TY - THES A1 - Herok, Christoph T1 - Quantum Chemical Exploration of Potential Energy Surfaces: Reaction Cycles and Luminescence Phenomena T1 - Quantenchemische Erforschung von Energiehyperflächen: Reaktionszyklen und Lumineszenzphänomene N2 - This work aims at elucidating chemical processes involving homogeneous catalysis and photo–physical relaxation of excited molecules in the solid state. Furthermore, compounds with supposedly small singlet–triplet gaps and therefore biradicaloid character are investigated with respect to their electro–chemical behavior. The work on hydroboration catalysis via a reduced 9,10–diboraanthracene (DBA) was preformed in collaboration with the Wagner group in Frankfurt, more specifically Dr. Sven Prey, who performed all laboratory experiments. The investigation of delayed luminescence properties in arylboronic esters in their solid state was conducted in collaboration with the Marder group in Würzburg. The author of this work took part in the synthesis of the investigated compounds while being supervised by Dr. Zhu Wu. The final project was a collaboration with the group of Anukul Jana from Hyderabad, India who provided the experimental data. N2 - Ziel dieser Arbeit ist die Aufklärung chemischer Prozesse, die homogene Katalyse und photophysikalische Relaxation angeregter Moleküle im Festkörper beinhalten. Darüber hinaus werden Verbindungen mit vermeintlich kleinen Singulett-Triplett-Lücken und damit biradikaloidem Charakter auf ihr elektrochemisches Verhalten hin untersucht. Die Arbeiten zur Hydroborierungskatalyse mit einem reduzierten 9,10-Diboraanthracen (DBA) wurden in Zusammenarbeit mit der Wagner-Gruppe in Frankfurt durchgeführt, genauer gesagt mit Dr. Sven Prey, der alle Laborexperimente durchführte. Die Untersuchung der verzögerten Lumineszenzeigenschaften von Arylborsäureestern im Festkörper wurde in Zusammenarbeit mit der Marder Gruppe in Würzburg durchgeführt. Der Autor dieser Arbeit war an der Synthese der untersuchten Verbindungen beteiligt und wurde dabei von Dr. Zhu Wu betreut. Das abschließende Projekt war eine Zusammenarbeit mit der Gruppe von Anukul Jana aus Hyderabad, Indien, die die experimentellen Daten zur Verfügung stellte. KW - Simulation KW - Quantum Chemistry KW - Reaction Mechanism KW - Fluorescence KW - Phosphoresence KW - Chemie KW - Katalyse KW - Lumineszenz KW - chemistry KW - simulation KW - catalysis KW - mechanism KW - luminescence KW - Energiehyperfläche Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-352185 ER - TY - JOUR A1 - Wencker, Freya D. R A1 - Marincola, Gabriella A1 - Schoenfelder, Sonja M. K. A1 - Maaß, Sandra A1 - Becher, Dörte A1 - Ziebuhr, Wilma T1 - Another layer of complexity in Staphylococcus aureus methionine biosynthesis control: unusual RNase III-driven T-box riboswitch cleavage determines met operon mRNA stability and decay JF - Nucleic Acids Research N2 - In Staphylococcus aureus, de novo methionine biosynthesis is regulated by a unique hierarchical pathway involving stringent-response controlled CodY repression in combination with a T-box riboswitch and RNA decay. The T-box riboswitch residing in the 5′ untranslated region (met leader RNA) of the S. aureus metICFE-mdh operon controls downstream gene transcription upon interaction with uncharged methionyl-tRNA. met leader and metICFE-mdh (m)RNAs undergo RNase-mediated degradation in a process whose molecular details are poorly understood. Here we determined the secondary structure of the met leader RNA and found the element to harbor, beyond other conserved T-box riboswitch structural features, a terminator helix which is target for RNase III endoribonucleolytic cleavage. As the terminator is a thermodynamically highly stable structure, it also forms posttranscriptionally in met leader/ metICFE-mdh read-through transcripts. Cleavage by RNase III releases the met leader from metICFE-mdh mRNA and initiates RNase J-mediated degradation of the mRNA from the 5′-end. Of note, metICFE-mdh mRNA stability varies over the length of the transcript with a