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- Theodor-Boveri-Institut für Biowissenschaften (94)
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- Institut für Molekulare Infektionsbiologie (24)
Sonstige beteiligte Institutionen
Mathematica ist ein hervorragendes Programm um mathematische Berechnungen – auch sehr komplexe – auf relativ einfache Art und Weise durchführen zu lassen. Dieses Skript soll eine wirklich kurze Einführung in Mathematica geben und als Nachschlagewerk einiger gängiger Anwendungen von Mathematica dienen. Dabei wird folgende Grobgliederung verwendet: - Grundlagen: Graphische Oberfläche, einfache Berechnungen, Formeleingabe - Bedienung: Vorstellung einiger Kommandos und Einblick in die Funktionsweise - Praxis: Beispielhafte Berechnung einiger Abitur- und Übungsaufgaben
Lebensqualität bei Fabry-Patienten: Erhebung mit dem SF-36®Fragebogen Elisabeth Blohm Hintergrund: Der Morbus Fabry ist eine X-chromosomal vererbte, lysosomale Speichererkrankung bedingt durch den Mangel an dem Enzym α-Galaktosidase A. Die gesundheitsbezogene Lebensqualität von Fabry-Patienten ist im Vergleich zur Normalbevölkerung oder Patienten anderer chronischer Erkrankungen sowohl bei physischen als auch psychischen Aspekten reduziert. Es ist bekannt, dass für den Morbus Fabry typische Symptome, wie Schmerzen oder Dysfunktionen lebenswichtiger Organe, wie Herz- und Niereninsuffizienz, sowie frühzeitige Schlaganfälle zu einer signifikant verringerten gesundheitsbezogenen Lebensqualität beitragen. Fragestellung: Ziel dieser Arbeit war es, mit Hilfe des SF-36-Fragebogens die gesundheitsbezogene Lebensqualität einer großen Kohorte von Fabry-Patienten zum Zeitpunkt der ersten Vorstellung in einem spezialisierten Fabry Zentrum zu ermitteln. Gleichzeitig sollten begleitende Faktoren identifiziert werden, die mit den verschiedenen Dimensionen der psychischen und physischen Funktionsfähigkeit assoziiert sind. Dabei legten wir einen Schwerpunkt auf die Nierenfunktion. Methoden: Es wurden 99 Patienten mit Morbus Fabry eingeschlossen. Wir untersuchten die Daten des ersten Besuchs in unserem Fabry-Zentrum. Die Patientencharakteristika der Studienteilnehmer und die verschiedenen Skalen der HRQoL wurden über die CKD-Stadien unter Verwendung von ANOVA, Kruskal-Wallis-Test, χ²-Test und Fisher’s-exact-Test verglichen. Die mit den verschiedenen Dimensionen der HRQoL assoziierten Faktoren wurden mittels einer linearen Regressionsanalyse untersucht. Im multivariaten Modell wurden die folgenden Variablen in das Modell aufgenommen: Alter, Geschlecht, Nierenfunktion, Schmerzen, Schmerztherapie und vaskuläres Ereignis. Ergebnisse: Die meisten Patienten, besonders die meisten Frauen, hatten eine erhaltene Nierenfunktion, wohingegen Patienten mit eingeschränkter Nierenfunktion mit höherer Wahrscheinlichkeit männlich waren. Alle Patienten, die einer RRT erhielten, waren männlich; zwei von ihnen erhielten eine Nierentransplantation, sieben waren unter Dialyse. Eine eingeschränkte Nierenfunktion, besonders die Notwendigkeit einer RRT war über allen Skalen mit einer deutlichen Reduktion der HRQoL assoziiert. Desweiteren waren männliches Geschlecht, Schmerzen und Schmerztheapie signifikant und deutlich mit niedrigeren Werten in den SF-36-Skalen assoziiert. Im multivariaten Modell stellten sich eine eingeschränkte Nierenfunktion und Schmerzen als die Hauptfaktoren für reduzierte Werte in den physikalischen Kategorien heraus (körperliche Funktionsfähigkeit, körperliche Rollenfunktion, körperliche Schmerzen, allgemeine Gesundheitswahrnehmung und körperlicher Summenwert). Im Gegensatz dazu stellte sich heraus, dass die Notwendigkeit einer RRT mit reduzierter HRQoL in den psychischen und sozialen Kategorien assoziiert war. Schlussfolgerung: In dieser großen Kohorte von Fabry-Patienten aus einem Zentrum war die chronische Nierenerkrankung, besonders die Notwendigkeit einer RRT, ein entscheidender Faktor mir eine reduzierte HRQoL in physischen und psychisch/sozialen Aspekten des Lebens. Außerdem hatten Schmerzen eine unabhängige Beziehung mit niedrigeren Werten der physischen Skalen. Neben der Enzymersatztherapie könnten eine optimale Behandlung der Nierenerkrankung, sowie eine effektive Schmerztherapie helfen, die HRQoL von Fabry-Patienten zu verbessern.
