TY - THES A1 - Segerer, Gabriela T1 - Characterization of cell biological and physiological functions of the phosphoglycolate phosphatase AUM T1 - Charakterisierung zellbiologischer und physiologischer Funktionen der Phosphoglykolat-Phosphatase AUM N2 - Mammalian haloacid dehalogenase (HAD)-type phosphatases are a large and ubiquitous family of at least 40 human members. Many of them have important physiological functions, such as the regulation of intermediary metabolism and the modulation of enzyme activities, yet they are also linked to diseases such as cardiovascular or metabolic disorders and cancer. Still, most of the mammalian HAD phosphatases remain functionally uncharacterized. This thesis reveals novel cell biological and physiological functions of the phosphoglycolate phosphatase PGP, also referred to as AUM. To this end, PGP was functionally characterized by performing analyses using purified recombinant proteins to investigate potential protein substrates of PGP, cell biological studies using the spermatogonial cell line GC1, primary mouse lung endothelial cells and lymphocytes, and a range of biochemical techniques to characterize Pgp-deficient mouse embryos. To characterize the cell biological functions of PGP, its role downstream of RTK- and integrin signaling in the regulation of cell migration was investigated. It was shown that PGP inactivation elevates integrin- and RTK-induced circular dorsal ruffle (CDR) formation, cell spreading and cell migration. Furthermore, PGP was identified as a negative regulator of directed lymphocyte migration upon integrin- and GPCR activation. The underlying mechanisms were analyzed further. It was demonstrated that PGP regulates CDR formation and cell migration in a PLC- and PKC-dependent manner, and that Src family kinase activities are required for the observed cellular effects. Upon integrin- and RTK activation, phosphorylation levels of tyrosine residues 1068 and 1173 of the EGF receptor were elevated and PLCγ1 was hyper-activated in PGP-deficient cells. Additionally, PGP-inactivated lymphocytes displayed elevated PKC activity, and PKC-mediated cytoskeletal remodeling was accelerated upon loss of PGP activity. Untargeted lipidomic analyses revealed that the membrane lipid phosphatidylserine (PS) was highly upregulated in PGP-depleted cells. These data are consistent with the hypothesis that the accumulation of PS in the plasma membrane leads to a pre-assembly of signaling molecules such as PLCγ1 or PKCs that couple the activation of integrins, EGF receptors and GPCRs to accelerated cytoskeletal remodeling. Thus, this thesis shows that PGP can affect cell spreading and cell migration by acting as a PG-directed phosphatase. To understand the physiological functions of PGP, conditionally PGP-inactivated mice were analyzed. Whole-body PGP inactivation led to an intrauterine growth defect with developmental delay after E8.5, resulting in a gradual deterioration and death of PgpDN/DN embryos between E9.5 and E11.5. However, embryonic lethality upon whole-body PGP inactivation was not caused by a primary defect of the (cardio-) vascular system. Rather, PGP inactivated embryos died during the intrauterine transition from hypoxic to normoxic conditions. Therefore, the potential impact of oxygen on PGP-dependent cell proliferation was investigated. Analyses of mouse embryonic fibroblasts (MEFs) generated from E8.5 embryos and GC1 cells cultured under normoxic and hypoxic conditions revealed that normoxia (~20% O2) causes a proliferation defect in PGP-inactivated cells, which can be rescued under hypoxic (~1% O2) conditions. Mechanistically, it was found that the activity of triosephosphate isomerase (TPI), an enzyme previously described to be inhibited by phosphoglycolate (PG) in vitro, was attenuated in PGP-inactivated cells and embryos. TPI constitutes a critical branch point between carbohydrate- and lipid metabolism because it catalyzes the isomerization of the glycolytic