longer lifespan towards the 3′-end. The obtained data suggest that coordinated RNA decay represents another checkpoint in a complex regulatory network that adjusts costly methionine biosynthesis to current metabolic requirements. KW - allelic replacement KW - expression KW - translation KW - mechanism KW - acid KW - endoribonuclease KW - antitermination KW - transcription KW - proteins KW - geometry Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-259029 VL - 49 IS - 4 ER - TY - JOUR A1 - Achenbach, Leonard A1 - Klein, Christian A1 - Luig, Patrick A1 - Bloch, Hendrik A1 - Schneider, Dominik A1 - Fehske, Kai T1 - Collision with opponents - but not foul play - dominates injury mechanism in professional men's basketball JF - BMC Sports Science Medicine and Rehabilitation N2 - Background To identify injury patterns and mechanisms in professional men’s basketball by means of video match analysis. Methods In Germany, injuries are registered with the statutory accident insurance for professional athletes (VBG) by clubs or club physicians as part of occupational accident reporting. Moderate and severe injuries (absence of > 7 days) sustained during basketball competition in one of four seasons (2014–2017 and 2018–2019) in the first or second national men’s league in Germany were prospectively analyzed using a newly developed standardized observation form. Season 2017–2018 was excluded because of missing video material. Results Video analysis included 175 (53%) of 329 moderate and severe match injuries. Contact patterns categorized according to the different body sites yielded eight groups of typical injury patterns: one each for the head, shoulders, and ankles, two for the thighs, and three for the knees. Injuries to the head (92%), ankles (76%), shoulders (70%), knees (47%), and thighs (32%) were mainly caused by direct contact. The injury proportion of foul play was 19%. Most injuries (61%) occurred in the central zone below the basket. More injuries occurred during the second (OR 1.8, p = 0.018) and fourth quarter (OR 1.8, p = 0.022) than during the first and third quarter of the match. Conclusion The eight identified injury patterns differed substantially in their mechanisms. Moderate and severe match injuries to the head, shoulders, knees, and ankles were mainly caused by collision with opponents and teammates. Thus, stricter rule enforcement is unlikely to facilitate safer match play. KW - epidemiology KW - mechanism KW - contact KW - non-contact´ KW - injury prevention KW - match load Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-261765 VL - 13 ER - TY - JOUR A1 - Wehner, Marius A1 - Röhr, Merle Insa Silja A1 - Stepanenko, Vladimir A1 - Würthner, Frank T1 - Control of self-assembly pathways toward conglomerate and racemic supramolecular polymers JF - Nature Communications N2 - Homo- and heterochiral aggregation during crystallization of organic molecules has significance both for fundamental questions related to the origin of life as well as for the separation of homochiral compounds from their racemates in industrial processes. Herein, we analyse these phenomena at the lowest level of hierarchy - that is the self-assembly of a racemic mixture of (R,R)- and (S,S)-PBI into 1D supramolecular polymers. By a combination of UV/vis and NMR spectroscopy as well as atomic force microscopy, we demonstrate that homochiral aggregation of the racemic mixture leads to the formation of two types of supramolecular conglomerates under kinetic control, while under thermodynamic control heterochiral aggregation is preferred, affording a racemic supramolecular polymer. FT-IR spectroscopy and quantum-chemical calculations reveal unique packing arrangements and hydrogen-bonding patterns within these supramolecular polymers. Time-, concentration- and temperature-dependent UV/vis experiments provide further insights into the kinetic and thermodynamic control of the conglomerate and racemic supramolecular polymer formation. Homo- and heterochiral aggregation is a process of interest to prebiotic and