Das Ziel dieser Arbeit war in erster Linie die Untersuchung von follikulären Adnextumoren hinsichtlich ihrer Gefäßdichten. Hier sollte beurteilt werden, inwiefern die Zahl der Gefäße eine Bedeutung für Diagnostik, Prognose und Einteilung der trichogenen Tumoren hat. Darüber hinaus sollten die erhobenen klinischen Daten der Patienten verglichen werden und der diagnostische Wert einiger immunhistologischer Unterscheidungsmöglichkeiten besprochen werden. Aus dem Archiv der Universitäts-Hautklinik Würzburg der Jahre 2000 bis 2008 wurden 112 Präparate entnommen, darunter 35 solide und 15 sklerodermiforme Basalzellkarzinome, 17 Pinkus-Tumoren, 20 Trichoblastome, elf Trichoepitheliome, sechs desmoplastische Trichoepitheliome und acht Trichofollikulome. Es erfolgte eine immunhistochemische Färbung mit dem Antikörper CD31 und eine Zählung der Gefäße bei 200facher Vergrößerung. Das durchschnittliche Alter der Patienten mit solidem Basalzellkarzinom lag bei 75,1 Jahren, mit sklerodermiformem bei 76,1 Jahren. Die Pinkus-Tumoren wurden mit 60,6 Jahren entfernt, die Trichoblastome mit 57,0, die Trichofollikulome mit 56,4, die Trichoepitheliome mit 46,7 und die desmoplastischen Trichoepitheliome mit 47,2 Jahren. Bei den soliden bzw. sklerodermiformen Basalzellkarzinomen überwog der Männeranteil mit 57,1% bzw. 73,3%, bei den Trichoblastomen sogar mit 75,0%. Bei den Pinkus-Tumoren waren dagegen 70,6% der Patienten weiblichen Geschlechts, bei den Trichofollikulomen 87,5%, bei den Trichoepitheliomen 72,7% und bei den desmoplastischen Trichoepitheliomen 83,3%. Die häufigste Lokalisation der soliden und sklerodermiformen Basalzellkarzinome war mit 65,7% und 86,7% das Gesicht, wie auch bei Trichofollikulomen (75,0%), Trichoepiteliomen (72,7%) und desmoplastischen Trichoepitheliomen (83,3%). Trichoblastome traten zu 65,0% am Kopf und zu 35,0% an Rumpf und Extremitäten auf, wo sich alle Pinkus-Tumoren befanden. Die durchschnittliche Gefäßdichte für alle Tumoren beträgt peritumoral 19,9, im Tumor 3,1 und im Gesunden 8,8. Die Werte im tumorfreien Gewebe bewegen sich, für die einzelnen Tumoren aufgeschlüsselt, in einem engen Rahmen zwischen 7,1 und 10,4. Die soliden Basazellkarzinome und die Trichoblastome haben im Tumor selbst durchschnittlich nur 1,5 bzw. 1,7 Gefäße pro Gesichtsfeld, Trichofollikulome 2,8, Pinkus-Tumoren 3,4, Trichoepitheliome 4,5, sklerodermiforme Basalzellkarzinome 5,5 und desmoplastische Trichoepitheliome sogar 7,3. Für die Gefäßdichte im peritumoralen Gewebe lässt sich ein signifikanter Unterschied erkennen zwischen den soliden und sklerodermiformen Basalzellkarzinomen mit 24,7 bzw. 24,1 auf der einen Seite und den Trichoblastomen (15,3), Trichofollikulomen (14,5), Trichoepitheliomen (14,3) und desmoplastischen Trichoepitheliomen (13,1) auf der anderen Seite. Die Pinkus-Tumoren stehen mit einem Wert von 19,7 zwischen den beiden Gruppen. Bis auf kleinere Abweichungen stimmen die klinischen Daten mit Angaben in der Literatur überein, so dass davon ausgegangen werden kann, dass die ausgewählten Tumoren die Entitäten gut repräsentieren. Als Unterscheidungsmöglichkeiten, die die Immunhistologie bietet, sind in erster Linie der Androgen-Rezeptor und die Merkel-Zellen zu nennen. Basalzellkarzinome sind positiv für den