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Background The cell cycle of all organisms includes mass increase by a factor of two, replication of the genetic material, segregation of the genome to different parts of the cell, and cell division into two daughter cells. It is tightly regulated and typically includes cell cycle-specific oscillations of the levels of transcripts, proteins, protein modifications, and signaling molecules. Until now cell cycle-specific transcriptome changes have been described for four eukaryotic species ranging from yeast to human, but only for two prokaryotic species. Similarly, oscillations of small signaling molecules have been identified in very few eukaryotic species, but not in any prokaryote. Results A synchronization procedure for the archaeon Halobacterium salinarum was optimized, so that nearly 100% of all cells divide in a time interval that is 1/4th of the generation time of exponentially growing cells. The method was used to characterize cell cycle-dependent transcriptome changes using a genome-wide DNA microarray. The transcript levels of 87 genes were found to be cell cycle-regulated, corresponding to 3% of all genes. They could be clustered into seven groups with different transcript level profiles. Cluster-specific sequence motifs were detected around the start of the genes that are predicted to be involved in cell cycle-specific transcriptional regulation. Notably, many cell cycle genes that have oscillating transcript levels in eukaryotes are not regulated on the transcriptional level in H. salinarum. Synchronized cultures were also used to identify putative small signaling molecules. H. salinarum was found to contain a basal cAMP concentration of 200 uM, considerably higher than that of yeast. The cAMP concentration is shortly induced directly prior to and after cell division, and thus cAMP probably is an important signal for cell cycle progression. Conclusions The analysis of cell cycle-specific transcriptome changes of H. salinarum allowed to identify a strategy of transcript level regulation that is different from all previously characterized species. The transcript levels of only 3% of all genes are regulated, a fraction that is considerably lower than has been reported for four eukaryotic species (6% - 28%) and for the bacterium C. crescentus (19%). It was shown that cAMP is present in significant concentrations in an archaeon, and the phylogenetic profile of the adenylate cyclase indicates that this signaling molecule is widely distributed in archaea. The occurrence of cell cycle-dependent oscillations of the cAMP concentration in an archaeon and in several eukaryotic species indicates that cAMP level changes might be a phylogenetically old signal for cell cycle progression.
Koalas are popular zoo animals, but difficult in husbandry. In addition to their specialised diet of eucalyptus leaves, they are prone to “stress” and disease. Particularly in European zoos, themonitoring of theirwell-being has high priority and they are protected from possible stressors. However, stress signs in koalas are vague and monitoring techniques like weighing might result in discomfort itself. Additionally, husbandry routines are planned according to keeper’s schedule, not to the endogenous rhythms of the koalas. Therefore it is necessary to investigate activity pattern in captive koalas and the signals influencing them. These signals have to be assessed on the strength and quality of their impact. A total of 17 koalas have been observed in three zoological gardens in Australia and Europe. Koalas kept in outdoor enclosures with little human contact (Koala Walkabout, Taronga Zoo, Sydney) showed a uniform activity pattern, which was clearly entrained by light. Activity levels were higher during the night, and there was a pronounced resting period in the morning which corresponds with low body temperature measured by Degabriele and Dawson (1979). Activity peaks were related to twilight and changed during the year related to day lengths. However, there was a clear influence from the introduction of fresh browse which resulted in a distinct feeding peak in the afternoon. With short day lengths, this stimulus competed with dusk. Activity patterns from koalas in indoor enclosures (Zoo Duisburg, Vienna Zoo) varied between individuals and in some cases lacked a detectable rhythm. Though activity peaks were related to light, entrainment to sunlight was weak. In winter, koalas