@phdthesis{Kalb2006, author = {Kalb, Reinhard}, title = {Fanconi anemia and RAD50 deficiency : genetic and functional analysis}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-25823}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2006}, abstract = {Human caretaker genes play a central role in the DNA damage response. Their defects cause a number of rare diseases which show genetic instability and increased propensity to malignant cell growth. The first of these diseases to be described in this thesis is Fanconi anemia (FA), a rare chromosome instability disorder with recessive inheritance characterized by progressive bone marrow failure, variable congenital malformations, and cancer predisposition. There are at least 13 FA complementation groups (FA-A, B, C, D1, D2, E, F, G, I, J, L, M and N), each representing mutations in a distinct gene. To date, except FANCI all the corresponding genes have been identified, denoted as FANC-A, B, C, D1/BRCA2, D2, E, F, G, J/BRIP1/BACH1, L/PHF9, M/Hef and N/PALB2.Further information is provided in chapters 1 and 2. FA cells are characterized by high sensitivity to DNA crosslinking agents and to elevated oxygen tension, but it is controversial whether they are also radiosensitive. Systematic testing (chapter 3) of primary skin fibroblast cultures from all currently known FA complementation groups revealed no increased sensitivity towards ionizing radiation (IR) and ultra-violet light (UV) when growing cells at physiological (5\% v/v) oxygen levels. Despite considerable interstrain variations FA cells showed no systematic differences to cell cultures derived from healthy controls, whereas positive controls (Ataxia telangiectasia and Cockayne syndrome) proved highly sensitive to IR or UV. Lack of radiosensitivity was also shown for the FANCD2 gene, a central gene in the FA/BRCA pathway whose mutational inactivation was studied in a large patient cohort. FA patients excluded previously from complementation groups FA-A, -C, E, F, G or L were screened for mutations in FANCD2. Even though mutation analysis of FANCD2 is complicated by the presence of pseudogene regions, biallelic FANCD2 mutations were identified in a series of 32 patients (chapter 4). The predominant types of mutations result in aberrant splicing causing exon skipping, exonisation of intronic sequence, activation of cryptic and creation of new 3´ splice sites. Many alleles were recurrent and could be associated with ethnicity. Interestingly, residual FANCD2 protein was observed in all available patient cell lines, and functionality was indicated by the presence of the monoubiquitinated FANCD2 isoform. This suggests that viability of FA-D2 patients depends on the presence of hypomorphic or leaky mutations. In chapter 5 the worldwide second FA patient belonging to complementation group FA-L is reported. Genetic analysis of patient derived fibroblasts revealed heterozygosity for a 5-bp deletion (exon 7) and a missense substitution (exon 11). In contrast to the tested fibroblasts two independent lymphoid cell lines proved resistant to the DNA crosslinking agent mitomycin C and showed proficient FANCD2 monoubiquitination. The functional reversion due to a compensating mutation in the splice acceptor site results in aberrant splicing and the restoration of the open reading frame. However, the revertant mosaicsm was restricted to the lymphatic cell lines such that there was no clinical improvement involving the other hematopoietic cell lineages, and bone marrow transplantation was required to treat the patients bone marrow failure. A direct link of Fanconi anemia to other DNA repair processes was provided by the identification of the BRCA1 interacting protein 1, BRIP1/BACH1, as a genuine FA gene (chapter 6). Genetic mapping of consanguineous Inuit families resulted in the identification of truncating mutations in BRIP1. In contrast to most of the other FA patients FANCD2 monoubiquitination was intact, linking these patients to complementation group FA-J. Biallelic mutations in BRIP1 were found in eight additional patients, one of whom was assigned previously to FA-J by somatic cell fusion. Therefore it could be shown that the postulated FANCJ gene is identical with BRIP1. This finding emphasizes the close connection between the BRCA- and the FA-family of genes, both involved in the DNA damage response. Biallelic mutations in BRCA2/FANCD1 cause a severe form of Fanconi anemia with childhood malignancies. Recently, a BRCA2 interacting protein was identified as a "partner and localizer of BRCA2" (PALB2) which confers cellular MMC resistance. A candidate gene approach revealed biallelic mutations in seven FA patients that developed solid tumors in early childhood (chapter 7). Patient cells show no or little PALB2 protein, lack of MMC induced RAD51 foci formation, and high chromosomal instability. Transduction of PALB2 cDNA complemented the MMC sensitive phenotype. Therefore, biallelic mutations in PALB2 cause a new subtype of FA, denoted as FA-N, which is connected with a high and early cancer risk. With respect to one of the most prominent but least