chiral separation chemistry. Here, the authors analyze the self-assembly of a racemic mixture into 1D supramolecular polymers and find homochiral aggregation into conglomerates under kinetic control, while under thermodynamic control a racemic polymer is formed. KW - perylene bismide dye KW - nucleation-elongation KW - PI stacking KW - polymerization KW - complexity KW - mechanism KW - crystals KW - kinetics KW - growth Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-230580 VL - 11 ER - TY - JOUR A1 - Ansell, Melvyn B. A1 - Kostakis, George E. A1 - Braunschweig, Holger A1 - Navarro, Oscar A1 - Spencer, John T1 - Synthesis of functionalized hydrazines: facile homogeneous (N-heterocyclic carbene)-palladium(0)-catalyzed diboration and silaboration of azobenzenes JF - Advanced Synthesis & Catalysis N2 - The bis(N-heterocyclic carbene)(diphenylacetylene)palladium complex Pd(ITMe)\(_2\)(PhCCPh)] (ITMe=1,3,4,5-tetramethylimidazol-2-ylidene) acts as a highly active pre-catalyst in the diboration and silaboration of azobenzenes to synthesize a series of novel functionalized hydrazines. The reactions proceed using commercially available diboranes and silaboranes under mild reaction conditions. KW - Palladium-catalyzed silaboration KW - B-B bond KW - molecular-structure KW - terminal alkynes KW - crystal-structure KW - alkenes KW - complexes KW - mechanism KW - boron KW - design KW - azobenzenes KW - dilaboration KW - N-heterocyclic carbenes KW - palladium KW - silaboration Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-186582 VL - 358 IS - 23 ER - TY - JOUR A1 - Hausmann, Stefan A1 - Brandt, Evelyn A1 - Köchel, Carolin A1 - Einsele, Hermann A1 - Bargou, Ralf C. A1 - Seggewiss-Bernhardt, Ruth A1 - Stühmer, Thorsten T1 - Loss of serum and glucocorticoid-regulated kinase 3 (SGK3) does not affect proliferation and survival of multiple myeloma cell lines JF - PLoS ONE N2 - Multiple myeloma (MM) is a generally fatal plasma cell cancer that often shows activation of the phosphoinositide 3-kinase/Akt (PI3K/Akt) pathway. Targeted pharmacologic therapies, however, have not yet progressed beyond the clinical trial stage, and given the complexity of the PI3K/Akt signalling system (e.g. multiple protein isoforms, diverse feedback regulation mechanisms, strong variability between patients) it is mandatory to characterise its ramifications in order to better guide informed decisions about the best therapeutic approaches. Here we explore whether serum and glucocorticoid-regulated kinase 3 (SGK3), a potential downstream effector of PI3K, plays a role in oncogenic signalling in MM cells-either in concert with or independent of Akt. SGK3 was expressed in all MM cell lines and in all primary MM samples tested. Four MM cell lines representing a broad range of intrinsic Akt activation (very strong: MM. 1s, moderate: L 363 and JJN-3, absent: AMO-1) were chosen to test the effects of transient SGK3 knockdown alone and in combination with pharmacological inhibition of Akt, PI3K-p110\(\alpha\), or in the context of serum starvation. Although the electroporation protocol led to strong SGK3 depletion for at least 5 days its absence had no substantial effect on the activation status of potential downstream substrates, or on the survival, viability or proliferation of MM cells in all experimental contexts tested. We conclude that it is unlikely that SGK3 plays a significant role for oncogenic signalling in multiple myeloma. KW - Akt KW - phosphorylation KW - downstream KW - mechanism KW - pathway KW - isoforms KW - activation KW - cancer KW - inhibition KW - phosphatidylinositol 3-kinase/Akt Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-148708 VL - 10 IS - 4 ER - TY - JOUR A1 - Vieira, Jacqueline A1 - Jones, Alex R. A1 - Danon, Antoine A1 - Sakuma, Michiyo A1 - Hoang, Nathalie A1 - Robles, David A1 - Tait, Shirley A1 - Heyes, Derren J. A1 - Picot, Marie A1 - Yoshii, Taishi A1 - Helfrich-Förster, Charlotte A1 - Soubigou, Guillaume A1 - Coppee, Jean-Yves A1 - Klarsfeld, André A1 - Rouyer, Francois A1 - Scrutton, Nigel