Androgen-Rezeptor und negativ für Merkel-Zellen, während bei den benignen trichogenen Tumoren dieses Verhältnis genau umgekehrt ist. CD10, CD34 und bcl-2 hingegen scheinen die Tumoren nur sehr unsicher voneinander zu trennen. Die Expression der Zytokeratine weist sogar auf einen gemeinsamen Entwicklungsweg der Tumoren hin. Die Pinkus-Tumoren sind sowohl positiv für Androgen-Rezeptoren als auch für Merkel-Zellen und stehen somit zwischen den Basalzellkarzinomen und den benignen follikulären Adnextumoren. Die Gefäßdichte liegt peritumoral deutlich höher als im gesunden Gewebe und spiegelt damit wider, dass Tumoren eine bessere Gefäßversorgung für ihr Wachstum benötigen als normalerweise in der Haut vorhanden. Im Tumor selbst geht ein solides Wachstumsmuster mit wenigen Gefäßen und ein Wachstum in schmalen Strängen mit mehr Gefäßen einher. Peritumoral zeigen die Basalzellkarzinome entsprechend ihrem malignen Potential eine signifikant höhere Gefäßdichte als die benignen Tumoren. Daraus lässt sich ableiten, dass die Gefäßdichte das biologische Verhalten der Tumoren zeigt und damit, zusammen mit anderen Faktoren, zu Diagnostik und Prognose herangezogen werden kann. Auch hinsichtlich der Gefäßdichte zeigen die Pinkus-Tumoren kein eindeutiges Verhalten und lassen sich weder den Basalzellkarzinomen noch den benignen trichogenen Tumoren zuordnen. Während die sonstigen Ergebnisse das Konzept von Ackerman bezüglich der Einteilung der Tumoren in Trichoblastom und trichoblastisches Karzinom (Basalzellkarzinom) stützen, betont dies einmal mehr die Zwischenstellung der Pinkus-Tumoren.
Die Biosynthese von fragmentierten Fettsäuren (kurzkettige Dicarbonsäuren und deren Oxocarbonsäure-Vorstufen) ist in den meisten Pflanzen noch unklar. Wichtige, bekannte Dicarbonsäuren sind Pimelinsäure (PIM) und Azelainsäure (AZA) mit den putativen Vorstufen 7-Oxo¬heptanonsäure (OHA) und 9-Oxononanonsäure (ONA). Es besteht großes Interesse die Biosynthese¬mechanismen und die Regulation der Synthese dieser Substanzen aufzuklären, da Fettsäure¬fragmente an wichtigen biologischen Prozessen beteiligt sind. PIM ist eine essentielle Vorstufe von Biotin in Mikroben, Pilzen und Pflanzen. Bisher konnte die Biosynthese von PIM nur in Bakterien (E. coli und B. subtilis) aufgeklärt werden. Es gibt keine Hinweise auf einen analogen Mechanismus in Pflanzen. Eine biologische Aktivität von AZA bei Pflanzen konnte erst vor kurzem beschrieben werden. Eine Forschergruppe identifizierte AZA als Metabolit, der nach Infektion mit dem Pathogen Pseudomonas syringae vermehrt im Phloemsaft von Arabidopsis vorhanden ist und der in Pflanzen eine lokale und systemische Resistenz gegenüber dem Pathogen induziert. In Tieren sind Fettsäurefragmente ebenfalls Gegenstand aktueller Forschung. Es ist bekannt, dass eine nichtenzymatische oxidative Fragmentierung von Fettsäurehydroperoxiden in komplexen Membranlipiden als Folge von oxidativem Stress abläuft. Phospholipide mit veresterter ONA / AZA spielen aufgrund ihrer Struktur eine Rolle als endogene Liganden bei Reaktionen des angeborenen Immunsystems. Ziel dieser Arbeit war es, die Mechanismen der Oxidation von Fettsäuren und deren Fragmentierung in Pflanzen aufzuklären. Weiterhin sollte die Rolle der oxidierten Fragmente in der Immunantwort der Modellpflanze Arabidopsis thaliana untersucht werden. In Pflanzen wurden fragmentierte Fettsäuren im Rahmen dieser Arbeit erstmals in komplexen Lipiden identifiziert und verschiedene Hypothesen zur Bildung von Fettsäurefragmenten experimentell überprüft. Es konnte gezeigt werden, dass die Biosynthese der Fettsäurefragmente in A. thaliana ausgehend von zwei- oder dreifach ungesättigten Fettsäuren stattfindet. 