understood caretaker gene syndromes, Fanconi anemia, this thesis has expanded our knowledge as follows: 1. refutation of major cellular radiosensitivity of FA cell lines regardless of complementation group, 2. detection of hypomorphic mutations and residual protein levels as a prerequisite for viability of the FANCD2 gene, 3. description of the worldwide second patient belonging to complementation group FA-L whose lymphocytes exhibit a novel type of somatic reversion, 4. participation in the discovery and functional characterization of two novel FA genes (FANCJ and FANCN). The last chapter of the thesis deals with a DNA repair pathway that is activated following exposure to ionizing radation. One of the central proteins responding to radiation-induced DNA damage is the product of the ATM gene which signals to a myriad of other proteins in response to DNA double strand breaks, including the NMR complex. This complex formed by the NBS1/MRE11/RAD50 proteins is thought to act as a specifi c sensor of DNA double-strand breaks. Mutations of MRE11 and NBS1 are associated with the radiation sensitivity syndromes Ataxia-telangiectasia-like disorder (AT-LD) and Nijmegen breakage syndrome (NBS), respectively. Chapter 8 presents the first ever identified patient with RAD50 deficiency due to biallelic germline mutations in the RAD50 gene. An 18-year-old German girl who has a variant form of NBS without immunodeficiency was found to be compound heterozygous for a nonsense mutation and the loss of the natural termination signal in the RAD50 gene. RAD50 protein expression was reduced to less than one tenth of normal in her fibroblasts and lymphoblastoid cells. At the nuclear level, RAD50 deficiency was associated with a high frequency of spontaneous chromatid exchanges and with the failure to form MRE11 and NBS1 nuclear foci in response to irradiation. ATM autophosphorylation, phosphorylation of p53 at serine 15 and the transcriptional induction of p21/WAF1 mRNA were reduced, and there was no evidence for Ser343 phosphorylation of NBS1 in RAD50 defi cient cells following irradiation. These defects could be complemented by expression of wildtype RAD50 cDNA. Our data shows that RAD50 modulates, like NBS1 and MRE11, the ATM-mediated DNA damage response and the G1/S cell cycle checkpoint. In addition, RAD50 appears to be required for nuclear localization of MRE11, and for NBS1 focus formation, underlining its importance for the proper function of the NMR complex. Owing to the studies performed within the framework of this thesis, RAD50 deficiency can now be added to the growing list of human caretaker gene syndromes with pronounced radiosensitivity that is distinctive at both the cellular and the clinical level from deficiencies involving the other members of the NMR complex.}, subject = {DNS-Reparatur}, language = {en} } @phdthesis{Weber2007, author = {Weber, Natalia}, title = {Psychosoziale Aspekte bei heredit{\"a}rer Mamma/Ovarial-Ca-Belastung}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-28330}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2007}, abstract = {Ziel dieser Arbeit war die Untersuchung der psychischen Befindlichkeit und anderer gesundheitsbezogenen Konditionen der Frauen und M{\"a}nner mit famili{\"a}ren Mamma- und Ovarialkarzinomrisiko sowie die Kl{\"a}rung hinsichtlich der Bew{\"a}ltigung und Auswirkung genetischer Risikoinformation. Es wurden Risikowahrnehmung, Informationsstand, Inanspruchnahme der Beratungsangebote sowie der Fr{\"u}herkennungsmaßnahmen, Einstellung gegen{\"u}ber genetischer Brustkrebsdiagnostik und famili{\"a}rer/sozialer Kommunikation untersucht. Die vollst{\"a}ndig ausgef{\"u}llten Frageb{\"o}gen von Ratsuchenden und Betroffenen, die an der Beratung und Befragung im Zentrum f{\"u}r „Famili{\"a}ren Brust-/Eierstockkrebs" teilgenommen haben, wurden von uns ausgewertet. F{\"u}r die beratenden Institutionen ist das Wissen der vielf{\"a}ltigen psychischen und sozialen Folgen bei den Testsuchenden und deren Familien sehr wichtig. Nur so kann das Betreuungskonzept und das Beratungsangebot verbessert werden.}, subject = {Brustkrebs}, language = {de} } @phdthesis{Kuhtz2015, author = {Kuhtz, Juliane}, title = {Epimutationen humaner Keimzellen und Infertilit{\"a}t}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-108248}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2015}, abstract = {Infertilit{\"a}t stellt in unserer heutigen Gesellschaft ein zunehmendes Problem dar. Bei der Suche nach den der Infertilit{\"a}t zugrunde liegenden Ursachen ger{\"a}t immer mehr die Epigenetik in den Fokus. Epigenetische Prozesse sind nicht nur in die Embryo-nalentwicklung und Wachstumsprozesse des Kindes involviert, sondern auch in korrekte Funktionsweisen von Gameten. St{\"o}rungen k{\"o}nnen die Fertilit{\"a}t beeintr{\"a}ch-tigen. Eine besondere Rolle spielen gepr{\"a}gte Gene, die auf einem ihrer Allele, je nach parentaler Herkunft, ein Imprint in Form von DNA-Methylierung tragen. Fehl-regulationen solcher gepr{\"a}gter Gene k{\"o}nnen zu Imprinting-Erkrankungen f{\"u}hren. Seit Einf{\"u}hrung der In-vitro-Fertilisation (IVF) wurden verschiedene assistierte Re-produktionstechniken (ART) entwickelt, um infertilen Paaren zu helfen. Die Sicher-heit dieser Techniken ist nicht abschließend gekl{\"a}rt. Immer wieder wird von nach ART-Behandlung geh{\"a}uft auftretenden Imprinting-Erkrankungen berichtet. Diese Erkrankungen stehen jedoch eher in Zusammenhang mit der zugrunde liegenden Infertilit{\"a}t, als mit ART selbst. Dennoch ist es notwendig zu untersuchen inwieweit sich ART eventuell auf den Gesundheitszustand dieser Kinder auswirken k{\"o}nnte. In der hier vorgelegten Arbeit wurde der Zusammenhang von Epigenetik, Infertilit{\"a}t und ART von verschiedenen Standpunkten aus beleuchtet. In humanen Spermien wurde die DNA-Methylierung verschiedener gepr{\"a}gter Gene hinsichtlich Epimutationen untersucht. ICSI (intracytoplasmatic sperm injection) und IMSI (intracytoplasmic morphologically selected sperm injection) sind verschiedene Techniken zur Selektion von Spermien f{\"u}r eine ART-Behandlung. Hier wurde un-tersucht, ob IMSI epigenetisch bessere Spermien selektiert als die konventionelle ICSI-Methode. Außerdem ist bekannt, dass in Spermienk{\"o}pfen fertiler und infertiler M{\"a}nner Vakuolen vorkommen k{\"o}nnen, deren epigenetische Bedeutung jedoch un-bekannt ist. Ob diese Vakuolen in Zusammenhang mit Epimutationen stehen k{\"o}nn-ten, wurde ebenfalls {\"u}berpr{\"u}ft. Dazu wurde bisulfitkonvertierte DNA weniger Sper-mien (11 je Probe) mithilfe der Limiting Dilution (LD)-Technik und Pyrosequenzie-rung analysiert. Insgesamt standen 880 Spermien f{\"u}r diese Untersuchung zur Ver-f{\"u}gung. Es konnte kein Unterschied zwischen IMSI- und ICSI-selektierten Spermien gefunden werden. Vorhandene Vakuolen im Spermienkopf beeintr{\"a}chtigten nicht die DNA-Methylierung der Gene hGTL2, hLIT1 und hPEG3. Ein weiteres Projekt befasste sich mit der Frage, inwieweit die Technik der In-vitro-Maturation (IVM) DNA-Methylierung in humanen Oocyten beeinflussen k{\"o}nnte. Bisulfitkonvertierte DNA einzelner humaner Oocyten wurde mit LD und Pyrose-quenzierung analysiert. Verglichen wurden IVM und in vivo gereifte Oocyten. Hier-f{\"u}r standen 139 Oocyten zur Verf{\"u}gung, wovon 90 mittels IVM und 49 in vivo gereift waren. Untersucht wurden vier gepr{\"a}gte Gene (hGTL2, hLIT1, hPEG3 und hSNRPN) und drei nicht gepr{\"a}gte Gene (hDNMT3Lo, hNANOG und hOCT4). Es konnten keine IVM-bedingten Epimutationen gefunden werden. Im dritten Projekt wurde untersucht, ob sich die DNA-Methylierung normaler Sper-mien von Spermien aus Oligozoospermie-Asthenozoospermie-Teratozoospermie (OAT)-Syndrom-Patienten unterscheidet. Eine weitere Frage war, ob Epimutationen einen Einfluss auf den ART-Ausgang haben. Untersucht wurden 54 Spermienpro-ben von Paaren in ART-Behandlung. Zur Untersuchung der DNA-Methylierungsmuster der gepr{\"a}gten Gene hGTL2 und hPEG3 sowie der beiden nicht gepr{\"a}gten Pluripotenzgene hNANOG und hOCT4 wurde die Methode Deep Bisulfite Sequencing (DBS) verwendet. Dies ist eine Next Generation Sequencing (NGS)-Technik, angewandt an bisulfitkonvertierter DNA. Diese Technik erm{\"o}glicht es mehrere Proben sowie Gene gleichzeitig zu analysieren. Es zeigte sich, dass OAT-Spermien, die zu einer Lebendgeburt gef{\"u}hrt hatten, sich epigenetisch nicht von normalen Spermien unterschieden. Besonders viele Epimutationen konnten hingegen in OAT-Spermien gefunden werden, die zu keiner Schwangerschaft ge-f{\"u}hrt hatten. Zwischen Spermien die zu einer Lebendgeburt oder keiner Schwan-gerschaft gef{\"u}hrt hatten, zeigten sich Unterschiede in der H{\"a}ufigkeit von hGTL2-Epimutationen. {\"U}ber die H{\"a}ufigkeit von Epimutationen konnte eine pr{\"a}diktive Aus-sage zum ART-Ausgang getroffen werden. Zusammenfassend konnte in dieser Arbeit festgestellt werden, dass sich eine H{\"a}u-fung von Epimutationen darauf auswirkt, ob eine Schwangerschaft erreicht werden kann oder nicht. Diese Epimutationen liegen bereits im parentalen Genom vor. Sie werden nicht durch ART verursacht. Allerdings muss man Techniken finden, mit denen man Gameten mit m{\"o}glichst wenig Epimutationen selektiert, um eine {\"U}ber-tragung solcher auf das Kind zu verhindern.}, subject = {Epigenetik}, language = {de} } @phdthesis{Marquardt2001, author = {Marquardt, Andreas}, title = {Positionsklonierung des Morbus Best-Gens VMD2}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-414}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2001}, abstract = {Die Dissertation beschreibt die Positionsklonierung von VMD2, einem Krankheitsgen des Menschen, dass der dominant vererbten vitelliformen Makuladystrophie Typ 2 (VMD2) zugrundeliegt. Zu diesem Zweck wurde zun{\"a}chst ein etwa 1.4 Mbp großer Klon-'Contig' aus artifiziellen Phagenchromosomen ('phage artificial chromosomes', PAC) erstellt, der die VMD2-Kandidatengenregion auf Chromosom 11q12-q13.1 physikalisch repr{\"a}sentiert. Durch die Identifizierung polymorpher (CA)n-Dinukleotidmarker aus dem kritschen Intervall und anschließender Kopplungsanalyse gelang es, die Kandidatengenregion auf ca. 500 kbp zu reduzieren. In der {\"o}ffentlichen Datenbank (GenBank) bereitgestellte