Vav, den Guaninnukleotid-Austauschfaktor von Rho GTPasen. Es konnte gezeigt werden, dass infolge des MV-Kontaktes die CD3/CD28 stimulierte Aktivität der Rho GTPasen Cdc42 und Rac1 inhibiert ist. Dagegen war in MV-behandelten Zellen eine leichte RhoA Aktivierung festzustellen. Rho GTPasen spielen eine kritische Rolle in der Regulation von Zytoskelettorganisation von T-Lymphozyten. Übereinstimmend damit wurde gezeigt, dass der Kontakt mit MV die CD3/CD28 costimulierte Aktivierung und Polymerisation des F-Aktins inhibiert. Damit verbunden ist die reduzierte Fähigkeit MV-behandelter T-Zellen auf Fibronektin- und mit CD3/CD28 Antikörpern-beschichteten Objektträgern zu polarisieren. Die Ausbildung F-Aktin-getriebener morphologischer Veränderungen, wie Filopodien, Lamellipodien und Uropodien, ist drastisch reduziert. Rasterelektronenmikroskopische Auf-nahmen zeigten in nicht-stimulierten und CD3/CD28 costimulierten MV-behandelten T-Zellen einen nahezu kompletten Verlust an Mikrovilli und Lamellipodien. Die Bindung von MV induziert die Dephosphorylierung des F-Aktin–bindenden Proteins Cofilin und der ERM-Proteine. Es konnte demonstriert werden, dass der MV-Kontakt die Ausbildung einer reifen immunologischen Synapse stört. Trotz der morphologischen Veränderungen konjugieren MV-behandelte T-Zellen mit DCs. Die Anzahl MV-behandelter T-Zellen, die mit DCs inter-agieren, ist vergleichbar mit der mock-behandelter T-Zellen. Allerdings zeigt die 3-dimensionale Rekonstruktion der DC/T-Zell-Kontaktzone, dass in MV-behandelten T-Zellen die zentrale Akkumulation und Clusterbildung des CD3-Moleküls gestört ist und keine monozentrische Synapse ausbildet wird. Desweiteren erfolgt die Relokalisation des MTOC in T-Zellen in Richtung der DC unvollständig. Zusammenfassend kann gesagt werden, dass der MV Glykoproteinkomplex mit essentiellen Schritten einer erfolgreichen T-Zell-Aktivierung während der APC/T-Zell-Interaktion interferiert. N2 - It was previously shown, that CD3/CD28-induced activation of PI3/Akt kinase pathway and proliferation are impaired in T cells after contact with the MV glycoprotein complex. As a result of PI3 kinase inactivation, membrane recruitment of PH domain containing proteins such as Akt kinase and the Rho GEF Vav, was abolished after CD3/CD28 coligation. The binding of MV interferes with CD3/CD28 coligation induced GTP-loading of the Rho GTPases, Cdc42 and Rac1. GTP-loading of RhoA was not impaired after MV treatment. Rather, RhoA was slightly activated by MV alone and this was enhanced upon CD3/CD28 ligation. Consisting with the failure of CD3/CD28 ligation to induce GTP-loading of Cdc42 and Rac1, polymerization of F-actin and morphological changes required for the formation of a contact plane such relaxation, flattening did not occur in MV treated T cells. MV treatment also efficiently interfered with the ability of T cells to adhere to ECM components. In contrast to mock treated, the majority of MV exposed T cells failed to aquire a polar front-rear organization. Thus, MV induced signaling efficiently impairs stimulation dependent reorganisation of the F-actin cytoskeleton and adhesion in T cells. As revealed by scanning electron microscopy, exposure of T cells to MV induced an almost complete breakdown of microvillar structures which could also not be restored upon CD3/CD28 costimulation. The almost complete collapse of membrane protrusions in MV treated cells was associated with reduced phosphorylation levels of cofilin and ERM proteins. The ability of MV exposed T cells to interact with DCs and form DC/T-cells conjugates is not affected. MV signaling to T cells interfered with clustering and recruitment of CD3 into the central supramolecular activation cluster of the IS. MV also prevents the redistribution of the MTOC in T cells towards the synapse. In summary, MV interferes with stimulated cytoskeleton remodeling, and this disturbes the ability of T cells to adhere, spread and cluster receptors essential for sustained activation. The signal given by the MV glycoprotein complex apparently prevents essential steps in APC/T cells interactions which are required for migration and successful activation. KW - Masernvirus KW - T-Lymphozyt KW - Immunsuppression KW - Zellskelett KW - Dendritische Zelle KW - Masern Virus KW - Immunsuppression KW - Costimulation KW - Zytoskelett KW - Dendritische Zellen KW - measles virus KW - immunosuppression KW - costimulation KW - cytoskeleton KW - dendritic cells Y1 - 2006 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-17953 ER -