羟基化
单加氧酶
细胞色素P450
单甘醇
生物化学
细胞色素
拟南芥
化学
还原酶
电子传输链
细胞色素b5
氧化还原
氧化还原酶
细胞色素P450还原酶
电子转移
生物合成
生物
辅酶Q-细胞色素c还原酶
新陈代谢
酶
细胞色素c
有机化学
基因
线粒体
突变体
作者
Xianhai Zhao,Yunjun Zhao,Mingyue Gou,Chang‐Jun Liu
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2023-01-13
卷期号:9 (2)
被引量:14
标识
DOI:10.1126/sciadv.ade4389
摘要
Cytochrome P450 system consists of P450 monooxygenase and redox pattern(s). While the importance of monooxygenases in plant metabolism is well documented, the metabolic roles of the related redox components have been largely overlooked. Here, we show that distinct electron transfer chains are recruited in phenylpropanoid-monolignol P450 systems to support the synthesis and distribution of different classes of phenolics in different plant tissues. While Arabidopsis cinnamate 4-hydroxylase adopts conventional NADPH-cytochrome P450 oxidoreductase (CPR) electron transfer chain for its para-hydroxylation reaction, ferulate 5-hydroxylase uses both NADPH-CPR-cytochrome b5 (CB5) and NADH-cytochrome b5 reductase-CB5 chains to support benzene ring 5-hydroxylation, in which the former route is primarily recruited in the stem for syringyl lignin synthesis, while the latter dominates in the syntheses of 5-hydroxylated phenolics in seeds and seed coat suberin. Our study unveils an additional layer of complexity and versatility of P450 system that the plants evolved for diversifying phenolic repertoires.
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