TY - THES A1 - Adhikari, Bikash T1 - Targeted degradation of Myc-interacting oncoproteins T1 - Gezielte Degradation von mit Myc interagierenden Onkoproteinen N2 - The hallmark oncoprotein Myc is a major driver of tumorigenesis in various human cancer entities. However, Myc’s structural features make it challenging to develop small molecules against it. A promising strategy to indirectly inhibit the function of Myc is by targeting its interactors. Many Myc-interacting proteins have reported scaffolding functions which are difficult to target using conventional occupancy- driven inhibitors. Thus, in this thesis, the proteolysis targeting chimera (PROTAC) approach was used to target two oncoproteins interacting with Myc which promote the oncogenicity of Myc, Aurora-A and WDR5. PROTACs are bifunctional small molecules that bind to the target protein with one ligand and recruit a cellular E3- ligase with the other ligand to induce target degradation via the ubiquitin- proteasome system. So far, the most widely used E3-ligases for PROTAC development are Cereblon (CRBN) and von Hippel–Lindau tumor suppressor (VHL). Furthermore, there are cases of incompatibility between some E3-ligases and proteins to bring about degradation. Hence there is a need to explore new E3- ligases and a demand for a tool to predict degradative E3-ligases for the target protein in the PROTAC field. In the first part, a highly specific mitotic kinase Aurora-A degrader, JB170, was developed. This compound utilized Aurora-A inhibitor alisertib as the target ligand and thalidomide as the E3-ligase CRBN harness. The specificity of JB170 and the ternary complex formation was supported by the interactions between Aurora-A and CRBN. The PROTAC-mediated degradation of Aurora-A induced a distinct S- phase defect rather than mitotic arrest, shown by its catalytic inhibition. The finding demonstrates that Aurora-A has a non-catalytic role in the S-phase. Furthermore, the degradation of Aurora-A led to apoptosis in various cancer cell lines. In the second part, two different series of WDR5 PROTACs based on two protein- protein inhibitors of WDR5 were evaluated. The most efficient degraders from both series recruited VHL as a E3-ligase and showed partial degradation of WDR5. In addition, the degradation efficiency of the PROTACs was significantly affected by the linker nature and length, highlighting the importance of linker length and composition in PROTAC design. The degraders showed modest proliferation defects at best in cancer cell lines. However, overexpression of VHL increased the degradation efficiency and the antiproliferative effect of the PROTACs. In the last part, a rapamycin-based assay was developed to predict the degradative E3-ligase for a target. The assay was validated using the WDR5/VHL and Aurora- A/CRBN pairs. The result that WDR5 is degraded by VHL but not CRBN and Aurora-A is degraded by CRBN, matches observations made with PROTACs. This technique will be used in the future to find effective tissue-specific and essential E3-ligases for targeted degradation of oncoproteins using PROTACs. Collectively, the work presented here provides a strategy to improve PROTAC development and a starting point for developing Aurora-A and WDR5 PROTACs for cancer therapy. N2 - Das Onkoprotein Myc ist ein wichtiger Faktor bei der Tumorentstehung in verschiedenen menschlichen Krebsarten. Die strukturellen Merkmale von Myc machen es jedoch schwierig, kleine Moleküle gegen dieses Protein zu entwickeln. Eine vielversprechende Strategie zur indirekten Hemmung der Funktion von Myc besteht darin, auf seine Interaktoren abzuzielen. Viele Proteine, die mit Myc interagieren, haben Gerüstfunktionen, die mit herkömmlichen Inhibitoren nur schwer zu hemmen sind. Daher wurde in dieser Arbeit der PROTAC-Ansatz (Proteolysis Targeting Chimera) verwendet, um zwei Onkoproteine, die mit Myc interagieren und die Onkogenität von Myc fördern, ins Visier zu nehmen: Aurora-A und WDR5. PROTACs sind bifunktionale kleine Moleküle, die mit einem Liganden an das Zielprotein binden und mit dem anderen Liganden eine zelluläre E3-Ligase rekrutieren, um den Abbau des Zielproteins über das Ubiquitin-Proteasom-System