铁螯合酶
血红素
原叶绿素
四吡咯
叶绿素
突变体
生物化学
原卟啉IX
生物
氧化还原酶
生物合成
脱镁叶绿酸A
化学
酶
植物
基因
有机化学
光动力疗法
作者
Mengyang Liu,W. F. Mader,Xiangjie Su,Xiaomeng Zhang,Yin Lu,Shaowei Zhang,Jinghui Yan,Daling Feng,Lisong Ma,Aoife Taylor,Yunjia Ge,Qi Cheng,Kedong Xu,Yanhua Wang,Na Li,Aixia Gu,Ju Zhang,Shuangxia Luo,Shuxin Xuan,Xueping Chen
出处
期刊:Cell Reports
[Cell Press]
日期:2022-12-01
卷期号:41 (10): 111758-111758
被引量:30
标识
DOI:10.1016/j.celrep.2022.111758
摘要
The heme branch of tetrapyrrole biosynthesis contributes to the regulation of chlorophyll levels. However, the mechanism underlying the balance between chlorophyll and heme synthesis remains elusive. Here, we identify a dark green leaf mutant, dg, from an ethyl methanesulfonate (EMS)-induced mutant library of Chinese cabbage. The dg phenotype is caused by an amino acid substitution in the conserved chlorophyll a/b-binding motif (CAB) of ferrochelatase 2 (BrFC2). This mutation increases the formation of BrFC2 homodimer to promote heme production. Moreover, wild-type BrFC2 and dBrFC2 interact with protochlorophyllide (Pchlide) oxidoreductase B1 and B2 (BrPORB1 and BrPORB2), and dBrFC2 exhibits higher binding ability to substrate Pchlide, thereby promoting BrPORBs-catalyzed production of chlorophyllide (Chlide), which can be directly converted into chlorophyll. Our results show that dBrFC2 is a gain-of-function mutation contributing to balancing heme and chlorophyll synthesis via a regulatory mechanism in which dBrFC2 promotes BrPORB enzymatic reaction to enhance chlorophyll synthesis.
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