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Dynamic interactions and their changes are at the forefront of current research in bioinformatics and systems biology. This thesis focusses on two particular dynamic aspects of cellular adaptation: miRNA and metabolites.
miRNAs have an established role in hematopoiesis and megakaryocytopoiesis, and platelet miRNAs have potential as tools for understanding basic mechanisms of platelet function. The thesis highlights the possible role of miRNAs in regulating protein translation in platelet lifespan with relevance to platelet apoptosis and identifying involved pathways and potential key regulatory molecules. Furthermore, corresponding miRNA/target mRNAs in murine platelets are identified. Moreover, key miRNAs involved in aortic aneurysm are predicted by similar techniques. The clinical relevance of miRNAs as biomarkers, targets, resulting later translational therapeutics, and tissue specific restrictors of genes expression in cardiovascular diseases is also discussed.
In a second part of thesis we highlight the importance of scientific software solution development in metabolic modelling and how it can be helpful in bioinformatics tool development along with software feature analysis such as performed on metabolic flux analysis applications. We proposed the “Butterfly” approach to implement efficiently scientific software programming. Using this approach, software applications were developed for quantitative Metabolic Flux Analysis and efficient Mass Isotopomer Distribution Analysis (MIDA) in metabolic modelling as well as for data management. “LS-MIDA” allows easy and efficient MIDA analysis and, with a more powerful algorithm and database, the software “Isotopo” allows efficient analysis of metabolic flows, for instance in pathogenic bacteria (Salmonella, Listeria). All three approaches have been published (see Appendices).
MiRNAs are important epigenetic players with tissue- and disease-specific effects. In this study, our aim was to investigate the putative differential expression of miRNAs in adrenal tissues from different forms of Cushing's syndrome (CS). For this, miRNA-based next-generation sequencing was performed in adrenal tissues taken from patients with ACTH-independent cortisol-producing adrenocortical adenomas (CPA), from patients with ACTH-dependent pituitary Cushing's disease (CD) after bilateral adrenalectomy, and from control subjects. A confirmatory QPCR was also performed in adrenals from patients with other CS subtypes, such as primary bilateral macronodular hyperplasia and ectopic CS. Sequencing revealed significant differences in the miRNA profiles of CD and CPA. QPCR revealed the upregulated expression of miR-1247-5p in CPA and PBMAH (log2 fold change > 2.5, p < 0.05). MiR-379-5p was found to be upregulated in PBMAH and CD (log2 fold change > 1.8, p < 0.05). Analyses of miR-1247-5p and miR-379-5p expression in the adrenals of mice which had been exposed to short-term ACTH stimulation showed no influence on the adrenal miRNA expression profiles. For miRNA-specific target prediction, RNA-seq data from the adrenals of CPA, PBMAH, and control samples were analyzed with different bioinformatic platforms. The analyses revealed that both miR-1247-5p and miR-379-5p target specific genes in the WNT signaling pathway. In conclusion, this study identified distinct adrenal miRNAs as being associated with CS subtypes.
Context
Cushing’s syndrome (CS) is a rare disease of endogenous hypercortisolism associated with high morbidity and mortality. Diagnosis and classification of CS is still challenging.
Objective
Circulating microRNAs (miRNAs) are minimally invasive diagnostic markers. Our aim was to characterize the circulating miRNA profiles of CS patients and to identify distinct profiles between the two major CS subtypes.
Methods
We included three groups of patients from the German Cushing’s registry: ACTH-independent CS (Cortisol-Producing-Adenoma; CPA), ACTH-dependent pituitary CS (Cushing’s Disease; CD), and patients in whom CS had been ruled out (controls). Profiling of miRNAs was performed by next-generation-sequencing (NGS) in serum samples of 15 CS patients (each before and after curative surgery) and 10 controls. Significant miRNAs were first validated by qPCR in the discovery cohort and then in an independent validation cohort of 20 CS patients and 11 controls.
Results
NGS identified 411 circulating miRNAs. Differential expression of 14 miRNAs were found in the pre- and postoperative groups. qPCR in the discovery cohort validated 5 of the significant miRNAs from the preoperative group analyses. Only, miR-182-5p was found to be significantly upregulated in the CD group of the validation cohort. Comparing all CS samples as a group with the controls did not reveal any significant differences in expression.
Outcome
In conclusion, our study identified miR-182-5p as a possible biomarker for CD, which has to be validated in a prospective cohort. Furthermore, our results suggest that presence or absence of ACTH might be at least as relevant for miRNA expression as hypercortisolism itself.