S. A1 - Ahmad, Margaret T1 - Human Cryptochrome-1 Confers Light Independent Biological Activity in Transgenic Drosophila Correlated with Flavin Radical Stability JF - PLoS One N2 - Cryptochromes are conserved flavoprotein receptors found throughout the biological kingdom with diversified roles in plant development and entrainment of the circadian clock in animals. Light perception is proposed to occur through flavin radical formation that correlates with biological activity in vivo in both plants and Drosophila. By contrast, mammalian (Type II) cryptochromes regulate the circadian clock independently of light, raising the fundamental question of whether mammalian cryptochromes have evolved entirely distinct signaling mechanisms. Here we show by developmental and transcriptome analysis that Homo sapiens cryptochrome - 1 (HsCRY1) confers biological activity in transgenic expressing Drosophila in darkness, that can in some cases be further stimulated by light. In contrast to all other cryptochromes, purified recombinant HsCRY1 protein was stably isolated in the anionic radical flavin state, containing only a small proportion of oxidized flavin which could be reduced by illumination. We conclude that animal Type I and Type II cryptochromes may both have signaling mechanisms involving formation of a flavin radical signaling state, and that light independent activity of Type II cryptochromes is a consequence of dark accumulation of this redox form in vivo rather than of a fundamental difference in signaling mechanism. KW - arabidopsi KW - dependent magnetosensitvity KW - protein KW - clock KW - gene KW - mechanism KW - rhythm KW - oscillator KW - circadian photoreception KW - mammalian CRY1 Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-134513 VL - 7 IS - 3 ER - TY - JOUR A1 - Müller, Sara A1 - Windhof, Indra M. A1 - Maximov, Vladimir A1 - Jurkowski, Tomasz A1 - Jeltsch, Albert A1 - Förstner, Konrad U. A1 - Sharma, Cynthia M. A1 - Gräf, Ralph A1 - Nellen, Wolfgang T1 - Target recognition, RNA methylation activity and transcriptional regulation of the Dictyostelium discoideum Dnmt2-homologue (DnmA) JF - Nucleic Acids Research N2 - Although the DNA methyltransferase 2 family is highly conserved during evolution and recent reports suggested a dual specificity with stronger activity on transfer RNA (tRNA) than DNA substrates, the biological function is still obscure. We show that the Dictyostelium discoideum Dnmt2-homologue DnmA is an active tRNA methyltransferase that modifies C38 in \(tRNA^{Asp(GUC)}\) in vitro and in vivo. By an ultraviolet-crosslinking and immunoprecipitation approach, we identified further DnmA targets. This revealed specific tRNA fragments bound by the enzyme and identified \(tRNA^{Glu(CUC/UUC)}\) and \(tRNA^{Gly(GCC)}\) as new but weaker substrates for both human Dnmt2 and DnmA in vitro but apparently not in vivo. Dnmt2 enzymes form transient covalent complexes with their substrates. The dynamics of complex formation and complex resolution reflect methylation efficiency in vitro. Quantitative PCR analyses revealed alterations in dnmA expression during development, cell cycle and in response to temperature stress. However, dnmA expression only partially correlated with tRNA methylation in vivo. Strikingly, dnmA expression in the laboratory strain AX2 was significantly lower than in the NC4 parent strain. As expression levels and binding of DnmA to a target in vivo are apparently not necessarily accompanied by methylation, we propose an additional biological function of DnmA apart from methylation. KW - DNA methylferase homolog KW - drospophila KW - TRNA(ASP) KW - mechanism KW - binding Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-123149 SN - 1362-4962 VL - 41 IS - 18 ER - TY - JOUR A1 - Fischer, Rico A1 - Plessow, Franziska A1 - Kiesel, Andrea T1 - The effects of alerting signals in masked priming JF - Frontiers in Psychology N2 - Alerting signals often serve to reduce temporal uncertainty by predicting the time of stimulus onset. The resulting response