Acetylcholinesterase inhibitors

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AChE is a very fast enzyme and even though the active site is at the bottom of a deep (~20 Â) and narrow (~5 Â) gorge, it has several features that ensure rapid catalysis.1 Primarily,
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AChE is a very fast enzyme and even though the active site is at the bottom of a deep (~20 Â) and narrow (~5 Â) gorge, it has several features that ensure rapid catalysis.<ref>PMID: 19642642</ref>
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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).1
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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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2. AChE has a dipole that helps "attract" to the active site 1
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2. AChE has a dipole that helps "attract" to the active site <ref>PMID: 19642642</ref>
'''Low levels of Acetylcholine'''
'''Low levels of Acetylcholine'''
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attack on the phosphorus atom of soman, generating the phosphorylated enzyme.
attack on the phosphorus atom of soman, generating the phosphorylated enzyme.
Second, the pinacolyl group departs, which signifies “aging.”
Second, the pinacolyl group departs, which signifies “aging.”
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At this point, Aged phosphorylated AChE can not be reactivated. 1
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At this point, Aged phosphorylated AChE can not be reactivated. <ref>PMID: 19642642</ref>
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nucleophilic attack of the oxime group of 2-PAM on
nucleophilic attack of the oxime group of 2-PAM on
the phosphorus atom of the phosphonyl adduct, resulting in its
the phosphorus atom of the phosphonyl adduct, resulting in its
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cleavage from Ser 200. 1
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cleavage from Ser 200. <ref>PMID: 19642642</ref>
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connect PAS (Peripheral anionic site, found on top of the gorge) and CAS (unlike 2-PAM and Soman/ TcAChE which is only seen in CAS). They include
connect PAS (Peripheral anionic site, found on top of the gorge) and CAS (unlike 2-PAM and Soman/ TcAChE which is only seen in CAS). They include
Decamethonium and heptylene linked bistacrene which are longer but act in a similar mode to the
Decamethonium and heptylene linked bistacrene which are longer but act in a similar mode to the
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Oximes. 1
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Oximes. <ref>PMID: 19642642</ref>
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2-PAM’s Oxime group points towards His440 Oxygen, away from Soman Phosphorus at a distance
2-PAM’s Oxime group points towards His440 Oxygen, away from Soman Phosphorus at a distance
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of 6.8 Å.
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of 6.8 Å. <ref>PMID: 19642642</ref>
It is also on the wrong side for direct nucleophilic attack on the P-Ser 200 O γ bond. Therefore
It is also on the wrong side for direct nucleophilic attack on the P-Ser 200 O γ bond. Therefore
better reactivators have to be developed that would be closer to Soman’s Phosphorus thereby helping
better reactivators have to be developed that would be closer to Soman’s Phosphorus thereby helping
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with reactivation.
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with reactivation.<ref>PMID: 19642642</ref>
Ideally, there could be an agent that would neutralize OPs even before they inactivate AChE.
Ideally, there could be an agent that would neutralize OPs even before they inactivate AChE.

Revision as of 19:48, 5 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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