Background
Renal cell carcinoma (RCC) is marked by high mortality rate. To date, no robust risk stratification by clinical or molecular prognosticators of cancer-specific survival (CSS) has been established for early stages. Transcriptional profiling of small non-coding RNA gene products (miRNAs) seems promising for prognostic stratification. The expression of miR-21 and miR-126 was analysed in a large cohort of RCC patients; a combined risk score (CRS)-model was constructed based on expression levels of both miRNAs.
Methods
Expression of miR-21 and miR-126 was evaluated by qRT-PCR in tumour and adjacent non-neoplastic tissue in n = 139 clear cell RCC patients. Relation of miR-21 and miR-126 expression with various clinical parameters was assessed. Parameters were analysed by uni- and multivariate COX regression. A factor derived from the z-score resulting from the COX model was determined for both miRs separately and a combined risk score (CRS) was calculated multiplying the relative expression of miR-21 and miR-126 by this factor. The best fitting COX model was selected by relative goodness-of-fit with the Akaike information criterion (AIC).
Results
RCC with and without miR-21 up- and miR-126 downregulation differed significantly in synchronous metastatic status and CSS. Upregulation of miR-21 and downregulation of miR-126 were independently prognostic. A combined risk score (CRS) based on the expression of both miRs showed high sensitivity and specificity in predicting CSS and prediction was independent from any other clinico-pathological parameter. Association of CRS with CSS was successfully validated in a testing cohort containing patients with high and low risk for progressive disease.
Conclusions
A combined expression level of miR-21 and miR-126 accurately predicted CSS in two independent RCC cohorts and seems feasible for clinical application in assessing prognosis.
Wilms tumor (WT) or nephroblastoma is the most common kidney tumor in childhood. Several genetic alterations have been identified in WT over the past years. However, a clear-cut underlying genetic defect has remained elusive. Growing evidence suggests that miRNA processing genes play a major role in the formation of pediatric tumors, including WT.
We and others have identified the microprocessor genes DROSHA and DGCR8 as key players in Wilms tumorigenesis. Exome sequence analysis of a cohort of blastemal-type WTs revealed the recurrent hotspot mutations DROSHA E1147K and DGCR8 E518K mapping to regions important for catalyic activity and RNA-binding. These alterations were expected to affect processing of miRNA precursors, ultimately leading to altered miRNA expression. Indeed, mutated tumor samples were characterized by distinct miRNA patterns. Notably, these mutations have been observed almost exclusively in WT, suggesting that they play a specific role in WT formation.
The aim of the present work was to first examine the mutation frequency of DROSHA E1147K and DGCR8 E518K in a larger cohort of WTs, and to further characterize these microprocessor gene mutations as potential oncogenic drivers for WT formation.
Screening of additional 700 WT samples by allele-specific PCR revealed a high frequency of DROSHA E1147K and DGCR8 E518K mutations, with the highest incidence found in tumors of high-risk histology. DROSHA E1147K was heterozygously expressed in all cases, which strongly implies a dominant negative effect. In contrast, DGCR8 E518K exclusively exhibited homozygous expression, suggestive for the mutation to act recessive.
To functionally assess the mutations of the microprocessor complex in vitro, I generated stable HEK293T cell lines with inducible overexpression of DROSHA E1147K, and stable mouse embryonic stem cell (mESC) lines with inducible overexpression of DGCR8 E518K. To mimic the homozygous expression observed in WT, DGCR8 mESC lines were generated on a DGCR8 knockout background. Inducible overexpression of wild-type or mutant DROSHA in HEK293T cells showed that DROSHA E1147K leads to a global downregulation of miRNA expression. It has previously been shown that the knockout of DGCR8 in mESCs also results in a significant downregulation of canonical miRNAs. Inducible overexpression of wild type DGCR8 rescued this processing defect. DGCR8 E518K on the other hand, only led to a partial rescue. Differentially expressed miRNAs comprised members of the ESC cell cycle (ESCC) and let-7 miRNA families whose antagonism is known to play a pivotal role in the regulation of stem cell properties. Along with altered miRNA expression, DGCR8-E518K mESCs exhibited alterations in target gene expression potentially affecting various biological processes.
We could observe decreased proliferation rates, most likely due to reduced cell viability. DGCR8-E518K seemed to be able to overcome the block of G1-S transition and to rescue the cell cycle defect in DGCR8-KO mESCs, albeit not to the full extent like DGCR8-wild-type. Moreover, DGCR8-E518K appeared to be unable to completely block epithelial-to-mesenchymal transition (EMT). Embryoid bodies (EBs) with the E518K mutation, however, were still able to silence the self-renewal program rescuing the differentiation defect in DGCR8-KO mESCs.
