Manojkumar_2005_J.Comput.Chem_26_606

Reference

Title : Theoretical insights into the mechanism of acetylcholinesterase-catalyzed acylation of acetylcholine - Manojkumar_2005_J.Comput.Chem_26_606
Author(s) : Manojkumar TK , Cui C , Kim KS
Ref : J Comput Chem , 26 :606 , 2005
Abstract :

Acylation of acetylcholine (ACh) catalyzed by acetylcholinesterase (AChE) has been studied using high-level theoretical calculations on a model system that mimics the reaction center of the enzyme, and compared with uncatalyzed acylation reaction. The geometries of all the intermediates and transition states, activation energies, and solvent effects have been calculated. The calculations predict simultaneous formation of two short-strong hydrogen bonds (SSHB) in the rate-determining transition state structures [the first SSHB involves the hydrogen atom of Ser-200 (H(s)) and another involves the hydrogen atom of His-440 (H(h))]. In the intermediate states, the H-bond corresponding to H(h) involves SSHB, whereas the one corresponding to H(s) does not.

PubMedSearch : Manojkumar_2005_J.Comput.Chem_26_606
PubMedID: 15739192

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Citations formats

Manojkumar TK, Cui C, Kim KS (2005)
Theoretical insights into the mechanism of acetylcholinesterase-catalyzed acylation of acetylcholine
J Comput Chem 26 :606

Manojkumar TK, Cui C, Kim KS (2005)
J Comput Chem 26 :606