One-Pot Biocatalytic In Vivo Methylation-Hydroamination of Bioderived Lignin Monomers to Generate a Key Precursor to L-DOPA

Angew Chem Int Ed Engl. 2022 Feb 14;61(8):e202112855. doi: 10.1002/anie.202112855. Epub 2022 Jan 11.

Abstract

Electron-rich phenolic substrates can be derived from the depolymerisation of lignin feedstocks. Direct biotransformations of the hydroxycinnamic acid monomers obtained can be exploited to produce high-value chemicals, such as α-amino acids, however the reaction is often hampered by the chemical autooxidation in alkaline or harsh reaction media. Regioselective O-methyltransferases (OMTs) are ubiquitous enzymes in natural secondary metabolic pathways utilising an expensive co-substrate S-adenosyl-l-methionine (SAM) as the methylating reagent altering the physicochemical properties of the hydroxycinnamic acids. In this study, we engineered an OMT to accept a variety of electron-rich phenolic substrates, modified a commercial E. coli strain BL21 (DE3) to regenerate SAM in vivo, and combined it with an engineered ammonia lyase to partake in a one-pot, two whole cell enzyme cascade to produce the l-DOPA precursor l-veratrylglycine from lignin-derived ferulic acid.

Keywords: Amino Acids; Biocatalysis; Circular Economy; Cofactor Regeneration; Protein Engineering.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Biocatalysis
  • Levodopa / biosynthesis*
  • Levodopa / chemistry
  • Lignin / chemistry
  • Lignin / metabolism*
  • Methylation
  • Methyltransferases / chemistry
  • Methyltransferases / metabolism*
  • Molecular Structure

Substances

  • Levodopa
  • Lignin
  • Methyltransferases