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/andreas-kohler/ Project description While protein quality control (PQC) systems for mitochondrial proteins encoded by nuclear DNA are well studied, the molecular basis of PQC for mitochondrially encoded
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honeybee behavioral genetics and genomics. Postdoctoral scientist is expected to design and perform procedures/techniques for the extraction of DNA/RNA using standard molecular methods for sequencing
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these analysis methods to highly informative multimodal microscopy data and develop techniques to integrate correlated structural and molecular analysis into the natural 3D tissue space. This integration will
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, and analysis. Specifically, the project will employ a multidisciplinary approach combining molecular dynamics, coarse-grained simulations, and continuum structural mechanics with structural and dynamic
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workflow from molecular design and simulation to multi‑scale characterisation. The work will be conducted in close collaboration with the Pi‑CANTHERM partners: – Institut Charles Gerhardt de Montpellier
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thin films possessing the desired magnitude and direction of the polarization. The successful candidate will perform atomistic simulations, using both density functional theory and classical molecular
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encouraged to apply. Technical expertise in cell culture, basic methods in histology and molecular biology, and in vivo experimental models is essential. Experience of cell therapy or biomaterials applications
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in live-cell, high-resolution confocal fluorescence microscopy imaging, the design and synthesis of novel fluorescence molecular probes, and mammalian cell culture. Brief Description of Duties
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molecular structures capable of transferring electrons and interacting with light. Such assemblies also have applications in biomedicine. The primary objective is to develop computational methods, using deep
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strengths in laboratory-based enquiry using molecular genetics, metagenomics, biochemistry, cell biology, bioinformatics and structural biology, with rich clinical resources in microbiology, virology