Recent Progress in Protein S-Nitrosylation in Phytohormone Signaling

Recent Progress in Protein S-Nitrosylation in Phytohormone Signaling
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植物激素信号传导中蛋白质 S-亚硝基化的最新进展

DOI:
10.1093/pcp/pcz012
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发表时间:
2019-01
影响因子:
4.9
通讯作者:
Liao Weibiao
Liao Weibiao
中科院分区:
生物学2区
文献类型:
--
作者:
Zhang Jing;Huang Dengjing;Wang Chunlei;Wang Bo;Fang Hua;Huo Jianqiang;Liao Weibiao

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自由基一氧化氮(NO)是植物生长发育过程中的重要调节因子,参与植物对环境的反应。在大多数情况下,NO与植物激素相互作用以调节这些过程。NO可能通过转录或翻译后水平发挥作用。近年来,基于氧化还原的翻译后修饰S-亚硝基化被认为是一种NO依赖的调控机制。通常,S-亚硝基化可以理解为可逆反应的产物,其中NO部分基团共价连接到半胱氨酸残基的巯基,导致靶蛋白中S-亚硝基硫醇的形成。近年来,S-亚硝基化反应与植物激素之间的相互作用不断出现。此外,一些参与植物激素信号转导的蛋白质已被报道经历S-亚硝基化,这可能随后介导植物生长和防御反应。在这篇综述中,我们集中在最近的过程中蛋白质S-亚硝基化的植物激素信号。此外,还指出了植物激素网络中蛋白质S-亚硝基化研究的重要性和面临的挑战。
The free radical nitric oxide (NO) is a critical regulator in modulation of wide range of growth and developmental processes as well as environmental responses in plants. In most cases, NO interacts with plant hormones to regulate these processes. It is clear that NO might work through either transcriptional or post-translational level. The redox-based post-translational modification S-nitrosylation has been recognized as a NO-dependent regulatory mechanism in recent years. In general, S-nitrosylation can be understood as a product of reversible reaction where NO moiety group covalently attaches to thiol of cysteine residue resulting in the formation of S-nitrosothiol in target proteins. Recently, the crosstalk between S-nitrosylation and phytohormones has been emerging. Furthermore, several proteins involved in plant hormone signaling have been reported to undergo S-nitrosylation, which might subsequently mediate plant growth and defense response. In this review, we focus on the recent processes in protein S-nitrosylation in phytohormone signaling. In addition, both importance and challenges of future work on protein S-nitrosylation in plant hormone network are also highlighted.
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