硫氧还蛋白
氧化应激
谷胱甘肽
氧化磷酸化
细胞生物学
化学
胞浆
生物化学
谷胱甘肽还原酶
信号转导
谷胱甘肽
硫氧还蛋白还原酶
半胱氨酸
GPX1型
GPX4
信号
生物
拟南芥
酶
逆行信号
基因表达
水杨酸
活性氧
基因表达调控
拟南芥
转录因子
作者
Chen Li,Shengchun Li,Xiujie Mu,Tianzhao Yang,Lijuan Wang,Mimi Tian,Mei Yu,Long Luo,Yuanming Xie,Wei Xuan,Graham Noctor,Yi Han
摘要
-triggered SA responses. Intriguingly, TRXh5-reinforced SA responses were antagonised by glutathione (GSH) deficiency when introducing additional pad2 mutation, localised in the GLUTAMATE-CYSTEINE LIGASE gene encoding the first enzyme of glutathione biosynthesis. Further analysis revealed that the two active cysteine residues of recombinant TRXh5 can be denitrosylated by GSH. Blocking glutathione accumulation increased more TRXh5-SNO formation in TRXH5-YFP cat2 pad2 trxh5 than in TRXH5-YFP cat2 trxh5. Furthermore, S-nitrosoglutathione reductase (GSNOR) was capable of physically interacting with TRXh5, and was also required for GSH-dependent TRXh5 denitrosylation and TRXh5-enhanced SA responses during oxidative stress. Collectively, these data suggest that GSH/GSNOR constitutes an active denitrosylating module that works together with the canonical NADPH-dependent TRX-reducing pathway to sustain cytosolic TRXh5 operation within the oxidative signalling framework.
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