einzuleiten. Die bisher am häufigsten verwendeten E3-Ligasen für die Entwicklung von PROTACs sind Cereblon (CRBN) und der von Hippel-Lindau-Tumorsuppressor (VHL). Außerdem gibt es Fälle von Inkompatibilität zwischen einigen E3-Ligasen und Proteinen, die abgebaut werden sollen. Daher besteht die Notwendigkeit, neue E3-Ligasen zu erforschen und Werkzeuge zur Vorhersage abbauender E3-Ligasen für das Zielprotein zu entwickeln. Im ersten Teil wurde ein hochspezifischer Degrader der mitotischen Kinase Aurora-A, JB170, entwickelt. Bei dieser Verbindung wurde der Aurora-A-Inhibitor Alisertib als Zielligand und Thalidomid als Binder für die E3-Ligase CRBN verwendet. Die Spezifität von JB170 und die ternäre Komplexbildung wurden durch die Wechselwirkungen zwischen Aurora-A und CRBN unterstützt. Der durch PROTAC vermittelte Abbau von Aurora-A führte zu einem deutlichen Defekt in der S-Phase und nicht zu einem mitotischen Stillstand, wie es für dessen katalytische Hemmung beobachtet wurde. Dies zeigt, dass Aurora-A eine nicht-katalytische Funktion in der S-Phase hat. Außerdem führte der Abbau von Aurora-A in verschiedenen Krebszelllinien zur Apoptose. Im zweiten Teil wurden zwei verschiedene Serien von WDR5 PROTACs auf der Grundlage von zwei Protein-Protein-Inhibitoren von WDR5 untersucht. Die effizientesten Degrader aus beiden Serien rekrutierten VHL als E3-Ligase und zeigten einen teilweisen Abbau von WDR5. Darüber hinaus wurde die Abbaueffizienz der PROTACs erheblich von der Art und Länge des Linkers beeinflusst, was die Bedeutung der Linkerlänge und -zusammensetzung bei der Entwicklung von PROTACs unterstreicht. Die Abbauprodukte zeigten bestenfalls bescheidene Proliferationsdefekte in Krebszelllinien. Eine Überexpression von VHL erhöhte jedoch die Abbaueffizienz und den antiproliferativen Effekt der PROTACs. Im letzten Teil wurde ein auf Rapamycin basierender Assay entwickelt, um die abbauende E3-Ligase für ein Target vorherzusagen. Der Assay wurde anhand der Paare WDR5/VHL und Aurora-A/CRBN validiert. Das Ergebnis, dass WDR5 von VHL, aber nicht von CRBN abgebaut wird und Aurora-A von CRBN abgebaut wird, stimmt mit den Beobachtungen überein, die mit PROTACs gemacht wurden. Diese Technik wird in Zukunft eingesetzt werden, um wirksame gewebespezifische und essentielle E3-Ligasen für den gezielten Abbau von Onkoproteinen mit Hilfe von PROTACs zu finden. Insgesamt bieten die hier vorgestellten Arbeiten eine Strategie zur Verbesserung der PROTAC-Entwicklung und einen Ausgangspunkt für die Entwicklung von Aurora-A- und WDR5-PROTACs für die Krebstherapie. KW - Degradation KW - PROTACs KW - Oncoprotein KW - Cancer KW - Onkoprotein Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-317326 ER - TY - JOUR A1 - Meinert, Madlen A1 - Jessen, Christina A1 - Hufnagel, Anita A1 - Kreß, Julia Katharina Charlotte A1 - Burnworth, Mychal A1 - Däubler, Theo A1 - Gallasch, Till A1 - Da Xavier Silva, Thamara Nishida A1 - Dos Santos, Ancély Ferreira A1 - Ade, Carsten Patrick A1 - Schmitz, Werner A1 - Kneitz, Susanne A1 - Friedmann Angeli, José Pedro A1 - Meierjohann, Svenja T1 - Thiol starvation triggers melanoma state switching in an ATF4 and NRF2-dependent manner JF - Redox Biology N2 - The cystine/glutamate antiporter xCT is an important source of cysteine for cancer cells. Once taken up, cystine is reduced to cysteine and serves as a building block for the synthesis of glutathione, which efficiently protects cells from oxidative damage and prevents ferroptosis. As melanomas are particularly exposed to several sources of oxidative stress, we investigated the biological role of cysteine and glutathione supply by xCT in melanoma. xCT activity was abolished by genetic depletion in the Tyr::CreER; Braf\(^{CA}\); Pten\(^{lox/+}\) melanoma model and by acute cystine withdrawal in melanoma cell lines. Both interventions profoundly impacted melanoma glutathione levels, but they were surprisingly well tolerated by murine melanomas in vivo and by most human melanoma cell lines in vitro. RNA sequencing of human melanoma cells revealed a strong adaptive upregulation of NRF2 and ATF4 pathways, which orchestrated the compensatory upregulation of genes involved in antioxidant