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Hunting for Plant Nitric Oxide Synthase Provides New Evidence of a Central Role for Plastids in Nitric Oxide Metabolism

机译:寻找植物一氧化氮合酶为质体在一氧化氮代谢中的核心作用提供了新的证据

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Nitric oxide (NO) has emerged as a central signaling molecule in plants and animals. However, the long search for a plant NO synthase (NOS) enzyme has only encountered false leads. The first works describing a pathogen-induced NOS-like plant protein were soon retracted. New hope came from the identification of NOS1, an Arabidopsis thaliana protein with an atypical NOS activity that was found to be targeted to mitochondria in roots. Although concerns about the NO-producing activity of this protein were raised (causing the renaming of the protein to NO-associated 1), compelling data on its biological role were missing until recently. Strong evidence is now available that this protein functions as a GTPase that is actually targeted to plastids, where it might be required for ribosome function. These and other results support the argument that the defective NO production in loss-of-function mutants is an indirect effect of interfering with normal plastid functions and that plastids play an important role in regulating NO levels in plant cells.
机译:一氧化氮(NO)已成为植物和动物中的中心信号分子。但是,长期寻找植物NO合酶(NOS)的方法只遇到了错误的线索。描述病原体诱导的NOS样植物蛋白的第一批作品很快被撤回。鉴定NOS1是一种新希望,NOS1是一种具有非典型NOS活性的拟南芥蛋白,被发现针对根中的线粒体。尽管人们对该蛋白产生NO的活性提出了担忧(导致该蛋白重命名为NO相关的1),但直到最近才缺少有关其生物学作用的令人信服的数据。现在有强有力的证据表明,这种蛋白质起GTP酶的作用,实际上是针对质体的,可能是核糖体功能所必需的。这些和其他结果支持这样的论点,即功能丧失的突变体中有缺陷的NO产生是干扰正常质体功能的间接作用,而质体在调节植物细胞中的NO水平中起重要作用。

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