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Apprentice Mode
10 Modules / ~100 pages
Wizard Mode
~25 Modules / ~400 pages

Protein Chemistry and Function: Advanced Concepts
( 25 Modules )

Module #1
Introduction to Protein Chemistry
Overview of protein structure, function, and importance in biological systems
Module #2
Amino Acid Chemistry
Properties and classification of amino acids, including acidity, basicity, and hydrophobicity
Module #3
Protein Primary Structure
Amino acid sequence determination, Edman degradation, and Mass Spectrometry
Module #4
Protein Secondary Structure
Alpha helices, beta sheets, turns, and loops; prediction and determination methods
Module #5
Protein Tertiary Structure
Folding, domains, and motifs; X-ray crystallography and NMR spectroscopy
Module #6
Protein Quaternary Structure
Multimeric proteins, protein-ligand interactions, and oligomerization
Module #7
Protein-Ligand Interactions
Binding affinity, specificity, and kinetics; thermodynamics of binding
Module #8
Enzyme Kinetics
Michaelis-Menten kinetics, substrate inhibition, and allosteric regulation
Module #9
Protein Folding and Misfolding
Folding pathways, misfolding diseases, and protein quality control
Module #10
Protein Engineering and Design
Site-directed mutagenesis, directed evolution, and protein design algorithms
Module #11
Protein-Protein Interactions
Interactome analysis, protein-protein docking, and network biology
Module #12
Post-Translational Modifications
Phosphorylation, ubiquitination, and other PTMs; their roles in signaling and regulation
Module #13
Protein Turnover and Degradation
Proteasome-mediated degradation, autophagy, and the ubiquitin-proteasome system
Module #14
Protein Trafficking and Localization
Vesicular transport, protein targeting, and organelle biogenesis
Module #15
Protein Misfolding Diseases
Amyloidosis, neurodegenerative diseases, and cancer; therapeutic strategies
Module #16
Protein-Lipid Interactions
Lipid-protein interactions, membrane structure, and lipid rafts
Module #17
Protein-Nucleic Acid Interactions
Transcription factors, DNA-binding proteins, and chromatin remodeling
Module #18
Protein Aggregation and Amyloid Formation
Mechanisms of aggregation, amyloid fibril structure, and toxicity
Module #19
Advanced Analytical Techniques
Mass Spectrometry, NMR, and other biophysical methods for protein analysis
Module #20
Computational Tools for Protein Analysis
Homology modeling, molecular dynamics, and protein-ligand docking
Module #21
Systems Biology and Proteomics
High-throughput proteomics, protein networks, and systems biology approaches
Module #22
Synthetic Biology and Protein Design
Designing new protein functions, circuits, and pathways
Module #23
Protein-Based Therapeutics
Protein-based drugs, antibodies, and vaccines; challenges and opportunities
Module #24
Case Studies in Protein Chemistry
Real-world examples of protein chemistry and function in biological systems
Module #25
Course Wrap-Up & Conclusion
Planning next steps in Protein Chemistry and Function: Advanced Concepts career


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