Turkey Tail, Yun Zhi · 2020 · Research Support, Non U.S. Gov'T
Low relevanceGlutathione Transferases: Surrogate Targets for Discovering Biologically Active Compounds.
Trametes versicolor
Key points
- Glutathione transferases comprise a large class of multifunctional enzymes, some involved in detoxification pathways
- Since these enzymes are able to interact with potentially toxic molecules, they could be used as targets to screen for compounds with biological activity
- To test this hypothesis, glutathione transferases (GSTs) from the white-rot fungus Trametes versicolor have been used to screen for antifungal molecules from a library of tropical wood extracts
- The interactions between a set of six GSTs from the omega class and 116 extracts from 21 tropical species were quantified using a high-throughput thermal shift assay
- A correlation between these interactions and the antifungal properties of the tested extracts was demonstrated
- Altogether, the present results supported the hypothesis that such detoxification enzymes could be used to detect biologically active molecules
Metadata-grounded summary
Citation abstract
Glutathione transferases comprise a large class of multifunctional enzymes, some involved in detoxification pathways. Since these enzymes are able to interact with potentially toxic molecules, they could be used as targets to screen for compounds with biological activity. To test this hypothesis, glutathione transferases (GSTs) from the white-rot fungus Trametes versicolor have been used to screen for antifungal molecules from a library of tropical wood extracts. The interactions between a set of six GSTs from the omega class and 116 extracts from 21 tropical species were quantified using a high-throughput thermal shift assay. A correlation between these interactions and the antifungal properties of the tested extracts was demonstrated. This approach has been extended to the fractionation of an Andira coriacea extract and led to the detection of maackiain and lapachol in this wood. Altogether, the present results supported the hypothesis that such detoxification enzymes could be used to detect biologically active molecules.
Citation
Barbier M, Perrot T, Salzet G, Amusant N, Dumarçay S, Gérardin P, et al. (2020). Glutathione Transferases: Surrogate Targets for Discovering Biologically Active Compounds. Journal of natural products https://doi.org/10.1021/acs.jnatprod.0c00480 PMID: 33001642
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