Plant seed peroxygenase is an original heme-oxygenase with an EF-hand calcium binding motif

被引:125
作者
Hanano, Abdulsamie
Burcklen, Michel
Flenet, Martine
Ivancich, Anabella
Louwagie, Mathilde
Garin, Jerome
Blee, Elizabeth
机构
[1] CNRS, UPR 2357, Inst Biol Mol Plantes, Lab Phytooxlipines, F-67083 Strasbourg, France
[2] CEA Saclay, Dept Biol Joliot Curie, CNRS URA 2096, Serv Bioenerget, F-91191 Gif Sur Yvette, France
[3] Commisariat Energie Atom Saclay, INSERM, ERM 0201, Lab Chim Prot, F-38054 Grenoble 9, France
关键词
D O I
10.1074/jbc.M605395200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A growing body of evidence indicates that phytooxylipins play important roles in plant defense responses. However, many enzymes involved in the biosynthesis of these metabolites are still elusive. We have purified one of these enzymes, the peroxygenase (PXG), from oat microsomes and lipid droplets. It is an integral membrane protein requiring detergent for its solubilization. Proteinase K digestion showed that PXG is probably deeply buried in lipid droplets or microsomes with only about 2 kDa at the C-terminal region accessible to proteolytic digestion. Sequencing of the N terminus of the purified protein showed that PXG had no sequence similarity with either a peroxidase or a cytochrome P450 but, rather, with caleosins, i. e. calcium-binding proteins. In agreement with this finding, we demonstrated that recombinant thale cress and rice caleosins, expressed in yeast, catalyze hydroperoxide-dependent mono-oxygenation reactions that are characteristic of PXG. Calcium was also found to be crucial for peroxygenase activity, whereas phosphorylation of the protein had no impact on catalysis. Site-directed mutagenesis studies revealed that PXG catalytic activity is dependent on two highly conserved histidines, the 9 GHz EPR spectrum being consistent with a high spin pentacoordinated ferric heme.
引用
收藏
页码:33140 / 33151
页数:12
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