intermediates dihydroxyacetone phosphate (DHAP, a precursor of the glycerol backbone required for triglyceride biosynthesis) and glyceraldehyde 3’-phosphate (GADP). Attenuation of TPI activity, likely explains the observed elevation of glycerol 3-phosphate levels and the increased TG biosynthesis (lipogenesis). Analyses of ATP levels and oxygen consumption rates (OCR) showed that mitochondrial respiration rates and ATP production were elevated in PGP-deficient cells in a lipolysis-dependent manner. However under hypoxic conditions (which corrected the impaired proliferation of PGP-inactivated cells), OCR and ATP production was indistinguishable between PGP-deficient and PGP-proficient cells. We therefore propose that the inhibition of TPI activity by PG accumulation due to loss of PGP activity shifts cellular bioenergetics from a pro-proliferative, glycolytic metabolism to a lipogenetic/lipolytic metabolism. Taken together, PGP acts as a metabolic phosphatase involved in the regulation of cell migration, cell proliferation and cellular bioenergetics. This thesis constitutes the basis for further studies of the interfaces between these processes, and also suggests functions of PGP for glucose and lipid metabolism in the adult organism. N2 - Haloazid Dehalogenase (HAD)-Typ Phosphatasen in Säugetieren gehören zu einer großen ubiquitären Proteinfamilie, zu der auch mindestens 40 Phosphatasen, die im menschlichen Organismus vertreten sind, zählen. Eine Vielzahl dieser Phosphatasen hat wichtige physiologische Funktionen beispielsweise als regulatorische Enzyme im Metabolismus. Gleichzeitig werden sie in Verbindung mit Erkrankungen des kardiovaskulären Systems, Stoffwechselstörungen und Krebs gebracht. Dennoch sind die Funktionen vieler Mitglieder dieser Phosphatasen Familie bis heute weitestgehend unbekannt. In der vorliegenden Arbeit wurden die zellbiologischen und physiologischen Funktionen der Phosphoglykolat-Phosphatase PGP, auch AUM genannt, charakterisiert. Zu diesem Zweck wurde mit gereinigtem Enzym nach potenziellen Protein-Substraten von PGP gesucht. Weiterhin wurden zellbiologische Studien mit der spermatogonialen GC1 Zelllinie sowie mit primären Endothelzellen und Lymphozyten durchgeführt. Mit biochemischen Methoden wurden zudem PGP-defiziente Mausembryonen charakterisiert. Es wurde zunächst die Rolle von PGP für RTK- und integrin- induzierte Zellmigration untersucht. Dabei zeigte sich, dass PGP Inaktivierung die Zelladhäsion und Zellmigration steigerte. Gleichzeitig wurde eine vermehrte Bildung von RTK- und integrinvermittelten ringförmigen Plasmamembranausstülpungen, sogenannten Circular Dorsal Ruffles (CDR) auf der dorsalen Zelloberfläche beobachtet. PGP wurde zudem als negativer Regulator integrinund GPCR-induzierter gerichteter Lymphozytenmigration identifiziert. Der zugrundeliegende molekulare Mechanismus wurde näher untersucht. Es konnte gezeigt werden, dass PGP die Bildung von CDRs und die gerichtetete Zellmigration in Abhängigkeit der Phospholipase C- (PLC-), Proteinkinase C- (PKC-) sowie Src Kinase-Aktivität steuert. Nach Integrin- und RTKAktivierung waren die Tyrosinreste 1068 und 1173 des EGF-Rezeptors in PGP-depletierten Zellen vermehrt phosphoryliert und PLCγ1 in diesen Zellen hyperaktiviert. Interessanterweise wurde zudem eine beschleunigte PKC-vermittelte Reorganisation des Zytoskeletts beobachtet. In stimulierten Lymphozyten führte PGP-Inaktivierung zu einer erhöhten PKCAktivität. Durch massenspektrometrische Analysen konnten erhöhte Spiegel des Membranlipids Phosphatidylserin (PS) in PGP-defizienten Zellen nachgewiesen werden. Diese Ergebnisse sind konsistent mit der Hypothese, dass die Anreicherung von PS in der Plasmamembran PGP-defizienter Zellen zu einer Vor-Rekrutierung von Signalproteinen führt, die die Aktivierung von Integrinen, EGF-Rezeptoren und GPCRs mit einer beschleunigten Zytoskelett-Reorganisation verbindet. Hierdurch konnte gezeigt werden, dass PGP durch die Dephosphorylierung von