defence and de novo cysteine biosynthesis. In addition, the joint activation of ATF4 and NRF2 triggered a phenotypic switch characterized by a reduction of differentiation genes and induction of pro-invasive features, which was also observed after erastin treatment or the inhibition of glutathione synthesis. NRF2 alone was capable of inducing the phenotypic switch in a transient manner. Together, our data show that cystine or glutathione levels regulate the phenotypic plasticity of melanoma cells by elevating ATF4 and NRF2. KW - thiol starvation KW - ATF4 KW - NRF2 KW - melanoma Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-350328 VL - 70 ER - TY - JOUR A1 - Kreß, Julia Katharina Charlotte A1 - Jessen, Christina A1 - Hufnagel, Anita A1 - Schmitz, Werner A1 - Da Xavier Silva, Thamara Nishida A1 - Ferreira Dos Santos, Ancély A1 - Mosteo, Laura A1 - Goding, Colin R. A1 - Friedmann Angeli, José Pedro A1 - Meierjohann, Svenja T1 - The integrated stress response effector ATF4 is an obligatory metabolic activator of NRF2 JF - Cell Reports N2 - Highlights • The integrated stress response leads to a general ATF4-dependent activation of NRF2 • ATF4 causes a CHAC1-dependent GSH depletion, resulting in NRF2 stabilization • An elevation of NRF2 transcript levels fosters this effect • NRF2 supports the ISR/ATF4 pathway by improving cystine and antioxidant supply Summary The redox regulator NRF2 becomes activated upon oxidative and electrophilic stress and orchestrates a response program associated with redox regulation, metabolism, tumor therapy resistance, and immune suppression. Here, we describe an unrecognized link between the integrated stress response (ISR) and NRF2 mediated by the ISR effector ATF4. The ISR is commonly activated after starvation or ER stress and plays a central role in tissue homeostasis and cancer plasticity. ATF4 increases NRF2 transcription and induces the glutathione-degrading enzyme CHAC1, which we now show to be critically important for maintaining NRF2 activation. In-depth analyses reveal that NRF2 supports ATF4-induced cells by increasing cystine uptake via the glutamate-cystine antiporter xCT. In addition, NRF2 upregulates genes mediating thioredoxin usage and regeneration, thus balancing the glutathione decrease. In conclusion, we demonstrate that the NRF2 response serves as second layer of the ISR, an observation highly relevant for the understanding of cellular resilience in health and disease. KW - NRF2 KW - ATF4 KW - integrated stress response KW - CHAC1 KW - melanoma KW - SLC7A11 KW - GSH Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-350312 VL - 42 IS - 7 ER - TY - JOUR A1 - Maihoff, Fabienne A1 - Sahler, Simone A1 - Schoger, Simon A1 - Brenzinger, Kristof A1 - Kallnik, Katharina A1 - Sauer, Nikki A1 - Bofinger, Lukas A1 - Schmitt, Thomas A1 - Nooten, Sabine S. A1 - Classen, Alice T1 - Cuticular hydrocarbons of alpine bumble bees (Hymenoptera: Bombus) are species-specific, but show little evidence of elevation-related climate adaptation JF - Frontiers in Ecology and Evolution N2 - Alpine bumble bees are the most important pollinators in temperate mountain ecosystems. Although they are used to encounter small-scale successions of very different climates in the mountains, many species respond sensitively to climatic changes, reflected in spatial range shifts and declining populations worldwide. Cuticular hydrocarbons (CHCs) mediate climate adaptation in some insects. However, whether they predict the elevational niche of bumble bees or their responses to climatic changes remains poorly understood. Here, we used three different approaches to study the role of bumble bees’ CHCs in the context of climate adaptation: using a 1,300 m elevational gradient, we first investigated whether the overall composition of CHCs, and two potentially climate-associated chemical traits (proportion of saturated components, mean chain length) on the cuticle of six bumble bee species were linked to the species’ elevational niches. We then analyzed intraspecific variation in CHCs of Bombus pascuorum along the elevational gradient and tested whether these traits respond to temperature. Finally, we used a field translocation experiment