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Poisson-Boltzmann analysis of the lambda repressor-operator interaction
M. Zacharias
, B. A. Luty
, M. E. Davis
, J. A. McCammon
Center for Nuclear Receptors and Cell Signaling, University of Houston
Research output
:
Contribution to journal
›
Article
›
peer-review
76
Scopus citations
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Keyphrases
Poisson-Boltzmann
100%
Lambda Repressor
100%
Boltzmann Analysis
100%
Ion Atmosphere
100%
Repressor
66%
Binding Energy
33%
Protein-DNA Complex
33%
Charge Distribution
33%
Salt Concentration
33%
Finite Difference
33%
Electrostatic Interaction
33%
Ion Release
33%
Oligonucleotides
33%
Electrostatic Interaction Energy
33%
Amino-terminal Domain
33%
Poisson-Boltzmann Equation
33%
Total Interaction Energy
33%
DNA Distances
33%
Chemistry
Boltzmann Equation
100%
Repressor
100%
Electrostatic Interaction
40%
DNA
40%
Charge Distribution
20%
Pair-Base
20%
Free Energy of Binding
20%
Oligonucleotide
20%
Engineering
Boltzmann Equation
100%
Interaction Energy
100%
Salt Concentration
50%
Finite Difference Form
50%
Theoretical Study
50%
Physics
Electrostatics
100%
Finite Difference Method
50%
Boltzmann Equation
50%
Free Energy
50%
Charge Distribution
50%
Material Science
Repressor
100%
Electrostatic Interaction
40%
Finite Difference Method
20%
Chemical Engineering
Free Energy
100%