time benefits have often been explained by facilitated translation of stimulus codes into response codes on the basis of established stimulus-response (S-R) links. In paradigms of masked S-R priming alerting signals also modulate response activation processes triggered by subliminally presented prime stimuli. In the present study we tested whether facilitation of visuo-motor translation processes due to alerting signals critically depends on established S-R links. Alerting signals resulted in significantly enhanced masked priming effects for masked prime stimuli that included and that did not include established S-R links fi.e., target vs. novel primes). Yet, the alerting-priming interaction was more pronounced for target than for novel primes. These results suggest that effects of alerting signals on masked priming are especially evident when S-R links between prime and target exist. At the same time, an alerting-priming interaction also for novel primes suggests that alerting signals also facilitate stimulus-response translation processes when masked prime stimuli provide action-trigger conditions in terms of programmed S-R links. KW - response selection KW - visual cortex KW - temporal predictability KW - stimuli KW - primes KW - target primes KW - simon task KW - automaticity KW - performance KW - perception KW - mechanism KW - novel primes KW - action-trigger KW - masked priming KW - accessory KW - alerting signal Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-122581 SN - 1664-1078 VL - 4 IS - 448 ER - TY - THES A1 - Paasche, Alexander T1 - Mechanistic Insights into SARS Coronavirus Main Protease by Computational Chemistry Methods T1 - Mechanistische Einblicke in die SARS Coronavirus Hauptprotease mit computerchemischen Methoden N2 - The SARS virus is the etiological agent of the severe acute respiratory syndrome, a deadly disease that caused more than 700 causalities in 2003. One of its viral proteins, the SARS coronavirus main protease, is considered as a potential drug target and represents an important model system for other coronaviruses. Despite extensive knowledge about this enzyme, it still lacks an effective anti-viral drug. Furthermore, it possesses some unusual features related to its active-site region. This work gives atomistic insights into the SARS coronavirus main protease and tries to reveal mechanistic aspects that control catalysis and inhibition. Thereby, it applies state-of-the-art computational methods to develop models for this enzyme that are capable to reproduce and interpreting the experimental observations. The theoretical investigations are elaborated over four main fields that assess the accuracy of the used methods, and employ them to understand the function of the active-site region, the inhibition mechanism, and the ligand binding. The testing of different quantum chemical methods reveals that their performance depends partly on the employed model. This can be a gas phase description, a continuum solvent model, or a hybrid QM/MM approach. The latter represents the preferred method for the atomistic modeling of biochemical reactions. A benchmarking uncovers some serious problems for semi-empirical methods when applied in proton transfer reactions. To understand substrate cleavage and inhibition of SARS coronavirus main protease, proton transfer reactions between the Cys/His catalytic dyad are calculated. Results show that the switching between neutral and zwitterionic state plays a central role for both mechanisms. It is demonstrated that this electrostatic trigger is remarkably influenced by substrate binding. Whereas the occupation of the active-site by the substrate leads to a fostered zwitterion formation, the inhibitor binding does not mimic this effect for the employed example. The underlying reason is related to the coverage of the active-site by the ligand, which gives new implications for rational improvements of inhibitors. More detailed insights into reversible and irreversible inhibition are derived from in silico screenings for the