Universitätspublikationen
Refine
Year of publication
- 2015 (1739) (remove)
Document Type
- Article (603)
- Doctoral Thesis (187)
- Working Paper (169)
- Contribution to a Periodical (164)
- Book (159)
- Report (157)
- Part of Periodical (124)
- Review (70)
- Preprint (55)
- Conference Proceeding (22)
- magisterthesis (7)
- Part of a Book (6)
- Master's Thesis (5)
- Periodical (5)
- Bachelor Thesis (4)
- Habilitation (1)
- Magister's Thesis (1)
Language
- English (863)
- German (835)
- Spanish (14)
- Italian (11)
- Portuguese (11)
- French (3)
- Multiple languages (1)
- Russian (1)
Is part of the Bibliography
- no (1739)
Keywords
- Islamischer Staat (34)
- IS (25)
- Terrorismus (23)
- Deutschland (16)
- Dschihadismus (13)
- Syrien (12)
- Terror (11)
- Irak (10)
- Islamismus (10)
- Salafismus (10)
Institute
- Präsidium (336)
- Medizin (252)
- Gesellschaftswissenschaften (230)
- Physik (184)
- Wirtschaftswissenschaften (149)
- Exzellenzcluster Die Herausbildung normativer Ordnungen (116)
- Center for Financial Studies (CFS) (115)
- Biowissenschaften (99)
- Informatik (96)
- Frankfurt Institute for Advanced Studies (FIAS) (95)
Transport processes across the membrane are essential to ensure survival of every living cell. Therefore, the exchange of membrane impermeable molecules is mediated by specific transport proteins, which are embedded in the lipid bilayer.
One important class comprises secondary active transporters, which couple very efficiently the uphill transport of the main substrate against its concentration gradient to the downhill transport of an additional substrate. These transporters are widely distributed among all kingdoms of life and accomplish many crucial functions. One function is to counteract the deleterious effect of hyperosmotic stress in bacteria. Several members of the BCCT (betaine-choline-carnitinetransport) family of secondary transporters mediate osmostress protection by the accumulation of the compatible solute betaine or its precursor choline (Lamark et al., 1991; Peter et al., 1996; Ziegler et al., 2010). Besides osmo-dependent sodium or proton-coupled symporters, the BCCT family includes few rare representatives of osmo-independent transporters such as the substrate:product antiporter CaiT from E. coli (Jung et al., 2002; Ziegler et al., 2010).
The best-characterized member of the BCCT family is the sodium-coupled betaine transporter BetP from Corynebacterium glutamicum. BetP together with the ABCtransporter OpuA and the H+-solute symporter ProP, became a paradigm for osmoregulated osmolyte transport. Although, all three transporters were extensively studied, the general mechanism of osmoregulation is still far from being understood. Thus, one task of this thesis was to elucidate further the regulatory properties of BetP.
BetP is tightly regulated by osmotic stress and is able to increase its basal betaine uptake activity dramatically upon elevated osmolalities within one second (Peter et al., 1998a). The osmotic stress is sensed by BetP via two stimuli, one is the increase of the internal K+ concentration above a threshold of 220 mM (Rübenhagen et al., 2001), the second is related to a change in the physical state of the membrane (Maximov et al., 2014). So far, several solved crystal structures in combination with functional and computational analysis provided insights into the coupling mechanism of betaine and its co-substrate sodium (Khafizov et al., 2012; Perez et al., 2012). Despite the wealth of data, the precise regulatory mechanism of trimeric BetP is still unclear.
Pflanzen, aber auch einige Bakterien und Archäen verfügen über hocheffiziente Mechanismen, Licht in Energie umzuwandeln. Photovoltaik-Zellen reichen an die Perfektion dieser natürlichen Systeme noch lange nicht heran. Deshalb versuchen Forscher, mit ultraschnellen spektroskopischen Methoden der Natur in die Karten zu schauen und von ihr zu lernen.
