TY - JOUR A1 - Molinas-González, Carlos R. A1 - Castro, Jorge A1 - González-Megías, Adela A1 - Leverkus, Alexandro B. T1 - Effects of post-fire deadwood management on soil macroarthropod communities JF - Forests N2 - Dead wood comprises a vast amount of biological legacies that set the scene for ecological regeneration after wildfires, yet its removal is the most frequent management strategy worldwide. Soil-dwelling organisms are conspicuous, and they provide essential ecosystem functions, but their possible affection by different post-fire management strategies has so far been neglected. We analyzed the abundance, richness, and composition of belowground macroarthropod communities under two contrasting dead-wood management regimes after a large wildfire in the Sierra Nevada Natural and National Park (Southeast Spain). Two plots at different elevation were established, each containing three replicates of two experimental treatments: partial cut, where trees were cut and their branches lopped off and left over the ground, and salvage logging, where all the trees were cut, logs were piled, branches were mechanically masticated, and slash was spread on the ground. Ten years after the application of the treatments, soil cores were extracted from two types of microhabitat created by these treatments: bare-soil (in both treatments) and under-logs (in the partial cut treatment only). Soil macroarthropod assemblages were dominated by Hemiptera and Hymenoptera (mostly ants) and were more abundant and richer in the lowest plot. The differences between dead-wood treatments were most evident at the scale of management interventions: abundance and richness were lowest after salvage logging, even under similar microhabitats (bare-soil). However, there were no significant differences between microhabitat types on abundance and richness within the partial cut treatment. Higher abundance and richness in the partial cut treatment likely resulted from higher resource availability and higher plant diversity after natural regeneration. Our results suggest that belowground macroarthropod communities are sensitive to the manipulation of dead-wood legacies and that management through salvage logging could reduce soil macroarthropod recuperation compared to other treatments with less intense management even a decade after application. KW - forest fire KW - burnt-wood KW - species richness KW - soil fauna KW - post-fire management Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-193079 SN - 1999-4907 VL - 10 IS - 11 ER - TY - JOUR A1 - Mercier, Rebecca A1 - Wolmarans, Annemarie A1 - Schubert, Jonathan A1 - Neuweiler, Hannes A1 - Johnson, Jill L. A1 - LaPointe, Paul T1 - The conserved NxNNWHW motif in Aha-type co-chaperones modulates the kinetics of Hsp90 ATPase stimulation JF - Nature Communications N2 - Hsp90 is a dimeric molecular chaperone that is essential for the folding and activation of hundreds of client proteins. Co-chaperone proteins regulate the ATP-driven Hsp90 client activation cycle. Aha-type co-chaperones are the most potent stimulators of the Hsp90 ATPase activity but the relationship between ATPase regulation and in vivo activity is poorly understood. We report here that the most strongly conserved region of Aha-type co-chaperones, the N terminal NxNNWHW motif, modulates the apparent affinity of Hsp90 for nucleotide substrates. The ability of yeast Aha-type co-chaperones to act in vivo is ablated when the N terminal NxNNWHW motif is removed. This work suggests that nucleotide exchange during the Hsp90 functional cycle may be more important than rate of catalysis. KW - biophysics KW - cell growth KW - chaperones KW - enzymes Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-224007 VL - 10 ER - TY - THES A1 - Mekala, SubbaRao T1 - Generation of cardiomyocytes from vessel wall-resident stem cells T1 - Erzeugung von Kardiomyozyten aus Gefäßwand-residenten Stammzellen N2 - Myocardial infarction (MI) is a major cause of health problems and is