TY - THES A1 - König, Anika T1 - The role of the transcriptional regulators NFATc1 and Blimp-1 in follicular T-cells T1 - Die Rolle der Transkriptionsregulatoren NFATc1 und Blimp-1 in follikulären T-Zellen N2 - The defense against invading pathogens is, amongst other things, mediated via the action of antibodies. Class-switched antibodies and antibodies of high affinity are produced by plasma cells descending from germinal center B (GCB) cells. GCB cells develop in the germinal center (GC), a specialized microstructure found in the B-cell follicle of secondary lymphoid organs. GCB-cell maturation and proliferation are supported by follicular T- helper (Tfh) cells. On the other hand, follicular regulatory T (Tfr) cells control this process in quantity and quality preventing, for instance, the formation of autoantibodies directed against endogenous structures. The development of GCB, Tfh and Tfr cells essentially depends on the migration into the GC, which is mediated via the expression of the chemokine receptor CXCR5. One transcription factor highly expressed in follicular T cells, comprising Tfh and Tfr cells, is NFATc1. Tfr cells additionally express the transcriptional repressor Blimp-1, which is not expressed in Tfh cells. We found that NFATc1 is transactivating Cxcr5 via response elements in the promoter and enhancer in vitro. Blimp-1 binds to the same elements, transactivating Cxcr5 expression in cooperation with NFATc1, whilst mediating Cxcr5- repression on its own. In Tfr cells Blimp-1 suppresses CXCR5 expression in the absence of NFATc1. Blimp-1 itself is necessary to restrict Tfr-cell frequencies and to mediate Tfr- cell function as in mice with Blimp-1-ablated Tregs high frequencies of Tfr cells do not reduce GCB- or Tfh cell frequencies. NFATc1 and Blimp-1 double deficient Tfr cells show additional loss of function, which becomes visible in clearly expanded antibody titers. To evaluate the function of NFATc1 in Tfr cells, we not only deleted it, but also overexpressed a constitutive active form of NFATc1/aA (caNFATc1/aA) in regulatory T cells (Tregs). The latter is leading to an upregulation of CXCR5 per cell, without changing Tfh or Tfr-cell frequencies. However, the high density of surface CXCR5 enhances the migration of Tfr cells deep into the GC, which results in a tighter control of the antigen- specific humoral immune response. Additionally, caNFATc1/aA increases the expression of genes coding for Tfr effector molecules like Il1rn, Il10, Tigit and Ctla4. Interestingly, this part of the transcriptional change is dependent on the presence of Blimp-1. Furthermore, Blimp-1 regulates the expression of multiple chemokine receptor genes on the background of caNFATc1/aA. In contrast, when caNFATc1/aA is overexpressed in all T cells, the frequencies of Tfh- and GCB cells are dominantly reduced. This effect seems to stem from the conventional T- cell (Tcon) side, most probably originating from increased secretion of interleukin-2 (IL- 2) via the caNFATc1/aA overexpressing Tcons. IL-2 is known to hinder the germinal center reaction (GCR) and it might in its abundance not be neutralizable by Tfr cells. Taken together, NFATc1 and Blimp-1 cooperate to control the migration of Tfr cells into the GC. Tfr cells in the GC depend on NFATc1 and Blimp-1 to perform their proper function. Overexpression of caNFATc1 in Tregs strengthens Tfr function in a Blimp-1-dependent manner, whilst overexpression of caNFATc1 in all T cells dominantly diminishes the GCR. N2 - Die Abwehr von Krankheitserregern durch das Immunsystem wird unter anderem (u.a.) durch die Wirkung von Antikörpern vermittelt. Antikörper, welche einen Klassenwechsel und eine hohe Affinität aufweisen, werden von Plasmazellen gebildet, welche sich von Keimzentrums-B (GCB) -Zellen ableiten. GCB-Zellen evolvieren innerhalb des Keimzentrums (GC), einer Mikrostruktur, welche sich innerhalb des B-Zellfollikels sekundärer lymphoider Organe bildet. Die GCB-Zell-Reifung und -Proliferation wird durch follikuläre T-Helfer (Tfh) -Zellen unterstützt und durch follikuläre regulatorische T (Tfr) -Zellen kontrolliert, wodurch u.a. die Bildung von Autoantikörpern, welche