class of Michael acceptors that follow a conjugated addition reaction. From the comparison of several substitution patterns it becomes obvious that different inhibitor warheads follow different mechanisms. Nevertheless, the initial formation of a zwitterionic catalytic dyad is found as a common precondition for all inhibition reactions. Finally, non-covalent inhibitor binding is investigated for the case of SARS coranavirus main protease in complex with the inhibitor TS174. A novel workflow is developed that includes an interplay between theory and experiment in terms of molecular dynamic simulation, tabu search, and X-ray structure refinement. The results show that inhibitor binding is possible for multiple poses and stereoisomers of TS174. N2 - Das Schwere Akute Respiratorische Syndrom (SARS) wird durch eine Infektion mit dem SARS Virus ausgelöst, dessen weltweite Verbreitung 2003 zu über 700 Todesfällen führte. Die SARS Coronavirus Hauptprotease stellt ein mögliches Wirkstoffziel zur Behandlung dar und hat Modellcharakter für andere Coronaviren. Trotz intensiver Forschung sind bis heute keine effektiven Wirkstoffe gegen SARS verfügbar. Die vorliegende Arbeit gibt Einblicke in die mechanistischen Aspekte der Enzymkatalyse und Inhibierung der SARS Coronavirus Hauptprotease. Hierzu werden moderne computerchemische Methoden angewandt, die mittels atomistischer Modelle experimentelle Ergebnisse qualitativ reproduzieren und interpretieren können. Im Zuge der durchgeführten theoretischen Arbeiten wird zunächst eine Fehlereinschätzung der Methoden durchgeführt und diese nachfolgend auf Fragestellungen zur aktiven Tasche, dem Inhibierungsmechanismus und der Ligandenbindung angewandt. Die Einschätzung der quantenchemischen Methoden zeigt, dass deren Genauigkeit teilweise von der Umgebungsbeschreibung abhängt, welche als Gasphasen, Kontinuum, oder QM/MM Modell dargestellt werden kann. Letzteres gilt als Methode der Wahl für die atomistische Modellierung biochemischer Reaktionen. Die Vergleiche zeigen für semi-empirische Methoden gravierende Probleme bei der Beschreibung von Proton-Transfer Reaktionen auf. Diese wurden für die katalytische Cys/His Dyade betrachtet, um Einblicke in Substratspaltung und Inhibierung zu erhalten. Dem Wechsel zwischen neutralem und zwitterionischem Zustand konnte hierbei eine zentrale Bedeutung für beide Prozesse zugeordnet werden. Es zeigt sich, dass dieser „electrostatic trigger“ von der Substratbindung, nicht aber von der Inhibitorbindung beeinflusst wird. Folglich beschleunigt ausschließlich die Substratbindung die Zwitterionbildung, was im Zusammenhang mit der Abschirmung der aktiven Tasche durch den Liganden steht. Dies gibt Ansatzpunkte für die Verbesserung von Inhibitoren. Aus in silico screenings werden genauere Einblicke in die reversible und irreversible Inhibierung durch Michael-Akzeptor Verbindungen gewonnen. Es wird gezeigt, dass unterschiedlichen Substitutionsmustern unterschiedliche Reaktionsmechanismen in der konjugierten Additionsreaktion zugrunde liegen. Die vorangehende Bildung eines Cys-/His+ Zwitterions ist allerdings für alle Inhibierungsmechanismen eine notwendige Voraussetzung. Letztendlich wurde die nicht-kovalente Bindung eines Inhibitors am Beispiel des TS174-SARS Coronavirus Hauptprotease Komplexes untersucht. Im Zusammenspiel von Theorie und Experiment wurde ein Prozess, bestehend aus Molekulardynamik Simulation, Tabu Search und Röntgenstruktur Verfeinerung ausgearbeitet, der eine Interpretation der Bindungssituation von TS174 ermöglicht. Im Ergebnis zeigt sich, dass der Inhibitor gleichzeitig in mehreren Orientierungen, als auch in beiden stereoisomeren Formen im Komplex vorliegt. KW - SARS KW - Inhibitor KW - Enzym KW - Computational chemistry KW - Coronaviren KW - SARS KW - Protease KW - Mechanismus KW - Inhibitor KW - Computerchemie KW - SARS KW - protease KW - mechanism KW - inhibitor KW - computational chemistry Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-79029 ER - TY - THES A1 - Wang, Dapeng T1 - The mechanism of