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Identification and functional characterization of a p-coumaroyl CoA 2'-hydroxylase involved in the biosynthesis of coumarin skeleton from Peucedanum praeruptorum Dunn.

Plant Mol Biol.. 2017-09; 
Yao R, Zhao Y, Liu T, Huang C, Xu S, Sui Z, Luo J, Kong L.
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WoLF PSORT ... Subcellular localiza- tion of PpC2′H was analyzed by TargetP 1.1 Server (http:// www.cbs.dtu.dk/services/TargetP/), iPSORT (http://ipsort. hgc.jp/), PSORT (http://psort.hgc.jp/) and WoLF PSORT (http://www.genscript.com/wolf-psort.html). Results ... Get A Quote

Abstract

KEY MESSAGE: A p-coumaroyl CoA 2'-hydroxylase responsible for the formation of coumarin lactone ring was identified from Peucedanum praeruptorum Dunn and functionally characterized in vitro. Coumarins are important plant secondary metabolites with a variety of biological activities. Ortho-hydroxylation of cinnamates leads to the formation of coumarin lactone ring and is generally thought to be a key step in coumarin biosynthesis. However, ortho-hydroxylases, especially p-coumaroyl CoA 2'-hydroxylase (C2'H) responsible for the biosynthesis of the most common coumarin skeleton, have received insufficient attention. Here, a putative ortho-hydroxylase PpC2'H was isolated from P. praeruptorum Dunn, a traditional Chi... More

Keywords

Coumarin biosynthesis; Functional characterization; Peucedanum praeruptorum; Site-directed mutagenesis; p-Coumaroyl CoA 2′-hydroxylase