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Determination of the structure of complex I of Yarrowia lipolytica by single particle analysis
(2004)
Komplex I enthält ein Flavinmononukleotid sowie mindestens acht Eisen- Schwefel Zentren als redoxaktive Cofaktoren. Da ein wesentlicher Teil des mitochondrialen Genoms für Untereinheiten von Komplex I codiert, betrifft eine Vielzahl von mitochondrialen Erkrankungen diesen Enzymkomplex.
Komplex I wurde bisher aus Mitochondrien, Chloroplasten und Bakterien isoliert. Die Minimalform von Komplex I wird in Bakterien gefunden, wo er aus 14 (bzw 13 im Falle einer Genfusion) Untereinheiten besteht und eine Masse von etwa 550 kDa aufweist. Generell werden sieben hydrophile und sieben hydrophobe Untereinheiten mit über 50 vorhergesagten Transmembranhelices gefunden. Im Komplex I aus Eukaryoten wurde eine grössere Anzahl zusätzlicher, akzessorischer Untereinheiten nachgewiesen. Hier werden die sieben hydrophoben Untereinheiten vom mitochondrialen Genom codiert, während alle anderen Untereinheiten kerncodiert sind und in das Mitochondrium importiert werden müssen.
Die obligat aerobe Hefe Yarrowia lipolytica wurde als Modellsystem zur Untersuchung von eukaryotischem Komplex I etabliert. Die bisher am besten untersuchte Hefe Saccharomyces cerevisiae enthält keinen Komplex I. Hier wird die Oxidation von NADH durch eine andere Klasse von sogenannten alternativen NADH Dehydrogenasen durchgeführt. Auch Y. lipolytica enthält ein solches alternatives Enzym, das allerdings mit seiner Substratbindungsstelle zur Aussenseite der inneren Mitochondrienmembran orientiert ist. Durch molekularbiologische Manipulation konnte eine interne Version dieses Enzymes exprimiert werden, wodurch es möglich ist, letale Defekte in Komplex I Deletionsmutanten zu kompensieren. Mittlerweile wurden alle Voraussetzungen geschaffen, um kerncodierte Untereinheiten von Komplex I aus Y. lipolytica gezielt genetisch zu verändern. Die Proteinreinigung wird durch die Verwendung einer auf einem His-tag basierenden Affinitätsreinigung erheblich erleichtert...
The transcriptional regulator RcsB controls the expression of a minimum of 20 different genes having diverse functionalities and biosynthetic operons in the family of Enterobacteriaceae. While in the heterodimeric complex with the co activator RcsA, the RcsAB box consensus is recognized, DNA binding sites for RcsB without RcsA have also been identified. The conformation of RcsB might therefore be modulated upon interaction with various co activators, resulting in recognition of different DNA targets. In this study the interaction of RcsB with some of these DNA targets have been analysed by a diverse array of techniques including gel shift assay and SPR. The solution structure of the C-terminal DNA-binding domain of RcsB from Erwinia amylovora spanning amino acid residues 129-215 has been solved in this study by heteronuclear NMR spectroscopy. The C-terminal domain is composed of four α-helices where the two central helices of the H-T-H motif are similar to the structures of the regulatory proteins GerE, NarL and TraR. The DNA-binding activity of the C-terminal domain alone is established for the first time in this study and was specified by fluorescence spectroscopy, SPR and NMR titration experiments. The molecular interaction between the individual RcsB domains was analysed by cross-linking experiments and heteronuclear NMR spectroscopy and the amino acid residues of the C-terminal domain involved in this interaction were identified precisely. Another important part of this project was the cell-free production of different Trp analogue labelled RcsB protein. RcsB protein was produced in quite a good yield with different Trp analogue having spectrally enhanced properties. The isolated RcsB alloproteins proved to be ideal for protein interaction studies by fluorescence spectroscopy and the very first evidence of an oligomerization of RcsB due to molecular association has been put forth from these studies. The phosphorylated state of the RcsB protein was mimicked by a beryllofluoride complex in order to study its role in transcriptional regulation. It was found that RcsB alone could bind to DNA targets upon this modification by the beryllofluoride complex. Thus the phosphorylation of the protein that involves the Asp 56 residue induces a structural change of the protein followed probably by a domain movement also, so that the C-terminal domain having the H-T-H DNA binding motif that was previously eclipsed by the N-terminal domain is relieved of this constraint.
