Literature DB >> 2804138

Ligand stabilization of cholinesterases.

C S Payne1, M Saeed, A D Wolfe.   

Abstract

Stabilization of fetal bovine serum (FBS) acetylcholinesterase (acetylcholine acetylhydrolase, EC 3.1.1.7) (AChE) and human butyrylcholinesterase (acylcholine acylhydrolase, EC 3.1.1.8) (BuChE) by ligands and inhibitors was studied as a function of physical and chemical perturbation. Denaturation of AChE occurred as a binary exponential function in the temperature range studied (50-56 degrees C); the slower fraction progressively diminished as the temperature was increased. Inclusion of ligands or inhibitors stabilized AChE as a function of temperature, ligand concentration and time. The rank order in which ligands stabilized AChE was: edrophonium greater than decamethonium greater than pralidoxime chloride much greater than procainamide. BuChE denaturation was retarded by ligands in the order: decamethonium greater than procainamide greater than edrophonium greater than pralidoxime. A plot of the quotient of the fast/slow ratio against the log of the 50% inhibitory concentration (I50) for ligands providing substantial protection yielded a linear relation, suggesting that these compounds stabilized AChE by a common mechanism involving the anionic site of the active center. Urea-induced cholinesterase denaturation was also retarded by these ligands.

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Year:  1989        PMID: 2804138     DOI: 10.1016/0167-4838(89)90028-9

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  6 in total

1.  Direct correlation between molecular dynamics and enzymatic stability: a comparative neutron scattering study of native human butyrylcholinesterase and its "aged" soman conjugate.

Authors:  F Gabel; P Masson; M-T Froment; B P Doctor; A Saxena; I Silman; G Zaccai; M Weik
Journal:  Biophys J       Date:  2009-02-18       Impact factor: 4.033

2.  Thermal denaturation of wild type and mutant recombinant acetylcholinesterase from amphioxus: effects of the temperature of in vitro expression and of reversible inhibitors.

Authors:  Brian Perrin; Melissa Rowland; Matthew Wolfe; Igor Tsigelny; Leo Pezzementi
Journal:  Invert Neurosci       Date:  2008-08-02

3.  Mutation of exposed hydrophobic amino acids to arginine to increase protein stability.

Authors:  Caroline Strub; Carole Alies; Andrée Lougarre; Caroline Ladurantie; Jerzy Czaplicki; Didier Fournier
Journal:  BMC Biochem       Date:  2004-07-13       Impact factor: 4.059

4.  Thermal inactivation of butyrylcholinesterase and acetylcholinesterase.

Authors:  S K Burgess; S L Oxendine
Journal:  J Protein Chem       Date:  1993-12

5.  The effect of engineered disulfide bonds on the stability of Drosophila melanogaster acetylcholinesterase.

Authors:  Omid Ranaei Siadat; Andrée Lougarre; Lucille Lamouroux; Caroline Ladurantie; Didier Fournier
Journal:  BMC Biochem       Date:  2006-04-16       Impact factor: 4.059

6.  Improvement of Drosophila acetylcholinesterase stability by elimination of a free cysteine.

Authors:  Isabelle Fremaux; Serge Mazères; Andrée Brisson-Lougarre; Muriel Arnaud; Caroline Ladurantie; Didier Fournier
Journal:  BMC Biochem       Date:  2002-07-30       Impact factor: 4.059

  6 in total

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