TY - JOUR A1 - Viebrock, A. A1 - Perz, A. A1 - Sebald, Walter T1 - The imported preprotein of the proteolipid subunit of the mitochondrial ATP synthase from Neurospora crassa. Molecular cloning and sequencing of the mRNA N2 - No abstract available KW - Biochemie Y1 - 1982 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-62742 ER - TY - JOUR A1 - Weich, H. A. A1 - Sebald, Walter A1 - Schairer, H. U. A1 - Hoppe, J. T1 - The human osteosarcoma cell line U-2 OS expresses a 3.8 kilobase mRNA which codes for the sequence of the PDGF-B chain N2 - A cDNA clone of about 2500 basepairswas prepared from the human osteosarcoma cellline U-2 OS by hybridizing with a v-sis probe. Sequence analysis showed that this cDNA contains the coding region for the PDGF-B chain. Here we report that the mitogen secreted by these osteosarcoma cells contains the PDGF-B chain and is probably a homodimer of two B-chains. KW - Biochemie KW - Platelet-derived growthfactor KW - cDNA KW - Oncogene KW - Tumor cell Y1 - 1986 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-62588 ER - TY - JOUR A1 - Gessler, Manfred A1 - Hameister, H. A1 - Henry, I. A1 - Junien, C. A1 - Braun, T. A1 - Arnold, H. H. T1 - The human MyoD1 (MYF3) gene maps on the short arm of chromosome 11 but is not associated with the WAGR locus or the region for the Beckwith-Wiedemann syndrome N2 - The human gene encoding the myogenic determination factor myf3 (mouse MyoD1) has been mapped to the short arm of chromosome 11. Analysis of several somatic cell hybrids containing various derivatives with deletions or translocations revealed that the human MyoD (MYF3) gene is not associated with the WAGR locus at chromosomal band 11pl3 nor with the loss of the heterozygosity region at 11p15.5 related to the Beckwith-Wiedemann syndrome. Subregional mapping by in situ hybridization with an myf3 specific probe shows that the gene resides at the chromosomal band llp14, possibly at llp14.3. KW - Biochemie Y1 - 1990 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-59221 ER - TY - JOUR A1 - Gessler, Manfred A1 - König, A. A1 - Bruns, G. A. P. T1 - The genomic organization and expression of the WT1 gene N2 - The Wilms tumor gene WTl, a proposed tumor suppressor gene, has been identifled based on its location within a homozygous deletion found in tumor tissue. The gene encodes a putative transcription factor containing a Cys/His zinc finger domain. The critical homozygous deletions, however, are rarely seen, suggesting that in many cases the gene may be inactivated by more subtle alterations. To facilitate the seareh for smaller deletions and point mutations we have established the genomic organization of the WTl gene and have determined the sequence of all 10 exons and flanking intron DNA. The pattern of alternative splicing in two regions has been characterized in detail. These results will form the basis for future studies of mutant alleles at this locus. KW - Biochemie Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-59195 ER - TY - JOUR A1 - Sebald, Walter A1 - Graf, T. A1 - Lukins, H. B. T1 - The dicyclohexylcarbodiimide-binding protein of the mitochondrial ATPase complex from Neurospora crassa and Saccharomyces cerevisiae. Identification and isolation N2 - Incubation of mitochondria from Neuraspara crassa and Saccharomyces cerevisiae with the radioactive ATPase inhibitor [14C]dicyclohexylcarbodiimide results in the irreversible and rather specific labelling of a low-molecular-weight polypeptide. This dicyclohexylcarbodiimide-binding protein is identical with the smallest subunit (Mr 8000) of the mitochondrial ATPase complex, and it occurs as oligomer, probably as hexamer, in the enzyme protein. The dicyclohexylcarbodiimide-binding protein is extracted from whole mitochondria with neutral chloroformjmethanol both in the free and in the inhibitor-modified form. In Neuraspara and yeast, this extraction is highly selective and the protein is obtained in homogeneaus form