TY - JOUR A1 - Thölken, Clemens A1 - Thamm, Markus A1 - Erbacher, Christoph A1 - Lechner, Marcus T1 - Sequence and structural properties of circular RNAs in the brain of nurse and forager honeybees (Apis mellifera) JF - BMC Genomics N2 - Background The honeybee (Apis mellifera) represents a model organism for social insects displaying behavioral plasticity. This is reflected by an age-dependent task allocation. The most protruding tasks are performed by young nurse bees and older forager bees that take care of the brood inside the hive and collect food from outside the hive, respectively. The molecular mechanism leading to the transition from nurse bees to foragers is currently under intense research. Circular RNAs, however, were not considered in this context so far. As of today, this group of non-coding RNAs was only known to exist in two other insects, Drosophila melanogaster and Bombyx mori. Here we complement the state of circular RNA research with the first characterization in a social insect. Results We identified numerous circular RNAs in the brain of A. mellifera nurse bees and forager bees using RNA-Seq with exonuclease enrichment. Presence and circularity were verified for the most abundant representatives. Back-splicing in honeybee occurs further towards the end of transcripts and in transcripts with a high number of exons. The occurrence of circularized exons is correlated with length and CpG-content of their flanking introns. The latter coincides with increased DNA-methylation in the respective loci. For two prominent circular RNAs the abundance in worker bee brains was quantified in TaqMan assays. In line with previous findings of circular RNAs in Drosophila, circAmrsmep2 accumulates with increasing age of the insect. In contrast, the levels of circAmrad appear age-independent and correlate with the bee's task. Its parental gene is related to amnesia-resistant memory. Conclusions We provide the first characterization of circRNAs in a social insect. Many of the RNAs identified here show homologies to circular RNAs found in Drosophila and Bombyx, indicating that circular RNAs are a common feature among insects. We find that exon circularization is correlated to DNA-methylation at the flanking introns. The levels of circAmrad suggest a task-dependent abundance that is decoupled from age. Moreover, a GO term analysis shows an enrichment of task-related functions. We conclude that circular RNAs could be relevant for task allocation in honeybee and should be investigated further in this context. KW - circRNA KW - circular transcriptome sequencing KW - honeybee KW - brain KW - neuronal KW - Methylation KW - CpG KW - alternative splicing KW - behavioral plasticity Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-241302 VL - 20 ER - TY - JOUR A1 - Richter, Gesa M. A1 - Kruppa, Jochen A1 - Munz, Matthias A1 - Wiehe, Ricarda A1 - Häsler, Robert A1 - Franke, Andre A1 - Martins, Orlando A1 - Jockel-Schneider, Yvonne A1 - Bruckmann, Corinna A1 - Dommisch, Henrik A1 - Schaefer, Arne S. T1 - A combined epigenome- and transcriptome-wide association study of the oral masticatory mucosa assigns CYP1B1 a central role for epithelial health in smokers JF - Clinical Epigenetics N2 - Background The oral mucosa has an important role in maintaining barrier integrity at the gateway to the gastrointestinal and respiratory tracts. Smoking is a strong environmental risk factor for the common oral inflammatory disease periodontitis and oral cancer. Cigarette smoke affects gene methylation and expression in various tissues. This is the first epigenome-wide association study (EWAS) that aimed to identify biologically active methylation marks of the oral masticatory mucosa that are associated with smoking. Results Ex vivo biopsies of 18 current smokers and 21 never smokers were analysed with the Infinium Methylation EPICBeadChip and combined with whole transcriptome RNA sequencing (RNA-Seq; 16 mio reads per sample) of the same samples. We analysed the associations of CpG methylation values with cigarette smoking and smoke pack year (SPY) levels in an analysis of covariance (ANCOVA). Nine CpGs were significantly