Covers the process of expressing and purifying proteins, including the importance of studying protein function, folding, interactions, sequence, and structure.
Explains chromatography principles for protein purification, covering peak broadening causes, band broadening components, and common stationary phases.
Discusses designing electrochemical interfaces for protein immobilization and implantable devices, exploring the concept of enhanced human beings through RFID microchips.
Explores liquid-liquid phase separation in computational cell biology, emphasizing the role of biomolecular condensates and the central dogma of molecular biology.
Covers techniques for mapping protein-protein interactions, including affinity purification, proximity labeling, and co-fractionation, emphasizing their applications in neuroscience.
Explores covalent lipid modifications of proteins and their role in protein-membrane interactions, including the biochemistry of membrane proteins and the challenges of studying them.