9- und 13-Lipoxygenasen (LOX1, LOX5 und LOX2) spielen dabei keine essentielle Rolle. Die Fettsäurefragmente konnten in Arabidopsis in freier Form und in komplexen Lipiden verestert (ausschließlich in Galactolipiden) detektiert werden. Applikationsexperimente zeigten, dass die Biosynthese der Fettsäurefragmente in den komplexen Lipiden auf nichtenzymatischem Wege in situ stattfindet. Dabei wird in Übereinstimmung mit den experimentellen in vitro und in vivo Daten als Reaktionsmechanismus die Dimer-Hypothese der Arbeitsgruppe um Alan Brash vorgeschlagen. In grünen Pflanzenteilen verläuft die Biosynthese demzufolge in drei Schritten ab: Im ersten Schritt entsteht ein „Pool“ von oxidierten Galactolipiden mit Hydroperoxid-Acylketten (mit konjugierten Dienen). Diese Hydroperoxide entstehen fortlaufend durch Oxidation der Fettsäureacyle mittels Singulett Sauerstoff in Plastiden. Nach Infektion mit dem Pathogen P. syringae (avirulenter Stamm) wird der „Pool“ von Galactolipidperoxiden durch die katalytische Einwirkung von freien Radikalen und der LOX2 erhöht. Im zweiten Schritt findet eine Radikal-katalysierte Addition von Peroxylradikalen an Fettsäurehydroperoxide statt, wobei Lipid-Peroxid-Dimere gebildet werden. Diese instabilen Zwischenprodukte zerfallen spontan in vier Produkte, darunter zwei Aldehyd-Fragmente, ein Alkoxyradikal und ein Hydroxylradikal. Bemerkenswert ist, dass durch die Fragmentierung des Dimers weitere Radikale de novo entstehen. Im dritten Schritt können die in Galactolipiden veresterten Oxocarbonsäuren zu Dicarbonsäuren oxidiert werden. Hydroperoxide, die Vorläufer der Fettsäurefragmente, wurden in freier Form und in komplexen Lipiden verestert analysiert. Unter basalen Bedingungen liegt sowohl bei den freien, als auch bei den veresterten Hydroxyfettsäuren ein fast komplett Singulett Sauerstoff abhängiger Oxidationsmechanismus vor. Drei Galactolipid Hauptspezies (Monogalactosyldiacylglycerol (MGDG)-18:3-16:3, Digalactosyldiacylglycerol (DGDG)-18:3-18:3 und DGDG-18:3-16:3) sind hoch oxidiert (5 bis 9 Mol-%, relativ zur jeweiligen Vorstufe). MGDG-18:3-18:3, ebenso wie Phosphatidylglycerol-, Phosphatidylinositol- und Triacylglycerol-Hydroxyfettsäurespezies liegen basal nur schwach oxidiert vor (< 2 Mol-%). Nach Infektion mit dem Pathogen P. syringae kommt es zu einer massiven Lipid Biosynthese und Oxidation durch die 13-Lipoxygenase LOX2, Singulett Sauerstoff und freie Radikale. Der Oxidationsgrad der Hydroxyfettsäuren in den Galactolipiden ändert sich kaum. Innerhalb der Triacylglycerole kommt es zu einem großen Anstieg der oxidierten Spezies (auf 12 bis 38 Mol-%). Die Oxidation und Fragmentierung der Fettsäuren in den Galactolipiden unter basalen Bedingungen und induziert durch die Pathogenbehandlung, stellen einen wichtigen biochemischen Prozess dar, auf dem PIM und AZA entstehen.