Phosphoglykolat die Zelladhäsion und Zellmigration reguliert. Um die physiologischen Funktionen von PGP zu verstehen, wurden konditional PGPinaktivierte Mäuse untersucht. Die Inaktivierung von PGP im gesamten Organismus führte zu einem Wachstumsdefekt ab Tag E8.5 und dem Tod der Embryonen im Uterus zwischen Tag E9.5 und E11.5. Die beobachtete embryonale Letalität war nicht durch einen Defekt des (kardio-)vaskulären Systems zu erklären. PGP-inaktivierte Embryonen starben zu einem Zeitpunkt, an dem der intrauterine Übergang von einem hypoxischen zu einem normoxischen Millieu stattfindet. Der Einfluss von Sauerstoff wurde deshalb weiter untersucht. Zellwachstumsanalysen unter normoxischen und hypoxischen Bedingungen mit GC1 Zellen und embryonalen Maus-Fibroblasten, die aus E8.5 Embryonen gewonnen wurden zeigten, dass normoxische Bedingungen (~20% O2) einen Wachstumsdefekt PGP-inaktivierter Zellen verursacht, wohingegen dies unter hypoxischen Bedingungen (~1% O2) nicht der Fall war. Mechanistisch konnte gezeigt werden, dass die Aktivität der Triosephosphatisomerase (TPI), ein durch PG in vitro gehemmtes Enzym, in PGP inaktivierten Zellen und Embryonen vermindert war. TPI stellt einen entscheidenden Verzweigungspunkt des Glukose- und Lipidstoffwechsels dar. TPI katalysiert die Isomerisierung der aus der Glykolyse stammenden Intermediate Dihydroxyacetonphosphat (DHAP, eine Vorstufe des für die Triglycerid-Biosynthese benötigten Glycerol-Grundgerüsts) und Glyceraldehyd-3’-phosphat (GADP). Eine Verringerung der TPI-Aktivität in PGPinaktivierten Zellen resultierte in erhöhten Glycerol-3-phosphat Spiegeln und einer gesteigerten Triglycerid-Biosynthese. Die Analyse des zellulären ATP Gehalts und des Sauerstoffverbrauchs bei der mitochondrialen Atmung zeigte, dass sowohl die ATP Produktion als auch die mitochondriale Atmung in Abhängikeit der Lipolyse in PGP-defizienten Zellen erhöht waren. Unter hypoxischen Bedingungen, die zu einer Normalisierung der Zellproliferation führten, wiesen PGP-profiziente und -defiziente Zellen keinen Unterschied bezüglich ATP Produktion und mitochondrialer Atmung auf. Wir vermuten deswegen, dass die Inhibierung der TPI-Aktivität durch PG-Anreicherung aufgrund ausbleibender Hydrolyse durch PGP zu einer Verschiebung des zellulären Energiehaushaltes von Seiten eines pro-proliferativ glykolytischen auf die Seite eines lipogenetisch/lipolytischen Metabolismus führt. Zusammenfassend konnte gezeigt werden, dass PGP als eine metabolische Phosphatase Zellmigration, Zellproliferation wie auch den zellulären Energiehaushalt reguliert. Die vorliegende Arbeit stellt somit die Grundlage für weitere Untersuchungen an der Schnittschnelle dieser zellulären Prozesse dar und lässt auf eine wichtige Rolle von PGP im Glukose- und Lipidstoffwechsel im adulten Organismus schließen. KW - Phosphoglykolatphosphatase KW - Phosphoglykolat-Phosphatase KW - Maus KW - Cytologie KW - Physiologie KW - Phosphatasen Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-123847 ER - TY - JOUR A1 - Schramm, Sabine A1 - Fraune, Johanna A1 - Naumann, Ronald A1 - Hernandez-Hernandez, Abrahan A1 - Höög, Christer A1 - Cooke, Howard J. A1 - Alsheimer, Manfred A1 - Benavente, Ricardo T1 - A Novel Mouse Synaptonemal Complex Protein Is Essential for Loading of Central Element Proteins, Recombination, and Fertility N2 - The synaptonemal complex (SC) is a proteinaceous, meiosis-specific structure that is highly conserved in evolution. During meiosis, the SC mediates synapsis of homologous chromosomes. It is essential for proper recombination and segregation of homologous chromosomes, and therefore for genome haploidization. Mutations in human SC genes can cause infertility. In order to gain a better understanding of the process of SC assembly in a model system that would be relevant for humans, we are investigating meiosis in mice. Here, we report on a newly identified component of the murine SC, which we named SYCE3. SYCE3 is strongly conserved among