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genome engineering, quantitative and live-cell microscopy, biochemistry, and computational analysis to dissect how cells sense and respond to replication-associated threats. Recent work from the lab has
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computational protein designs into validated therapeutic candidates. Your responsibilities will include: De novo design of minibinders Recombinant expression and purification of AI-designed minibinders (miBds
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research infrastructure, laboratories, equipment, and highperforming computing clusters. Place of work The place of work is C.F. Møllers Allé 3, Bldg. 1130, 8000 Aarhus C. The area of employment is Aarhus
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, neuroscience and personalised medicine. The Department of Biomedicine provides research-based teaching of the highest quality and is responsible for a large part of the medical degree programme. Academic staff
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cell expression systems as well as a strong background in protein biochemistry and structural biology (x-ray crystallography and cryoEM) is required. The post doc will use different biophysical
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Research Fund Denmark, led by Professor Tore Bjerregaard Stage, aiming to understand chemotherapy side effects using state-of-the-art cell-based models. About the research environment The research areas
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Are you passionate about challenging established norms in extracellular vesicle biology? Do you have any experience in single-cell RNAseq? Then, the Department of Molecular Biology and Genetics
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screening discoveries with single-cell multi-omics approaches in the lab to map candidate repressive mechanisms across cell types and developmental trajectories. These activities will be carried out in close
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cell expression systems as well as a strong background in protein biochemistry and structural biology (x-ray crystallography and cryoEM) is required. The post doc will use different biophysical
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whole-cell biosolutions in agriculture (BioAg). Our goal is to advance the fundamental understanding of what makes an effective biofertilizer and to develop the enabling technologies and translational