körpereigene Strukturen angreifen, unterbunden wird. Die Entwicklung von GCB-, Tfh- und Tfr-Zellen ist in entscheidender Weise abhängig von der Expression des Chemokinrezeptors CXCR5 und der damit verbundenen Migration in das GC. NFATc1 ist ein Transkriptionsfaktor, welcher in follikulären T-Zellen, bestehend aus Tfh- und Tfr-Zellen, stark exprimiert wird. Im Gegensatz zu Tfh-Zellen exprimieren Tfr-Zellen zusätzlich den Transkriptionsrepressor Blimp-1. Wir haben herausgefunden, dass NFATc1 die Expression von Cxcr5 über die Bindung an Elemente innerhalb des Cxcr5-Promotors und -Enhancers in vitro transakiviert. Blimp-1 bindet an selbige Elemente und transaktiviert in Kooperation mit NFATc1 die Cxcr5-Expression, während es die Cxcr5- Expression alleine hemmt. In Tfr-Zellen supprimiert Blimp-1 die CXCR5-Expression in Abwesenheit von NFATc1. Blimp-1 beschränkt darüber hinaus das Vorkommen von Tfr-Zellen und spielt eine Rolle in der Effektorfunktion von Tfr-Zellen. Dies wird deutlich da das verstärkte Tfr-Zell-Vorkommen in Mäusen mit Blimp-1 defizienten Tregs nicht zu einer Reduktion der GCB-oder Tfh-Zellen führt. Der Verlust der Effektorfunktion akkumuliert in NFATc1 und Blimp-1 doppel-defizienten Tfr-Zellen, was sich in einem deutlichen Anstieg der Antikörpertiter im Serum immunisierter Tiere zeigt. Zur Überprüfung der Funktion von NFATc1 in Tfr-Zellen untersuchten wir sowohl dessen Deletion, als auch die Überexpression einer konstitutiv aktiven Form von NFATc1/aA (caNFATc1/aA) in regulatorischen T-Zellen (Tregs). Letztere steigert die CXCR5- Expression pro Zelle ohne das Vorkommen von Tfh- oder Tfr-Zellen zu verändern. Jedoch führte die erhöhte Oberflächenexpression von CXCR5 zu einer verstärkten Migration der Tfr-Zellen in das GC, was in einer verstärkten Kontrolle der antigenspezifischen Antikörpertiter resultierte. Darüber hinaus erhöht caNFATc1/aA in Abhängigkeit von Blimp-1, die Expression der Gene Il1rn, Il10, Tigit und Ctla4, welche mit der Effektorfunktion von Tfr-Zellen assoziiert werden. Blimp-1 wirkt auf dem Hintergrund der Überexpression von NFATc1 vor allem regulierend auf die Expression von Chemokinrezeptorgenen. Im Gegensatz zur Überexpression von caNFATc1/aA in Tregs allein, führt selbige Veränderung in allen T-Zellen zu einer deutlichen Reduktion des Vorkommens von Tfh- und GCB-Zellen nach Immunisierung. Dieser Effekt scheint durch konventionelle T-Zellen (Tcons) vermittelt zu sein und entsteht vermutlich durch eine erhöhte Sekretion von Interleukin-2 (IL-2) durch die caNFATc1/aA überexprimierenden Tcons. Dieses IL-2 scheint in seiner Menge nicht durch die vorliegenden Tfr-Zellen neutralisierbar zu sein und die Keimzentrumsreaktion (GCR) zu hemmen. Die vorliegende Arbeit zeigt, dass NFATc1 und Blimp-1 kooperieren, um die Migration von Tfr-Zellen in das GC zu kontrollieren. Tfr-Zellen im GC sind in der Erfüllung ihrer ordnungsgemäßen Funktion abhängig von NFATc1 und Blimp-1. Die Überexpression von caNFATc1 in Tregs stärkt die Funktion von Tfr-Zellen in einer Blimp-1-abhängigen Weise, während die Überexpression von caNFATc1 in allen T-Zellen die GCR extrem minimiert. KW - Signaltransduktion KW - NFATc1 KW - follikuläre regulatorische T-Zelle KW - T-Lymphozyt KW - Blimp-1 KW - CXCR5 KW - germinal center KW - follicular regulatory T cell KW - Keimzentrumsreaktion KW - Zellmigration KW - Immunisierung Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-209727 ER - TY - JOUR A1 - Muhammad, Khalid A1 - Rudolf, Ronald A1 - Pham, Duong Anh Thuy A1 - Klein-Hessling, Stefan A1 - Takata, Katsuyoshi A1 - Matsushita, Nobuko A1 - Ellenrieder, Volker A1 - Kondo, Eisaku A1 -  Serfling, Edgar T1 - Induction of Short NFATc1/αA Isoform Interferes with Peripheral B Cell Differentiation JF - Frontiers in Immunology N2 - In lymphocytes, immune receptor signals induce the rapid nuclear translocation of preformed cytosolic NFAT proteins. Along with co-stimulatory signals, persistent immune receptor signals lead to high levels of NFATc1/αA, a short NFATc1 isoform, in effector lymphocytes. Whereas NFATc1 is not expressed in plasma cells, in germinal centers numerous centrocytic B cells express nuclear