mammals and localizes to the central element (CE) of the SC. By generating a Syce3 knockout mouse, we found that SYCE3 is required for fertility in both sexes. Loss of SYCE3 blocks synapsis initiation and results in meiotic arrest. In the absence of SYCE3, initiation of meiotic recombination appears to be normal, but its progression is severely impaired resulting in complete absence of MLH1 foci, which are presumed markers of crossovers in wild-type meiocytes. In the process of SC assembly, SYCE3 is required downstream of transverse filament protein SYCP1, but upstream of the other previously described CE–specific proteins. We conclude that SYCE3 enables chromosome loading of the other CE–specific proteins, which in turn would promote synapsis between homologous chromosomes. KW - Maus KW - Genetik KW - Cytologie Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-68895 ER - TY - THES A1 - Sienerth, Arnold R. T1 - Regulation of anti-inflammatory cytokine IL-10 by the Polycomb Group Protein Bmi1 T1 - Regulation des anti-inflammatorischen Zytokines Il-10 durch das Polycomb Group Protein Bmi1 N2 - Macrophages are important effector cells of the innate and adaptive immune response and exert a wide variety of immunological functions which necessitates a high level of plasticity on the chromatin level. In response to pathogen-associated molecular patterns (PAMPs) or inflammatory signals macrophages undergo a process of cellular activation which is associated with morphologic, functional and biochemical changes. Toll-like receptors (TLR) are able to sense many different PAMPs. TLR4 is an important sensor for lipopolysaccharide (LPS) which elicits a major portion of the host’s inflammatory response through the activation of many different signaling pathways such as the NF-κB and the MAPK protein kinase pathways RASRAF- MEK-ERK, p38 and JNK. Polycomb group (PcG) proteins are well known chromatin modifiers which function in large complexes and are required to maintain chromatin structure in a transcriptionally repressed state. It has previously been shown that the PcG protein Bmi1 is phosphorylated by 3pK, a downstream effector kinase of the MAPK protein kinase pathways RAS-RAF-MEK-ERK, p38 and JNK. In this work I analyzed the role of Bmi1 as a downstream effector of MAPK signaling during macrophage activation. Unexpectedly a rapid up-regulation on the Bmi1 protein level was observed in bone marrow derived macrophages (BMDMs) after LPS treatment. The Bmi1 induction was associated with transient protein phosphorylation that occured downstream of MAPK signaling. LPS treatment of BMDMs in the absence of Bmi1 resulted in a pronounced increase of IL-10 secretion. This secretion of the anti-inflammatory cytokine IL-10 was associated with increased IL-10 mRNA levels. Furthermore, siRNA mediated knock down of Bmi1 in J774A.1 macrophages also resulted in elevated IL-10 mRNA levels in response to LPS. ChIP analysis revealed that Bmi1 binds to throughout the il-10 locus. Alternative activation of wild type BMDMs via concomitant TLR4 and FcγR activation which triggers high IL-10 expression is paralleled by an attenuated Bmi1 protein expression. These results identify Bmi1 as a repressor of IL-10 expression during activation of macrophages. N2 - Makrophagen sind wichtige Effektorzellen der angeborenen und adaptiven Immunantwort und üben eine große Fülle von immunologischen Funktionen aus. Deshalb benötigen sie eine hohe Plastizität auf Chromatinebene. Als Antwort auf pathogen-assoziierte molekulare Muster (PAMPs) oder andere inflammatorische Signale machen Makrophagen einen zellulären Aktivierungsprozess durch, der mit morphologischen, funktionellen und biochemischen Veränderungen assoziiert ist. Toll-like Rezeptoren (TLR) sind fähig, solche PAMPs zu erkennen. Der TLR4 ist ein wichtiger Sensor für Lipopolysaccharid (LPS). LPS löst eine inflammatorische Antwort des Wirtes durch die Aktivierung vieler verschiedener Signalwege wie zum Beispiel des