reacted primarily to the artificial light, but some also showed activity peaks related to sunlight. Activity patterns in these koalas were less structured and differed severely from patterns expected according to literature. Activity was often related to the keeper’s presence and food introduction. Frequency of feeding bouts was considerably higher at Vienna Zoo compared to the other zoos and the bouts were shorter in duration. Time budgets of the koalas were within the range given in free-range studies. Feeding showed seasonal changes and was increased in lactating females. Koalas at Vinna Zoo had a high level of locomotor activity compared to the size of the enclosure. Koalas at Koala Walkabout were not used to handling, so they resisted the keeper. The koalas at the two European zoos were handled regularly and settled down quickly. However, handling took place in the morning; in most koalas, there was no activity prior to it. In Vienna, resting periods were interrupted daily due to weighing. Food introduction at KoalaWalkabout took place in the afternoon. It was preceded by locomotor activity and triggered a long feeding bout in the koalas. It is not clear, whether food had true Zeitgeber properties or masked the endogenous rhythm. In the two European zoos, food was introduced in the morning. The peaks related to this were smaller than those at Koala Walkabout. Activity was rarely observed prior to food introduction. The koalas at Koala Encounter, Taronga Zoo (Sydney),were regularly confronted with visitors, though no contact was allowed. Direct observation by the keepers did rarely show any stress signs. Activity patterns at night were strikingly similar to Koala Walkabout, but differed dramatically during the day. Food was introduced three times a day, which usually resulted in activity that interrupted a resting period. Generally, the koalas at Koala Encounter were more active than those at KoalaWalkabout. They also displayed a high level of locomotor activity, especially on the ground, which is an accepted sign of discomfort in koalas (Wood 1978; Zoological Society of San Diego 2001; Yusuf& Rosenthal unpublished data). In summary, this chronoethological study of the captive koalas showed that there are several problems with koala husbandry. Artificial light regimes for koalas are not sufficient for entrainment and result in unstructured activity pattern. This is especially the case in winter, when the day in Europe is artificially extended. Due to the mainly nocturnal behaviour of koalas, such an extension might not be necessary and therefore should be avoided. Handling in Europe took place during the physiological resting time of the koalas. Interruptions of resting times are considered as stressors (Wood 1978) and should be avoided. Handling in the afternoon would be more suitable for the koalas and triggered activity in the two koalas at Vienna Zoo. It is also arguable if daily weighing is necessary to monitor health in captive koalas or if the frequent interruption of resting countervail the advantages of constant monitoring. Frequent contact with visitors, evenwithout the so-called cuddling, has a considerable impact on activity patterns and time budget of koalas, even if no immediate stress signs are displayed. Such contact should therefore be reduced to a minimum and chronoethological observations of the koalas should be used. A study on koalas with direct visitor contact is also advisable to revise the current legislation on “koala cuddling”. Koalas frequently rested in living trees if they had access to it. Since no food-poisoning has been reported from koalas using living non-food trees, the provision of living trees with an appropriate canopy should be included in the husbandry guidelines. Increased locomotor activity has been shown to be related to conditions of discomfort or stress and possibly to oestrus. This is in accordance with literature (Wood 1978; Zoological Society of San Diego 2001). Further observation, combined with hormone analysis, are advisable to establish this parameter for evaluation of well-being. Chronoethology has proven to be useful for the evaluation of husbandry conditions and group dynamics. Different to other, traditional ethologicalmethods, it indicated problems and enabled me to advise more appropriate times for handling and food introduction. It is desirable that zoos already using 24-hour video observation include chronoethological aspects into their analysis.