among the leading deadly ending diseases. Accordingly, regenerating functional myocardial tissue and/or cardiac repair by stem cells is one of the most desired aims worldwide. Indeed, the human heart serves as an ideal target for regenerative intervention, because the capacity of the adult myocardium to restore itself after injury or infarct is limited. Thus, identifying new sources of tissue resident adult stem or progenitor cells with cardiovascular potential would help to establish more sophisticated therapies in order to either prevent cardiac failure or to achieve a functional repair. Ongoing research worldwide in this field is focusing on a) induced pluripotent stem (iPS) cells, b) embryonic stem (ES) cells and c) adult stem cells (e. g. mesenchymal stem cells) as well as cardiac fibroblasts or myofibroblasts. However, thus far, these efforts did not result in therapeutic strategies that were transferable into the clinical management of MI and heart failure. Hence, identifying endogenous and more cardiac-related sources of stem cells capable of differentiating into mature cardiomyocytes would open promising new therapeutic opportunities. The working hypothesis of this thesis is that the vascular wall serves as a niche for cardiogenic stem cells. In recent years, various groups have identified different types of progenitors or mesenchymal stem cell-like cells in the adventitia and sub-endothelial zone of the adult vessel wall, the so called vessel wall-resident stem cells (VW-SCs). Considering the fact that heart muscle tissue contains blood vessels in very high density, the physiological relevance of VW-SCs for the myocardium can as yet only be assumed. The aim of the present work is to study whether a subset of VW-SCs might have the capacity to differentiate into cardiomyocyte-like cells. This assumption was challenged using adult mouse aorta-derived cells cultivated in different media and treated with selected factors. The presented results reveal the generation of spontaneously beating cardiomyocyte-like cells using specific media conditions without any genetic manipulation. The cells reproducibly started beating at culture days 8-10. Further analyses revealed that in contrast to several publications reporting the Sca-1+ cells as cardiac progenitors the Sca-1- fraction of aortic wall-derived VW-SCs reproducibly delivered beating cells in culture. Similar to mature cardiomyocytes the beating cells developed sarcomeric structures indicated by the typical cross striated staining pattern upon immunofluorescence analysis detecting α-sarcomeric actinin (α-SRA) and electron microscopic analysis. These analyses also showed the formation of sarcoplasmic reticulum which serves as calcium store. Correspondingly, the aortic wall-derived beating cardiomyocyte-like cells (Ao-bCMs) exhibited calcium oscillations. This differentiation seems to be dependent on an inflammatory microenvironment since depletion of VW-SC-derived macrophages by treatment with clodronate liposomes in vitro stopped the generation of Ao bCMs. These locally generated F4/80+ macrophages exhibit high levels of VEGF (vascular endothelial growth factor). To a great majority, VW-SCs were found to be positive for VEGFR-2 and blocking this receptor also stopped the generation VW-SC-derived beating cells in vitro. Furthermore, the treatment of aortic wall-derived cells with the ß-receptor agonist isoproterenol or the antagonist propranolol resulted in a significant increase or decrease of beating frequency. Finally, fluorescently labeled aortic wall-derived cells were implanted into the developing chick embryo heart field where they became positive for α-SRA two days after implantation. The current data strongly suggest that VW-SCs resident in the vascular adventitia deliver both progenitors for an inflammatory microenvironment and beating cells. The present study identifies that the Sca-1- rather than Sca-1+ fraction of mouse aortic wall-derived cells harbors VW-SCs differentiating