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The Complementarity Principle—One More Step towards Analytical Docking on the Example of Dihydrofolate Reductase Complexes
by
Potemkin, Vladimir
, Grishina, Maria
in
3D maps of electron density
/ Algorithms
/ Atomic interactions
/ Complementarity
/ Coordination compounds
/ Dihydrofolate reductase
/ Docking
/ Electron density
/ Electrons
/ Enzymes
/ Ligands
/ Optimization techniques
/ Proteins
/ Receptor density
/ Receptors
/ Reductases
2021
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The Complementarity Principle—One More Step towards Analytical Docking on the Example of Dihydrofolate Reductase Complexes
by
Potemkin, Vladimir
, Grishina, Maria
in
3D maps of electron density
/ Algorithms
/ Atomic interactions
/ Complementarity
/ Coordination compounds
/ Dihydrofolate reductase
/ Docking
/ Electron density
/ Electrons
/ Enzymes
/ Ligands
/ Optimization techniques
/ Proteins
/ Receptor density
/ Receptors
/ Reductases
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
The Complementarity Principle—One More Step towards Analytical Docking on the Example of Dihydrofolate Reductase Complexes
by
Potemkin, Vladimir
, Grishina, Maria
in
3D maps of electron density
/ Algorithms
/ Atomic interactions
/ Complementarity
/ Coordination compounds
/ Dihydrofolate reductase
/ Docking
/ Electron density
/ Electrons
/ Enzymes
/ Ligands
/ Optimization techniques
/ Proteins
/ Receptor density
/ Receptors
/ Reductases
2021
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The Complementarity Principle—One More Step towards Analytical Docking on the Example of Dihydrofolate Reductase Complexes
Journal Article
The Complementarity Principle—One More Step towards Analytical Docking on the Example of Dihydrofolate Reductase Complexes
2021
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Overview
New approaches to assessing the “enzyme–ligand” complementarity, taking into account hydrogens, have been proposed. The approaches are based on the calculation of three-dimensional maps of the electron density of the receptor–ligand complexes. The action of complementarity factors, first proposed in this article, has been demonstrated on complexes of human dihydrofolate reductase (DHFR) with ligands. We found that high complementarity is ensured by the formation of the most effective intermolecular contacts, which are provided due to predominantly paired atomic–atomic interactions, while interactions of the bifurcate and more disoriented type are minimized. An analytical docking algorithm based on the proposed receptor–ligand complementarity factors is proposed.
Publisher
MDPI AG,MDPI
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