@phdthesis{Dreykluft2013, author = {Dreykluft, Angela}, title = {The PD-1/B7-H1 Pathway in a Transgenic Mouse Model for Spontaneous Autoimmune Neuroinflammation: Immunological Studies on Devic B7-H1-/- Mice}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-83288}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2013}, abstract = {Multiple sclerosis is an autoimmune disease of the central nervous system characterized by inflammatory, demyelinating lesions and neuronal death. Formerly regarded as a variant of MS, neuromyelitis optica (NMO)/Devic's disease is now recognized as a distinct neurological disorder exhibiting characteristic inflammatory and demyelinated foci in the optic nerves and the spinal cord sparing the brain. With the introduction of the double-transgenic "Devic mouse" model featuring spontaneous, adjuvant-free incidence of autoimmune neuroinflammation due to the interaction of transgenic MOG-specific T and B cells, a promising tool was found for the analysis of factors triggering or preventing autoimmunity. The co-inhibitory molecule B7-H1 has been proposed to contribute to the maintenance of peripheral tolerance and to confine autoimmune inflammatory damage via the PD-1/B7-H1 pathway. Compared to Devic B7-H1+/+ mice, Devic B7-H1-/- mice developed clinical symptoms with a remarkably higher incidence rate and faster kinetics emphasized by deteriorated disease courses and a nearly quadrupled mortality rate. Remarkably enlarged immune-cell accumulation in the CNS of Devic B7-H1-/- mice, in particular of activated MOG-specific CD4+ T cells, correlated with the more severe clinical features. Our studies showed that the CNS not only was the major site of myelin-specific CD4+ T-cell activation but also that B7-H1 expression within the target organ significantly influenced T-cell activation and differentiation levels. Analysis at disease maximum revealed augmented accumulation of MOG-specific CD4+ T cells in the peripheral lymphoid organs of Devic B7-H1-/- mice partly due to increased T-cell proliferation rates. Transgenic MOG-specific B cells of Devic B7-H1-/- mice activated MOG-specific CD4+ T cells more efficiently than B cells of Devic B7-H1+/+ mice. This observation indicated a relevant immune-modulating role of B7-H1 on APCs (antigen-presenting cells) in this mouse model. We also assumed altered thymic selection processes to be involved in increased peripheral CD4+ T-cell numbers of Devic B7-H1-/- mice as we found more thymocytes expressing the transgenic MOG-specific T-cell receptor (TCR). Moreover, preliminary in vitro experiments hinted on an enhanced survival of TCRMOG-transgenic CD4+ T cells of Devic B7-H1-/- mice; a mechanism that might as well have led to higher peripheral T-cell accumulation. Elevated levels of MOG-specific CD4+ T cells in the periphery of Devic B7-H1-/- mice could have entailed the higher quantities in the CNS. However, mechanisms such as CNS-specific proliferation and/or apoptosis/survival could also have contributed. This should be addressed in future investigations. Judging from in vitro migration assays and adoptive transfer experiments on RAG-1-/- recipient mice, migratory behavior of MOG-specific CD4+ T cells of Devic B7-H1+/+ and Devic B7-H1-/- mice seemed not to differ. However, enhanced expression of the transmigration-relevant integrin LFA-1 on CD4+ T cells in young symptom-free Devic B7-H1-/- mice might hint on temporally differently pronounced transmigration capacities during the disease course. Moreover, we attributed the earlier conversion of CD4+ T cells into Th1 effector cells in Devic B7-H1-/- mice during the initiation phase to the lack of co-inhibitory signaling via PD-1/B7-H1 possibly leading to an accelerated disease onset. Full blown autoimmune inflammatory processes could have masked these slight effects of B7-H1 in the clinical phase. Accordingly, at peak of the disease, Th1 and Th17 effector functions of peripheral CD4+ T cells were comparable in both mouse groups. Moreover, judging from titers of MOG-specific IgG1 and IgM antibodies, alterations in humoral immunity were not detected. Therefore, clinical differences could not be explained by altered T-cell or B-cell effector functions at disease maximum. B7-H1 rather seemed to take inhibitory effect in the periphery during the initiation phase only and consistently within the target organ by parenchymal expression. Our observations indicate that B7-H1 plays a relevant role in the regulation of T-cell responses in this mouse model for spontaneous CNS autoimmunity. By exerting immune-modulating effects in the preclinical as well as the clinical phase of the disease, B7-H1 contributed to the confinement of the immunopathological tissue damage in Devic B7-H1+/+ mice mirrored by later disease onsets and lower disease scores. As a model for spontaneous autoimmunity featuring a close to 100 \% incidence rate, the Devic B7-H1-/- mouse may prove instrumental in clarifying disease-triggering and -limiting factors and in validating novel therapeutic approaches in the field of autoimmune neuroinflammation, in particular the human Devic's disease.