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Allosteric regulation and catalysis emerge via a common route
Nina M. Goodey
, Stephen J. Benkovic
Chemistry and Biochemistry
Research output
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Contribution to journal
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Review article
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peer-review
581
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Scopus citations
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Keyphrases
Common Route
100%
Allosteric Regulation
100%
Regulatory Mechanism
33%
Active Sites
33%
Binding Site
33%
Long Distance
33%
Binding Affinity
33%
Protein Engineering
33%
Protein Structure
33%
Enzymatic Activity
33%
Engineering Design
33%
Drug Design
33%
Ligand Binding
33%
Conformational Mobility
33%
Telecommunication Network
33%
Transmitter-receiver
33%
Transceiver
33%
Protein Function
33%
Allosteric Effect
33%
Allosteric Site
33%
Amino Acid Substitution
33%
Allostery
33%
Biochemistry, Genetics and Molecular Biology
Allosteric Regulation
100%
Amino Acids
20%
Enzyme Activity
20%
Active Site
20%
Binding Site
20%
Binding Affinity
20%
Protein Structure
20%
Protein Engineering
20%
Ligand Binding
20%
Protein Function
20%
Allosteric Site
20%
Drug Development
20%
Pharmacology, Toxicology and Pharmaceutical Science
Amino Acid
100%
Binding Site
100%
Drug Development
100%
Immunology and Microbiology
Allosterism
100%
Allosteric Site
20%
Protein Engineering
20%
Protein Function
20%