to test whether CHCs of Bombus lucorum workers change, when translocated from the foothill of a cool and wet mountain region to (a) higher elevations, and (b) a warm and dry region. Overall, the six species showed distinctive, species-specific CHC profiles. We found inter- and intraspecific variation in the composition of CHCs and in chemical traits along the elevational gradient, but no link to the elevational distribution of species and individuals. According to our expectations, bumble bees translocated to a warm and dry region tended to express longer CHC chains than bumble bees translocated to cool and wet foothills, which could reflect an acclimatization to regional climate. However, chain lengths did not further decrease systematically along the elevational gradient, suggesting that other factors than temperature also shape chain lengths in CHC profiles. We conclude that in alpine bumble bees, CHC profiles and traits respond at best secondarily to the climate conditions tested in this study. While the functional role of species-specific CHC profiles in bumble bees remains elusive, limited plasticity in this trait could restrict species’ ability to adapt to climatic changes. KW - pollinators KW - altitudinal gradient KW - cuticular hydrocarbon KW - desiccation KW - mountain KW - global change KW - translocation experiment KW - drought stress Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-304420 SN - 2296-701X VL - 11 ER - TY - JOUR A1 - Liu, Ruiqi A1 - Friedrich, Mike A1 - Hemmen, Katherina A1 - Jansen, Kerstin A1 - Adolfi, Mateus C. A1 - Schartl, Manfred A1 - Heinze, Katrin G. T1 - Dimerization of melanocortin 4 receptor controls puberty onset and body size polymorphism JF - Frontiers in Endocrinology N2 - Xiphophorus fish exhibit a clear phenotypic polymorphism in puberty onset and reproductive strategies of males. In X. nigrensis and X. multilineatus, puberty onset is genetically determined and linked to a melanocortin 4 receptor (Mc4r) polymorphism of wild-type and mutant alleles on the sex chromosomes. We hypothesized that Mc4r mutant alleles act on wild-type alleles by a dominant negative effect through receptor dimerization, leading to differential intracellular signaling and effector gene activation. Depending on signaling strength, the onset of puberty either occurs early or is delayed. Here, we show by Förster Resonance Energy Transfer (FRET) that wild-type Xiphophorus Mc4r monomers can form homodimers, but also heterodimers with mutant receptors resulting in compromised signaling which explains the reduced Mc4r signaling in large males. Thus, hetero- vs. homo- dimerization seems to be the key molecular mechanism for the polymorphism in puberty onset and body size in male fish. KW - fluorescence lifetime imaging microscopy KW - Förster Resonance Energy Transfer KW - Mc4r KW - puberty KW - Xiphophorus Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-354261 SN - 1664-2392 VL - 14 ER - TY - JOUR A1 - Luther, Christian H. A1 - Brandt, Philipp A1 - Vylkova, Slavena A1 - Dandekar, Thomas A1 - Müller, Tobias A1 - Dittrich, Marcus T1 - Integrated analysis of SR-like protein kinases Sky1 and Sky2 links signaling networks with transcriptional regulation in Candida albicans JF - Frontiers in Cellular and Infection Microbiology N2 - Fungal infections are a major global health burden where Candida albicans is among the most common fungal pathogen in humans and is a common cause of invasive candidiasis. Fungal phenotypes, such as those related to morphology, proliferation and virulence are mainly driven by gene expression, which is primarily regulated by kinase signaling cascades. Serine-arginine (SR) protein kinases are highly conserved among eukaryotes and are involved in major transcriptional processes in human and S. cerevisiae. Candida albicans harbors two SR protein kinases, while Sky2 is important for metabolic adaptation, Sky1 has similar functions as in S. cerevisiae. To investigate the role of these SR kinases for the regulation of transcriptional responses in C. albicans, we performed RNA sequencing of sky1Δ and sky2Δ and integrated a comprehensive phosphoproteome dataset of these mutants. Using a Systems Biology