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, for advancing our fluorescence-based DyeCycling/FRET technology to study biomolecular dynamics. Biomolecular dynamics, such as conformational changes, are the understudied link between biomolecular structure and
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Your position Biomolecular dynamics, such as conformational changes, are the understudied link between biomolecular structure and function. Single-molecule FRET is an established technique, unique
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for research and employees from all over the world. We are looking for a PhD position on studying intrinsically disordered proteins by NMR and single molecule FRET (f/m/d) (Ref. 09/2025) to join the group
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techniques: NMR spectroscopy for atomic-resolution insights in solution Single-molecule FRET for time-resolved, single-molecule dynamics This unique combination of methods is achieved by the synergy
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project aims to unravel these mechanisms by combining two cutting-edge techniques: NMR spectroscopy for atomic-resolution insights in solution Single-molecule FRET for time-resolved, single-molecule
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dynamics and regulation of plant hormone transporters. Integrate HDX-MS, single-molecule FRET, and membrane mimetics to probe conformational landscapes. Collaborate with partners for complementary assays
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measure the nanoscale structure using TEM, AFM, FRET, DIB, etc. W design the amino-acid sequence of the IDPs and TRs de novo from the bottom up and study these in biomimetic nanopores. The approach can be
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nanoscale structure using TEM, AFM, FRET, DIB, etc. W design the amino-acid sequence of the IDPs and TRs de novo from the bottom up and study these in biomimetic nanopores. The approach can be expected