Oxidative Catabolism of (+)-Pinoresinol Is Initiated by an Unusual Flavocytochrome Encoded by Translationally Coupled Genes within a Cluster of (+)-Pinoresinol-Coinduced Genes in Pseudomonas sp. Strain SG-MS2

Author:

Shettigar Madhura12,Balotra Sahil13ORCID,Kasprzak Annette1,Pearce Stephen L.1ORCID,Lacey Michael J.4,Taylor Matthew C.1ORCID,Liu Jian-Wei1,Cahill David2ORCID,Oakeshott John G.1ORCID,Pandey Gunjan1ORCID

Affiliation:

1. CSIRO Land & Water, Acton, Australian Capital Territory, Australia

2. Deakin University, Geelong, Victoria, Australia

3. Pfizer, Mulgrave, Victoria, Australia

4. CSIRO National Collections and Marine Infrastructure, Acton, Australian Capital Territory, Australia

Abstract

(+)-Pinoresinol is an important plant defense compound, a major food lignan for humans and some other animals, and the model compound used to study degradation of the β-β′ linkages in lignin. We report a gene cluster, in one strain each of Pseudomonas and Burkholderia , that is involved in the oxidative catabolism of (+)-pinoresinol. The flavoprotein component of the α-hydroxylase which heads the pathway belongs to the 4-phenol oxidizing (4PO) subgroup of the vanillyl alcohol oxidase/ p -cresol methyl hydroxylase (VAO/PCMH) enzyme family but constitutes a novel combination of cofactor and electron acceptor properties for the family. It is translationally coupled with a cytochrome gene whose product is also required for activity. The work casts new light on the biology of (+)-pinoresinol and its transformation to other bioactive molecules. Potential applications of the findings include new options for deconstructing lignin into useful chemicals and the generation of new phytoestrogenic enterolactones from lignans.

Funder

Commonwealth Scientific and Industrial Research Organisation

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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