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Frontiers in Protein Structure, Function, and Dynamics

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Cover of 'Frontiers in Protein Structure, Function, and Dynamics'

Table of Contents

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    Book Overview
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    Chapter 1 Protein Purification, Estimation, Storage, and Effect on Structure–Function–Dynamics
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    Chapter 2 Experimental and Computational Methods to Determine Protein Structure and Stability
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    Chapter 3 Wet-Lab Approaches to Determine Three-Dimensional Structures of Proteins
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    Chapter 4 Use of Group-Specific Reagents in Active Site Functional Group Elucidation I: Cys, Ser, Tyr, and Trp Residues
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    Chapter 5 Use of Group-Specific Reagents in Active Site Functional Group Elucidation II: Asp, Glu, Arg, Lys, and His Residues
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    Chapter 6 Protein-Protein Interactions Modeling: From Dry to Wet Lab
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    Chapter 7 Thermodynamics of Protein-Ligand Binding
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    Chapter 8 Synergistic Effects of Hydration Sites in Protein Stability: A Theoretical Water Thermodynamics Approach
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    Chapter 9 Molecular Dynamics Simulation: Methods and Application
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    Chapter 10 Protein Folding, Dynamics and Aggregation at Single-Molecule Resolution
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    Chapter 11 Protein Misfolding and Neurodegenerative Diseases
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    Chapter 12 Management of Insulin Through Co-Solute Engineering: A Therapeutic Approach
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    Chapter 13 Structural and Functional Aspects of Muscarinic Receptors in Correlation with Anticholinergic Drugs
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    Chapter 14 Dopamine Beta Hydroxylase: An Enzyme with Therapeutic Potential to Combat Neural and Cardiovascular Diseases
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    Chapter 15 Molecular Motors: Subdomain Dynamics and Mechanochemistry
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    Chapter 16 Structural and Functional Dynamics of Lysosomal Cysteine Proteases with Particular Reference to Cathepsin B and Cathepsin H
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    Chapter 17 An Insight into the Importance of Ferritins in the Physiology of Mycobacterium tuberculosis : Unique Structural and Functional Properties
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