In this study the clinical value of the method of 31P und 1 H MRI spectroscopy is analyzed in the evaluation of tumors of the liver and the cerebrum. At first 39 patients (HCC n=30, metastases of colorectal carcinomas n=9) undergoing transarterial chemoembolization (TACE) were evaluated MR tomographically with 1.5 Tesla using 31P CSI spectroscopy. Moreover, 53 patients with cerebral tumors (17 meningiomas, 11 gliomas WHO grades I-II, 6 gliomas WHO grade III, 13 gliomas WHO grade IV and 6 metastases) were evaluated 1 H spectroscopically with the ISIS technique in different echo times. The results of both groups were correlated with the histopathological findings and compared with a study group. For evaluation the area under the curve of the measurable signal intensities were calculated, the ratios were determined and statistically evaluated. In patients with livertumors undergoing TACE, the 31P spectroscopy was performed before and after each course of TACE. Pretherapeutic evaluation revealed the tumor tissue with increased PME peak, PME/ß-ATP ratio, and PME/PDE ratio. In all cases the tumor spectres were to be differentiated from the spectra of the study group. If chemoembolization was technically successful, we found an increase in the Pi peak (+90.1%) and a decrease in the ß-ATP peak (-19.1%). After each course of therapy a number of patient groups could be differentiated depending on the changes in the different peaks and ratios. A response was characterized by a decrease of the PME/ß-ATP and PME/PDE ratios and an increase of the PDE/ß-ATP ratio. In non-responders, there was no decrease of the PME/ß-ATP and PME/PDE ratios, and these ratios increased 6 weeks later. The PDE/ß-ATP ratio decreased. Constant ratios were found if a steady state of the disease was achieved. Regrowth of tumor was accompanied by elevated PME and decreased PDE peaks. With regard to the 1 H spectroscopical findings the following statements can be made: The tumor spectra can be distinctly differentiated from the study group spectres. In this respect highly significant differences for the NAA/Cho and PCr/Cho ratios can be seen. The spectra of the meningiomas can be often characterized by the missing NAA. A small peak at 2.0 ppm can probably be due to a part of healthy brain tissue in the VOI at the rim of the tumor in some of the spectra. Moreover, some of the meningiomas show Alanin at 1.47 ppm, which, however, can also be overlain by fat signal in this area. On average, the PCr peak is reduced by half with regard to the referene; Inositol can hardly be detected even with short echo times. The metastases show a decreased NAA/Cho and PCr/Cho ratio. In few cases Ins/Cho can be measured, and then below the level of the study group. Additionally, two distinct peaks could be seen at 0.9 and 1.25 ppm according to strongly increased free fatty acids. All gliomas show a reduced NAA signal. In this respect, the reduction of the NAA/Cho ratio shows a nonsignificant dependence on malignity, which can be reflected in an almost completely reduced NAA signal in glioblastomas. PCr and Ins are also decreased. With increasing malignity of the lesion the Inositol signal increases and reaches the normal values of the study group. Using 1 H spectroscopy it is possible to support the differential diagnosis of the imaging modalities. Due to its sensitivity it is possible to use the 31P spectroscopy in therapy control. In order to establish these methods in the daily routine further improvements are necessary, particularly in regard to measurement sequences, automatisms and standardized evaluation protocols.
Taphonomy and palaeoecology of Laetoli as well as Makuyuni, Arusha region in northern Tanzania
(2004)
This thesis is the result of the Hominid Corridor research Project in Tanzania since 1993 to 1995 that include Pliocene and Pleistocene localities. The localities under study include Laetoli and Manyara area in Arusha Region, northern Tanzania. The thesis has the following specific objectives: firstly, to identify taxa recovered from the studied assemblages; secondly, to underpin taphonomic history of the assemblages under study; thirdly, to elucidate further palaeoecological reconstruction of the assemblages; and finally, to examine surface fossil fauna modifications including agents of modifications either hominids or carnivores.