NFATc1/αA. When overexpressed in chicken DT40 B cells or murine WEHI 231 B cells, NFATc1/αA suppressed their cell death induced by B cell receptor signals and affected the expression of genes controlling the germinal center reaction and plasma cell formation. Among those is the Prdm1 gene encoding Blimp-1, a key factor of plasma cell formation. By binding to a regulatory DNA element within exon 1 of the Prdm1 gene, NFATc1/αA suppresses Blimp-1 expression. Since expression of a constitutive active version of NFATc1/αA interfered with Prdm1 RNA expression, LPS-mediated differentiation of splenic B cells to plasmablasts in vitro and reduced immunoglobulin production in vivo, one may conclude that NFATc1/αA plays an important role in controlling plasmablast/plasma cell formation. KW - B cells KW - DT40 cells KW - germinal center KW - NFATc1 KW - plasmablasts KW - plasma cells Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-197501 SN - 1664-3224 VL - 9 IS - 32 ER - TY - JOUR A1 - Stauss, Dennis A1 - Brunner, Cornelia A1 - Berberich-Siebelt, Friederike A1 - Höpken, Uta E. A1 - Lipp, Martin A1 - Müller, Gerd T1 - The transcriptional coactivator Bob1 promotes the development of follicular T helper cells via Bcl6 JF - Embo Journal N2 - Follicular T helper (Tfh) cells are key regulators of the germinal center reaction and long-term humoral immunity. Tfh cell differentiation requires the sustained expression of the transcriptional repressor Bcl6; however, its regulation in CD4\(^+\) T cells is incompletely understood. Here, we report that the transcriptional coactivator Bob1, encoded by the Pou2af1 gene, promotes Bcl6 expression and Tfh cell development. We found that Bob1 together with the octamer transcription factors Oct1/Oct2 can directly bind to and transactivate the Bcl6 and Btla promoters. Mixed bone marrow chimeras revealed that Bob1 is required for the expression of normal levels of Bcl6 and BTLA, thereby controlling the pool size and composition of the Tfh compartment in a T cell-intrinsic manner. Our data indicate that T cell-expressed Bob1 is directly involved in Tfh cell differentiation and required for mounting normal T cell-dependent B-cell responses. KW - follicular T helper cells KW - germinal center KW - humoral immunity KW - Pou2af1 KW - T cell differentiation Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-189506 VL - 35 IS - 8 ER - TY - JOUR A1 - Rodrigues, Lénia A1 - Popov, Nikita A1 - Kaye, Kenneth M. A1 - Simas, J. Pedro T1 - Stabilization of Myc through Heterotypic Poly-Ubiquitination by mLANA Is Critical for \(\gamma\)-Herpesvirus Lymphoproliferation JF - PLoS PATHOGENS N2 - Host colonization by lymphotropic \(\gamma\)-herpesviruses depends critically on expansion of viral genomes in germinal center (GC) B-cells. Myc is essential for the formation and maintenance of GCs. Yet, the role of Myc in the pathogenesis of \(\gamma\)-cherpesviruses is still largely unknown. In this study, Myc was shown to be essential for the lymphotropic \(\gamma\)-herpesvirus MuHV- 4 biology as infected cells exhibited increased expression of Myc signature genes and the virus was unable to expand in Myc defficient GC B- cells. We describe a novel strategy of a viral protein activating Myc through increased protein stability resulting in increased progression through the cell cycle. This is acomplished by modulating a physiological posttranslational regulatory pathway of Myc. The molecular mechanism involves Myc heterotypic poly- ubiquitination mediated via the viral E3 ubiquitin- ligase mLANA protein. \(EC_5S^{mLANA}\) modulates cellular control of Myc turnover by antagonizing \(SCF^{Fbw7}\) mediated proteasomal degradation of Myc, mimicking \(SCF^{\beta-TrCP}\). The findings here reported reveal that modulation of Myc is essential for \(\gamma\)-herpesvirus persistent infection, establishing a link between virus induced lymphoproliferation and disease. KW - latency KW - murine gammaherpesvirus 68 KW - Epstein-Barr-virus KW - C-MYC KW - nuclear antigen KW - germinal center KW - B lymphocytes KW - protein KW - cells KW - beta-TRCP Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-131227 VL - 9 IS - 8 ER -