into cardiomyocyte-like cells and reveals an essential role of VW-SCs-derived inflammatory macrophages and VEGF-signaling in this process. Furthermore, this study demonstrates the cardiogenic capacity of aortic VW-SCs in vivo using a chimeric chick embryonic model. N2 - Der Myokardinfarkt (MI) ist einer der Hauptgründe für gesundheitliche Probleme und zählt zu einer der am häufigsten tödlich verlaufenden Krankheiten weltweit. Daher ist es nicht verwunderlich, dass die Regeneration von funktionellem Myokardgewebe und/oder die kardiale Reparatur durch Stammzellen eines der weltweit am meisten angestrebten Ziele darstellt. Das adulte menschliche Herz stellt aufgrund seiner äußerst eingeschränkten endogenen Regenerationskapazität, die bei weitem nicht ausreicht, das geschädigte Gewebe zu erneuern, ein ideales Zielorgan für regenerative Therapieverfahren dar. Folglich könnte die Identifizierung neuer Quellen adulter Stamm- oder Vorläuferzellen mit kardiovaskulärem Differenzierungspotential dabei helfen, verfeinerte Therapien zu entwickeln, um entweder kardiale Fehlfunktionen zu verhindern oder eine deutlich verbesserte myokardiale Reparatur zu erreichen. Die aktuelle weltweite Forschung auf diesem Gebiet fokussiert sich auf: a) induzierte pluripotente Stammzellen (iPS), b) embryonale Stammzellen (ES) und c) adulte Stammzellen, wie z. B. mesenchymale Stammzellen, kardiale Fibroblasten und Mesangioblasten sowie Myofibroblasten. Bisher haben jedoch alle Bemühungen noch zu keinem Durchbruch geführt, so dass die teilweise vielversprechenden experimentellen Ergebnisse nicht in die klinische Therapie des MI und der kardialen Defekte mittels Stammzellen transferiert werden können. Abgesehen davon, ob und wie stark so ein endogenes herzeigenes Potential wäre, würde die Identifizierung neuer endogener Stammzellen mit kardiogenem Potential, die genaue Charakterisierung ihrer Nischen und der Mechanismen ihrer Differenzierung einen Meilenstein in der kardioregenerativen Stammzelltherapie darstellen. Die Arbeitshypothese der hier vorgelegten Dissertation besagt, dass die Gefäßwand als Nische solcher Zellen dienen könnte. Innerhalb der letzten Jahre konnte die Adventitia und die subendotheliale Zone der adulten Gefäßwand als Nische für unterschiedliche Typen von Vorläuferzellen und multipotenten Stammzellen, die sogenannten Gefäßwand-residenten Stammzellen (VW-SCs) identifiziert werden. In Anbetracht der Tatsache, dass die Blutgefäße aufgrund ihrer hohen Dichte im Herzen eine essentielle stromale Komponente des Herzgewebes darstellen, kann die mögliche klinische Relevanz von VW-SCs für das Myokardium im Moment nur erahnt werden. Ausgehend von der Annahme, dass eine Subpopulation dieser VW-SCs die Fähigkeit besitzt, sich in Kardiomyozyten-ähnliche Zellen zu differenzieren, sollte im Rahmen dieser Dissertationsarbeit das myokardiale Potential der Gefäßwand-residenten Stammzellen aus der Aorta adulter Mäuse studiert werden, indem die Zellen unter unterschiedlichen definierten Bedingungen kultiviert und dann sowohl morphologisch als auch funktionell charakterisiert werden. Erstaunlicherweise zeigten die ersten Ergebnisse die Generierung spontan schlagender Kardiomyozyten-ähnlicher Zellen, nur durch Verwendung eines speziellen Nährmediums und ohne jegliche genetische Manipulation. Die im Rahmen dieser Arbeit durchgeführten Analysen belegen zudem, dass die Kardiomyozyten-ähnlichen Zellen reproduzierbar nach ca. 9-11 Tagen in der Kultur anfangen, spontan zu schlagen. In immunzytochemischen Analysen zeigten die schlagenden Zellen ein quergestreiftes Färbemuster für α sarkomeres Actinin. Passend dazu wiesen diese spontan schlagenden Zellen, wie reife Kardiomyozyten, Sarkomerstrukturen mit Komponenten des sarkoplasmatischen Retikulums in elektronenmikroskopischen Analysen auf. Sie zeigten dementsprechend eine mit dem spontanen Schlag assoziierte Kalzium-Oszillation. Erstaunlicherweise zeigten die hier vorgelegten Befunde erstmalig, dass es nicht die Sca-1+ (stem