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across the vesicle bilayer will be achieved with protein nanowires, ionophores and pore-forming proteins. The project will involve protein purification, protein engineering, spectroscopy, photochemistry
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expertise in the handling of these types of cytochromes, and will be trained in a range of different techniques, including protein expression and purification, UV spectroscopy, Protein film voltammetry, X-ray
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. The successful candidate will have a Ph.D. degree, with a strong background in biochemistry and structural biology. Experience with expression and purification of proteins from mammalian cells, measurement
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-on experience with protein expression, purification, and characterization Familiarity with biophysical techniques (e.g. electrophysiology, fluorescence assays, SEC, CD spectroscopy, or similar) Strong
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synthesis, purification, and characterization of organic molecules. ▪ High motivation and a strong interest in basic science. ▪ Good written and verbal communication skills in English
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-on experience with protein expression, purification, and characterization Familiarity with biophysical techniques (e.g. electrophysiology, fluorescence assays, SEC, CD spectroscopy, or similar) Strong
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these performances with those of conventional analytical methods (chromatography, etc.); • Write scientific articles in English. The materials synthesised may also be used for air or water purification. Where to apply
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function in health and disease. The applied techniques will include biochemical methods (e.g. protein crosslinking, affinity purification, mass spectrometry), cellular and molecular biology methods (e.g
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or structural biology · Practical experience working in the wet lab, mainly focusing on virology and translation (purification of viruses/ribosomes, virus propagation, cell culture virology, ribosome
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and Johnson & Johnson. The project also involves close interaction with other research teams within the SPARC consortium, working on molecular mechanisms of nanoparticle purification and storage, as