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Volumn 499, Issue 1-2, 2001, Pages 171-175
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Electrostatic effects play a central role in cold adaptation of trypsin
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Author keywords
Binding affinity; Cold adaptation; Electrostatics; Molecular dynamics simulation; Psychrophilic enzyme; Trypsin
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Indexed keywords
APROTININ;
BENZAMIDINE;
TRYPSIN;
ARTICLE;
BINDING AFFINITY;
CATALYSIS;
CHEMICAL INTERACTION;
COLD ACCLIMATIZATION;
ELECTRICITY;
ENVIRONMENTAL TEMPERATURE;
ENZYME ACTIVITY;
LIGAND BINDING;
LOW TEMPERATURE;
METABOLISM;
PRIORITY JOURNAL;
ADAPTATION, PHYSIOLOGICAL;
ANIMALS;
APROTININ;
BENZAMIDINES;
CATALYSIS;
CATTLE;
COLD;
COMPUTER SIMULATION;
ELECTROSTATICS;
LIGANDS;
MODELS, MOLECULAR;
MUTATION;
PROTEIN BINDING;
PROTEIN CONFORMATION;
SALMON;
THERMODYNAMICS;
TRYPSIN;
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EID: 0035875953
PISSN: 00145793
EISSN: None
Source Type: Journal
DOI: 10.1016/S0014-5793(01)02552-2 Document Type: Article |
Times cited : (39)
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References (32)
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