Nukleins{\"a}uresequenzen zweier genomischer Klone aus dem Kern des relevanten chromosomalen Bereichs von zusammen etwa 290 kbp wurden dazu genutzt, {\"u}ber eine Kombination aus computergest{\"u}tzter Vorhersagen kodierender Sequenzen, Kartierung von EST-Klonen ('expressed sequence tags'), RT-PCR-Analysen und, wenn erforderlich, 5'-RACE-Experimenten, acht neue Gene des Menschen zu isolieren. Von den charakterisierten Genen erwiesen sich mehrere als potentielle Kandidaten f{\"u}r VMD2. Ein Gen, provisorisch als Transkriptionseinheit TU15B bezeichnet, konnte durch eine Mutationsanalyse schließlich eindeutig mit der Erkrankung assoziiert werden und wurde 1998 als VMD2 publiziert. Drei Gene aus der untersuchten Region kodieren Mitglieder einer Familie von Fetts{\"a}uredesaturasen (FADS1, FADS2 und FADS3), w{\"a}hrend ein anderes Gen ('Rabin3 interacting protein-like 1'; RAB3IL1) signifikante Sequenzidentit{\"a}t zu einem Transkript der Ratte besitzt, welches das GTPase-interagierende Protein Rabin3 kodiert. Den putativen Translationsprodukten drei weiterer Gene (C11orf9, C11orf10 und C11orf11) konnte bislang keine pr{\"a}zise Funktion zugeschrieben werden. Mit FTH1 ('ferritin heavy chain 1') und FEN1 ('flap endonuclease 1') liegen zudem zwei bekannte Gene im analysierten Intervall, deren cDNA-Sequenzen bereits 1984 bzw. 1995 von anderen Forschungsgruppen isoliert und publiziert wurden. Zweifellos kann die Region als sehr genreicher Abschnitt des menschlichen Genoms bezeichnet werden. Neben der Erstellung des PAC-'Contigs', der Einengung der VMD2-Kandidatenregion und der Klonierung von VMD2 war die vollst{\"a}ndige genetische Charakterisierung der genannten Fetts{\"a}uredesaturase-Gene ein weiterer Schwerpunkt der Arbeit. Unabh{\"a}ngig von der Klonierung und Charakterisierung des VMD2-Gens sowie der chromosomal eng benachbarten Gene, richtete sich mein Interesse schließlich noch auf drei Gene des Menschen, provisorisch als TU51, TU52 und TU53 bezeichnet, die gemeinsam mit VMD2 eine Genfamilie bilden und auf den Chromosomen 19p13.2-p13.12 (TU51), 12q14.2-q15 (TU52) und 1p32.3-p33 (TU53) lokalisiert werden konnten. Durch die Aufkl{\"a}rung der kodierenden Nukleins{\"a}uresequenzen der Gene wurden konservierte Sequenzabschnitte innerhalb der Genfamilie erkennbar, die auf wichtige funktionelle Abschnitte der Translationsprodukte schließen lassen.}, subject = {Makuladystrophie}, language = {de} } @phdthesis{Ziegler2003, author = {Ziegler, Christian G.}, title = {Die B-Chromosomen der Ukelei (Alburnus alburnus)}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-4702}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2003}, abstract = {Im Karpfenfisch Alburnus alburnus wurden die bisher gr{\"o}ßten {\"u}berz{\"a}hligen Chromosomen bei Wirbeltieren entdeckt. Dies erm{\"o}glichte eine umfangreiche zytogenetische und molekulare Studie dieser außergew{\"o}hnlichen Genomelemente. Aus Populationsstudien, die mehrere Fundorte in Deutschland einschlossen, konnten Informationen {\"u}ber die Verteilung der B Chromosomen in Fischen verschiedener Herkunftsorte ermittelt werden. Eine derartige Studie k{\"o}nnte zuk{\"u}nftig auch auf andere L{\"a}nder ausgedehnt werden. Eine detaillierte, zytogenetische Analyse mit allen konventionellen Hellfeld- und Fluoreszenzb{\"a}nderungen sowie Fluoreszenz in situ Hybridisierungen mit den ribosomalen 5S, 18S/28S rDNA-Proben und der Telomerprobe (TTAGGG)n, zeigte, dass die außergew{\"o}hnlich großen B Chromosomen von A. alburnus heterochromatisch, GC-reich und sp{\"a}t replizierend sind. Es wurden bei Alburnus alburnus keinerlei Hinweise auf heteromorphe Geschlechtschromosomen gefunden. Die molekularen Untersuchungen basierten haupts{\"a}chlich auf AFLP-Analysen, mit denen eine B Chromosomen-spezifische Bande entdeckt und isoliert werden konnte. Nach Klonierung und Sequenzierung sowie dem Durchsuchen einer Fischspezifischen Datenbank konnte eine retrotransposable Sequenz (Gypsy/Ty3 LTRRetrotranpson) gefunden werden. Ferner konnte eine deutliche Homologie zu dem Nterminalen Teil der reversen Transkriptase von Medaka, Oryzias latipes, dokumentiert werden. Die Southern blot-Untersuchungen und der PCR-Test zeigten, dass es sich bei der entdeckten 203 bp-Sequenz um eine B Chromosomen- und Alburnus alburnus-spezifische Sequenz handelt, welche hochrepetitiv {\"u}ber die beiden Arme der {\"u}berz{\"a}hligen Chromosomen verteilt ist. Der Ursprung und die Funktion der massiven {\"u}berz{\"a}hligen Chromosomen blieb offen. Da es aber nach wie vor wenig Information {\"u}ber B Chromosomensequenzen und DNA-Organisation im Allgemeinen und besonders bei Fischen gibt (Mestriner et al., 2000), sind die Ergebnisse dieser Studie f{\"u}r die Aufdeckung des Ursprungs und der Evolution {\"u}berz{\"a}hliger Chromosomen von allgemeiner Bedeutung, da sie wohl den Hauptanteil der DNA-Zusammensetzung des gr{\"o}ßten, bisher unter den Wirbeltieren entdeckten {\"u}berz{\"a}hligen Chromosoms darstellen. Die Analyse meiotischer Chromosomen zeigte, dass das B Chromosom in der Diakinese als selbstpaarendes Ringchromosom vorliegt. Zusammenfassung und Ausblick 