Qualitative metabolomics-based characterization of a phenolic UDP-xylosyltransferase with a broad substrate spectrum from <i>Lentinus brumalis</i>.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 37399371.
- Also identified by DOI 10.1073/pnas.2301007120 and PMC identifier 10334773.
- Licence recorded as CC BY-NC-ND.
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Abstract
Wood-decaying fungi are the major decomposers of plant litter. Heavy sequencing efforts on genomes of wood-decaying fungi have recently been made due to the interest in their lignocellulolytic enzymes; however, most parts of their proteomes remain uncharted. We hypothesized that wood-decaying fungi would possess promiscuous enzymes for detoxifying antifungal phytochemicals remaining in the dead plant bodies, which can be useful biocatalysts. We designed a computational mass spectrometry-based untargeted metabolomics pipeline for the phenotyping of biotransformation and applied it to 264 fungal cultures supplemented with antifungal plant phenolics. The analysis identified the occurrence of diverse reactivities by the tested fungal species. Among those, we focused on <i>O</i>-xylosylation of multiple phenolics by one of the species tested, <i>Lentinus brumalis</i>. By integrating the metabolic phenotyping results with publicly available genome sequences and transcriptome analysis, a UDP-glycosyltransferase designated UGT66A1 was identified and validated as an enzyme catalyzing <i>O</i>-xylosylation with broad substrate specificity. We anticipate that our analytical workflow will accelerate the further characterization of fungal enzymes as promising biocatalysts.
Medical subject headings
- Metabolomics
- Lentinula
- Glucosyltransferases