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Protein Engineering & In vitro Evolution
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Related lectures (32)
Protein Engineering & In Vitro Evolution
Explores protein engineering, computational design, and screening protein libraries to generate novel proteins with desired functions.
Drug Discovery: Computational Approaches
Explores the EXSCALATE4COV project, focusing on computational drug discovery for COVID-19 treatments and the collaboration between academia and industry.
Proteins: Central Dogma and Translation
Explains protein synthesis, translation, and the central dogma of molecular biology.
Protein Folding Dynamics
Explores protein folding dynamics, chaperones, ATP hydrolysis, and DNA folding intricacies within the nucleus.
Protein Folding: Mechanisms and Consequences
Explores protein folding, misfolding consequences, chaperones' role, and ATP importance.
Protein Composition and Structure
Explores protein composition, peptide bonds, secondary structures, and protein folding prediction.
Protein Function Regulation: Degradation Mechanisms
Covers the mechanisms of protein degradation, including the roles of the proteasome and autophagy in regulating protein function.
Proteins: Structure and Function
Explores the structure and function of proteins, emphasizing their diverse roles in living organisms.
Neuronal Activity Probing: Optogenetics & Calcium Tools
Explores light- and calcium-gated tools for probing neuronal activity, focusing on optogenetics and fusion protein engineering.
Protein Structure Exploration
Explores protein composition, synthesis, purification, and analysis techniques for understanding protein structure and function.
Self-attraction of DNA: Mediated Interactions
Discusses the self-attraction of DNA and its mediated interactions.
Protein Structure: General Principles
Explores protein structures, folding principles, and sequence determinants, emphasizing the diverse three-dimensional structures proteins can adopt.
Protein Design: Structure and Function
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Covers protein design fundamentals, including secondary structures, amino acid propensity, loops, and computational methods.
Proteins: Engineering and Materials
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Explores protein engineering, elastin-based materials, lab protein production, AI prediction of folding, and non-natural amino acids.
Computational Protein Design
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Series explores computational protein design, covering challenges, applications, and importance in bioengineering and synthetic biology.
Computational Protein Design: Principles and Challenges
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Covers the principles and challenges of computational protein design in bioengineering.
Protein Production: Engineering Bacteria for Protein Synthesis
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Covers the engineering of bacteria for efficient protein production and purification techniques using affinity tags.
Protein Folding: Structure and Design
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Explores protein folding, hydrophobic interactions, compact conformations, the HP model, co-evolution, and computational methods.
Protein Polymers: Biophysics Insights
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Delves into protein polymers, discussing co-evolution, diffusion, protein structures, and experimental methods.
Protein Engineering: Techniques and Applications
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Explores protein engineering techniques, including synthesis, mutations, and applications in biotechnology and vaccine development.
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