Taken together, I could show that DROSHA E1147K and DGCR8 E518K are frequent events in WT with the highest incidence in high-risk tumor entities. Either mutation led to altered miRNA expression in vitro confirming our previous findings in tumor samples. While the DROSHA E1147K mutation resulted in a global downregulation of canonical miRNAs, DGCR8 E518K was able to retain significant activity of the microprocessor complex, suggesting that partial reduction of activity or altered specificity may be critical in Wilms tumorigenesis.
Despite the significant differences found in the miRNA and mRNA profiles of DGCR8 E518K and DGCR8-wild-type mESCs, functional analysis showed that DGCR8 E518K could mostly restore important cellular functions in the knockout and only slightly differed from the wild-type situation. Further studies in a rather physiological environment, such as in a WT blastemal model system, may additionally help to better assess the subtle differences between DGCR8 E518K and DGCR8 wild-type observed in our mESC lines. Together with our findings, these model systems may thus contribute to better understand the role of these microprocessor mutations in the formation of WT.
Das Prostatakarzinom (PCa) stellt die zweithäufigste krebsbedingte Todesursache bei Männern in Deutschland dar. Seine heterogenen Verlaufsformen erschweren es, eine optimale Therapieentscheidung zu treffen, denn die derzeit bekannten klinischen und molekularen Prognosemarker sind trotz intensiver Forschungsbemühungen nicht ausreichend in der Lage den Krankheitsverlauf vorherzusagen. Große Hoffnungen auf brauchbare prognostische Marker werden seit ihrer Entdeckung in miRNAs gesetzt, kleine genregulatorische, nicht-kodierende RNAs. MiRNAs regulieren im Rahmen einer posttranskriptionellen Inhibierung die Expression einer Vielzahl relevanter Zielgene. Für einige miRNAs ist bereits belegt, dass ihre differentielle Expression in verschiedenen Tumorentitäten mit der Genese und in einzelnen Fällen auch mit der Prognose assoziiert ist.
Diese Arbeit sollte untersuchen, welches globale miRNA-Expressionsprofil in einem Kollektiv von Hochrisiko-Prostatakarzinomen (HR-PCa) vorliegt und welche miRNAs im HR-PCa aberrant exprimiert sind. Zudem sollte sie klären, ob Assoziationen der so identifizierten miRNAs mit Prognosegruppen des PCa vorliegen. Somit sollten erste Hinweise auf prognostisch relevante miRNAs und deren mögliche Bedeutung für die Tumorgenese aber auch für die Progression des PCa erbracht werden. Hierzu wurde die Expression von 640 miRNAs mittels Microarray-Analysen in Proben eines HR-PCa-Kollektivs (n=14) bestimmt und anschließend die Expression von acht tumorassoziierten miRNAs mittels qRT-PCR in einem erweiterten HR-PCa-Kollektiv (n=23) evaluiert. Um eine Grundlage für weitere molekulare Analysen vorzubereiten, wurde eine Zielgensuche in drei verschiedenen Datenbanken für elf potentielle Onkomirs durchgeführt.
Im Vergleich zum nicht-tumorös veränderten Referenzgewebe wurden mittels Microarray-Analyse im HR-PCa 52 miRNAs als signifikant unterschiedlich exprimiert detektiert und es zeigte sich eine ausgeprägte Herunterregulation der globalen miRNA-Expression im HR-PCa. Mit diesen 52 miRNAs konnte in einer Clusteranalyse das Referenzgewebe von HR-PCa unterschieden werden. Bei 21 tumorspezifischen miRNAs zeigte sich eine Überlappung mit Daten bereits publizierter Studien. Hierunter fanden sich die als Onkomirs beschriebenen miRNAs miR-let-7a, miR-126 und miR-16 mit jeweils möglichen Zielgenen wie z.B. MAP4K3, EGFR und ESSRA. 15 miRNAs waren – im Gegensatz zur Expression in Kollektiven mit konventionellem Risikoprofil – im HR-PCa gegenüber nicht-malignem Referenzgewebe signifikant unterschiedlich exprimiert, darunter miR-515-5p mit den vorhergesagten Zielgenen C13orf34 und CDCA7. Die vorliegenden qRT-PCR-Analysen zeigten eine deutliche und häufige Herunterregulation von miR-221, -125b und -29a im HR-PCa. Als mögliche Zielgene wurden z.B. FOS und IRF2 für miR-221, EIF2C2 für miR-125b sowie MYBL2 und TRAF4 für miR-29a vorhergesagt. Mit den genannten drei miRNAs konnte das HR-PCa vom nicht-malignen Referenzgewebe unterschieden werden.