RNA-Interferenz (RNAi) erlangte eine herausragende Bedeutung zum Studium der Genfunktion, nachdem auch in Säugersystemen gezeigt wurde, daß durch Applikation von 21 nt langen siRNAs (small interfering RNAs) eine Sequenz-spezifische Degradierung der mRNA-Transkripte kognitiver Gene erreicht werden konnte. Im Gegensatz zur antisense-Technologie erwies sich die Wirkung von siRNA im Hinblick auf die Hemmung der Genexpression um ein Vielfaches potenter und hoch spezifisch. Für eine längerfristige Unterdrückung von Genen kristallisierte sich die Methode der Plasmid-Vektor-vermittelten intrazellulären Expression von shRNA (short hairpin RNA) heraus, welche transient oder stabil angewendet werden kann. Diese exprimierte shRNA wird intrazellulär enzymatisch zu wirksamer siRNA prozessiert, welche den eigentlichen Enzym-vermittelten RNAi-Mechanismus der Degradierung von mRNA-Transkripten kognitiver Gene auslöst. Die Anwendung von RNA-Polymerase III-abhängigen Promotoren für die stabile konstitutive Expression von shRNA stellte ein großes Problem für behandelte Zellen dar, wenn es sich bei dem zu unterdrückenden Zielgen um ein Gen mit essentiellen Funktionen für die Zelle handelte. Im Falle der Polo-like Kinase 1 (Plk1), einer in vielen Spezies hoch konservierten Serin/Threonin-Kinase mit essentiellen mitotischen Funktionen, bedeutete eine dauerhafte und stringente Unterdrückung einen veränderten Phänotyp beteiligter Zellen, welcher sich durch Defekte bei mitotischen Ereignissen bemerkbar machte. Plk1 ist in zahlreiche mitotische Prozesse, wie den Eintritt der Zellen in die Mitose, die Segregation der Chromosomen und die Aktivierung des APC/C (anaphase promoting complex / cyclosome), eingebunden. Darüber hinaus ist bekannt, daß Plk1 in nahezu allen Tumorarten überexprimiert vorliegt und die Prognose von Tumorwachstum und Metastasierungspotential über den Plk1-Gehalt definiert werden kann. Des weiteren bewirkte eine RNAi-vermittelte Unterdrückung der Plk1-Expression bei Tumorzellen eine Hemmung der Zellproliferation mit Auslösung der Apoptose. Hingegen konnte bei gesunden primären Zellen weder eine signifikante Hemmung der Proliferation noch die Auslösung der Apoptose beobachtet werden, was die große Bedeutung von Plk1 als Ansatzpunkt für eine Krebstherapie hervorhebt. Um die Funktion von Plk1 im Hinblick auf molekularbiologische Zusammenhänge besser studieren zu können, war es notwendig, den intrazellulären Plk1-Gehalt zu variieren. Im Rahmen dieser Promotionsarbeit wurden dazu induzierbare RNAi-Elemente entwickelt, mit deren Hilfe die intrazelluläre Plk1-Expression konditionell inhibiert werden konnte. Unter Verwendung des prokaryotischen Tet-Systems wurden auf Basis des RNA-Polymerase abhängigen H1-Promotors durch Insertion von einer oder zwei Operatorsequenzen (TetO) für den Tetrazyklin-Repressor (TetR) an verschiedene Orte innerhalb der Sequenz des H1-Promotors drei induzierbare Promotor-Derivate geschaffen. Die drei entwickelten H1-Promotor-Derivate wurden zur Expression von shRNA gegen Plk1 eingesetzt und in bezug auf die Auslösung der RNAi-Antwort getestet und untereinander verglichen. Zu diesem Zwecke wurde der endogene Plk1-Gehalt von HeLa-Tumorzellen auf Transkript- und auf Proteinebene bestimmt. Die Zellen wurden zuvor mit Plasmid-Vektoren für konstitutive TetR-Expression und jeweils einer der verschiedenen shRNA-Expressions-Kassetten ko-transfiziert. Als Kontrollen dienten dabei Wildtyp-H1-Promotoren, welche zur konstitutiven Expression von shRNA gegen Plk1 und einer unwirksamen Kontroll-shRNA eingesetzt wurden. Mit Hilfe des synthetischen Tetrazyklin-Analogons Doxyzyklin, welches einen potenten Aktivator für TetR darstellt, konnten die hergestellten Promotor-Derivate induziert werden, was durch einen reduzierten intrazellulären Plk1-Gehalt sichtbar wurde. Dabei fiel auf, daß alle drei Promotor-Typen unterschiedliche Eigenschaften im nichtinduzierten Zustand wie auch im induzierten Zustand unter Anwesenheit von Doxyzyklin aufwiesen. Für die Basalaktivität in Abwesenheit von Doxyzyklin (leakiness) war die relative Lage der TetO-Sequenz(en) innerhalb des Promotors verantwortlich. So veränderte die Insertion einer TetO-Sequenz in 3’-Richtung der TATA-Box die Eigenschaften des Wildtyp-H1-Promotors weniger als die Insertion einer TetO-Sequenz in 5’-Richtung der TATA-Box. Zum Studium von Plk1 als Zielgen in der Krebstherapie wurde das Proliferationsverhalten von HeLa-Tumorzellen als Antwort auf die Doxyzyklin-vermittelte Induktion der shRNAExpression unter Kontrolle eines der induzierbaren Promotoren ermittelt. Dabei konnte die Proliferation von Tumorzellen durch einen reduzierten Plk1-Gehalt, welcher durch die Doxyzyklin-induzierte Auslösung der RNAi-Antwort vermittelt