TY - JOUR A1 - Kaupp, Martin A1 - Dolg, Michael A1 - Stoll, Hermann A1 - Schnering, Hans Georg von T1 - Oxidation State +IV in Group 12 Chemistry : Ab Initio Study of Zinc(IV), Cadmium(IV), and Mercury(IV) Fluorides N2 - No abstract available KW - Anorganische Chemie Y1 - 1994 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-60018 ER - TY - THES A1 - Stoll, Georg T1 - Identification of the mRNA-associated TOP3β- TDRD3-FMRP (TTF) -complex and its implication for neurological disorders T1 - Identifikation des mRNA-assoziierten TOP3β-TDRD3-FMRP (TTF) -Komplex und seine Bedeutung für neurologische Störungen N2 - The propagation of the genetic information into proteins is mediated by messenger- RNA (mRNA) intermediates. In eukaryotes mRNAs are synthesized by RNA- Polymerase II and subjected to translation after various processing steps. Earlier it was suspected that the regulation of gene expression occurs primarily on the level of transcription. In the meantime it became evident that the contribution of post- transcriptional events is at least equally important. Apart from non-coding RNAs and metabolites, this process is in particular controlled by RNA-binding proteins, which assemble on mRNAs in various combinations to establish the so-called “mRNP- code”. In this thesis a so far unknown component of the mRNP-code was identified and characterized. It constitutes a hetero-trimeric complex composed of the Tudor domain-containing protein 3 (TDRD3), the fragile X mental retardation protein (FMRP) and the Topoisomerase III beta (TOP3β) and was termed TTF (TOP3β-TDRD3-FMRP) -complex according to its composition. The presented results also demonstrate that all components of the TTF-complex shuttle between the nucleus and the cytoplasm, but are predominantly located in the latter compartment under steady state conditions. Apart from that, an association of the TTF-complex with fully processed mRNAs, not yet engaged in productive translation, was detected. Hence, the TTF-complex is a component of „early“ mRNPs. The defined recruitment of the TTF-complex to these mRNPs is not based on binding to distinct mRNA sequence-elements in cis, but rather on an interaction with the so-called exon junction complex (EJC), which is loaded onto the mRNA during the process of pre-mRNA splicing. In this context TDRD3 functions as an adapter, linking EJC, FMRP and TOP3β on the mRNP. Moreover, preliminary results suggest that epigenetic marks within gene promoter regions predetermine the transfer of the TTF-complex onto its target mRNAs. Besides, the observation that TOP3β is able to catalytically convert RNA-substrates disclosed potential activities of the TTF-complex in mRNA metabolism. In combination with the already known functions of FMRP, this finding primarily suggests that the TTF-complex controls the translation of bound mRNAs. In addition to its role in mRNA metabolism, the TTF-complex is interesting from a human genetics perspective as well. It was demonstrated in collaboration with researchers from Finland and the US that apart from FMRP, which was previously linked to neurocognitive diseases, also TOP3β is associated with neurodevelopmental disorders. Understanding the function of the TTF-complex in mRNA metabolism might hence provide important insight into the etiology of these diseases. N2 - Die Umwandlung der genetischen Information in Proteine erfolgt über Boten-RNA (mRNA) -Intermediate. Diese werden in Eukaryonten durch die RNA-Polymerase II gebildet und nach diversen Prozessierungs-Schritten der Translationsmaschinerie zugänglich gemacht. Während man früher davon ausging, dass die Genexpression primär auf der Ebene der Transkription reguliert wird, ist heute klar, dass post- transkriptionelle Prozesse einen ebenso wichtigen Beitrag hierzu leisten. Neben nicht-kodierenden RNAs und Metaboliten tragen insbesondere RNA- Bindungsproteine zur Kontrolle dieses Vorgangs bei. Diese finden sich in unterschiedlichen Kombinationen auf den mRNAs zusammen und bilden dadurch den sog. „mRNP-Code“ aus. Im Rahmen dieser Dissertation wurde eine bislang unbekannte