Malaria and HIV are among the most important global health problems of our time and together are responsible for approximately 3 million deaths annually. These two diseases overlap in many regions of the world including sub-Saharan Africa, Southeast Asia and South America, leading to a higher risk of co-infection. In this study, we generated and characterized hybrid molecules to target P. falciparum and HIV simultaneously for a potential HIV/malaria combination therapy. Hybrid molecules were synthesized by covalent fusion between azidothymidine (AZT) and dihydroartemisinin (DHA), tetraoxane or chloroquine (CQ); and a small library was generated and tested for antiviral and antimalarial activity. Our data suggest that dihyate is the most potent molecule in vitro, with antiplasmodial activity comparable to that of DHA (IC50 = 26 nM, SI > 3000), a moderate activity against HIV (IC50 = 2.9 µM; SI > 35) and safe to HeLa cells at concentrations used in the assay (CC50 > 100 µM). Pharmacokinetic studies further revealed that dihyate is metabolically unstable and is cleaved following an O-dealkylation once in contact with cytochrome P450 enzymes. The later further explains the uneffectiveness of dihyate against the CQ-sensitive P. berghei N strain in mice when administered by oral route at 20 mg/kg. Here, we report on a first approach to develop antimalarial/anti-HIV hybrid molecules and future optimization efforts will aim at producing second generation hybrid molecules to improve activity against HIV as well as compound bioavailability. With the emergence of resistant parasites against all the counterpart drugs of artemisinin derivatives used in artemisinin based combination therapies (ACTs), the introduction of antibiotics in the treatment of malaria has renewed interest on the identification of antibiotics with potent antimalarial properties. In this study we also investigated the antiplasmodial potential of thiostrepton and derivatives, synthesized using combinations of tail truncation, oxidation, and addition of lipophilic thiols to the terminal dehydroamino acid. We showed that derivatives SS231 and SS234 exhibit a better antiplasmodial activity (IC50 = 1 µM SI > 59 and SI > 77 respectively) than thiostrepton (IC50 = 8.95 µM, SI = 1.7). The antiplasmodial activity of these derivatives was observed at concentrations which are not hemolytic and non-toxic to human cell lines. Thiostrepton and derivatives appeared to exhibit transmission blocking properties when administered at their IC50 or IC90 concentrations and our data also showed that they attenuate proteasome activity of Plasmodium, which resulted in an accumulation of ubiquitinated proteins after incubation with their IC80 concentrations. Our results indicate that the parasite’s proteasome could be an attractive target for therapeutic intervention. In this regard, thiostrepton derivatives are promising candidates by dually acting on two independent targets, the proteasome and the apicoplast, with the capacity to eliminate both intraerythrocytic asexual and transmission stages of the parasite. To further support our findings, we evaluated the activity of a new class of antimalarial and proteasome inhibitors namely peptidyl sulfonyl fluorides on gametocyte maturation and analogues AJ34 and AJ38 were able to completely suppress gametocytogenesis at IC50 concentrations (0.23 µM and 0.17 µM respectively) suggesting a strong transmission blocking potential. The proteasome, a major proteolytic complex, responsible for the degradation and re-cycling of non-functional proteins has been studied only indirectly in P. falciparum. In addition, an apparent proteasome-like protein with similarity to bacterial ClpQ/hslV threonine-peptidases was predicted in the parasite. Antibodies were generated against the proteasome subunits alpha type 5 (α5-SU), beta type 5 (β5-SU) and pfhslV in mice and we showed that the proteasome is expressed in both sexual and asexual blood stages of P. falciparum, where they localize in the nucleus and in the cytoplasm. However, expression of PfhslV was only observed in trophozoites and shizonts. The trafficking of the studied proteasome subunits was further investigated by generating parasites expressing GFP tagged proteins. The expression of α5-SU-GFP in transgenic parasite appeared to localize abundantly in the cytoplasm of all blood stages, and no additional information was obtained from this parasite line. In conclusion, our data highlight two new tools towards combination therapy. Hybrid molecules represent promising tools for the cure of co-infected individuals, while very potent antibiotics with a wide scope of activities could be useful in ACTs by eliminating resistant parasites and limiting transmission of both, resistances and disease.