101 Mittels durchflußzytophotometrischer DNA-Messungen konnte der Beitrag des außerordentlich großen B Chromosoms zum Gesamt-DNA-Gehalt von A. alburnus bestimmt werden und Fische auf das Vorhandensein des {\"u}berz{\"a}hligen Chromosoms, allerdings unter T{\"o}tung, analysiert werden. Dies kann in Zukunft durch Ausnutzung von Sequenzinformation {\"u}ber das B Chromosom und der damit einhergehenden Konstruktion spezifischer PCR-Primer („minimal-invasiver Flossentest") vermieden werden. Fische aus unterschiedlichen Populationen, eventuell auch europaweit, k{\"o}nnen so schnell und zuverl{\"a}ssig auf das Vorhandensein des {\"u}berz{\"a}hligen Chromosoms hin untersucht werden, mit dem Zweck, durch k{\"u}nftige Verpaarung der Tiere mit 0, 1 oder 2 B Chromosomen den Vererbungs- bzw. Weitergabemechanismus der {\"u}berz{\"a}hligen Chromosomen auf die n{\"a}chste Generation zu studieren.}, subject = {Ukelei}, language = {de} } @phdthesis{Kraemer2003, author = {Kr{\"a}mer, Franziska}, title = {Molecular and Biochemical Investigations into VMD2, the gene associated with Best Disease}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-5761}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2003}, abstract = {Best disease (OMIM 153700) is an early-onset, autosomal dominant maculopathy characterized by egg yolk-like lesions in the central retina. The disease gene, the vitelliform macular dystrophy gene type 2 (VMD2), encodes a 585-aa VMD2 transmembrane protein, termed bestrophin. The protein is predominantly expressed on the basolateral side of the retinal pigment epithelium (RPE) and is thought to be involved in the transport of chloride ions. Bestrophin as well as three closely related VMD2-like proteins (VMD2L1-L3) contain multiple putative transmembrane (TM) domains and an invariant tripeptide (RFP) motif in the N-terminal half of the protein. This and the tissue-restricted expression to polarized epithelial cells are typical features of the VMD2 RFP-TM family. Best disease is predominantly caused by missense mutations, clustering in four distinct „hotspots" in the evolutionary highly conserved N-terminal region of the protein. To further augment the spectrum of mutations and to gain novel insights into the underlying molecular mechanisms, we screened VMD2 in a large cohort of affected patients. In total, nine novel VMD2 mutations were identified, raising the total number of known Best disease-related mutations from 83 to 92. Eight out of nine novel mutations are hotspot-specific missense mutations, underscoring their functional/structural significance and corroborating the dominant-negative nature of the mutations. Of special interest is a one-basepair deletion (Pro260fsX288) encoding a truncated protein with a deletion of an important functional domain (TM domain four) as well as the entire C-terminal half of bestrophin. For the first time, a nonsense mutation leading to a 50 \% non-functional protein has been identified suggesting that on rare occassions Best disease may be caused by haploinsufficiency. Molecular diagnostics strongly requires a reliable classification of VMD2 sequence changes into pathogenic and non-pathogenic types. Since the molecular pathomechanism is unclear at present, the pathogenicity of novel sequence changes of VMD2 are currently assessed in light of known mutations. We therefore initiated a publicly accessible VMD2 mutation database (http://www.uni-wuerzburg.de/humangenetics/vmd2.html) and are collecting and administrating the growing number of mutations, rare sequence variants and common polymorphisms. Missense mutations may disrupt the function of proteins in numerous ways. To evaluate the functional consequences of VMD2 mutations in respect to intracellular mislocalization and/or protein elimination, a set of molecular tools were generated. These included the establishment of an in vitro COS7 heterologous expression assay, the generation of numerous VMD2 mutations by site-directed mutagenesis as well as the development of bestrophin-specific antibodies. Surprisingly, membrane fractionation/Western blot experiments revealed no significant quantitative differences between intact and mutant bestrophin. Irrelevant of the type or location of mutation, incorporation of mutant bestrophin to the membraneous fraction was observed. Thus, impaired membrane integration may be ruled out as causative pathomechanism of Best disease consistent with a dominant-negative effect of the mutations. In a different approach, efforts were directed towards identifying and characterizing the VMD2 RFP-TM protein family in mouse. While clarification of the genomic organization of murine Vmd2 was required as basis to generate Vmd2-targeted animals (see below), the study of closely related proteins (Vmd2L1, Vmd2L2 and Vmd2L3) may provide further clues as to the function of bestrophin. For this, biocomputational as well as RT PCR analyses were performed. Moreover, the novel genes were analyzed by real time quantitative RT PCR, displaying predominant expression in testis, colon and skeletal muscle of Vmd2, Vmd2L1 and Vmd2L3 transcripts, respectively