when the mitochondria have been prewashed with certain organic solvents. The bound dicyclohexylcarbodiimide Iabel is enriched in the purified protein up to 50-fold compared to whole mitochondria. Based on the amino acid analysis, the dicyclohexylcarbodiimide-binding protein from Neurospora and yeast consists of at least 81 and 76 residues, respectively. The content of hydrophobic residues is extremely high. Histidine and tryptophan are absent. The N-terminal ~mino acid is tyrosine in Neuraspara and formylmethionine in yeast. KW - Biochemie Y1 - 1979 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-62792 ER - TY - JOUR A1 - Graf, T. A1 - Sebald, Walter T1 - The dicyclohexylcarbodiimide-binding protein of the mitochondrial ATPase complex from beef heart. Isolation and amino acid composition N2 - No abstract available KW - Biochemie Y1 - 1978 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-62806 ER - TY - JOUR A1 - Michel, R. A1 - Wachter, E. A1 - Sebald, Walter T1 - Synthesis of a larger precursor for the proteolipid subunit of the mitochondrial ATPase complex of Neurospora crassa in a cell-free wheat germ system N2 - No abstract available KW - Biochemie Y1 - 1979 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-62789 ER - TY - THES A1 - Kraich, Michael T1 - Strukturelle und funktionelle Untersuchungen der Interaktion zwischen Ligand und Rezeptor im Interleukin-4- und Interleukin-13-System T1 - Structural and functional studies of the interaction between ligand and receptor in the interleukin-4 and interleukin-13 system N2 - Interleukin-4 (IL-4) und Interleukin-13 (IL-13) sind bedeutende Regulatorproteine des Immunsystems. Sie spielen eine entscheidende Rolle bei der Entstehung und dem Verlauf von allergischen Erkrankungen, wie z.B. Asthma. Um ihre Signale in die Zielzelle zu transduzieren, kann von beiden Zytokinen der gleiche Zelloberflächenrezeptor verwendet werden, wodurch sich die überlappenden, biologischen Funktionen erklären lassen. Dieser gemeinsam genutzte Rezeptor ist aus den beiden Untereinheiten IL-4Ralpha; und IL-13Ralpha1 aufgebaut. Da IL-4 und IL-13 auf Aminosäureebene nur etwa 25% Sequenzidentität besitzen und stark unterschiedliche Affinitäten zu den beiden Rezeptorketten besitzen, stellt sich die Frage, durch welchen molekularen Erkennungsmechanismus, die Affinität und die Spezifität der Ligand-Rezeptor-Interaktion unabhängig voneinander reguliert werden kann. In dieser Arbeit gelang es, rekombinante Expressions- und Aufreinigungsstrategien für IL-13 und die extrazellulären Domänen der Rezeptorketten IL-13Ralpha1 und IL-13Ralpha2 zu entwickeln. Dadurch war es mögliche, eine breite Mutations-/Interaktionsanalyse der IL-13Ralpha1-Kette durchzuführen.Es konnte gezeigt werden, dass die N-terminale FnIII-ähnliche Domäne von IL-13Ralpha1 sowohl an der Bindung von IL-13 als auch an der Interaktion mit IL-4 beteiligt ist. Im funktionellen Bindeepitop der IL-13Ralpha1-Kette wurden die Aminosäurereste Arg84, Phe253 und Tyr321 als Hauptbindungsdeterminanten für die Interaktion mit IL-13 identifiziert. Durch die Interaktionsstudien der IL-13Ralpha1-Varianten mit IL-4 wurde gezeigt, dass diese Hauptbindungsdeterminanten auch für die niederaffine Bindung von IL-4 von größter Bedeutung sind. Die funktionellen Bindeepitope für IL-4 und IL-13 auf der IL-13Ralpha1-Kette sind nahezu identisch und überlappen in einem großen Bereich. Aufgrund der Ergebnisse aus der Mutagenesestudie war es möglich, ein Strukturmodell der extrazellulären Domäne der IL-13Ralpha1-Kette zu erstellen. Darin wird eine neuartige Orientierung der N-terminalen FnIII-Domäne und deren Beteiligung an der Ligandeninteraktion dargestellt. Mit Hilfe des Strukturmodells gelang es, neue Aminosäurerest auf der Oberfläche von IL-13 zu identifizieren, die an der Bindung zu IL-13Ralpha1 beteiligt sind, was die Relevanz des Strukturmodells weiter unterstreicht. In einem weiteren Teil dieser Arbeit wurde versucht, den molekularen