Anhand eines Expressionsprofiles von 24 miRNAs war eine partielle Trennung der Kollektive nach Gleason-Score möglich. Die miRNAs miR-147 und miR-515-3p waren in den Microarray-Analysen in Prognosegruppen nach dem Gleason-Score signifikant unterschiedlich exprimiert. Eine mittels qRT-PCR determinierte niedrige Expression von miR-221 konnte mit hohem Gleason-Score assoziiert werden. Die signifikant unterschiedliche Expression von miR-422a in Prognosegruppen des PCa konnte in den Validierungsexperimenten nicht bestätigt werden.
Die miRNAs miR-147, miR-515-3p bzw. miR-221 sind mit Blick auf ihr Potential als Prognosefaktoren Kandidaten für weitere Untersuchungen. Als potentielle Zielgene wurden z.B. RGS3, CDKN1B bzw. FOS/IRF2 vorhergesagt.
Die Bedeutung einzelner miRNAs als mögliche prognostische Marker sollte in größeren Kollektiven und anhand von funktionellen Untersuchungen weiter geklärt werden. Die vorliegende Arbeit stellt eine Grundlage dar, um in weiterführenden Untersuchungen die hier im HR-PCa aberrant exprimierten miRNAs als brauchbare prognostische Marker für das PCa zu bestätigen und deren molekulare Funktionen im Rahmen der Genese des HR-PCa zu definieren.
Background
Blood-born miRNA signatures have recently been reported for various tumor diseases. Here, we compared the miRNA signature in Wilms tumor patients prior and after preoperative chemotherapy according to SIOP protocol 2001.
Results
We did not find a significant difference between miRNA signature of both groups. However both, Wilms tumor patients prior and after chemotherapy showed a miRNA signature different from healthy controls. The signature of Wilms tumor patients prior to chemotherapy showed an accuracy of 97.5% and of patients after chemotherapy an accuracy of 97.0%, each as compared to healthy controls.
Conclusion
Our results provide evidence for a blood-born Wilms tumor miRNA signature largely independent of four weeks preoperative chemotherapy treatment.
Das Mammakarzinom ist weltweit die häufigste krebsbedingte Todesursache bei Frauen. Fortschritte in der Therapie ermöglichen zwar eine Verlängerung der Lebens- dauer, jedoch kommt es dadurch vermehrt zur Bildung von Metastasen im zentralen Nervensystem (ZNS). Die Diagnostik und Behandlung von ZNS-Metastasen sind be- grenzt und die Lebensqualität sowie Lebensdauer der Betroffenen nimmt bei zerebraler Metastasierung rapide ab. Ziel aktueller Forschungsprojekte ist daher, Biomarker zu identifizieren, die Hinweise auf eine Brustkrebserkrankung oder Metastasierung liefern. So soll eine kostengünstige, risikoarme und minimalinvasive Methode etabliert werden, die zuverlässige Daten über die Prognose und dementsprechende Therapien erbringt. Diese Arbeit hatte daher die Absicht, mithilfe von qPCR Expressionsprofile von miRNAs aus Serumproben von Brustkrebspatientinnen zu erstellen und deren Funktion als prog- nostische Biomarker für eine Metastasierung ins ZNS zu erweisen. Anhand von Metas- tasierung und Rezeptorstatus wurden die Proben in Untergruppen eingeteilt und statis- tisch mit einer gesunden Kontrollgruppe verglichen.
Insgesamt zeigte sich bei 26 miRNAs eine signifikante Dysregulation der Expression bei mindestens einer der Untergruppen. Insbesondere bei ZNS-Metastasen war das Expres- sionsmuster bei miRNA-122-5p, miRNA-296-5p, miRNA-490-3p und miRNA-576-3p sig- nifikant erhöht, während die Expression von miRNA-130a-3p, miRNA-148b-3p und miRNA-326 signifikant reduziert war. Basierend auf den Übereinstimmungen unserer Er- gebnisse mit den Daten bisheriger Forschungsprojekten wiesen vier miRNAs eine po- tenzielle Funktion als Biomarker für Metastasen auf: miRNA-122-5p, miRNA-490-3p und miRNA-130a-3p, miRNA-326. Bei ZNS-Metastasen zeigten besonders miRNA-122-5p und miRNA-490-3p statistisch relevante Veränderungen.
