黄素组
拟南芥
核黄素
黄素单核苷酸
生物化学
新陈代谢
细胞内
质体
黄素腺嘌呤二核苷酸
生物
拟南芥
隐色素
基因
化学
细胞生物学
辅因子
酶
叶绿体
突变体
生物钟
作者
Takanori Maruta,Tadashi Yoshimoto,Daisuke Ito,Takahisa Ogawa,Masahiro Tamoi,Kazuya Yoshimura,Shigeru Shigeoka
出处
期刊:Plant and Cell Physiology
[Oxford University Press]
日期:2012-04-13
卷期号:53 (6): 1106-1116
被引量:31
摘要
Although flavins, riboflavin (RF), FMN and FAD, are essential for primary and secondary metabolism in plants, the metabolic regulation of flavins is still largely unknown. Recently, we found that an Arabidopsis Nudix hydrolase, AtNUDX23, has FAD pyrophosphohydrolase activity and is distributed in plastids. Levels of RF and FAD but not FMN in Arabidopsis leaves significantly increased under continuous light and decreased in the dark. The transcript levels of AtNUDX23 as well as genes involved in flavin metabolism (AtFADS, AtRibF1, AtRibF2, AtFMN/FHy, LS and AtRibA) significantly increased under continuous light. The pyrophosphohydrolase activity toward FAD was enhanced in AtNUDX23-overexpressing (OX-NUDX23) plants and reduced in AtNUDX23-suppressed (KD-nudx23) plants, compared with the control plants. Interestingly intracellular levels of RF, FMN and FAD significantly decreased in not only OX-NUDX23 but also KD-nudx23 plants. The transcript levels of the flavin metabolic genes also decreased in both plants. Similarly, the increase in intracellular levels on treatment with flavins caused a reduction in the transcript levels of genes involved in flavin metabolism. These results suggest that negative feedback regulation of the metabolism of flavins through the hydrolysis of FAD by AtNUDX23 in plastids is involved in flavin homeostasis in plant cells.
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