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Protein Folding: Basics and Models
Explores protein folding basics, stability, mutations, and computational methods.
Hydrogen Bonds in Biochemistry
Explores the role of hydrogen bonds in biochemistry, from water properties to DNA structure and protein stability.
Hybrid QM/MM Approaches
Covers Hybrid QM/MM Approaches, explaining system partitioning, MM potential forms, and practical QM/MM implementation.
Protein Folding: Structure and Design
Explores protein folding, hydrophobic interactions, compact conformations, the HP model, co-evolution, and computational methods.
Protein Structure and Function: Folding and Degradation
Covers protein folding, maturation, degradation, and the implications of misfolding in neurodegenerative diseases.
Protein Function Regulation: Degradation Mechanisms
Covers the mechanisms of protein degradation, including the roles of the proteasome and autophagy in regulating protein function.
Molecules of Life: Understanding Translation and Protein Synthesis
Provides an overview of translation and protein synthesis, covering the genetic code, tRNA, and the steps involved in protein formation.
Protein Folding: Principles and Interactions
Delves into protein folding principles, emphasizing sequence's role in determining structure and exploring thermodynamics and intermolecular interactions.
Protein Co-evolution Analysis
Delves into protein co-evolution analysis, covering discoveries, residue contacts, and direct coupling analysis.
Computational Protein Design
Series explores computational protein design, covering challenges, applications, and importance in bioengineering and synthetic biology.