approach, we study transcriptional regulation in the context of kinase signaling networks. Transcriptomic enrichment analysis indicates that pathways involved in the regulation of gene expression are downregulated and mitochondrial processes are upregulated in sky1Δ. In sky2Δ, primarily metabolic processes are affected, especially for arginine, and we observed that arginine-induced hyphae formation is impaired in sky2Δ. In addition, our analysis identifies several transcription factors as potential drivers of the transcriptional response. Among these, a core set is shared between both kinase knockouts, but it appears to regulate different subsets of target genes. To elucidate these diverse regulatory patterns, we created network modules by integrating the data of site-specific protein phosphorylation and gene expression with kinase-substrate predictions and protein-protein interactions. These integrated signaling modules reveal shared parts but also highlight specific patterns characteristic for each kinase. Interestingly, the modules contain many proteins involved in fungal morphogenesis and stress response. Accordingly, experimental phenotyping shows a higher resistance to Hygromycin B for sky1Δ. Thus, our study demonstrates that a combination of computational approaches with integration of experimental data can offer a new systems biological perspective on the complex network of signaling and transcription. With that, the investigation of the interface between signaling and transcriptional regulation in C. albicans provides a deeper insight into how cellular mechanisms can shape the phenotype. KW - sky kinases KW - kinase signaling KW - network analysis KW - transcriptome KW - transcriptional regulation KW - phosphoproteome KW - Candida albicans Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-311771 SN - 2235-2988 VL - 13 ER - TY - THES A1 - Englmeier, Jana T1 - Consequences of climate change and land-use intensification for decomposer communities and decomposition processes T1 - Folgen von Klimawandel und intensiver Landnutzung für Zersetzergemeinschaften und Abbauprozesse N2 - The increase in intensively used areas and climate change are direct and indirect consequences of anthropogenic actions, caused by a growing population and increasing greenhouse gas emissions. The number of research studies, investigating the effects of land use and climate change on ecosystems, including flora, fauna, and ecosystem services, is steadily growing. This thesis contributes to this research area by investigating land-use and climate effects on decomposer communities (arthropods and microbes) and the ecosystem service ‘decomposition of dead material’. Chapter II deals with consequences of intensified land use and climate change for the ecosystem service ‘decomposition of dead organic material’ (necromass). Considering the severe decline in insects, we experimentally excluded insects from half of the study objects. The decomposition of both dung and carrion was robust to land-use changes. Dung decomposition, moreover, was unaffected by temperature and the presence/ absence of insects. Along the altitudinal gradient, however, highest dung decomposition was observed at medium elevation between 600 and 700 m above sea level (although insignificant). As a consequence, we assume that at this elevation there is an ideal precipitation:temperature ratio for decomposing organisms, such as earthworms or collembolans. Carrion decomposition was accelerated by increasing elevation and by the presence of insects, indicating that increasing variability in climate and an ongoing decline in insects could modify decomposition processes and consequently natural nutrient cycles. Moreover, we show that different types of dead organic material respond differently to environmental factors and should be treated separately in future studies. In Chapter III, we investigated land-use and climate effects on dung-visiting beetles and their resource specialization. Here, all beetles that are preferentially found on dung, carrion or other rotten material were included. Both α- and γ-diversity were strongly reduced in agricultural and urban areas. High precipitation reduced