The Upper Laetolil Beds are dated at 3.5 million years ago (Ma) and the Ndolanya Beds are bracketed in age between 3.5 and 2.41 Ma. The Naibadad Beds, also from Laetoli area, are date to be between 2.2 to 2.1 Ma. The Naibadad Beds are correlated with the base of Bed I at Olduvai Gorge. There are so far no absolute dates for Manyara assemblages. Based on biostratigraphic correlation, the younger overlying unit, the Upper Manyara Beds are estimated to belong to Later Pleistocene and the Lower Manyara Beds are estimated to belong to Early Pleistocene. The Upper Manyara Beds are correlated to the age of Bed III at Olduvai Gorge, while the Lower Manyara Beds are interpreted to span the same contemporaneity with the upper part of Bed II at Olduvai Gorge.
At Laetoli localities, terrestrial mammals while localities from Manyara besides terrestrial mammals dominate fauna; they include aquatic species such as fish, crocodiles and hippopotamus. The main families recovered from Upper Laetolil Beds complement those already recovered from former research works by other workers. This is also true for the younger overlying stratigraphic horizon, the Upper Ndolanya Beds. Thus, mammalian families recovered from Upper Laetolil Beds include Bovidae, Carnivora, Elephantidae, Equidae, Lagomorpha, Suidae, Rodentia, Hominoidea and Rhenocerotidae. Remains of an invertebrate, Gastropoda were also recovered. For Upper Ndolanya Beds include almost the same families recovered from Upper Laetolil Beds, but based on former recovery of fossil fauna, these Beds outnumber greatly the Upper Laetolil Beds in bovid composition by 20 per cent. Such a change in species composition is noticed also from South African localities and East African localities such as the East Turkana. This is interpreted to be due to climatic change drier environments that included species adapted to such palaeoclimates.
For the first time, our team has been able to retrieve specimens identifiable to taxa, a pattern that not possible from previous workers who claimed to have recovered too sparse specimens to be identifiable to any taxon.
The Upper Manyara Beds as well as Lower Manyara taxonomic composition include aquatic species besides the large terrestrial mammalian fauna retrieved from there. In due regard, the former horizon is attributed to have affinity with Olduvai Bed III components and the latter, older horizon, is attributed to have affinity with upper parts of Bed II times at Olduvai Gorge. The Lower Manyara Beds can be said to have, in relative terms, affinity to species recovered from site RC 11 of the Chiwondo Beds, Malema region in northern Malawi, although the former site may be equable to the terminal age of the latter locality.
Fossil hominid remains; attributable to genus Homo and possibly species Homo erectus have been recovered from two localities, Mk 2 and Mk, along Lower Manyara Beds. On the other hand, stone tools, identified to belong to the Acheulian industrial technocomplex, were recovered from site Mk 4.
All of fossil fauna from Laetoli sites were mostly exfoliated and there shows to be little effect in terms of hydrodynamic sorting of the fossil bones. However, intense carnivore activity is witnessed due to the almost one to one ratio of proximal to distal ends. This is also true for the Lower Manyara Beds locality. Through examination of surface modifications of the fossil fauna, it has been established that there was carnivore consumption of ungulates. There is no evidence of hominid involvement that has to be testified by stone tools.
In einer kontrollierten klinischen Studie wurden zehn gesunden Probanden über drei Tage hinweg insgesamt 180 g (3 · 1000 ml) hochmolekularer, hochsubstituierter Hydroxyethylstärke Hespan® 6% HES 450/0,7 (Mw = 450 kDa, DS = 0,7) in 0,9% NaCl infundiert, um die Auswirkungen dieser Volumenersatzlösung auf die Blutgerinnung feststellen zu können. Durch die mittelgroße Infusionsmenge sollte eine wirklichkeitsnahe, an eine perioperative Situation angelehnte Untersuchungsgrundlage geschaffen werden.
