Wang_2006_J.Biol.Chem_281_18618

Reference

Title : Discrimination of esterase and peptidase activities of acylaminoacyl peptidase from hyperthermophilic Aeropyrum pernix K1 by a single mutation - Wang_2006_J.Biol.Chem_281_18618
Author(s) : Wang Q , Yang G , Liu Y , Feng Y
Ref : Journal of Biological Chemistry , 281 :18618 , 2006
Abstract :

It has been shown that highly conserved residues that form crucial structural elements of the catalytic apparatus may be used to account for the evolutionary history of enzymes. Using saturation mutagenesis, we investigated the role of a conserved residue (Arg(526)) at the active site of acylaminoacyl peptidase from hyperthermophilic Aeropyrum pernix K1 in substrate discrimination and catalytic mechanism. This enzyme has both peptidase and esterase activities. The esterase activity of the wild-type enzyme with p-nitrophenyl caprylate as substrate is approximately 7 times higher than the peptidase activity with Ac-Leu-p-nitroanilide as substrate. However, with the same substrates, this difference was increased to approximately 150-fold for mutant R526V. A more dramatic effect occurred with mutant R526E, which essentially completely abolished the peptidase activity but decreased the esterase activity only by a factor of 2, leading to a 785-fold difference in the enzyme activities. These results provide rare examples that illustrate how enzymes can be evolved to discriminate their substrates by a single mutation. The possible structural and energetic effects of the mutations on k(cat) and K(m) of the enzyme were discussed based on molecular dynamics simulation studies.

PubMedSearch : Wang_2006_J.Biol.Chem_281_18618
PubMedID: 16670095
Gene_locus related to this paper: aerpe-APE1547

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Citations formats

Wang Q, Yang G, Liu Y, Feng Y (2006)
Discrimination of esterase and peptidase activities of acylaminoacyl peptidase from hyperthermophilic Aeropyrum pernix K1 by a single mutation
Journal of Biological Chemistry 281 :18618

Wang Q, Yang G, Liu Y, Feng Y (2006)
Journal of Biological Chemistry 281 :18618