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Electrostatics, allostery, and activity of the yeast chorismate mutase
Shuo Liang Lin
, Dong Xu
, Aijun Li
,
Ruth Nussinov
*
*
Corresponding author for this work
Medicine Dean & Assoc. Deans
National Institutes of Health
SAIC
Lab. of Exp. and Compl. Biology
Research output
:
Contribution to journal
›
Article
›
peer-review
12
Scopus citations
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Keyphrases
Allostery
100%
Chorismate mutase
100%
T-states
100%
Active Pocket
100%
R State
75%
Allosteric Transition
50%
Saccharomyces Cerevisiae
25%
Helix
25%
Enzyme Activity
25%
Baker's Yeast
25%
Molecular Modeling
25%
Dimer Interface
25%
Conformational Change
25%
Active Sites
25%
Substrate Binding
25%
Molecular Surface
25%
Single Amino Acid
25%
Polarity Reversal
25%
Atmospheric Variability
25%
Binding Residues
25%
Volume Estimation
25%
Continuum Electrostatics
25%
Polar Interactions
25%
Large Conformational Changes
25%
Enzyme Active Site
25%
Enzyme Affinity
25%
Polar Atmosphere
25%
Biochemistry, Genetics and Molecular Biology
Active Site
100%
Static Electricity
100%
Allosteric Regulation
100%
Chorismate Mutase
100%
Enzyme
40%
Conformational Change
40%
Saccharomyces cerevisiae
20%
Amino Acids
20%
Enzyme Activity
20%
Enzyme Active Site
20%
Molecular Model
20%
Earth and Planetary Sciences
Electrostatic Force
100%
Atmospherics
50%
Magnetic Reversal
50%
Amino Acid
50%
Enzyme Activity
50%
Saccharomycetes
50%
Monomer
50%
Protective Atmosphere
50%