cell antigen-1) Zellen waren, denen seit Jahren eine kardiomyozytäre Kapazität zugeschrieben wird, sondern es waren die Sca-1- Zellen der Mausaorta, die sich zu den spontan schlagenden Zellen differenzierten. Des Weiteren scheint diese Differenzierung von einer endogen generierten inflammatorischen Mikroumgebung abhängig zu sein. Die hier vorgelegten Ergebnisse legen daher den Schluss nahe, dass die VW-SCs in der vaskulären Adventitia sowohl die inflammatorische Mikroumgebung als auch die spontan schlagenden Kardiomyozyten-ähnlichen Zellen bereitstellten. So entstanden in der Kultur aortaler Zellen unter anderem auch Makrophagen, die hohe Mengen des Gefäßwachstumsfaktors VEGF (Vascular Endothelial Growth Factor) aufweisen. Wurden die Makrophagen in der Zellkultur durch Zugabe von Clodtronat-Liposomen depletiert, so wurde damit auch die Generierung spontan schlagender Zellen aus den aortalen VW-SCs unterbunden. Um zu testen, ob und inwieweit dieser Einfluss der Makrophagen auf die Entstehung spontan schlagender Zellen aus den VW-SCs auf den VEGF zurückzuführen ist, wurden kultivierte Zellen der Mausaorta mit dem VEGF-Rezeptor-2-Blocker (E7080) behandelt. Auch diese Behandlung resultierte wie bei der Depletion von Makrophagen darin, dass keine spontan schlagenden Zellen entstanden. Um die von VW-SCs generierten spontan schlagenden Zellen funktionell zu charakterisieren, wurden die kultivierten Zellen der Mausaorta mit Isoproterenol (ß-Sympathomimetikum) und Propranolol (ß-Blocker) behandelt. Eine signifikante Steigerung der Schlagfrequenz unter Isoproterenol und eine Reduzierung bei Zugabe von Propranolol unterstreichen ebenfalls die Kardiomyozyten-ähnliche Eigenschaft der spontan schlagenden Zellen. Schließlich wurden die aus der Mausaorta isolierten Zellen Fluoreszenz-markiert und dann in das kardiale Feld des sich entwickelnden Hühnerembryos (am fünften Tag der Entwicklung) implantiert. Zwei Tage später wurden die Herzen entnommen. Immunfärbungen zeigten, dass ein Teil der implantierten Zellen auch unter diesen in vivo-Bedingungen für α-sarkomeres Actinin positiv wurde und somit einen kardiomyozytären Phänotyp aufwies. KW - vessel wall resident stem cells KW - cardiomyocytes KW - Herzmuskelzelle KW - Stammzelle Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-146046 N1 - My PhD research work has been published in Circ Res. 2018 Aug 31;123(6):686-699. ER - TY - JOUR A1 - Mayer, Alexander E. A1 - Löffler, Mona C. A1 - Loza Valdés, Angel E. A1 - Schmitz, Werner A1 - El-Merahbi, Rabih A1 - Trujillo-Viera, Jonathan A1 - Erk, Manuela A1 - Zhang, Thianzhou A1 - Braun, Ursula A1 - Heikenwalder, Mathias A1 - Leitges, Michael A1 - Schulze, Almut A1 - Sumara, Grzegorz T1 - The kinase PKD3 provides negative feedback on cholesterol and triglyceride synthesis by suppressing insulin signaling JF - Science Signaling N2 - Hepatic activation of protein kinase C (PKC) isoforms by diacylglycerol (DAG) promotes insulin resistance and contributes to the development of type 2 diabetes (T2D). The closely related protein kinase D (PKD) isoforms act as effectors for DAG and PKC. Here, we showed that PKD3 was the predominant PKD isoform expressed in hepatocytes and was activated by lipid overload. PKD3 suppressed the activity of downstream insulin effectors including the kinase AKT and mechanistic target of rapamycin complex 1 and 2 (mTORC1 and mTORC2). Hepatic deletion of PKD3 in mice improved insulin-induced glucose tolerance. However, increased insulin signaling in the absence of PKD3 promoted lipogenesis mediated by SREBP (sterol regulatory element-binding protein) and consequently increased triglyceride and cholesterol content in the livers of PKD3-deficient mice fed a high-fat diet. Conversely, hepatic-specific overexpression of a constitutively active PKD3 mutant suppressed insulin-induced signaling and caused insulin resistance. Our results indicate that PKD3 provides feedback on hepatic lipid production and suppresses insulin signaling. Therefore, manipulation