Um den Einfluss von miRNAs auf den gesamten Körper darzustellen, wurde mithilfe ver- schiedener Datenbanken nach entsprechenden Zielgenen und Signalwegen für die 26 identifizierten miRNAs recherchiert. Neben dem Einfluss auf Stoffwechselwege und Er- krankungen, zeigte sich bei acht Targets ein Zusammenhang mit der Entstehung von Krebs.
Ergänzend zur Identifikation von miRNA-Expressionsprofilen wurden Zellkulturversuche mit zerebralen Endothel- (cerebEND) und Brustkrebszellen (4T1) durchgeführt. Verwendet wurden zwei cerebEND- und eine 4T1-Zellreihe von Mäusen, von denen eine ce- rebEND-Kultur zuvor in der Arbeitsgruppe Burek mit einem miRNA-210-Vektor trans- fiziert wurde.
Studien belegen den Einfluss von miRNA-210 auf den mitochondrialen Stoffwechsel, Angiogenese, Reaktionen auf DNA-Schäden, Apoptose und Zellüberleben sowie auf die Proteine BRCA1, PARP1 und E-Cadherin und schreiben ihr damit eine Funktion in der Krebsentstehung und Metastasierung zu.
Zur Bestimmung der Proliferation und Aktivität der transfizierten cerebEND-210-Zellen im Verhältnis zur unbehandelten Kontrolle, wurden BrdU-Proliferationsassays und MTT- Assays mit verschiedenen Zellzahlen durchgeführt. Bei der Untersuchung der Prolifera- tion zeigte sich in beiden Versuchen eine erhöhte Aktivität der cerebEND-210-Zellen, da miRNA-210 vermutlich auch hier das Zellüberleben gesichert hat. Zudem wurde die An- heftung der Brustkrebszellen an den zerebralen Endothelzellen im Adhäsionsversuchs überprüft. Hierbei wurde eine Abnahme der Adhäsion der cerebEND-210-Zellen beo- bachtet. Vermutet wird eine Veränderung des Phänotyps der Rezeptorbindungen der cerebEND-210-Zellen.
Die Ergebnisse der Zellkulturversuche dienen als Grundlage für weitere Experimente.
Merkel cell carcinoma (MCC) is a deadly skin cancer, and about 80% of its cases have been shown to harbor integrated Merkel polyomavirus in the tumor cell genome. Viral oncoproteins expressed in the tumor cells are considered as the oncogenic factors of these virus-positive Merkel cell carcinoma (VP-MCC). In contrast, the molecular pathogenesis of virus-negative MCC (VN-MCC) is less well understood. Using gene expression analysis of MCC cell lines, we found histone methyltransferase PRDM8 to be elevated in VN-MCC. This finding was confirmed by immunohistochemical analysis of MCC tumors, revealing that increased PRDM8 expression in VN-MCC is also associated with increased H3K9 methylation. CRISPR-mediated silencing of PRDM8 in MCC cells further supported the histone methylating role of this protein in VN-MCC. We also identified miR-20a-5p as a negative regulator of PRDM8. Taken together, our findings provide insights into the role of PRDM8 as a histone methyltransferase in VN-MCC tumorigenesis.
(1) Background: C-X-C Motif Chemokine Receptor 4 (CXCR4) and Fibroblast Activation Protein Alpha (FAP) are promising theranostic targets. However, it is unclear whether CXCR4 and FAP positivity mark distinct microenvironments, especially in solid tumors. (2) Methods: Using Random Forest (RF) analysis, we searched for entity-independent mRNA and microRNA signatures related to CXCR4 and FAP overexpression in our pan-cancer cohort from The Cancer Genome Atlas (TCGA) database — representing n = 9242 specimens from 29 tumor entities. CXCR4- and FAP-positive samples were assessed via StringDB cluster analysis, EnrichR, Metascape, and Gene Set Enrichment Analysis (GSEA). Findings were validated via correlation analyses in n = 1541 tumor samples. TIMER2.0 analyzed the association of CXCR4 / FAP expression and infiltration levels of immune-related cells. (3) Results: We identified entity-independent CXCR4 and FAP gene signatures representative for the majority of solid cancers. While CXCR4 positivity marked an immune-related microenvironment, FAP overexpression highlighted an angiogenesis-associated niche. TIMER2.0 analysis confirmed characteristic infiltration levels of CD8+ cells for CXCR4-positive tumors and endothelial cells for FAP-positive tumors. (4) Conclusions: CXCR4- and FAP-directed PET imaging could provide a non-invasive decision aid for entity-agnostic treatment of microenvironment in solid malignancies. Moreover, this machine learning workflow can easily be transferred towards other theranostic targets.