NF-κB Signalwegs und der MAPK Proteinkinasensignalwege RAS-RAFMEK- ERK, p38 und JNK aus. Polycomb Gruppen (PcG) Proteine arbeiten in großen Proteinkomplexen zusammen und werden benötigt, um das Chromatin in einem transkriptionell reprimierten Zustand beizubehalten. Es konnte gezeigt werden, dass das PcG Protein Bmi1 von 3pK, einer Effektorkinase der MAPK Proteinkinasensignalwege RAS-RAF-MEK-ERK, p38 und JNK, phosphoryliert wird. In meiner Doktorabeit analysierte ich die Rolle von Bmi1 als downstream-Effektor der MAPKSignaltransduktion während der Makrophagenaktivierung. Es wurde unerwarteterweise eine schnelle Induktion von Bmi1 auf Proteinebene in Knochenmarks-Makrophagen (BMDMs) beobachtet. Diese Induktion war MAPK-abhängig und mit einer transienten Proteinphosphorylierung assoziiert. Die LPS-Behandlung der BMDMs in Abwesenheit von Bmi1 hatte erhöhte IL-10 Sekretion zur Folge. Diese erhöhte Sekretion des antiinflammatorischen Zytokines IL-10 war mit erhöhten IL-10 mRNA Expression verbunden. Des Weiteren hatte ein Bmi1 siRNA-vermittelter Gen-Knockdown in J774A.1 Makrophagen eine erhöhte IL-10 mRNA-Expression zur Folge. ChIP Analysen haben gezeigt, dass Bmi1 am ganzen il-10-Locus verteilt binden kann. Eine TLR4 und FcγR vermittelte alternative Aktivierung von BMDMs, die mit hoher IL-10 Expression verbunden ist, führte zu einer attenuierten Bmi1 Proteinexpression. Diese Ergebnisse zusammengenommen weisen Bmi1 als Repressor von IL-10 während der Makrophagenaktivierung aus. KW - Interleukin 10 KW - Makrophage KW - Repression KW - Immunologie KW - Cytologie KW - Makrophage KW - Genregulation KW - Bmi1 KW - Polycomb KW - LPS KW - IL-10 KW - Bmi1 KW - Polycomb KW - LPS KW - IL-10 KW - Cell Biology KW - Immunology Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-49990 ER - TY - JOUR A1 - Benavente, Ricardo A1 - Scheer, Ulrich A1 - Chaly, Nathalie T1 - Nucleocytoplasmic sorting of macromolecules following mitosis: fate of nuclear constituents after inhibition of pore complex function N2 - PtK2 cells in which pore complex-mediated transport is blocked by microinjection early in mitosis of a monoclonal antibody (specific for an Mr 68000 pore complex glycoprotein) or of wheat germ agglutinin (WGA) complete cytokinesis. However, their nuclei remain stably arrested in a telophase-like organization characterized by highly condensed chromatin and the absence of nucleoli, indicating a requirement for pore-mediated transport for the reassembly of interphase nuclei. We have now examined this requirement more closely by monitoring the behavior of individual nuclear macromolecules in microinjected cells using immunofluorescence microscopy and have investigated the effect of microinjecting the antibody or WGA on cellular ultrastructure. The absence of nuclear transport did not affect the sequestration into daughter nuclei of components such as DNA, DNA topoisomerase I and the nucleolar protein fibrillarin that are carried through mitosis on chromosomes. On the other hand, lamins, snRNAs and the p68 pore complex glycoprotein, all cytoplasmic during mitosis, remained largely cytoplasmic in the telophase-arrested cells. Electron microscopy showed the nuclei to be surrounded by a doublelayered membrane with some inserted pore complexes. In addition, however, a variety of membranous structures with associated pore complexes was regularly noted in the cytoplasm, suggesting that chromatin may not be essential for the postmitotic formation of pore complexes. We propose that cellular compartmentalization at telophase is a two-step process. First, a nuclear envelope tightly encloses the condensed chromosomes, excluding non-selectively all macromolecules not associated with the chromosomes. Interphase nuclear organization is then progressively restored by selective pore complex-mediated uptake of nuclear proteins from the cytoplasm. KW - Cytologie KW - Nucleocytoplasmic transport KW - nuclear organization KW - nuclear envelope KW - nucleologenesis