Eine Reihe von Acetylen-verknüpften Perylenbisimid(PBI)-Makrozyklen mit unterschiedlicher Ringgröße wurde durch Palladium-katalysierte Homokupplung synthetisiert und mit Hilfe von Recycling-GPC getrennt. Diese Makrozyklen wurden durch NMR-Spektroskopie und Massenspektrometrie charakterisiert und weiterhin die photophysikalischen Eigenschaften durch UV/Vis-Absorptions- und Fluoreszenzemissions-Messungen untersucht. Die Selbstorganisation dieser PBI-Makrozyklen zu hochgeordneten Nanostrukturen auf HOPG-Oberflächen wurde mittels Rasterkraftmikroskopie untersucht.
Fumonisin B1 (FB1) is a mycotoxin produced by various Fusarium species and constitutes a major contaminant of maize worldwide. A 2-year carcinogenicity study of the National Toxicology Program (NTP) in Fischer N344 rats showed that male rats were most susceptible to FB1-induced tumor formation in the kidney. Histopathologically, a rare and highly malignant tumor type originating from the proximal tubules of rat kidney with increased potential for invasion and metastasis was identified. However, mechanisms underlying the FB1-induced carcinogenesis in kidneys of male rats are still not clear. Previous studies have shown that FB1-mediated disruption of sphingolipid metabolism via inhibition of ceramide synthase is a primary key event in FB1 toxicity. The disruption of sphingolipid metabolism may cause time- and dose-related changes in the relative balance of various bioactive intermediates. Furthermore, the ability of FB1 to induce renal cell death and subsequent compensatory cell proliferation is well known, but it does not completely explain the invasive growth characteristics and exceptionally high metastatic potential of FB1-induced tumors. Considering the complexity of sphingolipid metabolism and the fact that various sphingolipids (e.g. ceramide, sphingoid bases and their respective 1-phosphates) act on opposing signaling pathways, it is hypothesized that the balance between individual sphingolipids and thus the overall cellular response to FB1 may shift with time and by continuing FB1 exposure, resulting in the disruption of specific cell signaling pathways, which may promote tumor formation in kidney. To identify early FB1-induced gene expression patterns in the kidney, which may be associated with sphingolipid-mediated signaling pathways in cancer, a short-term i.p. study on FB1 in male Sprague Dawley rats was performed and changes in gene expression were analyzed using a qRT-PCR array that comprises 84 relevant genes of 6 pathways pivotally involved in the formation of cancer. Furthermore, apoptosis and cell proliferation as well as changes in specific sphingolipids were investigated in FB1-treated kidneys. As shown by classical histopathology (H&E) and (immuno)-histochemical staining (TUNEL and BrdU), FB1 caused a time- and dose-dependent increase in tubular apoptosis in the cortex and OSOM of the kidney, which was compensated by the induction of proliferation in the affected areas. HPLC-MS/MS analysis of bioactive sphingolipids demonstrated that FB1 induced a marked elevation of the pro-apoptotic sphingoid bases sphinganine and sphingosine, which paralleled the time- and dose-dependent increase in renal tubular apoptosis. With prolonged exposure to FB1, increased metabolic conversion of the accumulated sphinganine to the sphinganine-1-phosphate, a second messenger with anti-apoptotic and proliferative properties, was observed in kidney. This finding was compliant with the increased regenerative cell proliferation in the cortex and OSOM. In addition to effects on sphingoid bases and their 1-phosphate metabolites, this study, for the first time, demonstrated reduced levels of specific ceramides in rat kidney after FB1 exposure. In particular, C16-ceramide, which is a widespread constituent of membrane-bound complex sphingolipids involved in cell adhesion, was time- and dose-dependently decreased after treatment with FB1. Besides its role as component of the cell membrane, C16-ceramide functions as a signaling molecule for the initiation of apoptosis in response to various stress stimuli. Under conditions of chronic FB1 exposure, a significant reduction in pro-apoptotic C16-ceramide together with markedly increased levels of anti-apoptotic and proliferation-promoting sphingoid base 1-phosphates may thus favor resistance