Mechanismus aufzuklären, durch den es den superagonistischen IL-4-Varianten T13D und F82D gelingt, mit dreifach höherer Affinität an die IL-4Ralpha-Kette zu binden, als wildtypischer Ligand. Durch strukturelle und funktionelle Untersuchungen wurde gezeigt, dass der Affinitätssteigerung ein indirekter Mechanismus zugrunde liegt, bei dem eine Konformationsänderung und die Fixierung der Arg85-Seitenkette von IL-4 zur Ausbildung von zusätzlichen Ligand-Rezeptor-Interaktionen führt. Das Bindeepitop zwischen IL-4 und der IL-4Ralpha-Kette besitzt eine modulare Architektur aus drei unabhängig voneinander agierenden Interaktionsclustern. Bei der Interaktion von wildtypischem IL-4 mit IL-4Ralpha tragen nur zwei dieser Cluster in signifikanter Weise zur freien Bindeenergie bei. Im Falle der superagonistischen IL-4-Varianten ist jedoch auch das dritte Cluster an der Generierung von zusätzlicher, freier Bindeenergie beteiligt, wodurch die Affinität zwischen Ligand und Rezeptor erhöht wird. Damit stellt der modulare Aufbau der Interaktionsfläche zwischen IL-4 und der IL-4Ralpha-Kette möglicherweise einen Mechanismus dar, über den Proteine die Affinität von Wechselwirkungen über einen großen Bereicht variieren können, ohne dabei Spezifität einzubüssen. Da IL-4 und IL-13 als interessante Zielmoleküle für die Therapie von allergischen und asthmatischen Erkrankungen erkannt worden sind, können die in der vorliegenden Arbeit gewonnenen Informationen über den Bindemechanismus und die Einblicke in den molekularen Charakter der Interaktion zwischen den beiden Zytokinen und ihren spezifischen Rezeptorketten dabei helfen, neuartige und hoch spezifische, inhibitorische Moleküle zu entwickeln. N2 - Interleukin-4 (IL-4) and Interleukin-13 (IL-13) are important regulatory proteins of the immune system. They play a key role in the development and the progression of allergic diseases like asthma. For signal transduction into the target cell, both cytokines can use an identical cell surface receptor, which is an explanation for many overlapping biological functions of IL-4 and IL-13. This common receptor consists of the two subunits IL-4Ralpha and IL-13Ralpha1. Because IL-4 and IL-13 share only 25% sequence identity on the amino acid sequence level and because they show very different affinities to the two receptor chains, the question has to be raised, by which molecular recognition mechanism it is possible to regulate affinity and specificity of the ligand-receptor-interaction independently. In the course of this work recombinant expression and purification strategies for IL-13 and the extracellular domains of IL-13Ralpha1 and IL-13Ralpha2 were established. Therefore it was possible to perform a broad mutagenesis and interaction analysis of the IL-13Ralpha1 chain. It was shown, that the N-terminal FnIII-like domain of IL-13Ralpha1 participates in the binding of IL-13 as well as in the interaction with IL-4. As part of the functional epitope the amino acid residues Arg84, Phe253 and Tyr321 were identified to be main binding determinants for the interaction with IL-13. By carrying out interaction studies with IL-4 it could be demonstrated, that the same residues are also from great importance for the low affinity binding of IL-4. The functional epitopes for the binding of IL-4 and IL-13 are almost identical and are overlapping in a large area. Due to the results of the mutagenesis study it was possible to generate a structural model of the extracellular domain of the IL-13Ralpha1 chain. A key feature of this model is the novel orientation of the N-terminal FnIII-like domain and its involvement in ligand binding. According to the modelled structure new residues in IL-13 could be identified, that participate in the interaction with the IL-13Ralpha1. This further underlines the relevance of the shown structural model of the extracellulardomain of the IL-13Ralpha1 chain. In a different part of this work it was tried to elucidate the molecular