KW - mitosis Y1 - 1989 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-40777 ER - TY - JOUR A1 - Weber, Klaus A1 - Osborn, Mary A1 - Franke, Werner W. A1 - Seib, Erinita A1 - Scheer, Ulrich A1 - Herth, Werner T1 - Identification of microtubular structures in diverse plant and animal cells by immunological cross-reaction revealed in immunofluorescence microscopy using antibodies against tubulin from porcine brain N2 - Antibody against tubulin from porcine brain was used to evaluate the immunological cross reactivity of tubulin from a variety of animal and plant cells. Indirect immunofluorescence microscopy revealed microtubule-containing structures including cytoplasmic microtubules, spindle microtubules, cilia and fIagella. Thus tubulin from diverse species of both mammals and plants show immunological cross-reactivity with tubulin from porcine brain. Results obtained by immunofluorescence microscopy are whenever possible compared with previously known ultrastructural results obtained by electron microscopy. KW - Cytologie KW - Microtubules KW - immunofluorescence KW - evolution KW - antibody KW - sperm Y1 - 1977 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-41383 ER - TY - JOUR A1 - Scheer, Ulrich T1 - Structural organization of spacer chromatin between transcribed ribosomal RNA genes in amphibian oocytes N2 - Transcribed nucleolar chomatin, including the spacer regions interspersed between the rRNA genes, is different from the bulk of nontranscribed chromatin in that the DNA of these regions appears to be in an extended (B) conformation when examined by electron microscopy. The possibility that this may reflect artificial unfolding of nucleosomes during incubation in very low salt buffers as routinely used in such spread preparations has been examined by studying the influence of various ion concentrations on nucleolar chromatin structure. Amplified nucleolar chromatin of amphibian oocytes (Xenopus laevis, Pleurodeles waltlii, Triturus cristatus) was spread in various concentrations of NaCl (range 0 to 20 mM). Below 1 mM salt spacer chromatin frequently revealed a variable number of irregularly shaped beads, whereas above this concentration the chromatin axis appeared uniformly smooth. At all salt concentrations studied, however, the length distribution of spacer and gene regions was identical. Preparations fixed with glutaraldehyde instead of formaldehyde, or unftxed preparations, were indistinguishable in this respect. The observations indicate that (i) rDNA spacer regions are not compacted into nucleosomal particles and into supranucleosomal structures when visualized at chromatin stabilizing salt concentrations (e.g., 20 mM NaCl), and (ii) spacer DNA is covered by a uniform layer of proteins of unknown nature which, at very low salt concentrations (below 1 mM NaCl), can artificially give rise to the appearance of small granular particles of approximately nucleosome-like sizes. These particles, however, are different from nucleosomes in that they do not foreshorten the associated spacer DNA. The data support the concept of an altered nucleohistone conformation not only in transcribed chromatin but also in the vicinity of transcriptional events. KW - Cytologie KW - Chromatin structure KW - rDNA KW - amphibian oocytes Y1 - 1980 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-41057 ER - TY - JOUR A1 - Scheer, Ulrich A1 - Messner, Karin A1 - Hazan, Rachel A1 - Raska, Ivan A1 - Hansmann, Paul A1 - Falk, Heinz A1 - Spiess, Eberhard A1 - Franke, Werner W. T1 - High sensitivity immunolocalization of double and single-stranded DNA by a monoclonal antibody N2 - A monoclonal antibody (AK 30-10) is described which specifically reacts with DNA both in double and single-stranded forms but not with other molecules and structures, including deoxyribonucleotides and RNAs. When used in immunocytochemical experiments on tissue sections and permeabilized cultured cells, this antibody detects DNA-containing