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3D structures of large molecules (Cryo-electron microscopy, Crystallography, Small Angle X-ray Scattering), Microbiology, Microorganisms (Structure/function in pathogen-host interactions), Protein synthesis (Eukaryotic translation initiation), Toxins (Microbial pathogenesis factors, Toxins)
3D structures of large molecules, Bacteria (Stringent reponse), Electronic teaching aids, Enzymes and artificial enzymes, Microbial processes and substance cycles (Survival mechanisms), Nanoscience and nanotechnology (Single particle electron microscopy), RNA, Robots (Automated crystallisation screening), Structural Analysis (Visualisation and comparison of protein structures), Teaching goals and methods, X-ray crystallography
3D structures of large molecules, Antioxidants, Biochemistry (2D gel electrophoresis, Extracellular matrix, Mass spectrometry, Protein chemistry, proteolytic enzymes, Proteomics), Blood, Cancer, Cerebral and nervous system, Corneal dystrophy, Enzymer, Eyes, Proteomics
3D structures of large molecules (Scientific Computing), Structural Analysis
3D structures of large molecules, Atomic force microscopy (AFM), Biotechnology, Corneal dystrophy, Development of new drugs, Functional nanomaterials, Lipids, Membrane proteins, Membrane proteins, Milk proteins, Molecular medicine, Nanobiotechnology, Protein structure, Self-assembling systems
3D structures of large molecules (auxin, cholesterol transport, low resolution methodologies, plant hormone transport, plant hormones, plant sugar transport), Membrane proteins (auxin, cholesterol transport, low resolution methodologies, plant hormone transport, plant hormones, plant sugar transport), Plant biology, Protein structure, Structural Analysis