Komponente des mRNP-Codes identifiziert und charakterisiert. Es handelt es sich dabei um einen hetero-trimeren Komplex, welcher aus dem Tudor Domänen Protein 3 (TDRD3) dem Fragilen X Mentalen Retardations-Protein (FMRP) sowie der Topoisomerase III beta (TOP3β) besteht. Aufgrund seiner Zusammensetzung wurde dieser TTF (TOP3β-TDRD3-FMRP) -Komplex genannt. In der vorliegenden Arbeit konnte der Nachweis geführt werden, dass sämtliche Komponenten des TTF-Komplexes zwischen Zellkern und Cytoplasma pendeln, unter Normalbedingungen jedoch vornehmlich im Cytoplasma lokalisiert sind. Des Weiteren ließ sich eine Assoziation des TTF-Komplexes mit mRNAs nachweisen, die zwar vollständig prozessiert, jedoch noch nicht Teil der produktiven Phase der Translation sind. Der TTF-Komplex ist somit eine Komponente „früher“ mRNPs. Die Rekrutierung des TTF-Komplexes an definierte mRNPs wird nicht durch Bindung an spezifische mRNA-Sequenzelemente bedingt, sondern basiert auf einer Interaktion mit dem sog. Exon Junction Complex (EJC), welcher im Kontext des pre-mRNA Spleißens auf die mRNA geladen wird. Hierbei spielt TDRD3 als Adapter zwischen dem EJC, FMRP und TOP3β die entscheidende Rolle. Präliminäre Experimente legen darüber hinaus den Schluss nahe, dass epigenetische Markierungen im Promotor-Bereich distinkter Gene von entscheidender Bedeutung für den Transfer des TTF-Komplexes auf dessen Ziel-mRNAs sind. Einen wichtigen ersten Hinweis auf die potentielle Funktion des TTF-Komplexes im Kontext des mRNA Metabolismus erbrachte die Beobachtung, dass TOP3β in der Lage ist RNA katalytisch umzusetzen. Dieser Befund lässt in Verbindung mit den bereits beschriebenen Aktivitäten von FMRP vermuten, dass der TTF-Komplex die Translation gebundener mRNAs kontrolliert. Zusätzlich zu seiner Rolle im mRNA Metabolismus ist der TTF-Komplex auch aus humangenetischer Sicht hoch interessant. So konnte in Zusammenarbeit mit finnischen und US-amerikanischen Forschern gezeigt werden, dass neben FMRP, einem bekannten Krankheitsfaktor neurokognitiver Syndrome, auch TOP3β mit neurologischen Entwicklungsstörungen assoziiert ist. Das Verständnis der Funktion des TTF-Komplexes im mRNA Metabolismus könnte daher wichtige Einblicke in die Etiologie dieser Krankheiten liefern. KW - Messenger-RNS KW - Messenger-RNP KW - RNA binding proteins KW - mRNA metabolism KW - eukaryotic gene expression Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-111440 ER - TY - JOUR A1 - Essig, Fabian A1 - Babilon, Lilith A1 - Vollmuth, Christoph A1 - Kollikowski, Alexander M. A1 - Pham, Mirko A1 - Solymosi, László A1 - Haeusler, Karl Georg A1 - Kraft, Peter A1 - Stoll, Guido A1 - Schuhmann, Michael K. T1 - High mobility group box 1 protein in cerebral thromboemboli JF - International Journal of Molecular Sciences N2 - High-mobility group box 1 protein (HMGB1) is a damage-associated molecular pattern (DAMP) involved in neutrophil extracellular trap (NET) formation and thrombosis. NETs are regularly found in cerebral thromboemboli. We here analyzed associated HMGB1 expression in human thromboemboli retrieved via mechanical thrombectomy from 37 stroke patients with large vessel occlusion. HMGB1 was detected in all thromboemboli, accounting for 1.7% (IQR 0.6–6.2%) of the total thromboemboli area and was found to be colocalized with neutrophils and NETs and in spatial proximity to platelets. Correlation analysis revealed that the detection of HMGB1 was strongly related to the number of neutrophils (r = 0.58, p = 0.0002) and platelets (r = 0.51, p = 0.001). Our results demonstrate that HMGB1 is a substantial constituent of thromboemboli causing large vessel occlusion stroke. KW - acute ischemic stroke KW - thromboemboli KW - HMGB1 KW - neutrophils KW - platelets KW - immunohistochemistry Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-265568 SN - 1422-0067 VL - 22 IS - 20 ER - TY - JOUR A1 - Essig, Fabian A1 - Kollikowski, Alexander M. A1 - Pham, Mirko A1 - Solymosi, László A1 - Stoll, Guido A1 - Haeusler, Karl Georg A1 - Kraft, Peter A1 - Schuhmann, Michael K. T1 - Immunohistological analysis of neutrophils and neutrophil