Acetylcholinesterase inhibitors

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Primarily,
Primarily,
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1. 14 aromatic residues line the active site and filter ACh, by cation-π interactions, from the surface of AChE to the <scene name='Acetylcholinesterase_inhibitors/Catalytictriad/2'>catalytic triad</scene> (Ser200, Glu327 and His440).<ref>PMID: 19642642</ref>
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1. 14 aromatic residues line the active site <ref>PMID: 18502801</ref> and filter ACh, by cation-π interactions, from the surface of AChE to the <scene name='Acetylcholinesterase_inhibitors/Catalytictriad/2'>catalytic triad</scene> (Ser200, Glu327 and His440).<ref>PMID: 19642642</ref>
2. AChE has a dipole that helps "attract" to the active site <ref>PMID: 19642642</ref>
2. AChE has a dipole that helps "attract" to the active site <ref>PMID: 19642642</ref>
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<references />
<references />
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4. Xu, Y., Colletier, J.P., Weik, M., Jiang, H., Moult, J., Silman, I., Sussman, J.L. (2008)
 
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Flexibility of Aromatic Residues in the Active-Site Gorge of Acetylcholinesterase: X-ray versus
 
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Molecular Dynamics. Biophysical Journal. 95: 2500-2511
 
5. Bartosova, L., Kuca, K., Kunesova, G., Jun, D. (2006). The Acute Toxicity of Acetylcholinesterase
5. Bartosova, L., Kuca, K., Kunesova, G., Jun, D. (2006). The Acute Toxicity of Acetylcholinesterase

Revision as of 00:53, 6 July 2011

Structure of AChE with Soman and 2 PAM (PDB entry 2wg1)

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Proteopedia Page Contributors and Editors (what is this?)

Yakov Fattakhov, Michal Harel

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