}, subject = {Autoimmunit{\"a}t}, language = {en} } @phdthesis{HerreroGonzalez2007, author = {Herrero-Gonz{\´a}lez, Josep E.}, title = {Pathogenic relevance of autoantibodies to type XVII collagen from pemphigoid gestationis patients}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-22329}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2007}, abstract = {Pemphigoid gestationis (PG) and bullous pemphigoid (BP) are subepidermal autoimmune blistering diseases characterized by self-reactive T and B cells specific for the transmembrane hemidesmosomal protein type XVII collagen/BP180. Major T and B cell epitopes are located within the immunodominant 16th non-collagenous domain A (NC16A) of type XVII collagen. It has been suggested that pathogenically relevant autoantibodies also bind to this immunodominant region. The aim of this study was to map the epitopes targeted by blister-inducing human autoantibodies. For this purpose, we used an in vitro model of autoantibody-induced leucocyte-dependent dermal-epidermal separation. In contrast to the majority of patients with BP (7 of 10), preadsorption against a recombinant form of the NC16A region abolished the blister-inducing potential of autoantibodies from all PG patients tested (n=5). Using overlapping synthetic peptides, we demonstrate that PG autoantibodies bind to 2 defined epitopes within the NC16A region (aa 500-514 and aa 511-523). Preadsorption using an affinity matrix containing these two epitopes completely abolished dermal-epidermal separation induced by PG autoantibodies (in 8 of 9 patients). These findings provide new insights into the pathogenesis of pemphigoid diseases and should prove helpful for the development of an antigen-specific immunoadsorption therapy in PG.}, language = {en} } @phdthesis{Boerner2020, author = {B{\"o}rner, Kevin}, title = {How CLEC16A modifies the function of thymic epithelial cells}, doi = {10.25972/OPUS-20023}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-200230}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2020}, abstract = {Genomweite Assoziationsstudien haben CLEC16A als ein Suszeptibilit{\"a}tsgen f{\"u}r Typ 1 Diabetes und weitere Autoimmunerkrankungen identifiziert. Die genaue Funktion von CLEC16A bleibt jedoch ungekl{\"a}rt. Studien zeigten, dass sowohl das Drosophila Ortholog ema als auch das murine Clec16a eine Rolle in Autophagie spielen. Autophagie tr{\"a}gt zur Beladung der MHC-Klasse-II Molek{\"u}le und somit der Antigenpr{\"a}sentation bei. Dar{\"u}ber hinaus konnten Studien belegen, dass Autophagie zur Antigenpr{\"a}sentation w{\"a}hrend der T-Zell Selektion in Thymus-Epithelzellen ben{\"o}tigt wird. Dies schl{\"a}gt eine m{\"o}gliche Funktion von CLEC16A in Thymus-Epithelzellen w{\"a}hrend der T-Zell Selektion vor. Außerdem berichteten Arbeiten, dass CLEC16A als quantitativer Trait Locus f{\"u}r seine Nachbargene fungiert und dass Clec16a KD in Langerhans Inseln im Pankreas die Insulinsekretion und den Glukosestoffwechsel beeintr{\"a}chtigt. Dieser Arbeit vorausgehend hatten Schuster et al. eine Clec16a KD NOD Maus generiert, welche vor spontanem autoimmunem Diabetes gesch{\"u}tzt war. F{\"u}r diese Arbeit wurde vermutet, dass CLEC16A als Suszeptibilit{\"a}tsgen f{\"u}r Typ 1 Diabetes den Prozess der Autophagie in Thymus-Epithelzellen beeintr{\"a}chtigt und somit Antigenpr{\"a}sentation und das T-Zell Repertoire beeinflusst. Um auf der Vorarbeit von Schuster et al. aufzubauen und diese zu erg{\"a}nzen, zielte diese Arbeit darauf ab, den Einfluss von CLEC16A auf Thymus-Epithelzellen zu untersuchen. Hierf{\"u}r wurde ein CLEC16A KD in menschlichen Zellen mittels RNA Interferenz erzeugt und Autophagie durch Immunoblotting untersucht. Zus{\"a}tzlich wurde die Entz{\"u}ndung im Pankreasgewebe von Clec16a KD NOD M{\"a}usen mittels H.E. F{\"a}rbung beurteilt und bewertet. Thymus-Transplanationen wurden durchgef{\"u}hrt, um zu sehen, ob der Einfluss von Clec16a KD T-Zell intrinsisch ist. Außerdem wurden intraperitoneale Glukosetoleranztests durchgef{\"u}hrt, um den Blutzuckerstoffwechsel in