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small molecules, peptides, and proteins. We are seeking a highly motivated candidate to join our cross‑disciplinary team operating at the interface of organometallic chemistry, organic synthesis
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protein production and in situ hybridisation as well as CRISPR experiments in lice with subsequent analyses of genotypes and phenotypes. There might be the opportunity for a three-month stay at a partner
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Biology Core Facility at Blindern, Oslo. Job description The project focuses on biochemical and structural biology aspects of a protein redox network that is important for bacterial defense and survival e.g
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microenvironment, adapting their nuclear biomechanical properties to enable efficient spreading through complex extracellular environments. The nuclear envelope protein BAF has emerged as a critical adaptable node
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related to staff position within a Research Infrastructure? No Offer Description The project focuses on biochemical and structural biology aspects of a protein redox network that is important for bacterial
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molecular cell biology (using techniques such as cell culture, CRISPR/Cas9 based genome editing, protein expression and interaction analysis, confocal and live cell microscopy), as well as bioinformatics
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cell culture, CRISPR/Cas9 based genome editing, protein expression and interaction analysis, light microscopy and cancer assays. A solid background in data analysis, bioinformatics and presentation
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(i) the generation of virus capsids for gene therapy and (ii) the generation of meta-material structures. The project will involve both physics-based forward modeling of protein or metamaterial
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biomechanical properties to enable efficient spreading through complex extracellular environments. The nuclear envelope protein BAF has emerged as a critical adaptable node in determining nuclear biomechanical
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free energy calculations using Free Energy Perturbation/Thermodynamic Integration (FEP/TI) to quantify binding affinity changes and receptor-Gi protein coupling alterations • investigate potential disulfide