extracellular traps in human thrombemboli causing acute ischemic stroke JF - International Journal of Molecular Sciences N2 - Ischemic stroke caused by thromboembolic occlusion of large cerebral arteries, such as the internal carotid (ICA) and/or the middle cerebral artery (MCA), is treated by mechanical thrombectomy (MT). MT allows salvage of the vessel-occluding thrombemboli, which most frequently originate from the left atrium or the left ventricle of the heart or from sites of plaque rupture within large arteries above the heart. Clot composition may influence the efficacy of (intravenous) thrombolysis and MT, respectively. We analyzed 37 human thrombemboli obtained from acute ischemic stroke patients during MT with special emphasis on histological staining of neutrophils and neutrophil extracellular traps (NETs). We found neutrophils as the main cellular component of cerebral thrombemboli but encountered considerable morphological heterogeneity. Neutrophils accumulated in the border region of fibrin-rich structures indicating possible interaction of neutrophils with distinct structural thrombembolus components. Web-like NETs were found in 35 of 37 thrombemboli in varying amounts. NETs were almost exclusively found within fibrin-rich areas. Importantly, stroke etiology, age and present oral anticoagulation was associated with morphological patterns and the amount of neutrophils. Correlation of histological data and imaging data revealed that relative Hounsfield units of cerebral thrombemboli positively correlated with the amount of red blood cells. In summary, our results demonstrate that neutrophils and NETs are substantial constituents of cerebral thrombemboli and contribute to their structural complexity. KW - acute ischemic stroke KW - thrombemboli KW - neutrophils KW - NETs KW - immunohistochemistry Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-236192 SN - 1422-0067 VL - 21 IS - 19 ER - TY - JOUR A1 - Traub, Jan A1 - Grondey, Katja A1 - Gassenmaier, Tobias A1 - Schmitt, Dominik A1 - Fette, Georg A1 - Frantz, Stefan A1 - Boivin-Jahns, Valérie A1 - Jahns, Roland A1 - Störk, Stefan A1 - Stoll, Guido A1 - Reiter, Theresa A1 - Hofmann, Ulrich A1 - Weber, Martin S. A1 - Frey, Anna T1 - Sustained increase in serum glial fibrillary acidic protein after first ST-elevation myocardial infarction JF - International Journal of Molecular Sciences N2 - Acute ischemic cardiac injury predisposes one to cognitive impairment, dementia, and depression. Pathophysiologically, recent positron emission tomography data suggest astroglial activation after experimental myocardial infarction (MI). We analyzed peripheral surrogate markers of glial (and neuronal) damage serially within 12 months after the first ST-elevation MI (STEMI). Serum levels of glial fibrillary acidic protein (GFAP) and neurofilament light chain (NfL) were quantified using ultra-sensitive molecular immunoassays. Sufficient biomaterial was available from 45 STEMI patients (aged 28 to 78 years, median 56 years, 11% female). The median (quartiles) of GFAP was 63.8 (47.0, 89.9) pg/mL and of NfL 10.6 (7.2, 14.8) pg/mL at study entry 0–4 days after STEMI. GFAP after STEMI increased in the first 3 months, with a median change of +7.8 (0.4, 19.4) pg/mL (p = 0.007). It remained elevated without further relevant increases after 6 months (+11.7 (0.6, 23.5) pg/mL; p = 0.015), and 12 months (+10.3 (1.5, 22.7) pg/mL; p = 0.010) compared to the baseline. Larger relative infarction size was associated with a higher increase in GFAP (ρ = 0.41; p = 0.009). In contrast, NfL remained unaltered in the course of one year. Our findings support the idea of central nervous system involvement after MI, with GFAP as a potential peripheral biomarker of chronic glial damage as one pathophysiologic pathway. KW - myocardial infarction KW - STEMI KW - glial fibrillary acidic protein KW - GFAP KW - neurofilament light chain KW - NfL KW - glial damage KW - cardiac magnetic resonance imaging KW - MRI KW - infarction size Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-288261 SN - 1422-0067 VL - 23 IS - 18 ER -