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This book introduces recent progress in biological energetics from ATP hydrolysis to molecular machineries. The role of water is now recognized to be essential in biological molecular energetics. Although energetics is a rather distant field to many biologists, any working models for protein machineries such as protein motors, transporters, and other enzymes must be consistent with their energetics. Therefore, the book is intended to help scientists build systematic models of biomolecular functions based on three categories: (1) ATP hydrolysis reactions including ionic hydration and protonation–deprotonation of biomolecules, (2) protein–ligand/protein–protein interactions including hydration–dehydration processes, and (3) functioning mechanisms of protein machineries based on water functions. .
Adenosine triphosphate. --- Hydrolysis. --- Chemistry. --- Physical chemistry. --- Proteins. --- Physical Chemistry. --- Protein-Ligand Interactions. --- Biological and Medical Physics, Biophysics. --- Proteids --- Biomolecules --- Polypeptides --- Proteomics --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Chemistry --- Physical sciences --- Solvolysis --- Adenosinetriphosphate --- Adenosinetriphosphoric acid --- Adenylpyrophosphate --- ATP (Biochemistry) --- Adenine nucleotides --- Phosphates --- Chemistry, Physical organic. --- RNA-ligand interactions. --- Chemistry, Physical organic --- Chemistry, Organic --- Chemistry, Physical and theoretical --- Proteins . --- Biophysics. --- Biological physics. --- Biological physics --- Biology --- Medical sciences --- Physics
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European architecture --- Timber construction --- Architecture details
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This book introduces recent progress in biological energetics from ATP hydrolysis to molecular machineries. The role of water is now recognized to be essential in biological molecular energetics. Although energetics is a rather distant field to many biologists, any working models for protein machineries such as protein motors, transporters, and other enzymes must be consistent with their energetics. Therefore, the book is intended to help scientists build systematic models of biomolecular functions based on three categories: (1) ATP hydrolysis reactions including ionic hydration and protonation–deprotonation of biomolecules, (2) protein–ligand/protein–protein interactions including hydration–dehydration processes, and (3) functioning mechanisms of protein machineries based on water functions. .
Physicochemistry --- Chemical structure --- Organic reaction mechanisms and kinetics --- Genetics --- General biophysics --- Pharmacology. Therapy --- RNA (ribonucleic acid) --- moleculaire structuur --- thermodynamica --- biofysica --- protein-ligand binding constant --- protein-engineering --- farmacologie --- eiwitten --- moleculaire biologie --- kogellagers --- fysicochemie --- enzymen
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Wooden-frame houses --- Vernacular architecture --- Maisons en bois
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Construction en bois --- Architecture vernaculaire --- Architecture de montagne --- Europe
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Construction en bois --- Architecture vernaculaire --- Architecture de montagne --- Europe
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