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硫氧还蛋白 h5 的选择性蛋白脱硝活性调节植物免疫。

Selective protein denitrosylation activity of Thioredoxin-h5 modulates plant Immunity.

机构信息

Institute of Molecular Plant Sciences, School of Biological Sciences, University of Edinburgh, Edinburgh EH9 3JR, UK.

The Center for Gene Research, Division of Biological Science, Nagoya University, Nagoya, 464-8602, Japan.

出版信息

Mol Cell. 2014 Oct 2;56(1):153-62. doi: 10.1016/j.molcel.2014.08.003. Epub 2014 Sep 4.

Abstract

In eukaryotes, bursts of reactive oxygen and nitrogen species mediate cellular responses to the environment by modifying cysteines of signaling proteins. Cysteine reactivity toward nitric oxide (NO) leads to formation of S-nitrosothiols (SNOs) that play important roles in pathogenesis and immunity. However, it remains poorly understood how SNOs are employed as specific, reversible signaling cues. Here we show that in plant immunity the oxidoreductase Thioredoxin-h5 (TRXh5) reverses SNO modifications by acting as a selective protein-SNO reductase. While TRXh5 failed to restore immunity in gsnor1 mutants that display excessive accumulation of the NO donor S-nitrosoglutathione, it rescued immunity in nox1 mutants that exhibit elevated levels of free NO. Rescue by TRXh5 was conferred through selective denitrosylation of excessive protein-SNO, which reinstated signaling by the immune hormone salicylic acid. Our data indicate that TRXh5 discriminates between protein-SNO substrates to provide previously unrecognized specificity and reversibility to protein-SNO signaling in plant immunity.

摘要

在真核生物中,活性氧和氮物种的爆发通过修饰信号蛋白的半胱氨酸来介导细胞对环境的反应。半胱氨酸对一氧化氮 (NO) 的反应导致形成 S-亚硝基硫醇 (SNOs),它们在发病机制和免疫中发挥重要作用。然而,SNO 如何被用作特定的、可逆的信号提示仍然知之甚少。在这里,我们表明在植物免疫中,氧化还原酶 Thioredoxin-h5 (TRXh5) 通过作为选择性蛋白-SNO 还原酶来逆转 SNO 修饰。虽然 TRXh5 未能挽救 gsnor1 突变体中过度积累的一氧化氮供体 S-亚硝基谷胱甘肽引起的免疫缺陷,但它挽救了 nox1 突变体中升高的游离 NO 引起的免疫缺陷。TRXh5 的挽救是通过选择性地使过量的蛋白-SNO 去硝化来实现的,这恢复了免疫激素水杨酸的信号转导。我们的数据表明,TRXh5 区分蛋白-SNO 底物,为植物免疫中的蛋白-SNO 信号提供了以前未被识别的特异性和可逆性。

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