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-time 65%) in the DFG-funded Integrated Research Training Group (RTG) Beyond Amphiphilicity – RTG 2670: Self-Organization of Soft Matter via Multiple Noncovalent Interactions . The position is funded from
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TV-L, part-time 65%) in the DFG-funded Integrated Research Training Group (RTG) Beyond Amphiphilicity – RTG 2670: Self-Organization of Soft Matter via Multiple Noncovalent Interactions . The position
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fluorescence and NMR spectroscopy approaches to study intrinsically disordered proteins with the aim of understanding their conformational dynamics and interaction landscape and, thus, their way of function
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these materials into high-performance fibers and functional materials. By manipulating molecular interactions through chemical and physical methods, we tailor the structural and mechanical properties of bio-based
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in glia-neuron metabolic interactions, and the underlying regulatory mechanisms are studied. A greater understanding of the metabolic plasticity of the nervous system will lay the basis for better
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in glia-neuron metabolic interactions, and the underlying regulatory mechanisms are studied. A greater understanding of the metabolic plasticity of the nervous system will lay the basis for better
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, previous studies suggest that short RNAs like eRNAs can trigger phase separation of proteins in transcriptional condensates, and transcription factors can interact directly with RNAs. The presence of eRNAs
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possible means for networking with colleagues and pursuing sports alongside work Outstanding scientific and technical infrastructure Creative and international team that conducts research at the frontiers
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resonance energy transfer, siRNA mediated gene knock out, cellular imaging, qPCR, etc.) to elucidate unknown interactions between GPCRs and receptor tyrosine kinases at the cellular level. Analyses will focus
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generation of scientists • A lot of creative freedom and flexible working time models • Subsidized further education and training The University of Bonn is committed to diversity and equal opportunity