Die Gerinnungsanalyse erfolgte durch intrinsisch aktivierte Rotationsthrombelastographie (ROTEG®), die als globale Vollblut-Messmethode mit den Parametern CT (Coagulation time), CFT (Clot formation time) und MCF (Maximum clot firmness) im Gegensatz zu den zusätzlich bestimmten isolierten Einzelfaktoren der klassischen plasmatischen Gerinnungstests wie der Faktor VIII-Aktivität (F VIII: C) oder Fibrinogen den Gerinnungsprozess in seiner dynamischen Gesamtheit (Zusammenspiel von Plättchenfunktion, plasmatischen Gerinnungsfaktoren und Fibrinogen) erfasst. Außerdem wurden, um die Gerinnungsergebnisse mit den HES-Mengen im Blut vergleichen zu können, die HES-Konzentrationen (cHES) sowie die mittleren HES-Molmassen (MwHES) aus dem Probandenplasma bestimmt.
Die Blutabnahmen erfolgten an den drei Infusionstagen zu Beginn, während und am Ende der zweistündigen HES-Infusion sowie zu sieben Abnahmezeitpunkten danach. Zusätzlich fanden Nachuntersuchungen an insgesamt 15 Folgetagen mit zunehmendem zeitlichen Abstand statt.
Die thrombelastographischen Messungen an den Infusionstagen zeigten vor allem bei dem ROTEG®-Parameter CFT (relative Verlängerung des anfangs im Referenzbereich liegenden Medians bis zu 170%), aber auch bei der CT (Verlängerung aus dem Referenzbereich heraus um bis zu 28%) deutliche Veränderungen. Bei den plasmatischen Gerinnungstests betrug die Verminderung der anfangs im Referenzbereich liegenden F VIII: C bis zu 76% (Median), die des anfangs im Referenzbereich liegenden von Willebrand-Faktor-Antigens (vWF: Ag) bis zu 88% (Median). Der ausgeprägteste Hämatokritabfall betrug dabei lediglich 21% (Median).
Aus diesen Ergebnissen folgt, dass hochmolekulare, hochsubstituierte Hydroxyethylstärke eine über einen reinen Dilutionseffekt hinausgehende kombinierte Störung der Thrombozytenfunktion einerseits und des intrinsischen Systems andererseits hervorruft und somit die Gerinnungsfähigkeit des Blutes im Sinne eines erworbenen, künstlichen von Willebrand-Syndroms vom Typ 1 problematisch verringert. Da die CFT noch am zehnten Folgetag um 89% (Median) verlängert war und die F VIII: C noch um 29% (Median) vermindert, ist für die Gerinnungsbeeinträchtigung ein ausgedehnter Zeitraum anzunehmen.
Gleichzeitig zeigte sich am zehnten Folgetag in dieser Studie ein Plasmawert von 8,5 mg/ml (Median) für die cHES, am 60. Folgetag wurden immer noch 3,7 mg/ml (Median) gemessen, was den Kumulationseffekt der Substanz widerspiegelt.
Nach den vorliegenden Daten ist anzunehmen, dass weniger ein hohes Molekulargewicht, mehr jedoch ein hoher Substitutionsgrad und ein großes C2/C6-Verhältnis einerseits die primäre und sekundäre Hämostase direkt beeinträchtigen, gleichzeitig aber auch die Abbaubarkeit großer HES-Moleküle einschränken und somit deren gerinnungskompromittierende Effekte prolongieren.
Die Untersuchungen wurden mit moderaten Dosierungen von hochsubstituierter HES vorgenommen. Es ist anzunehmen, dass bei einer Ausschöpfung der empfohlenen maximalen Dosierung noch extremere Blutgerinnungsstörungen eingetreten wären. Hieraus ergibt sich die Empfehlung, in der Volumenersatztherapie in den meisten Fällen Präparaten mit einem niedrigeren Substitutionsgrad wie HES 130/0,4 den Vorzug zu geben, bei denen bisher keine schwerwiegenden Blutungen beobachtet werden konnte. Die routinemäßige Hämodilution ist nach den vorgelegten Daten keine Indikation für hochsubstituierte HES. Deren Verwendung sollte auf akute Notfälle beschränkt werden. Mehrfachinfusionen an aufeinanderfolgenden Tagen sollten ausgeschlossen werden.