wurde, erfolgreich inhibiert werden. Zur Überprüfung der Eignung entwickelter Systeme, Tumorwachstum in vivo inhibieren zu können, wurden die entwickelten RNAi-Kassetten in das Genom von TetRexprimierenden HeLa-Zellen integriert und so stabile Klone geschaffen. Stabile HeLa-Klone zur induzierbaren Expression von Plk1-spezifischer shRNA, wie auch zur induzierbaren Expression von einer Kontroll-shRNA, wurden in die gegenüberliegenden Flanken von immunsupprimierten Nacktmäusen inokuliert, um anhand von Xenograft-Modellen einen direkten Vergleich des Tumorwachstums unter gleichen äußeren Bedingungen zu ermöglichen. Einem Teil der Mäuse wurde Doxyzyklin ins Trinkwasser gegeben, während Kontrollmäuse kein Doxyzyklin verabreicht bekamen. Das Tumorwachstum von Xenograft-Tumoren, welche aus Klonen zur Expression von shRNA gegen Plk1 hervorgingen, konnte in Doxyzyklin-behandelten Mäusen um 53% auf 47% an Tag 51 nach Inokulierung der Zellen inhibiert werden. Tumoren nicht-induzierter Mäuse, sowie Tumoren aus induzierten Mäusen, welche Kontroll-shRNA exprimierten, wuchsen dagegen unverändert in gleichem Maße. Anhand der in dieser Arbeit entwickelten induzierbaren H1-Promotor-Derivate zur konditionellen Auslösung von RNAi wurden wertvolle genetische Werkzeuge geschaffen, welche für das Studium der Genfunktion eingesetzt werden können. Im Falle der Unterdrückung von Plk1 können mit ihrer Hilfe sowohl grundlegende molekularbiologische Zusammenhänge studiert als auch die Bewertung von Plk1 als Zielgen in der Krebstherapie bewertet werden. Im Gegensatz zu kürzlich entwickelten Kinase-Inhibitoren, welche auf Proteinebene gegen Plk1 gerichtet sind und aufgrund ihrer bislang nicht nachgewiesenen Spezifität verwandte Kinasen in ihrer Wirkungsweise beeinflussen könnten, ist eine RNAibasierte Strategie hoch spezifisch und verspricht eine große Relevanz für zukünftige therapeutische Ansätze. Vorraussetzung für erfolgversprechende RNAi-basierte Strategien ist eine hohe Konservierung der Sequenz beteiligter Zielgene. Im Falle von Plk1 konnte eine hohe Konservierung durch Sequenzanalyse der Plk1-Gene von 15 Mamma-Karzinomen, 11 Ovarial-Karzinomen und mehrerer Tumorzellinien bestätigt werden.
Synaptopodin is the founding member of a family of actin-associated proline-rich proteins. It is present in a subset of telencephalic dendritic spines, where it is tightly associated with the dendritic spine apparatus, a putative calcium store. Synaptopodin-deficient mice lack the spine apparatus and show deficits in long-term potentiation and spatial memory. Thus, synaptopodin appears to play a role in synaptic plasticity. In the present thesis, three major questions were addressed: (1) What is the distribution of synaptopodin and the spine apparatus in identified hippocampal neurons? (2) Is the distribution of synaptopodin affected by denervation? (3) Is synaptopodin involved in the regulation of denervation-induced spine loss? The major findings of this thesis are: (1) Immunohistochemistry in the hippocampus of wildtype and EGFP-transgenic mice revealed significant layer-specific differences in the prevalence of synaptopodin at the level of individual neurons. (2) Light and electron microscopic analysis also revealed the presence of synaptopodin in axon initial segments of cortical and hippocampal principal neurons. There, it was found to be an essential component of the cisternal organelle, a putative axonal homologue of the dendritic spine apparatus. (3) Immunohistochemistry in the rat fascia dentata before and following entorhinal deafferentation revealed changes in synaptopodin expression in denervated and non-denervated layers of the hippocampus, suggesting that the distribution of synaptopodin in hippocampal neurons is regulated by presynaptic signals. (4) The dynamics of denervation-induced spine plasticity were studied in vitro using confocal live imaging of organotypic entorhino-hippocampal slice cultures. Whereas spines were remarkably stable under control conditions, spine loss and spine formation were seen following denervation. No significant differences were observed between cultures from wildtype and synaptopodin-deficient mice, suggesting that synaptopodin is not involved in lesion-induced spine plasticity. (5) Finally, a set of transgenic mice expressing fluorescently tagged synaptopodin were generated to facilitate future experiments on the dynamics and function of synaptopodin. In summary, this thesis presents novel findings on (1) the subcellular distribution of synaptopodin in spines and the axon initial segment, (2) the molecular composition of the cisternal organelle, and (3) the dynamics of spines and the spine apparatus organelle following deafferentation in vivo and in vitro.