associated with smoking status, with three CpGs mapping to the genetic region of CYP1B1 (cytochrome P450 family 1 subfamily B member 1;best p=5.5x10(-8)) and two mapping to AHRR (aryl-hydrocarbon receptor repressor; best p=5.9x10(-9)). In the SPY analysis, 61 CpG sites at 52 loci showed significant associations of the quantity of smoking with changes in methylation values. Here, the most significant association located to the gene CYP1B1, with p=4.0x10(-10). RNA-Seq data showed significantly increased expression of CYP1B1 in smokers compared to non-smokers (p=2.2x10(-14)), together with 13 significantly upregulated transcripts. Six transcripts were significantly downregulated. No differential expression was observed for AHRR. In vitro studies with gingival fibroblasts showed that cigarette smoke extract directly upregulated the expression of CYP1B1. Conclusion This study validated the established role of CYP1B1 and AHRR in xenobiotic metabolism of tobacco smoke and highlights the importance of epigenetic regulation for these genes. For the first time, we give evidence of this role for the oral masticatory mucosa. KW - EWAS KW - Methylation KW - Expression KW - Masticatory mucosa KW - CYP1B1 KW - AHRR KW - Cytochrome P 450 pathway KW - OSCC KW - Smoking Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-226175 VL - 11 ER - TY - JOUR A1 - Van Haute, Lindsey A1 - Dietmann, Sabine A1 - Kremer, Laura A1 - Hussain, Shobbir A1 - Pearce, Sarah F. A1 - Powell, Christopher A. A1 - Rorbach, Joanna A1 - Lantaff, Rebecca A1 - Blanco, Sandra A1 - Sauer, Sascha A1 - Kotzaeridou, Urania A1 - Hoffmann, Georg F. A1 - Memari, Yasin A1 - Kolb-Kokocinski, Anja A1 - Durbin, Richard A1 - Mayr, Johannes A. A1 - Frye, Michaela A1 - Prokisch, Holger A1 - Minczuk, Michal T1 - Deficient methylation and formylation of mt-tRNA(Met) wobble cytosine in a patient carrying mutations in NSUN3 JF - Nature Communications N2 - Epitranscriptome modifications are required for structure and function of RNA and defects in these pathways have been associated with human disease. Here we identify the RNA target for the previously uncharacterized 5-methylcytosine (m5C) methyltransferase NSun3 and link m5C RNA modifications with energy metabolism. Using whole-exome sequencing, we identified loss-of-function mutations in NSUN3 in a patient presenting with combined mitochondrial respiratory chain complex deficiency. Patient-derived fibroblasts exhibit severe defects in mitochondrial translation that can be rescued by exogenous expression of NSun3. We show that NSun3 is required for deposition of m5C at the anticodon loop in the mitochondrially encoded transfer RNA methionine (mt-tRNAMet). Further, we demonstrate that m5C deficiency in mt-tRNAMet results in the lack of 5-formylcytosine (f5C) at the same tRNA position. Our findings demonstrate that NSUN3 is necessary for efficient mitochondrial translation and reveal that f5C in human mitochondrial RNA is generated by oxidative processing of m5C. KW - Methylation KW - RNA KW - Transferases Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-165998 VL - 7 ER - TY - THES A1 - Akimzhanov, Askar M. T1 - Epigenetic repression of the NFATc1 transcription factor in human lymphomas T1 - Epigenetische Repression des NFATc1 Transkriptionsfakors in menschlichen Lymphomen N2 - We examined the regulation of NFATc1 in different lymphomas and observed an inversed correlation between the methylation status and expression of NFATc1. Our data demonstrate that aberrant DNA methylation associated with chromatin remodeling within nfatc1 locus is a major mechanism for the repression of NFATc1 expression, suggesting that the DNA methylation-mediated transcriptional silencing of NFATc1 may be a critical event in the tumorogenesis of ALCLs and cHLs. Furthermore, the DNA methylation of human nfatc1 promoter region could be used as a novel biomarker of tumor progression. Our results indicate a close link between the loss of immunoreceptor signaling and NFATc1 expression in human lymphomas. For both ALCLs and cHLs, defects in immunoreceptor signaling have been described which result in a loss of receptor-mediated gene