Aus den vorgestellten Studien und Fallbeschreibungen sowie den Daten dieser Arbeit ergeben sich Fragen nach dem genauen Pathomechanismus der Gerinnungsbeeinträchtigung durch hochsubstituierte HES, einschließlich indirekter Effekte wie Plasmaviskositätsveränderungen. Auch die pharmakodynamischen und pharmakokinetischen Probleme, die durch eine Kumulation bei Mehrfachapplikation der Substanz bedingt sind, bedürfen weiterer Klärung. Schließlich bleibt unklar, ab welchem genauen Grad der Einschränkung sowohl der Plättchenfunktion als auch der plasmatischen Gerinnung mit klinisch relevanten mikrovaskulären Blutungen zu rechnen ist.
Nitric oxide (NO) is a potent mediator with pleiotropic functions such as inhibition of platelet aggregation, smooth muscle relaxation and regulation of neuronal transmission. These effects are mostly mediated by intracellular NO-sensitive guanylyl cyclases (GCs) which convert GTP into the second messenger, cGMP. This messenger in turn activates multiple downstream effectors such as cGMP-dependent protein kinases, cGMP-regulated ion channels and cGMPdependent phosphodiesterases. Mammalian NO-sensitive GCs are obligate heterodimers of an α and β subunit each. Given that these enzymes play a key role in cGMP-mediated pathways, one may anticipate that mechanisms other than allosteric activation via NO may exist to regulate the production and turnover of cGMP. In this thesis, novel aspects of the regulation of the most abundantly expressed GC heterodimer α1β1 are presented.
A possible mechanism of regulation that was tested here, is tyrosine phosphorylation. Using anti-phosphotyrosine antibodies, the phosphorylation of the β1 subunit was detected after incubation of β1-overexpressing COS-1 cells with protein tyrosine phosphatase (PTP) inhibitors such as pervanadate and bpV(phen). β1 phosphorylation on tyrosines was also observed in PC-12 cells which endogenously express GC and in rat aorta after inhibition of PTPs. Furthermore, hydrogen peroxide was found to be a physiological stimulus for the induction of reversible β1 tyrosine phosphorylation in intact cells. Using phenylalanine mutants of different tyrosines, residue 192 (Y192) of β1 was identified as the major phosphorylation site. Consistent with this finding, sequence analyses showed that Y192 forms part of a motif that resembles a preferential target site for Src-like kinases. When tyrosine-phosphorylated, this motif exposes a typical SH2 docking site for members of the Src kinase family.
Experiments with inhibitors of Src kinases, PP1 and PP2, clearly showed that phosphorylation of Y192 is Src-dependent. Preincubation of β1-expressing cells with these inhibitors significantly reduced the level of phosphorylated β1 after bpV(phen) treatment. Furthermore, co-expression of β1 with Src led to a strong phosphorylation of this subunit. Co-precipitation experiments showed that Src interacts with GC. Interestingly, kinases of the Src family are recruited to β1 via the SH2 domain upon phosphorylation of Y192. Together, these results indicate that Src kinases phosphorylate tyrosine 192 thereby creating a docking site for their own SH2 domains. Kinase bound to GC may then catalyze phosphorylation of GC or other downstream effectors. Inhibition of PTPs altered GC activity in two ways: it increased both the basal activity and the YC-1- and BAY 41-2272-stimulated activity two-fold, and it reduced the sensitivity of the enzyme towards NO. The detailed mechanism of action is still unknown, but experiments using the mutant β1[Y192F] demonstrated that residue 192 is not responsible for these effects.
Another major focus of this thesis was the identification of novel GC binding proteins. Using the yeast two-hybrid approach, the carboxy-terminal portion of a protein named AGAP1 (amino acid (aa) 399-804) was found to interact with the catalytic domain of α1 (aa 466-690) and with the regulatory domain of β1 (aa 1-348). Human AGAP1 is a multidomain protein of 804 amino acids with a calculated molecular mass of 89,1 kDa comprising an Arf-GAP (GAP:GTPase activating protein), a putative GTPase domain, two Ankyrin repeats and a PHdomain. Co-precipitation experiments using lysates from mammalian cells overexpressing both binding partners confirmed the interaction of AGAP1 with the GC subunits. Immunofluorescence analyses demonstrated that AGAP1 co-localizes with GC in the cytoplasm of COS-1 cells.