glucocorticoid induced murine thymocyte and peripheral T cell apoptosis T1 - Der Mechanismus der Apoptose von Glukocorticoid-induzierten murinen Thymozyten und peripherischen T-Zellen N2 - Glucocordicoide sind kleine lipophile Verbindungen, die viele biologische Effekte verursachen, wenn sie an den intrazellulären Glukokortikoidrezeptor (GR) binden. Dieser wandert wiederum in den Nucleus, um dort direkt oder indirekt die Transkription der Gene zu regulieren. Glukokortikoide sind der Grundstein in der Behandlung für eine Anzahl von hämatologischen bösartigen Erkrankungen, wie Leukämie, Lymphome und Myelome. In der Literatur wird beschrieben, dass Glukokortikoide über die Vermittlung von Apoptose wirken.die Wirkung. Trotz der enormen Fortschritte im Verständnis des regulierten Zelltodes, ist der genaue Mechanismus, den Glukokortikoide bei der Apoptose vermitteln, unbekannt. Die Daten, die bis jetzt erzielt wurden, deuten stark darauf hin, dass Gentransaktivierung durch den GR für den Beginn der durch Glukokortikoide verursachten Thymozytenapoptose verantwortlich ist. Außerdem wurde gezeigt, dass das multikatalytische Proteasom, einige Mitglieder der BCL2-Familie, Änderungen im Kalziumfluss sowie Caspasen eine wichtige Rolle in der Durchführungsphase des durch Glukokortikoide vermittelten Zelltodes spielen Jedoch ist die genaue Reihenfolge dieses Prozesses bisher nicht bekannt. Ein Hauptschwierigkeit der gegenwärtigen Diskussion entsteht aus der Tatsache, dass unterschiedliche Zellarten, wie Thymozyten, reife T-Zellen und Lymphomzellen verglichen werden, ohne ihre unterschiedlichen Eigenschaften und Genexpressionsprofile zu beachten. Obwohl angenommen wird, dass Glukokortikoide Apoptose über einen konservierten Mechanismus, wird dies nicht durch irgendwelche Daten unterstützt. In anderen Worten, es ist möglich, dass Apoptose in Thymozyten, reifen T-Zellen und Lymphomzellen über unterschiedliche Signalwege vermittelt wid. Wir fragten uns daher, ob ein einzelner durch Glukokoritkoide eingeleiteter Signaltransduktionsweg dafür verantwortlich ist, dass Apoptose in allen T-Lamphozytenarten eingeleitet wird, oder ob noch andere Signalwege existieren. Daher verglichen wir die Rolle des Proteasomes, verschiedener Caspasen, des lysosomalen Kompartements und anderer Faktoren in der durch Glukokortikoide induzierten Apoptose in Mausthymozyten und pepripheren T-Zellen sowie T-ALL Lymphomzellen. Unsere Entdeckungen zeigen, dass die Anfangsphase der durch Glukokortikoide induzierten Apoptose unabhängig von der Differenzierungsstadien der Zelle ist. Apoptose wird sowohl in Thymozyten als auch in reifen T-Zellen durch den GR vermittelt und ist von der Gentranskription abhängig. Im Gegensatz dazu unterscheidet sich die Durchführungsphase erheblich in ihren Anforderungen für eine Anzahl von Signaltransduktionskomponenten zwischen Thymozyten und peripheren T-Zellen. Während in Thymozyten das Proteasom, die Caspasen 3, 8 und 9 sowie Cathepsin B eine wichtige Rolle in durch Glukokortikoide induzierten Zelltod spielen, sind diese Faktoren für die Induktion des Zell-Todes in peripheren T- Zellen entbehrlich. Im Gegensatz dazu scheinen Änderungen in der Expression und intrazellulären Lokalisation von Mitgliedern der Bcl-2 Familie nicht zum durch Glukokortikoide induzierten Zellltod beitzutragen, egal um welchen Zelltyp es sich handelt. Wir haben beobachtet, dass eine Behandlung von Thymozyten mit Glukokortikoiden zu einer Aktivierung der lysosomalen Protease Cathepsin B führt. Dies ist ein essentieller Schritt zur Einleitung von Apoptose durch Glukortikoide und zeigt zum ersten Mal, dass der lysosomale Amplifikationsloop in diesen Prozess involviert ist. Die Analyse des durch Glukokortikoide induzierten Zelltodes in verschiedenen T-ALL Zelllinien deutet darauf hin, dass die durch Glukokortikoide induzierten Signalwege in Thymozyten und allen Lymphonzelllinien aber nicht in peripheren T Zellen übereinstimmen. Da die hoch-dosierte Glukokortikoidbehandlung eine wichtige Rolle in der Behandlung von hematologischen bösartigen