Compared to all other organisms with 1 to 3 heat stress transcription factors (Hsfs) or Hsf-related factors, plants have extraordinarily large Hsf families with more than 20 Hsfs. Plant Hsfs are classified into three classes according to their oligomerization domains which is built of hydrophobic heptad repeats (HR) in two parts, HR-A and HR-B. Both parts may be immediately adjacent (class B), or they are separated by insertion of 21 (class A) and 7 amino acid residues (class C). In plant Hsf family, detailed investigations are so far limited to Hsfs A1a, A2, A3, A4d, A9, and B1. They strongly indicate functional diversification to be the main reason for the coexistence of multiple Hsfs. As an example the functional triad of HsfA1a, HsfA2, and HsfB1 is essential for all three phases of the hs response, (i) the triggering of the response by HsfA1a as master regulator, (ii) the maintenance and high efficiency of hs gene transcription by cooperation of HsfA1a with Hsfs A2 and B1, and finally, (iii) the restoration of house-keeping gene transcription during the recovery phase mediated by HsfB1 in cooperation with house-keeping transcription factors. The results presented in this thesis for Hsfs A4 and A5 open completely different aspects of functional diversification and cooperation of Hsfs. HsfA4 and HsfA5 homooligomerize and bind to corresponding HSE motifs. But in contrast to the highly active HsfA4, HsfA5 is completely inactive as transcriptional activator. Yeast two hybrid and GST pull-down techniques showed that both Hsfs have strong tendency for heterooligomerization. Using fluorescence microscopy the HsfA4/A5 heterooligomers were found to localize in the nucleus. These complexes are transcriptionally inactive due to the impairment of DNA binding. The repressor function of HsfA5 requires only its OD and no additional factors, e.g. a putative co-repressor recruited by the C-terminal domain, are involved. Evidently, the repressor effect mainly results from the interference with the oligomeric state of HsfA4b, which is essential for efficient DNA binding and activator functions. EST database search revealed that plants have a single HsfA5 and usually two A4-type Hsfs. Using bioinformatics tools, Hsfs A4 and A5 were found to be phylogenetically closely related and clearly distinct from the other members of the Hsf family. On the basis of RT-PCR and Microarray data the representatives of the A4/A5 group are well expressed in different plant tissues albeit at very different levels which change with the developmental stages and stress conditions In rice and Arabidopsis, HsfA4 functions as an anti-apoptotic factor for stress induced oxidative damages. Based on my results, I hypothesize that HsfA5 functions as a novel type of selective repressor, regulating the function of A4-type Hsfs in plants. Considering the high sequence conservation with in plant Hsf family, it is tempting to speculate that this role of Hsf4/A5 pair is a fundamental feature of the Hsf system in plants.