In Northern blots, AGAP1 mRNA was detected in various human and murine tissues showing a comparable expression pattern described for the mRNA of α1 and β1. Using an AGAP1-specific antibody, endogenous protein was precipitated from lysates of HEK-293 cells derived from human embryonic kidney. The same antibody efficiently cross-reacted with the rat homologue (rAGAP1) and immunoprecipitated endogenous rAGAP1 from lysates of PC-12 cells, aorta and heart. The molecular mass of rAGAP1 is larger than that of the human protein, possibly due to an additional exon present in the rat genome. Like β1, AGAP1 is a substrate for tyrosine kinases. Phosphorylation of AGAP1 was detected after inhibition of PTPs or by coexpression of Src. Furthermore, the kinase inhibitor PP2 strongly impaired phosphorylation of AGAP1 after pervanadate treatment suggesting that tyrosine kinases of the Src family are involved. Measurements of cGMP production showed that AGAP1 has no influence on the activity of NO-sensitive GC. Interestingly, inhibition of PTPs potently increased the complex formation between AGAP1 and GC indicating that the interaction between these two proteins is modulated by reversible tyrosine phosphorylation. Whether this effect is due to the phosphorylation of AGAP1 or GC is still unknown. AGAP1 associates with endosomes and exposes Arf-GAP activity towards Arf1 and Arf5 which are involved in vesicular transport. Thus, one may hypothesize that binding of α1β1 to AGAP1 targets GC to distinct subcellular compartments in close proximity to cGMP-dependent effectors, thereby optimizing cGMP generation and fostering cGMP-driven actions.
Taken together, these results demonstrate that beside the modulation of GC by NO the enzyme is regulated by tyrosine phosphorylation and interaction with AGAP1.
Die vorliegende Arbeit beschreibt die Herstellung von codierten Peptidbibliotheken durch kombinatorische Synthese, sowie deren Selektion auf Wechselwirkung mit einer verkürzten Sequenz der TAR-RNA des HI-Viruses.
Die zur Selektion benötigte RNA wurde dazu auf chemischem Wege hergestellt und mit einem Fluoreszensfarbstoff für eine optische Selektion markiert. Ausgehend von dieser RNA wurde ein Anfärbeassay entwickelt. Bei der Anwendung des Assays auf Tri- und Pentapeptide, die auf einem Polymerträger immobilisiert waren, zeigten sich einige intensiv leuchtende Polymerkügelchen. Die hellsten unter ihnen wurden selektiert. Die Synthese der Trimeren und Pentamerenbibliothek erfolgte zuvor an wasserquellbarem, polymerem Trägermaterial. Die Identifizierung der polymergebundenen Verbindungen erfolgte über die Codierung nach W.C. Still, welche im Rahmen dieser Dissertation in der Arbeitsgruppe von Hr. Prof. Göbel erfolgreich etabliert wurde und die einfache Unterscheidung zwischen Enantiomeren ermöglicht. Drei der am häufigsten auftretenden Trimerensequenzen wurden im Nachhinein erneut synthetisiert und Experimenten an Zellen zugeführt. Unabhängig davon, wurde ihre Wechselwirkung mit RNA als auch mit RNA-Peptid Komplexen direkt getestet.
Weiterhin wurde exemplarisch anhand von Aminopyridinen die Möglichkeit getestet, neuartige Synthesemonomere für die automatische Synthese polymergebundener Verbindungen darzustellen.
Die vorliegende Arbeit macht deutlich, dass man durch kombinatorische Synthese im Verbund mit gerichteter Selektion, die Entwicklung von in vitro RNA-Liganden für RNA mit bekannter Struktur vorantreiben kann. Umgekehrt müsste dies auch bald die Selektion von Liganden für strukturell nicht charakterisierte RNA ermöglichen.
Das nächste Ziel sollte, die Entwicklung weiterer Selektionstests sein und die Etablierung von NMR-Methoden, welche die genauen Bindungsmodi der selektierten Verbindungen an RNA aufklären, um somit die gezielte Synthese neuartiger Liganden vorantreiben zu können, da letztendlich das "Wie", für die Weiterentwicklung einer Leitstruktur ausschlaggebend ist.
Weiterhin sollten die Transportmechanismen von körperfremden Substanzen zu dem gewünschten Wirkort studiert werden, damit die vorab in vitro getestete Substanz auch im späteren Entwicklungsstadium in vivo die gewünschten Eigenschaften zeigen kann.