dung-visiting beetle abundance, whereas γ-diversity was lowest in the warmest regions. Resource specialization decreased with increasing temperatures. The results give evidence that land use as well as climate can alter dung-visiting beetle diversity and resource specialization and may hence influence the natural balance of beetle communities and their contribution to the ecosystem service ‘decomposition of dead material’. The following chapter, Chapter IV, contributes to the findings in Chapter II. Here, carrion decomposition is not only explained by land-use intensity and climate but also by diversity and community composition of two taxonomic groups found on carrion, beetles and bacteria. The results revealed a strong correlation between bacteria diversity and community composition with temperature. Carrion decomposition was to a great extent directed by bacterial community composition and precipitation. The role of beetles was neglectable in carrion decomposition. With this study, I show that microbes, despite their microscopic size, direct carrion decomposition and may not be neglected in future decomposition studies. In Chapter V a third necromass type is investigated, namely deadwood. The aim was to assess climate and land-use effects on deadwood-inhabiting fungi and bacteria. Main driver for microbial richness (measured as number of OTUs) was climate, including temperature and precipitation. Warmer climates promoted the diversity of bacteria, whereas fungi richness was unaffected by temperature. In turn, fungi richness was lower in urban landscapes compared to near-natural landscapes and bacteria richness was higher on meadows than on forest sites. Fungi were extremely specialized on their host tree, independent of land use and climate. Bacteria specialization, however, was strongly directed by land use and climate. These results underpin previous studies showing that fungi are highly specialized in contrast to bacteria and add new insights into the robustness of fungi specialization to climate and land use. I summarize that climate as well as intensive land use influence biodiversity. Temperature and precipitation, however, had positive and negative effects on decomposer diversity, while anthropogenic land use had mostly negative effects on the diversity of decomposers. N2 - Die Zunahme intensiv genutzter Landschaften und der Klimawandel sind direkte und indirekte Folgen menschlichen Handelns, verursacht durch eine wachsende Weltbevölkerung und zunehmende Mengen an Treibhausgasen. Die Zahl der wissenschaftlichen Studien, die sich mit den Veränderungen der Umwelt und den Konsequenzen für Ökosysteme, einschließlich Flora, Fauna und Ökosystemleistungen auseinandersetzen, steigt stetig. Mit dieser Thesis möchte ich meinen Beitrag zu diesem wichtigen und aktuellen Forschungsgebiet leisten. Dazu untersuche ich die Auswirkungen von Landnutzung und Klima auf die Ökosystemleistung „Zersetzung toten organischen Materials“ (Nekromasse) und die Auswirkungen auf die daran beteiligten Arthropoden- und Mikrobengemeinschaften. Kapitel II dieser Thesis setzt sich mit den Konsequenzen von intensiver Landnutzung und Klimawandel für die Ökosystemleistung „Zersetzung toten Materials“ auseinander. Unter Anbetracht des globalen Insektenrückgangs, wurde dieser Aspekt anhand eines Insektenausschluss-Experimentes zusätzlich simuliert. Es stellt sich heraus, dass sowohl der Abbau von Dung als auch von Aas sehr robust gegenüber landschaftlicher Nutzung war. Zudem blieb der Abbau von Dung unberührt von Temperaturänderungen und dem Ausschluss von Insekten. Entlang eines Höhengradienten wurde hingegen ein Trend zu einem unimodalen Muster mit maximaler Zersetzung bei ca. 600-700 m ü.M. beobachtet. Dieser Trend lässt vermuten, dass in dieser Höhe das Verhältnis von Niederschlag und Temperatur ideal für Dung zersetzende Gemeinschaften ist. Aas hingegen wurde in zunehmender Höhe und unter der Beteiligung von Insekten schneller zersetzt, was verdeutlich, dass Klimaänderungen und ein ansteigender Insektenrückgang starke Auswirkungen auf die Zersetzung von Aas und somit auf Nährstoffkreisläufe haben können. Hierbei wurde zudem ersichtlich, dass verschiedene Typen von