of PKD3 activity could be used to decrease hepatic lipid content or improve hepatic insulin sensitivity. KW - Protein kinase D3 (PKD3) KW - cholesterol KW - diacylglycerol (DAG) KW - liver KW - metabolism Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-250025 ET - accepted manuscript ER - TY - JOUR A1 - Matos, Isa A1 - Machado, Miguel P. A1 - Schartl, Manfred A1 - Coelho, Maria Manuela T1 - Allele-specific expression variation at different ploidy levels in Squalius alburnoides JF - Scientific Reports N2 - Allopolyploid plants are long known to be subject to a homoeolog expression bias of varying degree. The same phenomenon was only much later suspected to occur also in animals based on studies of single selected genes in an allopolyploid vertebrate, the Iberian fish Squalius alburnoides. Consequently, this species became a good model for understanding the evolution of gene expression regulation in polyploid vertebrates. Here, we analyzed for the first time genome-wide allele-specific expression data from diploid and triploid hybrids of S. alburnoides and compared homoeolog expression profiles of adult livers and of juveniles. Co-expression of alleles from both parental genomic types was observed for the majority of genes, but with marked homoeolog expression bias, suggesting homoeolog specific reshaping of expression level patterns in hybrids. Complete silencing of one allele was also observed irrespective of ploidy level, but not transcriptome wide as previously speculated. Instead, it was found only in a restricted number of genes, particularly ones with functions related to mitochondria and ribosomes. This leads us to hypothesize that allelic silencing may be a way to overcome intergenomic gene expression interaction conflicts, and that homoeolog expression bias may be an important mechanism in the achievement of sustainable genomic interactions, mandatory to the success of allopolyploid systems, as in S. alburnoides. KW - Gene expression analysis KW - Transcription KW - Transcriptomic Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-200910 VL - 9 ER - TY - JOUR A1 - Mateos, Mariana A1 - Kang, Du A1 - Klopp, Christophe A1 - Parrinello, Hugues A1 - García-Olazábal, Mateo A1 - Schumer, Molly A1 - Jue, Nathaniel K. A1 - Guiguen, Yann A1 - Schartl, Manfred T1 - Draft genome assembly and annotation of the Gila Topminnow Poeciliopsis occidentalis JF - Frontiers in Ecology and Evolution N2 - No abstract available. KW - genome assembly KW - genome annotation KW - transposable elements KW - topminnow KW - mitochondrial genome Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-190339 SN - 2296-701X VL - 7 IS - 404 ER - TY - JOUR A1 - Maierhofer, Anna A1 - Flunkert, Julia A1 - Oshima, Junko A1 - Martin, George M. A1 - Poot, Martin A1 - Nanda, Indrajit A1 - Dittrich, Marcus A1 - Müller, Tobias A1 - Haaf, Thomas T1 - Epigenetic signatures of Werner syndrome occur early in life and are distinct from normal epigenetic aging processes JF - Aging Cell N2 - Werner Syndrome (WS) is an adult‐onset segmental progeroid syndrome. Bisulfite pyrosequencing of repetitive DNA families revealed comparable blood DNA methylation levels between classical (18 WRN‐mutant) or atypical WS (3 LMNA‐mutant and 3 POLD1‐mutant) patients and age‐ and sex‐matched controls. WS was not associated with either age‐related accelerated global losses of ALU, LINE1, and α‐satellite DNA methylations or gains of rDNA methylation. Single CpG methylation was analyzed with Infinium MethylationEPIC arrays. In a correspondence analysis, atypical WS samples clustered together with the controls and were clearly separated from classical WS, consistent with distinct epigenetic pathologies. In classical WS, we identified 659 differentially methylated regions (DMRs) comprising 3,656 CpG sites and 613 RefSeq genes. The top DMR was located in the HOXA4 promoter. Additional DMR genes included LMNA, POLD1, and 132 genes which have been reported to be differentially expressed in