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Lecture
Protein Purification: IMAC
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Protein Engineering: Techniques and Applications
Explores protein engineering techniques, including synthesis, mutations, and applications in biotechnology and vaccine development.
Protein Mass Spectrometry and Proteomics
Covers protein mass spectrometry, proteomics techniques, challenges, and applications in analyzing complex protein mixtures.
Enzyme Inhibitors: Drug Design and Tools
Explores enzyme inhibitors as drugs, drug design, and protein function, including activity-based protein profiling and genome probing tools.
Protein Mass Spectrometry and Proteomics
Explores protein mass spectrometry, chromatographic techniques, and quantitative proteomic workflows, including SILAC and isobaric tagging methods.
Protein Mass Spectrometry and Proteomics: Techniques and Applications
Explores protein mass spectrometry techniques, including labeling methods, quantitation, and biomarker discovery.
Protein Expression and Purification
Covers the process of expressing and purifying proteins, including the importance of studying protein function, folding, interactions, sequence, and structure.
Computational Protein Design: Principles and Challenges
Covers the principles and challenges of computational protein design in bioengineering.
Protein Design: Structure and Function
Covers protein design fundamentals, including secondary structures, amino acid propensity, loops, and computational methods.
RNA-Protein Interactions: PAR-CLIP Technology
Explores PAR-CLIP technology for probing RNA-protein interactions and RNA sequences using chemical biology toolsets and 'Spinach' probes.
Protein Function Regulation: Degradation Mechanisms
Covers the mechanisms of protein degradation, including the roles of the proteasome and autophagy in regulating protein function.