as well as in eye tissue. Interestingly, neither an ORF was determined for murine Vmd2L2 nor was the transcript present in a panel of 12 mouse tissues, suggesting that murine Vmd2L2 may represent a functionally inactive pseudogene. The murine Vmd2L3 gene, as its human counterpart, is a highly differentially spliced transcript. Finally, generating mouse models of Best disease will provide essential tools to investigate the pathophysiology of bestrophin in vivo. We have initiated the generation of two different mouse lineages, one deficient of Vmd2 (knock-out) and the other carrying a human disease-related mutation (Tyr227Asn) in the orthologous murine gene (knock-in). Genetic engineering of both constructs has been achieved and presently, four ES clones harboring the homologous recombination event (Vmd2+/-) have been isolated and are ready for the subsequent steps to generate chimeric animals. The resulting mouse lineages will represent two key models to elucidate the functional role of bestrophin in Best disease, in RPE development and physiology.}, subject = {Best-Krankheit}, language = {en} } @phdthesis{FadlElMola2003, author = {Fadl El Mola, Faisal Mohamed}, title = {Bioinformatic and molecular approaches for the analysis of the retinal pigment epithelium (RPE) transcriptome}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-6877}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2003}, abstract = {There is substantial interest in the identification of genes underlying susceptibility to complex human diseases because of the potential utility of such genes in disease prediction and therapy. The complex age-related macular degeneration (AMD) is a prevalent cause of legal blindness in industrialized countries and predominantly affects the elderly population over 75 years of age. Although vision loss in AMD results from photoreceptor cell death in the central retina, the initial pathogenesis likely involves processes in the retinal pigment epithelium (RPE) (Liang and Godley, 2003). The goal of the current study was to identify and characterize genes specifically or abundantly expressed in the RPE in order to determine more comprehensively the transcriptome of the RPE. In addition, our aim was to assess the role of these genes in AMD pathogenesis. Towards this end, a bovine cDNA library enriched for RPE transcripts was constructed in-house using a PCR-based suppression subtractive hybridization (SSH) technique (Diatchenko et al., 1996, 1999), which normalizes for sequence abundance and achieves high enrichment for differentially expressed genes. CAP3 (Huang and Madan, 1999) was used to assemble the high quality sequences of all the 2379 ESTs into clusters or singletons. 1.2\% of the 2379 RPE-ESTs contains vector sequences and was excluded from further analysis. 5\% of the RPE-ESTs showed homology to multipe chromosomes and were not included in further assembly process. The rest of the ESTs (2245) were assembled into 175 contigs and 509 singletons, which revealed approximately 684 unique genes in the dataset. Out of the 684, 343 bovine RPE transcripts did not align to their human orthologues. A large fraction of clones were shown to include a considerable 3´untranslated regions of the gene that are not conserved between bovine and human. It is the coding regions that can be conserved between bovine and human and not the 3' UTR (Sharma et al., 2002). Therefore, more sequencing from the cDNA library with reclustering of those 343 ESTs together with continuous blasting might reveal their human orthologoues. To handle the large volume of data that the RPE cDNA library project has generated a highly efficient and user-friendly RDBMS was designed. Using RDBMS data storage can be managed efficiently and flexibly. The RDBMS allows displaying the results in query-based form and report format with additional annotations, links and search functions. Out of the 341 known and predicted genes identified in this study, 2 were further analyzed. The RPE or/and retina specificity of these two clones were further confirmed by RT-PCR analysis in adult human tissues. Construction of a single nucleotide polymphism (SNP) map was initiated as a first step in future case/control association studies. SNP genotyping was carried out for one of these two clones (RPE01-D2, now known as RDH12). 12 SNPs were identified from direct sequencing of the 23.4-kb region, of which 5 are of high frequency. In a next step, comparison of allele frequencies between AMD patients and healthy controls is required. Completion of the expression analysis for other predicted genes identified during this study is in progress using real time RT-PCR and will provide additional candidate genes for further analyses. This study is expected to contribute to our understanding of the genetic basis of RPE function and to clarify the role of the RPE-expressed genes in the predisposition to AMD. It may also help reveal the mechanisms and pathways that are involved in the development of AMD or other retinal dystrophies.