Nekromasse unterschiedlich auf Umweltparameter reagieren und daher in künftigen Studien und Auswertungen separat betrachtet werden sollten. Kapitel III behandelt die Auswirkungen von Landnutzung und Klima auf die Biodiversität und Spezialisierung von Käfergemeinschaften an Dung. Hierbei wurden sämtliche Käfer berücksichtigt, welche vor allem an Dung, Aas oder sonstigem faulenden Material gefunden werden können. Sowohl α- als auch γ-Diversität von diesen Käfern wurde durch Agrarlandschaften und urbane Gebiete stark reduziert. Hohe Niederschlagsmengen wirkten sich negativ auf die Abundanz von Dungkäfern aus, wohingegen die γ-Diversität in warmen Regionen am niedrigsten war. Der Grad der Spezialisierung von Käfergemeinschaften auf verschiedene Dungressourcen nahm mit abnehmenden Temperaturen zu. Aus den Ergebnissen geht hervor, dass sowohl intensive Landnutzung als auch Klimaveränderungen Auswirkungen auf die Diversität und den Spezialisierungsgrad von Käfergemeinschaften an Dung haben können und somit das ökologische Gleichgewicht der Dungkäfergemeinschaften und ihren Ökosystemfunktionen beeinflussen können. Das darauffolgende Kapitel IV stellt eine Ergänzung zu Kapitel II dar. Hier wird die Zersetzung von Aas nicht nur anhand von Landnutzung und Klima erklärt, sondern auch anhand der α-Diversität und der Artenzusammensetzung von Käfern und Bakterien an Aas diskutiert. Es zeigte sich, dass Abundanz und Artenzusammensetzung der Bakteriengemeinschaft an Aas vor allem von der Temperatur abhingen. Außerdem wurde die Zersetzungsgeschwindigkeit maßgeblich von der Bakteriengemeinschaft und der Niederschlagsmenge bestimmt. Mit dieser Studie konnte ich zeigen, dass Bakterien trotz ihrer mikroskopischen Größe maßgeblich an der Zersetzung von Aas beteiligt sind und diese in Zersetzungsversuchen nicht vernachlässigt werden sollten. Das letzte Kapitel, Kapitel V, befasst sich mit den Konsequenzen von intensiver Landnutzung und Klimawandel auf mikrobielle Gemeinschaften in Totholz. Untersucht wurden hier sowohl Bakterien- als auch Pilzgemeinschaften. Haupttreiber der Artenvielfalt für beide Gruppen (gemessen als Anzahl an OTUs) war das Klima (Niederschlag und Temperatur). Ein wärmeres Klima kam der Vielfalt von Bakterien zugute, wohingegen die Pilzvielfalt nicht tangiert wurde. Außerdem reagierten Pilze negativ auf urbane Landnutzung, Bakterienvielfalt in Totholz war auf Wiesen jedoch höher als im Wald. Vor allem Pilze zeigten eine sehr starke Bindung zu ihrem Wirtsbaum, welche auch von äußeren Einflüssen wie Landnutzung und Klima nicht beeinflusst werden konnte. Die Spezialisierung von Bakterien hingegen wurde stark von Landnutzung und Klima beeinflusst. Diese Ergebnisse untermauern frühere Studien, die besagen, dass Pilze hoch spezialisiert sind und geben neue Erkenntnisse zur Robustheit der Spezialisierung gegenüber Landnutzungsintensität und Klima. Zusammenfassend kann ich sagen, dass sowohl Klima als auch Landnutzung Auswirkungen auf die Biodiversität haben. Während Temperatur und Niederschlag jedoch positive so wie negative Effekte hatten, wirkte sich anthropogene Landnutzung überwiegend negativ auf die Diversität von Zersetzergemeinschaften aus. KW - Mikroorganismus KW - decomposition KW - Klimaänderung KW - Zersetzungsprozess KW - microbes KW - dead organic material KW - Mikroben Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-313994 ER - TY - JOUR A1 - Wu, Hao A1 - Zhao, Xiufeng A1 - Hochrein, Sophia M. A1 - Eckstein, Miriam A1 - Gubert, Gabriela F. A1 - Knöpper, Konrad A1 - Mansilla, Ana Maria A1 - Öner, Arman A1 - Doucet-Ladevèze, Remi A1 - Schmitz, Werner A1 - Ghesquière, Bart A1 - Theurich, Sebastian A1 - Dudek, Jan A1 - Gasteiger, Georg A1 - Zernecke, Alma A1 - Kobold, Sebastian A1 - Kastenmüller, Wolfgang A1 - Vaeth, Martin T1 - Mitochondrial dysfunction promotes the transition of precursor to terminally exhausted T cells through HIF-1α-mediated glycolytic reprogramming JF - Nature Communications N2 - T cell exhaustion is a hallmark of cancer and persistent infections, marked by inhibitory receptor upregulation, diminished cytokine secretion, and impaired cytolytic activity. Terminally exhausted T cells are steadily replenished by a