Erkrankungen spielt, können unsere Beobachtungen eine Grundlage für eine neue Anti-Krebs-Stragie bilden, die darauf ausgelegt ist, spezifisch Tumorzellen zu eliminieren aber reife T-Zellen unberührt lassen. N2 - Glucocorticoids (GCs) are small lipophilic compounds that mediate a plethora of biological effects by binding to the intracellular glucocorticoid receptor (GR) which, in turn, translocates to the nucleus and directly or indirectly regulates gene transcription. GCs remain the cornerstone in the treatment for a number of hematological malignancies, including leukemia, lymphoma and myeloma. Extensive literature suggests that the efficacy of GCs stems from their ability to mediate apoptosis. Despite the enormous strides made in our understanding of regulated cell death, the exact mechanism by which GCs cause apoptosis is still unknown. The data obtained so far provide strong evidence that gene transactivation by the GR underlies the initiation phase of GC-induced thymocyte apoptosis. Furthermore, the multicatalytic proteasome, several members of the Bcl-2 family, changes in calcium flux as well as caspases have been identified as important players in the execution phase of GC-mediated cell death. However, the exact sequence of events in this process still remains elusive. A major problem of the current discussion arises from the fact that different cell types, such as thymocytes, peripheral T cells and lymphoma cells are compared without acknowledging their different characteristics and gene expression profiles. Although it is generally assumed that GCs induce apoptosis via a conserved mechanism, this is not supported by any data. In other words, it is possible that thymocytes, peripheral T cells and lymphoma cells may undergo cell death along different pathways. We therefore wondered whether a unique signal transduction pathway is engaged by GCs to initiate and execute cell death in all types of T lymphocytes or whether distinct pathways exist. Therefore, we compared the role of the proteasome, various caspases, the lysosomal compartment and other factors in GC-induced apoptosis of murine thymocytes and peripheral T cells as well as T-ALL lymphoma cells. Our findings show that the initiation phase of GC-induced apoptosis is similar irrespective of the differentiation state of the cell. Apoptosis in both thymocytes and peripheral T cells is mediated by the GR and depends on gene transcription. In contrast, the execution phase significantly differs between thymocyte and peripheral T cells in its requirement for a number of signal transduction components. Whilst in thymocytes, the proteasome, caspases 3, 8 and 9 as well as cathepsin B play an important role in GC-induced apoptosis, these factors are dispensable for the induction of cell death in peripheral T cells. In contrast, changes in the expression and intracellular location of Bcl-2 family members do not appear to contribute to GC-induced apoptosis in either cell type. Importantly, our observation that GC treatment of thymocytes leads to an activation of the lysosomal protease cathepsin B and that this is an essential step in the induction of cell death by GCs, is the first indication that a lysosomal amplification loop is involved in this process. Analysis of GC-induced apoptosis in several T-ALL cell lines further indicates that the signaling pathway induced by GCs in thymocytes but not in peripheral T cells is shared by all lymphoma cell-types analyzed. Given the therapeutic importance of high-dose GC-therapy for the treatment of hematological malignancies, this finding could potentially form a basis for new anti-cancer strategies in the future, which specifically target tumor cells whilst leaving peripheral T cells of patients untouched. KW - T-Lymphozyt KW - Apoptosis KW - Glucocorticosteroide KW - Glukocorticioid KW - Mechanismus KW - Apoptose KW - Thymozyten KW - T-zellen KW - glucocorticoid KW - mechanism KW - apoptosis KW - thymocyte KW - T cell Y1 - 2006 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-17317 ER -