Bocola_2004_Chembiochem_5_214

Reference

Title : Learning from directed evolution: theoretical investigations into cooperative mutations in lipase enantioselectivity - Bocola_2004_Chembiochem_5_214
Author(s) : Bocola M , Otte N , Jaeger KE , Reetz MT , Thiel W
Ref : Chembiochem , 5 :214 , 2004
Abstract :

Molecular modeling with classical force-fields has been used to study the reactant complex and the tetrahedral intermediate in lipase-catalyzed ester hydrolysis in 20 enzyme/substrate combinations. The R and S enantiomers of alpha-methyldecanoic acid ester served as substrates for the wild-type lipase from Pseudomonas aeruginosa and nine selected mutants. After suitable preparation of initial structures from an available wild-type crystal structure, each system was subjected to 1 ns CHARMM force-field molecular dynamics simulations. The resulting geometric and energetic changes allow interpretation of some experimentally observed effects of mutations, particularly with regard to the "hot spots" at residues 155 and 162. The replacement S155F enhances S enantiopreference through a steric relay involving Leu162. The double mutation S53P + L162G improves S enantioselectivity by creating a new binding pocket for the S enantiomer with an additional stabilizing hydrogen bond to His83. The simulations provide insight into remote and cooperative effects of mutations.

PubMedSearch : Bocola_2004_Chembiochem_5_214
PubMedID: 14760743
Gene_locus related to this paper: pseae-llipa

Related information

Gene_locus pseae-llipa

Citations formats

Bocola M, Otte N, Jaeger KE, Reetz MT, Thiel W (2004)
Learning from directed evolution: theoretical investigations into cooperative mutations in lipase enantioselectivity
Chembiochem 5 :214

Bocola M, Otte N, Jaeger KE, Reetz MT, Thiel W (2004)
Chembiochem 5 :214