Background Identification and evaluation of surface binding-pockets and occluded cavities are initial steps in protein structure-based drug design. Characterizing the active site's shape as well as the distribution of surrounding residues plays an important role for a variety of applications such as automated ligand docking or in situ modeling. Comparing the shape similarity of binding site geometries of related proteins provides further insights into the mechanisms of ligand binding. Results We present PocketPicker, an automated grid-based technique for the prediction of protein binding pockets that specifies the shape of a potential binding-site with regard to its buriedness. The method was applied to a representative set of protein-ligand complexes and their corresponding apo-protein structures to evaluate the quality of binding-site predictions. The performance of the pocket detection routine was compared to results achieved with the existing methods CAST, LIGSITE, LIGSITEcs, PASS and SURFNET. Success rates PocketPicker were comparable to those of LIGSITEcs and outperformed the other tools. We introduce a descriptor that translates the arrangement of grid points delineating a detected binding-site into a correlation vector. We show that this shape descriptor is suited for comparative analyses of similar binding-site geometry by examining induced-fit phenomena in aldose reductase. This new method uses information derived from calculations of the buriedness of potential binding-sites. Conclusions The pocket prediction routine of PocketPicker is a useful tool for identification of potential protein binding-pockets. It produces a convenient representation of binding-site shapes including an intuitive description of their accessibility. The shape-descriptor for automated classification of binding-site geometries can be used as an additional tool complementing elaborate manual inspections.
Background The connection of the variable part of the heavy chain (VH) and and the variable part of the light chain (VL) by a peptide linker to form a consecutive polypeptide chain (single chain antibody, scFv) was a breakthrough for the functional production of antibody fragments in Escherichia coli. Being double the size of fragment variable (Fv) fragments and requiring assembly of two independent polypeptide chains, functional Fab fragments are usually produced with significantly lower yields in E. coli. An antibody design combining stability and assay compatibility of the fragment antigen binding (Fab) with high level bacterial expression of single chain Fv fragments would be desirable. The desired antibody fragment should be both suitable for expression as soluble antibody in E. coli and antibody phage display. Results Here, we demonstrate that the introduction of a polypeptide linker between the fragment difficult (Fd) and the light chain (LC), resulting in the formation of a single chain Fab fragment (scFab), can lead to improved production of functional molecules. We tested the impact of various linker designs and modifications of the constant regions on both phage display efficiency and the yield of soluble antibody fragments. A scFab variant without cysteins (scFabdeltaC) connecting the constant part 1 of the heavy chain (CH1) and the constant part of the light chain (CL) were best suited for phage display and production of soluble antibody fragments. Beside the expression system E.coli, the new antibody format was also expressed in Pichia pastoris. Monovalent and divalent fragments (DiFabodies) as well as multimers were characterised. Conclusion A new antibody design offers the generation of bivalent Fab derivates for antibody phage display and production of soluble antibody fragments. This antibody format is of particular value for high throughput proteome binder generation projects, due to the avidity effect and the possible use of common standard sera for detection.
Background The Radical Pair model proposes that magnetoreception is a light-dependent process. Under low monochromatic light from the short-wavelength part of the visual spectrum, migratory birds show orientation in their migratory direction. Under monochromatic light of higher intensity, however, they showed unusual preferences in other directions or axial preferences. To determine whether or not these responses are still controlled by the respective light regimes, European robins, Erithacus rubecula, were tested under UV, Blue, Turquoise and Green light at increasing intensities, with orientation in migratory direction serving as a criterion whether or not magnetoreception works in the normal way. Results Under low light with a quantal flux of 8 times 10 to 15 power quanta s-1 m-2, the birds were well oriented in their seasonally appropriate migratory direction under 424 nm Blue, 502 nm Turquoise and 565 nm Green light, indicating unimpaired magnetoreception. Under 373 nm UV of the same quantal flux, they were not oriented in migratory direction, showing a preference of the east-west axis instead, but they showed excellent orientation in migratory direction under UV of lower intensity. Intensities of above 36 times 10 to 15 power quanta s-1 m-2 of Blue, Turquoise and Green light elicited a variety of responses: disorientation, headings along the east-west axis, headings along the north-south axis or 'fixed' direction tendencies. These responses changed as the intensity was increased from 36 times 10 to the 15 power quanta s-1 m-2 to 54 and 72 times 10 to 15 power quanta s-1 m-2. Conclusion The specific manifestation of responses in directions other than migratory direction clearly depends on the ambient light regime. This implies that although mechanisms normally providing magnetic compass information seem disrupted, processes that are activated by light still control the behavior. It suggests complex interactions between different types of receptors, magnetic and visual. The nature of the receptors involved and details of their connections are not yet known; however, a role of the color cones in the processes mediating magnetic input is suggested.