structures, even when the DNA is present in very small amounts. Examples of high resolution detection include the DNA present in amplified extrachromosomal nucleoli, chromomeres of lampbrush chromosomes, mitochondria, chloroplasts and mycoplasmal particles. In immunoelectron microscopy using the immunogold technique, the DNA was localized in distinct substructures such as the "fibrillar centers" of nucleoli and certain stromal centers in chloroplasts. The antibody also reacts with DNA of chromatin of living cells, as shown by microinjection into cultured mitotic cells and into nuclei of amphibian oocytes. The potential value and the limitations of immunocytochemical DNA detection are discussed. KW - Cytologie KW - DNA antibodies KW - monoclonal antibodies KW - DNA immunolocalization KW - chromatin KW - mycoplasma tests Y1 - 1987 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-41063 ER - TY - JOUR A1 - Weber, Thomas A1 - Schmidt, Erwin A1 - Scheer, Ulrich T1 - Mapping of transcription units on Xenopus laevis lampbrush chromosomes by in situ hybridization with biotin-labeled cDNA probes N2 - A non-radioactive in situ hybridization method is described for the localization of transcription units of defined genes to lateral loops of Xenopus laevis lampbrush chromosomes. Two Xenopus cONA probes were used encoding the nucleolar protein N038/ B23 and cytokeratin 1(8). Both proteins are known to be synthesized in Xenopus oocytes, and Northern blot analysis revealed the presence of the corresponding mRNAs in different oogenic stages. The probes were enzymatically labeled with biotin-dCTP and hybridized to lampbrush chromosomes. The sites of hybridization were detected either by indirect immunofluorescence microscopy using rabbit antibodies against biotin and fluorescein-conjugated antirabbit IgG or enzymatically using peroxidase-conjugated streptavi din. The probe encoding the nucleolar protein hybridized to two sets of lateral loops on different bivalents, the cytokeratin probe to at least four. Our finding that each probe hybridized to more than one chromosomal locus may reflect the tetraploid nature of the Xenopus laevis genome or results from cross-hybridization to other transcriptionally active members of the N038/ B23-nucleoplasmin or the cytokeratin-Iamin gene families. The method described should facilitate further in situ hybridization studies with appropriate genomic clones in order to map specific DNA sequences to defined loop regions and to come to a better understanding of the relationship between loop organization and gene transcription unit. KW - Cytologie KW - Lampbrush chromosomes KW - in situ hybridization KW - transcription units KW - Xenopus oocytes Y1 - 1989 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-40763 ER - TY - JOUR A1 - Thiry, Marc A1 - Scheer, Ulrich A1 - Goessens, Guy T1 - Immunoelectron microscopic study of nucleolar DNA during mitosis in Ehrlich tumour cells N2 - In order to investigate the DNA localization within Ehrlich tumor cell nucleoli during mitosis, two recent immunocytochemical methods using either an anti-DNA or an anti-bromodeoxyuridine (BrdU) monoclonal antibody have been applied. In both cases, the immunogold labeling has been performed on ultrathin sections of cells embedded either in Lowicryl K4M or in Epon, respectively. Identical results are observed with both immunocytochemical approaches. In the interphase nucleolus, besides the labeling of the perinucleolar chromatin shell and of its intranucleolar invaginations which penetrate into the nucleolar body and often terminate at the fibrillar centers, a few gold particles are also preferentially found towards the peripheral region of the fibrillar centers. In contrast, the dense fibrillar component and the granular component are never labeled. During mitosis, the fibrillar centers persist at the chromosomal nucleolus organizing regions (NOR's) and can be selectively stained by the silver method. However, these metaphase fibrillar