Journal:Neuropharmacology:2

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<b>Molecular Tour</b><br>
<b>Molecular Tour</b><br>
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<scene name='85/857780/Cv/4'>Effect of ethylene glycol oligomers (PEGs) on the positioning of the ligand in the crystal structure of the methylene blue/''Tc''AChE complex crystallized from PEG200</scene>. Three PEGs are shown in red, methylene blue in blue, and conserved aromatic residues lining the active-site gorge in green. A highly conserved H<sub>2</sub>O molecule, shown as a yellow sphere, also affects the positioning of the ligand.
 
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Computational approaches have proved valuable in elucidating structure/function relationships in the cholinesterases in the context of their unusual three-dimensional structure. In this review we survey several recent studies that have enhanced our understanding of how these enzymes function, and have utilized computational approaches both to modulate their activity and to improve the design of lead compounds for their inhibition.
Computational approaches have proved valuable in elucidating structure/function relationships in the cholinesterases in the context of their unusual three-dimensional structure. In this review we survey several recent studies that have enhanced our understanding of how these enzymes function, and have utilized computational approaches both to modulate their activity and to improve the design of lead compounds for their inhibition.
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<text>Pause/Start Animation</text>
<text>Pause/Start Animation</text>
</jmolButton></jmol>
</jmolButton></jmol>
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<scene name='85/857780/Cv/4'>Effect of ethylene glycol oligomers (PEGs) on the positioning of the ligand in the crystal structure of the methylene blue/''Tc''AChE complex crystallized from PEG200</scene>. Three PEGs are shown in red, methylene blue in blue, and conserved aromatic residues lining the active-site gorge in green. A highly conserved H<sub>2</sub>O molecule, shown as a yellow sphere, also affects the positioning of the ligand.
<b>References</b><br>
<b>References</b><br>

Revision as of 12:51, 17 August 2020

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Alexander Berchansky, Jaime Prilusky

This page complements a publication in scientific journals and is one of the Proteopedia's Interactive 3D Complement pages. For aditional details please see I3DC.
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