to stress-induced apoptosis and facilitate the survival of abnormal cells with potential to initiate tumor formation. Our study also revealed that early exposure to FB1 resulted in increased expression of a plethora of genes involved in tumor initiation as well as tumor progression. While single FB1 exposure was demonstrated to predominately induce gene expression of proto-oncogenic transcription factors (e.g. Fos, Jun, Myc) and apoptotis-related genes (e.g. members of the tumor-necrosis factor family), repeated exposure resulted in marked upregulation of genes mediating cell survival and cell proliferation (e.g. Bcl-XL, Bcl-2, Nfκb1 and Egfr). Moreover, continued exposure to FB1 initiated increased expression of genes critically involved in tumor migration, adhesion, invasion and metastasis. A close correlation was established between gene expression changes in response to FB1 and known signaling pathways mediated by extracellular or intracellular action of sphingoid base 1-phosphates - bioactive lipids that were markedly increased after FB1 treatment. In particular, genes encoding components of the plasminogen activator system were abundantly upregulated. These mediate invasion and metastasis in response to So1P, and may hence particularly promote the formation of highly aggressive and invasive tumors in kidney as observed after chronic exposure to FB1. Thus, it is conceivable that upregulation of a majority of genes in response to FB1 may be a direct or indirect consequence of increased So1P signaling. Another aim of this study was to identify differences in the organ-specific susceptibility for tumor formation by comparing FB1-mediated effects on apoptosis, cell proliferation, sphingolipids, and selected cancer-related genes in kidney and liver. Collectively, the present results revealed that kidney and liver showed marked differences in several endpoints of FB1 toxicity, which seemed to be primarily associated with their different susceptibility to FB1-mediated alterations in sphingolipid metabolism. The strong correlation between histopathological lesions and alterations in sphingolipid metabolism as well as sphingoid base 1-phosphate accumulation and concomitant S1P receptor expression suggested that tumor formation and progression to highly malignant carcinomas seems to be rather favored in kidney compared to liver. However, genes mostly deregulated by FB1 treatment in kidney (PAI-1, Thbs1 and Itga2) were also found to be induced in liver. To verify FB1-induced gene expression in kidney, normal rat tubular epithelial (NRK-52E) cells were analyzed for FB1-induced expression changes of the same cancer-related genes as in vivo. The results of qRT-PCR analysis revealed that gene expression changes in NRK-52E cells after FB1 treatment strongly correlated with those found in rat kidney and paralleled the marked alterations in sphingolipid metabolism. Furthermore, a good correlation between FB1-induced expression changes of cancer-related genes obtained in vivo and in vitro and those known to be mediated by bioactive sphingoid base 1-phosphates in cancer was established. Moreover, experiments modeling the invasive behavior of NRK-52E cells showed that FB1 may enhance cell invasion, which also correlated with both the increase in invasion- and metastasis-associated genes and bioactive sphingoid base 1-phophates. Importantly, NRK-52E cells basally expressed the S1P receptors S1P2 and S1P3, which are known to be involved in tumor migration and invasion. Since these receptors were also identified as most abundant S1PRs in kidneys of male Sprague Dawley rats, they may present important mediators of gene expression and invasion in response to FB1 in vivo. In summary, FB1-mediated disruption of sphingolipid metabolism and subsequent time- and dose-related increase in intermediates, such as bioactive sphingoid base 1-phosphates, correlate with early changes in genes and signaling pathways that may mediate loss of growth control, replication, evasion of apoptosis, cell motility and invasion, and thus favor renal tumor formation in response to FB1. However, to clarify whether the obtained gene expression changes in cancer-related genes in kidney are specific to the biological action of sphingoid base 1-phosphates and their respective receptors, further mechanistic studies are necessary.
