Title : In vitro evolution of a polyhydroxybutyrate synthase by intragenic suppression-type mutagenesis - Taguchi_2002_J.Biochem_131_801 |
Author(s) : Taguchi S , Nakamura H , Hiraishi T , Yamato I , Doi Y |
Ref : J Biochem , 131 :801 , 2002 |
Abstract :
In vitro evolution was applied to obtain highly active mutants of Ralstonia eutropha polyester synthase (PhbC(Re)), which is a key enzyme catalyzing the formation of polyhydroxybutyrate (PHB) from (R)-3-hydroxybutyryl-CoA (3HB-CoA). To search for beneficial mutations for activity improvement of this enzyme, we have conducted multi-step mutations, including activity loss and intragenic suppression-type activity reversion. Among 259 revertants, triple mutant E11S12 was obtained as the most active one via PCR-mediated secondary mutagenesis from mutant E11 with a single mutation (Ser to Pro at position 80), which exhibited reduced activity (as low as 27% of the wild-type level) but higher thermostability compared to the wild-type enzyme. Mutant E11S12 exhibited up to 79% of the wild-type enzyme activity. Mutation separation of E11S12 revealed that the replacement of Phe by Ser at position 420 (F420S), located in a highly conserved alpha/beta hydrolase fold region, of the E11S12 mutant contributes to the improvement of the enzyme activity. A purified sample of the genetically engineered mutant, termed E11S12-1, with the F420S mutation alone was found to exhibit a 2.4-fold increase in specific activity toward 3HB-CoA, compared to the wild-type. |
PubMedSearch : Taguchi_2002_J.Biochem_131_801 |
PubMedID: 12038975 |
Gene_locus related to this paper: ralso-PHBC |
Substrate | 3HB-CoA |
Gene_locus | ralso-PHBC |
Taguchi S, Nakamura H, Hiraishi T, Yamato I, Doi Y (2002)
In vitro evolution of a polyhydroxybutyrate synthase by intragenic suppression-type mutagenesis
J Biochem
131 :801
Taguchi S, Nakamura H, Hiraishi T, Yamato I, Doi Y (2002)
J Biochem
131 :801