expression programs (Schwering et al., 2003; Bonzheim et al., 2004; Marafioti et al., 2004). In T cells, one indicator gene of these programs appears to be the nfatc1 gene whose expression is controlled by TCR signals (Chuvpilo et al., 2002a). In contrast, in T cells NFATc1 expression is unaffected by TCR signals, and NFATc2 was found to be expressed at normal levels in ALCLs and cHLs (L.K., unpubl. data). Moreover, the activity of NF-kappaB factors which can bind to certain NFAT binding sites and share a distantly-related DNA binding domain with NFATs is strongly elevated in cHL cells (Bargou et al., 1997; Hinz et al., 2001; Hinz et al., 2002) suggesting that NFATs and NF-kappaBs exert very different effects on generation and maintenance of Hodgkin’s lymhomas. However, it should be mentioned that in Burkitt’s and further B cell lymphomas in which NFATc1 proteins are strongly expressed and controlled by receptor signals (Kondo et al., 2003), they could exert a promoting function in tumor development. The genes of p53 family members p63 and p73 are prominent examples for mammalian genes whose products can act both as oncoproteins and tumor suppressor genes (Hibi et al., 2000; Stiewe and Putzer, 2002), and it is likely that more genes exist which encode both tumor suppressors and oncoproteins. It remains to be shown whether the nfatc1 gene is one of them. N2 - Wir haben die Regulation von NFATc1 in verschiedenen Lymphomen untersucht und beobachteten eine umgekehrte Korrelation zwischen dem Ausmaß an Methylierung und der Expression von NFATc1. Unsere Daten demonstrieren, dass eine aberrante DNA-Methylierung, die mit veränderter Chromatinstruktur innerhalb des nfatc1 Lokus assoziiert ist, der Hauptmechanismus für die Repression der NFATc1-Expression ist. Es wäre zu vermuten, dass die durch DNA-Methylierung verursachte transkriptionelle Abschaltung von NFATc1 der kritische Schritt bei der Tumorgenese von ALCLs und cHLs ist. Des weiteren könnte das Ausmaß der DNA-Methylierung in der humanen nfatc1-Promotorregion als neuer Biomarker für Tumorprogression genutzt werden. Unsere Daten indizieren eine enge Verbindung zwischen dem Verlust von Immunrezeptorsignalen und der NFATc1-Expression in humanen Lymphomen. Für sowohl ALCLs als auch cHLs wurden Defekte in der Immunrezeptorsignalgebung beschrieben, welche sich im Verlust des Rezeptor vermittelten Genexpressionsprogramms niederschlagen (Schwering et al., 2003; Bonzheim et al., 2004; Marafioti et al., 2004). In T-Zellen scheint das nfatc1-Gen eins der Indikatorgene dieses Programms zu sein, dessen Expression durch TCR-Signale kontrolliert wird (Chuvpilo et al., 2002a). Im Gegensatz dazu bleibt die NFATc2-Expression in T-Zellen unbeeinflusst von TCR-Signalen, weshalb NFATc2 in ALCLs und cHLs auch in normalem Ausmaß exprimiert wird (L.K., unpubl. data). Andererseits ist die Aktivität der NF-kappaB-Faktoren, die auch an bestimmte NFAT-Bindungsstellen binden können und deren DNA-Bindungsdomäne entfernt mit der der NFATs verwandt ist, in cHL-Zellen stark erhöht (Bargou et al., 1997; Hinz et al., 2001; Hinz et al., 2002). Das lässt vermuten, dass NFATc1 und die NF-kappa-Faktoren eine sehr unterschiedliche Rolle bei der Entstehung und dem Erhalt der Hodgkinlymphome spielen. Es sollte aber erwähnt werden, dass in Burkitts und anderen B-Zelllymphomen, in denen NFATc1-Proteine stark exprimiert und darüber hinaus durch Rezeptorsignale kontrolliert sind (Kondo et al., 2003), diese eine Tumor fördernde Funktion ausüben könnten. Die Gene der p53-Familienmitglieder p63 und p73 sind prominente Beispiele für Säugergene, deren Produkte sowohl als Onkoproteine als auch als Tumorsuppressoren fungieren können (Hibi et al., 2000; Stiewe and Putzer, 2002), und es ist wahrscheinlich, dass es noch weitere Gene gibt, die beide Funktionen ausüben. Es wird zu zeigen sein, ob das nfatc1-Gen eins von ihnen ist. KW - Lymphom KW - T-Lymphozyt KW - Transkriptionsfaktor KW - Methylierung KW - Epigenese KW - NFATc1 KW - Lymphome KW - Epigenetik KW - Methylierung KW - NFATc1 KW - Lymphoma KW - Epigenetics KW - Methylation Y1 - 2005 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-12921 ER -