Most protein-encoding genes in Eukaryotes are separated into alternating coding and non-coding sequences (exons and introns). Following the transcription of the DNA into pre-messenger RNA (pre-mRNA) in the nucleus, a macromolecular complex termed spliceosome removes the introns and joins the exons to generate mature mRNA that is exported to the cytoplasm. There, it can be interpreted by ribosomes to generate proteins. The spliceosome consists of five small nuclear ribonucleic acids (snRNAs) and more than 150 proteins. Integral components of this complex are RNA-protein particles (RNPs) composed of one or two snRNAs, seven common (Sm) and a various number of snRNP-specific proteins. The Sm proteins form a ring-structure around a conserved site of the snRNA called Sm site. In vitro, Sm proteins (B/B', D1, D2, D3, E, F, G) and snRNA readily assemble to form snRNPs. In the context of the cell, however, two macromolecular trans-acting factors, the PRMT5 (protein arginine methyltransferases type 5) and the SMN (survival motor neuron) complex, are needed to enable this process. Initially, the Sm proteins in the form of heterooligomers D1/D2, D3/B and F/E/G are sequestered by the type II methyltransferase PRMT5. pICln, a component of the PRMT5 complex, readily interacts with Sm proteins to form two distinct complexes. Whereas the first one comprises pICln and D3/B the second one forms a ring consisting of pICln, D1/D2 and F/E/G (6S). It has been found that pICln prevents the premature interaction of snRNAs with the Sm proteins in these complexes and thus functions as an assembly chaperone imposing a kinetic trap upon the further assembly of snRNPs. PRMT5 catalyzes the symmetrical dimethylation of arginine residues in B/B', D1 and D3 increasing their affinity towards the SMN complex. Finally, the SMN complex interacts with the pICln-Sm protein complexes, expels pICln and mediates snRNP assembly in an ATP-dependent reaction. So far, only little is known about the action of PRMT5 in the early phase of snRNP assembly and especially how the 6S complex is formed. Studies of this have so far been hampered by the unavailability of soluble and biologically active PRMT5 enzyme. The composition of the SMN complex and possible functions of individual subunits have been elucidated or hypothesized in recent years. Still, the exact mechanism of the entire machinery forming snRNPs is poorly understood. In vivo, reduced production of functional SMN protein results in the neurodegenerative disease spinal muscular atrophy (SMA). How specific SMN mutations that have been found in SMA patients cause the disease remains elusive, yet, are likely to interfere with either SMN complex stability or snRNP assembly. The aim of this work was to establish an in vitro system to recapitulate the cytoplasmic assembly of snRNPs. This was enabled by the recombinant production of all PRMT5 and SMN complex components as well as Sm proteins in a combination of bacterial and insect cell expression systems. Co-expression of human PRMT5 and its direct interaction partner WD45 (WD-repeat domain 45) in Sf21 (Spodoptera frugiperda 21) insect cells resulted for the first time in soluble and biologically active enzyme. Recombinant PRMT5/WD45 formed complexes with Sm protein heterooligomers as well as pICln-Sm protein complexes but not with F/E/G alone. Also, the enzyme exhibited a type II methyltransferase activity catalyzing the mono- (MMA) and symmetrical dimethylation (sDMA) of Sm proteins B, D1 and D3. Two experimental setups were devised to quantitatively analyze the overall methylation of substrates as well as to identify the type and relative abundance of specific methylation types. Methylation of Sm proteins followed Michaelis-Menten kinetics. Complex reconstitutions and competition of the methylation reaction indicate that 6S is formed in a step-wise manner on the PRMT5 complex. The analysis of the methylation type could be applied to deduce a model of sequential MMA and sDMA formation. It was found that large Sm protein substrate concentrations favored monomethylation. Following a distributive mechanism this leads to the conclusion that PRMT5 most likely confers partial methylation of several different substrate proteins instead of processing a single substrate iteratively until it is completely dimethylated. Finally, the human SMN complex was reconstituted from recombinant sources and was shown to be active in snRNP formation. The introduction of a modified SMN protein carrying a mutation (E134K) present in spinal muscular atrophy (SMA) proved that mutated complexes can be generated in vitro and that these might be applied to elucidate the molecular etiology of this devastating disease.