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Enzymatic Addition of Alcohols to Terpenes by Squalene Hopene Cyclase Variants.

Lisa C KühnelBettina M NestlBernhard Hauer
Published in: Chembiochem : a European journal of chemical biology (2017)
Squalene-hopene cyclases (SHCs) catalyze the polycyclization of squalene into a mixture of hopene and hopanol. Recently, amino-acid residues lining the catalytic cavity of the SHC from Alicyclobacillus acidocaldarius were replaced by small and large hydrophobic amino acids. The alteration of leucine 607 to phenylalanine resulted in increased enzymatic activity towards the formation of an intermolecular farnesyl-farnesyl ether product from farnesol. Furthermore, the addition of small-chain alcohols acting as nucleophiles led to the formation of non-natural ether-linked terpenoids and, thus, to significant alteration of the product pattern relative to that obtained with the wild type. It is proposed that the mutation of leucine at position 607 may facilitate premature quenching of the intermediate by small alcohol nucleophiles. This mutagenesis-based study opens the field for further intermolecular bond-forming reactions and the generation of non-natural products.
Keyphrases
  • amino acid
  • wild type
  • hydrogen peroxide
  • ionic liquid
  • energy transfer
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  • copy number
  • quantum dots