centers are no longer decorated by the DNA- or BrdU antibodies. These results indicate that until the end of prophase, rRNA genes are present inside the fibrillar center material, disappear during metaphase and reappear in reconstituting nucleoli during telophase. Thus, fibrillar centers appear to represent structures sui generis, which are populated by rRNA genes only when the nucleolus is functionally active. In segregated nucleoli after actinomycin D treatment, the DNA labeling is exclusively restricted to the perinucleolar chromatin blocks. These findings also suggest that the DNA content of the fibrillar center material varies according to the rRNA transcription level of the cells. The results are discussed in the light of the present knowledge of the functional organization of the nucleolus. KW - Cytologie KW - Nucleolus KW - DNA KW - mitosis Y1 - 1988 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-40745 ER - TY - JOUR A1 - Franke, Werner W. A1 - Scheer, Ulrich A1 - Trendelenburg, Michael F. A1 - Spring, Herbert A1 - Zentgraf, Hanswalter T1 - Absence of nucleosomes in transcriptionally active chromatin N2 - The ultrastructure of twO kinds of transcription ally active chromatin, the lampbrush chromosome loops and the nucleoli from amphibian oocytes and primary nuclei of the green alga Acetabularia, has been examined after manual isolation and dispersion in low salt media of slightly alkaline pH using various electron microscopic staining techniques (positive staining, metal shadowing, negative staining, preparation on positively charged films, etc.) and compared with the appearance of chromatin from various somatic cells (hen erythrocytes, rat hepatocytes, ClIltured murine sarcoma cells) prepared in parallel. While typical nucleosomes were revealed with all the techniques for chromatin from the latter three cell system, no nucleosomes were identified in either the lampbrush chromosome structures or the nucleolar chromatin. Nucleosomal arrays were absent not only in maximally fibril-covered matrix units but also in fibril-free regions between transcriptional complexes, including the apparent spacer intercepts between different transcriptional units. Moreover, comparisons of the length of the repeating units of rDNA in the transcribed state with those determined in the isolated rDNA and with the lengths of the first stable product of rDNA transcription, the pre-rRNA, demonstrated that the transcribed rDNA was not significantly shortened and/or condensed but rather extended in the transcriptional units. Distinct granules of about nucleosomal size which were sometimes found in apparent spacer regions as well as within matrix units of reduced fibril density were shown not to represent nucleosomes since their number per spacer unit was not inversely correlated with the length of the specific unit and also on the basis of their resistance to treatment with the detergent Sarkosyl NL-30. It is possible to structurally distinguish between transcriptionally active chromatin in which the DNA is extended in a non-nucleosomal form of chromatin and condensed, inactive chromatin within the typical nucleosomal package. The characteristic extended structure of transcriptionally active chromatin is found not only in the transcribed genes but also in non-transcribed regions within or between ("spacer") transcriptional units as well as in transcriptional units that are untranscribed amidst transcribed ones and/or have been inactivated for relatively short time. It is hypothesized that activation of transcription involves a transition from a nucleosomal to an extended chromatin organisation and that this structural transition is not specific for single "activated" genes but may involve larger chromatin regions, including adjacent untranscribed intercepts. KW - Cytologie KW - Chromatin structure KW - nucleosomes KW - transcription KW - electron microscopy Y1 - 1976 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-40646 ER -