Site directed mutagenesis of Catharanthus roseus (+)-vincadifformine 19-hydroxylase (CYP71BY3) results in two distinct enzymatic functions.

Danielle Williams, Weronika Brzezinski, Heather Gordon, Vincenzo De Luca

Journal: Phytochemistry 2022;201():113265

PMID: 35660549

Abstract

The most abundant monoterpenoid indole alkaloids (MIAs) in Catharanthus roseus roots include lochnericine and (+)-echitovenine. The formation of (+)-echitovenine involves a 3-step pathway including (+)-vincadifformine-19-hydroxylase (V19H) that differentiates it from a parallel pathway involved in the formation of lochnericine, hörhammericine and its O-acetylated derivative. Homology based modeling and docking experiments in the present study show that (+) and (-) vincadifformine can occupy the V19H active site and is proven experimentally by showing that (-)-vincadifformine is a competitive inhibitor of V19H. Comparative modeling of V19H with tabersonine 3-oxidase (T3O) and tabersonine 19-hydroxylase (T19H) that accept (-)-aspidosperma MIAs identified four conserved amino acid residues in T3O and T19H that were different in the V19H binding site and were used to generate a series of single-, double-, or four-point mutations in V19H. While all mutants retained their ability to convert (+)-vincadifformine to (+)-minovincinine only the four-point mutant gained T3O activity enabling it to convert (-)-tabersonine to tabersonine 2,3-epoxide. The gain of T3O-like activity following mutagenesis without the loss of V19H activity supports the hypothesis that V19H shares a common ancestor to T3O which is involved in vindoline biosynthesis in C. roseus leaves.

Copyright © 2022 Elsevier Ltd. All rights reserved.

Address: Department of Biological Sciences Brock University, 1812 Sir Isaac Brock Way, St Catharines, ON, L2S 3A1, Canada. Electronic address: [email protected].; Department of Biological Sciences Brock University, 1812 Sir Isaac Brock Way, St Catharines, ON, L2S 3A1, Canada. Electronic address: [email protected].; Department of Chemistry, Brock University, 1812 Sir Isaac Brock Way, St Catharines, ON, L2S 3A1, Canada. Electronic address: [email protected].; Department of Biological Sciences Brock University, 1812 Sir Isaac Brock Way, St Catharines, ON, L2S 3A1, Canada. Electronic address: [email protected].

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