Clec16a KD M{\"a}usen zu beurteilen. Schließlich wurden mittels qPCR Expressionslevel der benachbarten Gene, wie zum Beispiel Dexi und Socs1, erhoben, um die Eigenschaften von CLEC16A als quantitativer Trait Locus einzuordnen. Gemeinsam mit den Ergebnissen von Schuster et al. kann diese Arbeit aufzeigen, dass Clec16a KD die Auspr{\"a}gung von Insulitis im Pankreas reduziert und Clec16a KD NOD M{\"a}use vor spontanem Autoimmundiabetes sch{\"u}tzt. Dieser Schutz vor Erkrankung wird durch beeintr{\"a}chtigte Autophagie in Thymus-Epithelzellen hervorgerufen, welche die T-Zell Selektion beeinflusst und die Reaktivit{\"a}t von T-Zellen reduziert. Der Einfluss des Clec16a KD ist innerhalb des Thymus wirksam. Der Blutzuckerstoffwechsel in Clec16a KD NOD M{\"a}usen bleibt unver{\"a}ndert und kann deshalb als Ursache f{\"u}r den Schutz vor Type 1 Diabetes ausgeschlossen werden. Clec16a und Dexi zeigen {\"a}hnliche Expressionslevel auf, dennoch ben{\"o}tigt es weitere detaillierte Studien, um eine Beziehung zwischen den beiden Genen etablieren zu k{\"o}nnen. Letztlich konnte die Beeintr{\"a}chtigung von Autophagie in menschlichen CLEC16A KD Zellen nachgewiesen werden, was bedeutet, dass die Funktion von CLEC16A evolution{\"a}r konserviert ist und ein m{\"o}glicher Zusammenhang zwischen CLEC16A Polymorphismen und einem erh{\"o}hten Risiko f{\"u}r Typ 1 Diabetes im Menschen besteht.}, subject = {Thymus}, language = {en} } @phdthesis{Werner2014, author = {Werner, Christian}, title = {Effect of autoantibodies targeting amphiphysin or glutamate decarboxylase 65 on synaptic transmission of GABAergic neurons}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-105648}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2014}, abstract = {The number of newly detected autoantibodies (AB) targeting synaptic proteins in neurological disorders of the central nervous system (CNS) is steadily increasing. Direct interactions of AB with their target antigens have been shown in first studies but the exact pathomecha-nisms for most of the already discovered AB are still unclear. The present study investigates pathophysiological mechanisms of AB-fractions that are associated with the enigmatic CNS disease Stiff person syndrome (SPS) and target the synaptically located proteins amphiphysin or glutamate decarboxylase 65 (GAD65). In the first part of the project, effects of AB to the presynaptic endocytic protein amphiphysin were investigated. Ultrastructural investigations of spinal cord presynaptic boutons in an es-tablished in-vivo passive-transfer model after intrathecal application of human anti-amphiphysin AB showed a defect of endocytosis. This defect was apparent at high synaptic activity and was characterized by reduction of the synaptic vesicle pool, clathrin coated vesi-cles (CCVs), and endosome like structures (ELS) in comparison to controls. Molecular inves-tigation of presynaptic boutons in cultured murine hippocampal neurons with dSTORM microscopy after pretreatment with AB to amphiphysin revealed that marker proteins involved in vesicle exocytosis (synaptobrevin 2 and synaptobrevin 7) had an altered expression in GA-BAergic presynapses. Endophilin, a direct binding partner of amphiphysin also displayed a disturbed expression pattern. Together, these results point towards an anti-amphiphysin AB-induced defective organization in GABAergic synapses and a presumably compensatory rearrangement of proteins responsible for CME. In the second part, functional consequences of SPS patient derived IgG fractions containing AB to GAD65, the rate limiting enzyme for GABA synthesis, were investigated by patch clamp electrophysiology and immunohistology. GABAergic neurotransmission at low and high activity as well as short term plasticity appeared normal but miniature synaptic potentials showed an enhanced frequency with constant amplitudes. SPS patient IgG after preabsorption of GAD65-AB using recombinant GAD65 still showed specific synaptic binding to neu-rons and brain slices supporting the hypothesis that additional, not yet characterized AB are present in patient IgG responsible for the exclusive effect on frequency of miniature potentials. In conclusion, the present thesis uncovered basal pathophysiological mechanisms underlying paraneoplastic SPS induced by AB to amphiphysin leading to disturbed presynaptic architec-ture. In idiopathic SPS, the hypothesis of a direct pathophysiological role of AB to GAD65 was not supported and additional IgG AB are suspected to induce distinct synaptic malfunction.}, subject = {Autoaggressionskrankheit}, language = {en} }