Synaptic vesicles (SVs) undergo a cycle of biogenesis and membrane fusion to release transmitter, followed by recycling. How exocytosis and endocytosis are coupled is intensively investigated. We describe an all-optical method for identification of neurotransmission genes that can directly distinguish SV recycling factors in C. elegans, by motoneuron photostimulation and muscular RCaMP Ca2+ imaging. We verified our approach on mutants affecting synaptic transmission. Mutation of genes affecting SV recycling (unc-26 synaptojanin, unc-41 stonin, unc-57 endophilin, itsn-1 intersectin, snt-1 synaptotagmin) showed a distinct ‘signature’ of muscle Ca2+ dynamics, induced by cholinergic motoneuron photostimulation, i.e. faster rise, and earlier decrease of the signal, reflecting increased synaptic fatigue during ongoing photostimulation. To facilitate high throughput, we measured (3–5 times) ~1000 nematodes for each gene. We explored if this method enables RNAi screening for SV recycling genes. Previous screens for synaptic function genes, based on behavioral or pharmacological assays, allowed no distinction of the stage of the SV cycle in which a protein might act. We generated a strain enabling RNAi specifically only in cholinergic neurons, thus resulting in healthier animals and avoiding lethal phenotypes resulting from knockdown elsewhere. RNAi of control genes resulted in Ca2+ measurements that were consistent with results obtained in the respective genomic mutants, albeit to a weaker extent in most cases, and could further be confirmed by opto-electrophysiological measurements for mutants of some of the genes, including synaptojanin. We screened 95 genes that were previously implicated in cholinergic transmission, and several controls. We identified genes that clustered together with known SV recycling genes, exhibiting a similar signature of their Ca2+ dynamics. Five of these genes (C27B7.7, erp-1, inx-8, inx-10, spp-10) were further assessed in respective genomic mutants; however, while all showed electrophysiological phenotypes indicative of reduced cholinergic transmission, no obvious SV recycling phenotypes could be uncovered for these genes.
We compiled an NMR data set consisting of exact nuclear Overhauser enhancement (eNOE) distance limits, residual dipolar couplings (RDCs) and scalar (J) couplings for GB3, which forms one of the largest and most diverse data set for structural characterization of a protein to date. All data have small experimental errors, which are carefully estimated. We use the data in the research article Vogeli et al., 2015, Complementarity and congruence between exact NOEs and traditional NMR probes for spatial decoding of protein dynamics, J. Struct. Biol., 191, 3, 306–317, doi:10.1016/j.jsb.2015.07.008 [1] for cross-validation in multiple-state structural ensemble calculation. We advocate this set to be an ideal test case for molecular dynamics simulations and structure calculations.
CD44v6, a member of the CD44 family of transmembrane glycoproteins is a co-receptor for two receptor tyrosine kinases (RTKs), Met and VEGFR-2 (vascular endothelial growth factor receptor 2). CD44v6 is not only required for the activation of these RTKs but also for signalling. In order to understand the role of CD44v6 in Met and VEGFR-2 activation and signalling we tested whether CD44v6 binds to their ligands, HGF (hepatocyte growth factor) and VEGF (vascular endothelial growth factor), respectively. FACS analysis and cellular ELISA showed binding of HGF and VEGF only to cells expressing CD44v6. Direct binding of CD44v6 to HGF and VEGF was demonstrated in pull-down assays and the binding affinities were determined using MicroScale Thermophoresis, fluorescence correlation spectroscopy and fluorescence anisotropy. The binding affinity of CD44v6 to HGF is in the micromolar range in contrast with the high-affinity binding measured in the case of VEGF and CD44v6, which is in the nanomolar range. These data reveal a heparan sulfate-independent direct binding of CD44v6 to the ligands of Met and VEGFR-2 and suggest different roles of CD44v6 for these RTKs.
This master thesis will consider the question how far American history influenced, and is mirrored in, (American) science fiction literature. The main work of reference for this endeavor will be the award-winning Mars Trilogy by the aforementioned, renowned science fiction author Kim Stanley Robinson.
Chapter one will deal specifically with the topic of how certain events of American history – especially the War of Independence, its origins and its aftermath – are more or less mirrored in the Mars novels, often with only minor changes (and adapted into a sci-fi setting, of course). The historic concepts of ‘the Frontier’ and ‘Manifest Destiny’ will find some minor mention here.
The second chapter of this paper will be exclusively about one of the early main characters of the trilogy, one with a lasting influence even though he dies early. The leading thesis will be that this ‘all-American hero’ is, more or less, a fusion of two major figures of early American history, specifically Captain John Smith and legendary ‘frontiersman’ Daniel Boone. The name of this character alone – John Boone – should serve easily as an indicator for the truth of this thesis.
The final chapter of this thesis then leaves the Mars Trilogy behind in order to look at the whole wide field of science fiction literature. Selected works will serve to illustrate the pervasive presence of American history in this genre. The concept of the ‘frontier’ will be of considerable importance to this endeavor, and will feature significantly in this section.
Concluding the paper will be a short overview of the paper’s major points and a few final thoughts will then round out this thesis and mark its end.
Liberal political philosophy has two alternative options in principle: It can either stick to its original theorems such as the harm principle or the separation of law and morals and from here try to prove large parts of present social and political reality as wrong, illegitimate, dangerous etc. The other option is trying to adjust the original theorems to the apparent needs of modern societies, which is what I would prefer in the long run.