precursor population (Tpex), but the metabolic principles governing Tpex maintenance and the regulatory circuits that control their exhaustion remain incompletely understood. Using a combination of gene-deficient mice, single-cell transcriptomics, and metabolomic analyses, we show that mitochondrial insufficiency is a cell-intrinsic trigger that initiates the functional exhaustion of T cells. At the molecular level, we find that mitochondrial dysfunction causes redox stress, which inhibits the proteasomal degradation of hypoxia-inducible factor 1α (HIF-1α) and promotes the transcriptional and metabolic reprogramming of Tpex cells into terminally exhausted T cells. Our findings also bear clinical significance, as metabolic engineering of chimeric antigen receptor (CAR) T cells is a promising strategy to enhance the stemness and functionality of Tpex cells for cancer immunotherapy. KW - cytotoxic T cells KW - infection KW - lymphocyte differentiation KW - translational research Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-358052 VL - 14 ER - TY - JOUR A1 - Müller, Jörg A1 - Mitesser, Oliver A1 - Schaefer, H. Martin A1 - Seibold, Sebastian A1 - Busse, Annika A1 - Kriegel, Peter A1 - Rabl, Dominik A1 - Gelis, Rudy A1 - Arteaga, Alejandro A1 - Freile, Juan A1 - Leite, Gabriel Augusto A1 - de Melo, Tomaz Nascimento A1 - LeBien, Jack A1 - Campos-Cerqueira, Marconi A1 - Blüthgen, Nico A1 - Tremlett, Constance J. A1 - Böttger, Dennis A1 - Feldhaar, Heike A1 - Grella, Nina A1 - Falconí-López, Ana A1 - Donoso, David A. A1 - Moriniere, Jerome A1 - Buřivalová, Zuzana T1 - Soundscapes and deep learning enable tracking biodiversity recovery in tropical forests JF - Nature Communications N2 - Tropical forest recovery is fundamental to addressing the intertwined climate and biodiversity loss crises. While regenerating trees sequester carbon relatively quickly, the pace of biodiversity recovery remains contentious. Here, we use bioacoustics and metabarcoding to measure forest recovery post-agriculture in a global biodiversity hotspot in Ecuador. We show that the community composition, and not species richness, of vocalizing vertebrates identified by experts reflects the restoration gradient. Two automated measures – an acoustic index model and a bird community composition derived from an independently developed Convolutional Neural Network - correlated well with restoration (adj-R² = 0.62 and 0.69, respectively). Importantly, both measures reflected composition of non-vocalizing nocturnal insects identified via metabarcoding. We show that such automated monitoring tools, based on new technologies, can effectively monitor the success of forest recovery, using robust and reproducible data. KW - animal behaviour KW - conservation biology Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-358130 VL - 14 ER - TY - JOUR A1 - Beetz, M. Jerome A1 - Kraus, Christian A1 - el Jundi, Basil T1 - Neural representation of goal direction in the monarch butterfly brain JF - Nature Communications N2 - Neural processing of a desired moving direction requires the continuous comparison between the current heading and the goal direction. While the neural basis underlying the current heading is well-studied, the coding of the goal direction remains unclear in insects. Here, we used tetrode recordings in tethered flying monarch butterflies to unravel how a goal direction is represented in the insect brain. While recording, the butterflies maintained robust goal directions relative to a virtual sun. By resetting their goal directions, we found neurons whose spatial tuning was tightly linked to the goal directions. Importantly, their tuning was unaffected when the butterflies changed their heading after compass perturbations, showing that these neurons specifically encode the goal direction. Overall, we here discovered invertebrate goal-direction neurons that share functional similarities to goal-direction cells reported in mammals. Our results give insights into the evolutionarily conserved principles of goal-directed spatial orientation in animals. KW - animal behaviour KW - navigation KW - neuroscience Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-358073 VL - 14 ER -