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at the systems level. By integrating groundbreaking multiomic methods at the single-cell level with advanced experimental models, such as human organoids, the laboratory maps the molecular and cellular mechanisms
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STRUCTURAL BIOLOGY · DIOSCURI CENTRE OF EXCELLENCE · MAX PLANCK SOCIETY PARTNERSHIP Postdoctoral Researcher in Time-Resolved Structural Biology Structural Dynamics of Cyanobacterial
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at the Sir William Dunn School of Pathology, University of Oxford. The project aims to elucidate the molecular mechanisms of dynein-2 transport in cilia using cutting-edge structural and biochemical approaches
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fundamental questions in statistical physics. The work is primarily numerical, and we seek candidates with experience in particle-based simulations (e.g., molecular dynamics) and a strong interest in large
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this condition. You will evaluate their interactions using in vivo micro-CT, intravital imaging, spatial transcriptomics and molecular analysis techniques, identifying the key pathways governing this process
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are furthermore advantageous. As a postdoctoral researcher, you will also assist PhD students, e.g., with the structural elucidation of proteins. The candidate will join a dynamic multidisciplinary research group
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. Using all-atom molecular dynamics simulations and enhanced sampling techniques, the project will investigate how S-glutathionylation modulates nucleosome structure and dynamics, alone and in combination
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identified around: theorists in quantum chemistry and molecular and reaction dynamics, organic synthesis chemists, physico-chemical experimenters (spectroscopy, photochemistry, molecular recognition and
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, Rouiller I (AUS), Jonic S (FR). MDSPACE: Extracting Continuous Conformational Landscapes from Cryo-EM Single Particle Datasets Using 3D-to-2D Flexible Fitting based on Molecular Dynamics Simulation. J Mol
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Roberts at the Dunn School with shared group meetings and lab space. The applicant should hold, or be close to completion of, a PhD/DPhil in Structural Biology, Biochemistry, or Molecular/Cell Biology