}, subject = {Senile Makuladegeneration}, language = {en} } @phdthesis{Gross2002, author = {Groß, Michaela}, title = {Genomic changes in Fanconi anemia: implications for diagnosis, pathogenesis and prognosis}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-6579}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2002}, abstract = {Fanconi anemia (FA) is a genetically and phenotypically heterogenous autoso- mal recessive disease associated with chromosomal instability, progressive bone marrow failure, typical birth defects and predisposition to neoplasia. The clinical phenotype is similar in all known complementation groups (FA-A, FA-B, FA-C,FA-D1, FA-D2, FA-E, FA-F and FA-G). The cellular phenotype is characterized by hypersensitivity to DNA crosslinking agents (MMC,DEB), which is exploited as a diagnostic tool. Alltogether, the FA proteins constitute a multiprotein pathway whose precise biochemical function(s) remain unknown. FANCA, FANCC, FANCE, FANCF and FANCG interact in a nuclear complex upstream of FANCD2. Complementation group FA-D1 was recently shown to be due to biallelic mutations in the human breast cancer gene 2 (BRCA2). After DNA damage, the nuclear complex regulates monoubiquitylation of FANCD2, result- ing in targeting of this protein into nuclear foci together with BRCA1 and other DNA damage response proteins. The close connection resp. identity of the FA genes and known players of the DSB repair pathways (BRCA1, BRCA2, Rad51) firmly establishs an important role of the FA gene family in the maintenance of genome integrity. The chapter 1 provides a general introduction to the thesis describing the current knowledge and unsolved problems of Fanconi anemia. The following chapters represent papers submitted or published in scientific literature. They are succeeded by a short general discussion (chapter 7). Mutation analysis in the Fanconi anemia genes revealed gene specific mutation spectra as well as different distributions throughout the genes. These results are described in chapter 1 and chapter 2 with main attention to the first genes identified, namely FANCC, FANCA and FANCG. In chapter 2 we provide general background on mutation analysis and we report all mutations published for FANCA, FANCC and FANCG as well as our own unpublished mutations until the year 2000. In chapter 3 we report a shift of the mutation spectrum previously reported for FANCC after examining ten FA-patients belonging to complementation group C. Seven of those patients carried at least one previously unknown mutation, whereas the other three patients carried five alleles with the Dutch founder mu- tation 65delG and one allele with the Ashkenazi founder mutation IVS4+4A>T, albeit without any known Ashkenazi ancestry. We also describe the first large deletion in FANCC. The newly detected alterations include two missense mu- tations (L423P and T529P) in the 3´-area of the FANCC gene. Since the only previously described missense mutation L554P is also located in this area, a case can be made for the existence of functional domain(s) in that region of the gene. In chapter 4 we report the spectrum of mutations found in the FANCG gene com- piled by several laboratories working on FA. As with other FA genes, most muta- tions have been found only once, however, the truncating mutation, E105X, was identified as a German founder mutation after haplotype analysis. Direct compar- ison of the murine and the human protein sequences revealed two leucine zipper motifs. In one of these the only identified missense mutation was located at a conserved residue, suggesting the leucine zipper providing an essential protein-protein interaction required for FANCG function. With regard to genotype-phenotype correlations, two patients carrying a homozygous E105X mutation were seen to have an early onset of the hematological disorder, whereas the missense mutation seems to lead to a disease with later onset and milder clinical course. In chapter 5 we explore the phenomenon of revertant mosaicism which emerges quite frequently in peripheral blood cells of patients suffering from FA. We de- scribe the types of reversion found in five mosaic FA-patients belonging to com- plementation groups FA-A and FA-C. For our single FA-C-patient intragenic crossover could be proven as the mechanism of self-correction. In the remaining four patients (all of them being compound heterozygous in FANCA), either the paternal or maternal allele has reverted back to WT sequence. We also describe a first example of in vitro phenotypic reversion via the emergence of a compensat- ing missense mutation 15 amino acids downstream of the constitutional mutation explaining the MMC-resistance of the lymphoblastoid cell line of this patient. In chapter 6 we report two FA-A mosaic patients where it could be shown that the spontaneous reversion had taken place in a single hematopoietic stem cell. This has been done by separating blood cells from both patients and searching for the reverted mutation in their granulocytes, monocytes, T- and B-lymphocytes as well as in skin fibroblasts. In both patients, all hematopoietic lineages, but not the fibroblasts, carried the reversion, and comparison to their increase in erythrocyte and platelet counts over time demonstrated that reversion must have taken place in a single hematopoietic stem cell. This corrected stem cell then has been able to undergo self-renewal and also to create a corrected progeny, which over time repopulated all hematopoietic lineages. The pancytopenia of these patients has been cured due to the strong selective growth advantage of the corrected cells in vivo and the increased apoptosis of the mutant hematopoietic cells.