WRN‐mutant/depleted cells. DMRs were enriched in genes with molecular functions linked to transcription factor activity and sequence‐specific DNA binding to promoters transcribed by RNA polymerase II. We propose that transcriptional misregulation of downstream genes by the absence of WRN protein contributes to the variable premature aging phenotypes of WS. There were no CpG sites showing significant differences in DNA methylation changes with age between WS patients and controls. Genes with both WS‐ and age‐related methylation changes exhibited a constant offset of methylation between WRN‐mutant patients and controls across the entire analyzed age range. WS‐specific epigenetic signatures occur early in life and do not simply reflect an acceleration of normal epigenetic aging processes. KW - (classical and atypical) Werner syndrome KW - bisulfite pyrosequencing KW - methylation array KW - premature aging KW - segmental progeria KW - transcription deficiency Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202733 VL - 18 ER - TY - JOUR A1 - Lübcke, Paul M. A1 - Ebbers, Meinolf N. B. A1 - Volzke, Johann A1 - Bull, Jana A1 - Kneitz, Susanne A1 - Engelmann, Robby A1 - Lang, Hermann A1 - Kreikemeyer, Bernd A1 - Müller-Hilke, Brigitte T1 - Periodontal treatment prevents arthritis in mice and methotrexate ameliorates periodontal bone loss JF - Scientific Reports N2 - Recent studies indicate a causal relationship between the periodontal pathogen P. gingivalis and rheumatoid arthritis involving the production of autoantibodies against citrullinated peptides. We therefore postulated that therapeutic eradication P. gingivalis may ameliorate rheumatoid arthritis development and here turned to a mouse model in order to challenge our hypothesis. F1 (DBA/1 x B10.Q) mice were orally inoculated with P. gingivalis before collagen-induced arthritis was provoked. Chlorhexidine or metronidazole were orally administered either before or during the induction phase of arthritis and their effects on arthritis progression and alveolar bone loss were compared to intraperitoneally injected methotrexate. Arthritis incidence and severity were macroscopically scored and alveolar bone loss was evaluated via microcomputed tomography. Serum antibody titres against P. gingivalis were quantified by ELISA and microbial dysbiosis following oral inoculation was monitored in stool samples via microbiome analyses. Both, oral chlorhexidine and metronidazole reduced the incidence and ameliorated the severity of collagen-induced arthritis comparable to methotrexate. Likewise, all three therapies attenuated alveolar bone loss. Relative abundance of Porphyromonadaceae was increased after oral inoculation with P. gingivalis and decreased after treatment. This is the first study to describe beneficial effects of non-surgical periodontal treatment on collagen-induced arthritis in mice and suggests that mouthwash with chlorhexidine or metronidazole may also be beneficial for patients with rheumatoid arthritis and a coexisting periodontitis. Methotrexate ameliorated periodontitis in mice, further raising the possibility that methotrexate may also positively impact on the tooth supporting tissues of patients with rheumatoid arthritis. KW - rheumatic diseases KW - rheumatology Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-237355 VL - 9 ER - TY - JOUR A1 - Lyutova, Radostina A1 - Selcho, Mareike A1 - Pfeuffer, Maximilian A1 - Segebarth, Dennis A1 - Habenstein, Jens A1 - Rohwedder, Astrid A1 - Frantzmann, Felix A1 - Wegener, Christian A1 - Thum, Andreas S. A1 - Pauls, Dennis T1 - Reward signaling in a recurrent circuit of dopaminergic neurons and peptidergic Kenyon cells JF - Nature Communications N2 - Dopaminergic neurons in the brain of the Drosophila larva play a key role in mediating reward information to the mushroom bodies during appetitive olfactory learning and memory. Using optogenetic activation of Kenyon cells we provide evidence that recurrent signaling exists between