Improved synthesis of long-chain alkyl glucosides catalyzed by an engineered β-glucosidase in organic solvents and ionic liquids

Biotechnol Lett. 2020 Nov;42(11):2379-2387. doi: 10.1007/s10529-020-02960-8. Epub 2020 Jul 11.

Abstract

Objective: To synthesize octyl β-D-glucopyranoside (OG) and decyl β-D-glucopyranoside (DG) in three non-aqueous reaction systems, namely organic solvents, ionic liquids and co-solvent mixtures, via reverse hydrolysis reactions catalyzed by the N189F dalcochinase mutant.

Results: The highest yield of OG (67 mol%) was obtained in the reaction containing 0.5 M glucose, 3 unit ml-1 enzyme in 20% (v/v) octanol and 70% (v/v) [BMIm][PF6] at 30 °C. On the other hand, the highest yield of DG (64 mol%) was obtained in the reaction containing 0.5 M glucose, 3 unit ml-1 enzyme in 20% (v/v) decanol, 20% (v/v) acetone and 50% (v/v) [BMIm][PF6] at 30 °C. The identities of OG and DG products were confirmed by HRMS and NMR.

Conclusion: This is the first report of enzymatic synthesis of OG and DG via reverse hydrolysis reactions in ionic liquids and co-solvent mixtures. The N189F dalcochinase mutant and the non-aqueous reaction systems described here show great potential for future commercial production of long-chain alkyl glucosides.

Keywords: Alkyl glucosides; Decyl glucoside; Octyl glucoside; Reverse hydrolysis.

MeSH terms

  • Galactosides / chemistry*
  • Hydrolysis
  • Ionic Liquids / chemistry
  • Protein Engineering
  • Solvents / chemistry*
  • beta-Glucosidase / metabolism*

Substances

  • Galactosides
  • Ionic Liquids
  • Solvents
  • octyl galactopyranoside
  • beta-Glucosidase