}, subject = {Fanconi-An{\"a}mie}, language = {en} } @phdthesis{Schuster2012, author = {Schuster, Beatrice}, title = {Genotyping Fanconi Anemia : From Known to Novel Genes -From Classical Genetic Approaches to Next Generation Sequencing}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-85515}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2012}, abstract = {Fanconi anemia (FA) is an autosomal recessive or X-chromosomal inherited disorder, which is not only phenotypically but also genotypically very heterogeneous. While its hallmark feature is progressive bone marrow failure, many yet not all patients suffer additionally from typical congenital malformations like radial ray defects and growth retardation. In young adulthood the cumulative risk for developing hematological or other malignancies is compared to the general population several hundred-fold increased. The underlying molecular defect is the deficiency of DNA interstrand crosslink (ICL) repair. ICLs are deleterious lesions, which interfere with crucial cellular processes like transcription and replication and thereby can lead to malignant transformation, premature senescence or cell death. To overcome this threat evolution developed a highly complex network of interacting DNA repair pathways, which is conserved completely only in vertebrates. The so called FA/BRCA DNA damage response pathway is able to recognize ICLs on stalled replication forks and promotes their repair through homologous recombination (HR). Today we know 15 FA genes (FANCA, -B, -C, -D1, -D2, -E, -F, -G, -I, -J, -L, -M, -N, -O and -P) whose products are involved in this pathway. Although more than 80\% of FA patients carry biallelic mutations in either FANCA, FANCC or FANCG, there are still some who cannot be assigned to any of the known complementation groups. This work aimed to indentify the di¬sease causing mutations in a cohort of those unassigned patients. Initial screens of the candidate genes FAN1, MHF1 and MHF2 did not reveal any pathogenic alterations. Moreover, FAN1 could be excluded as FA candidate gene because patients carrying a homozygous microdeletion including the FAN1 locus did not show a phenotype comparable to FA patients. In the case of MHF1 and MHF2 the reason for the negative screening result is not clear. Mutation carriers might be rare or, regarding the diverse and also FA pathway independent protein functions, phenotypically not comparable to FA patients. Nevertheless, this study contri¬buted to the identification and characterization of the most recent members of the FA pathway - RAD51C (FANCO), SLX4 (FANCP) and XPF (FANCQ). FANCO is one of the RAD51 paralogs and is involved in crucial steps of HR. But since the only reported FA-O patient has so far not developed any hematological anomalies, FANCO is tentatively designated as gene underlying an FA-like disorder. In contrast, patients carrying biallelic mutations in FANCP do not only show hematological anomalies, but as well congenital malformations typical for FA. The distinct role of FANCP in the FA pathway could not be determined, but it is most likely the coordination of structure-specific nucleases during ICL excision. One of these nucleases is the heterodimer XPF/ERCC1. XPF is probably disease causing in the complementation group FA-Q and is the first FA gene, which was identified by Next Generation Sequencing (NGS). Extraordinarily is that mutations in this gene had previously been reported to cause two other disorders, xeroderma pigmentosum and segmental progeria. Despite some overlaps, it was shown that the divergent phenotypes could clearly be distinguished and are caused by distinct functional defects of XPF. Additionally, this work aimed to improve and accelerate the genotyping process of FA patients in general. Therefore, classical approaches should be complemented or fully replaced by approa¬ches using NGS. Massively parallel sequencing of the whole exome proved to be most appro¬priate and the establishment of an FA-specific analysis pipeline facilitated improved molecular diagnostics by combining complementation group assignment and mutation analysis in one step. Consequently two NGS studies revealed the pathogenic defect in several previously unassigned FA patients and thereby added another patient to one of the most recent subtypes, FA-P. In summary, this work contributed not only to further completion of the FA/BRCA DNA repair network by adding three novel genes, it also showed that classical molecular approaches for re¬search as well as for diagnostics could be replaced by NGS.}, subject = {Fanconi An{\"a}mie}, language = {en} }