Kenyon cells and dopaminergic neurons of the primary protocerebral anterior (pPAM) cluster. Optogenetic activation of Kenyon cells paired with odor stimulation is sufficient to induce appetitive memory. Simultaneous impairment of the dopaminergic pPAM neurons abolishes appetitive memory expression. Thus, we argue that dopaminergic pPAM neurons mediate reward information to the Kenyon cells, and in turn receive feedback from Kenyon cells. We further show that this feedback signaling is dependent on short neuropeptide F, but not on acetylcholine known to be important for odor-shock memories in adult flies. Our data suggest that recurrent signaling routes within the larval mushroom body circuitry may represent a mechanism subserving memory stabilization. KW - Learning and memory KW - Neural circuits Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-202161 VL - 10 ER - TY - JOUR A1 - Lu, Yuan A1 - Boswell, Wiliam A1 - Boswell, Mikki A1 - Klotz, Barbara A1 - Kneitz, Susanne A1 - Regneri, Janine A1 - Savage, Markita A1 - Mendoza, Cristina A1 - Postlethwait, John A1 - Warren, Wesley C. A1 - Schartl, Manfred A1 - Walter, Ronald B. T1 - Application of the Transcriptional Disease Signature (TDSs) to Screen Melanoma-Effective Compounds in a Small Fish Model JF - Scientific Reports N2 - Cell culture and protein target-based compound screening strategies, though broadly utilized in selecting candidate compounds, often fail to eliminate candidate compounds with non-target effects and/or safety concerns until late in the drug developmental process. Phenotype screening using intact research animals is attractive because it can help identify small molecule candidate compounds that have a high probability of proceeding to clinical use. Most FDA approved, first-in-class small molecules were identified from phenotypic screening. However, phenotypic screening using rodent models is labor intensive, low-throughput, and very expensive. As a novel alternative for small molecule screening, we have been developing gene expression disease profiles, termed the Transcriptional Disease Signature (TDS), as readout of small molecule screens for therapeutic molecules. In this concept, compounds that can reverse, or otherwise affect known disease-associated gene expression patterns in whole animals may be rapidly identified for more detailed downstream direct testing of their efficacy and mode of action. To establish proof of concept for this screening strategy, we employed a transgenic strain of a small aquarium fish, medaka (Oryzias latipes), that overexpresses the malignant melanoma driver gene xmrk, a mutant egfr gene, that is driven by a pigment cell-specific mitf promoter. In this model, melanoma develops with 100% penetrance. Using the transgenic medaka malignant melanoma model, we established a screening system that employs the NanoString nCounter platform to quantify gene expression within custom sets of TDS gene targets that we had previously shown to exhibit differential transcription among xmrk-transgenic and wild-type medaka. Compound-modulated gene expression was identified using an internet-accessible custom-built data processing pipeline. The effect of a given drug on the entire TDS profile was estimated by comparing compound-modulated genes in the TDS using an activation Z-score and Kolmogorov-Smirnov statistics. TDS gene probes were designed that target common signaling pathways that include proliferation, development, toxicity, immune function, metabolism and detoxification. These pathways may be utilized to evaluate candidate compounds for potential favorable, or unfavorable, effects on melanoma-associated gene expression. Here we present the logistics of using medaka to screen compounds, as well as, the development of a user-friendly NanoString data analysis pipeline to support feasibility of this novel TDS drug-screening strategy. KW - bioinformatics KW - phenotypic screening Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-237322 VL - 9 ER -