mechanism, which enables the super-agonistic IL-4 variants T13D and F82D bind IL-4Ralpha with three times higher affinity than wildtype IL-4. With the help of structural und functional analysis it could be shown, that an indirect mechanism leads to the gain of affinity. A conformational change in and the fixation of the Arg85 side chain in IL-4 result in the formation of additional interactions between ligand and receptor. The binding interface between IL-4 and IL-4Ralpha exhibits a modular architecture consisting of three independently acting interaction clusters. For the binding of wild-type IL-4 to the IL-4Ralpha chain only two of the three clusters contribute a significant amount to the overall free binding energy. In the case of the super-agonistic IL-4 variants all three interaction clusters are used to generate additional free binding energy and to increase the affinity between ligand and receptor. Therefore the modular design of the IL-4/IL-4Ralpha interaction interface probably represents a mechanism, which enables proteins to alter the affinity of interactions over a broad range without loosing specificity. Because IL-4 and IL-13 were discovered as promising targets for the therapy of allergic and asthmatic diseases, the acquired information about the binding mechanism and the molecular characteristics of the interaction between the cytokines IL-4 and IL-13 and their specific receptor chains may help to design novel and highly specific inhibitory molecules. KW - Renaturierung KW - Ligand KW - Biochemie KW - Interleukin 4 KW - Interleukin 13 KW - Interaktion KW - Rezeptor KW - Immunologie KW - Allergie KW - Allerg KW - Proteinbiochemie KW - BIAcore KW - Oberflächenplasmonresonanz (SPR) KW - Strukturbiologie KW - interleukin-4 KW - interleukin-13 KW - protein interaction KW - BIAcore KW - structural biology Y1 - 2008 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-27655 ER - TY - JOUR A1 - Sebald, Walter A1 - Friedl, P. A1 - Schairer, H. U. A1 - Hoppe, J. T1 - Structure and genetics of the H\(^+\)-conducting F\(_0\) portion of the ATP synthase N2 - The ATP synthase occurs in remarkably conserved form in procaryotic and eucaryotic cells. Thus, our present knowledge of ATP synthase is derived from sturlies of the enzyme from different organisms, each affering specific experimental possibilities. In recent tim es, research on the H\(^+\) -conducting F0 part of the ATP synthase has been greatly stimulated by two developments in the Escherichio coli system. Firstly, the purification and reconstitution of the whole ATP synthase as weil as the proton conductor Fa from E. coli have been achieved. These functionally active preparations are well defined in terms of subunit composition, similar to the thermophilic enzyme from PS-3 studied by Kagawa's group.u Secondly, the genetics and the molecular cloning of the genes of all the F\(_0\) subunits from E. coli yielded information on the function of subunit polypeptides and essential amino acid residues. Furthermore, the amino acid sequence of hydrophobic F\(_0\) subunits, which are difficult to analyze by protein-chemical techniques, could be derived from the nucleotide sequence of the genes. These achievements, which shall be briefly summarized in the next part of this communication, provide the framework to study specific aspects of the structure and function of the F\(_0\) subunits. KW - Biochemie Y1 - 1982 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-62733 ER - TY - JOUR A1 - Dummer, R. A1 - Posseckert, G. A1 - Nestle, F. A1 - Witzgall, R. A1 - Burger, M. A1 - Becker, J. C. A1 - Schäfer, E. A1 - Wiede, J. A1 - Sebald, Walter A1 - Burg, G. T1 - Soluble interleukin-2 receptors inhibit interleukin 2-dependent proliferation and cytotoxicity: explanation for diminished natural killer cell activity in cutaneous T-cell lymphomas in vivo? N2 - No abstract available KW - Biochemie Y1 - 1992 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-62473 ER -