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New Insights into the Protein Turnover Regulation in Ethylene Biosynthesis

机译:乙烯生物合成中蛋白质周转调节的新见解

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Biosynthesis of the phytohormone ethylene is under tight regulation to satisfy the need for appropriate levels of ethylene in plants in response to exogenous and endogenous stimuli. The enzyme 1-aminocyclopropane-1-carboxylic acid synthase (ACS), which catalyzes the rate-limiting step of ethylene biosynthesis, plays a central role to regulate ethylene production through changes in ACS gene expression levels and the activity of the enzyme. Together with molecular genetic studies suggesting the roles of post-translational modification of the ACS, newly emerging evidence strongly suggests that the regulation of ACS protein stability is an alternative mechanism that controls ethylene production, in addition to the transcriptional regulation of ACS genes. In this review, recent new insight into the regulation of ACS protein turnover is highlighted, with a special focus on the roles of phosphorylation, ubiquitination, and novel components that regulate the turnover of ACS proteins. The prospect of cross-talk between ethylene biosynthesis and other signaling pathways to control turnover of the ACS protein is also considered.
机译:植物激素乙烯的生物合成受到严格的控制,以满足对外源性和内源性刺激的植物中适当水平的乙烯的需求。 1-氨基环丙烷-1-羧酸合酶(ACS)催化乙烯生物合成的限速步骤,在通过改变ACS基因表达水平和酶活性来调节乙烯产量方面起着核心作用。连同分子遗传学研究提示ACS的翻译后修饰作用,新出现的证据强烈表明,除ACS基因的转录调控外,调控ACS蛋白稳定性是控制乙烯生成的另一种机制。在这篇综述中,强调了对ACS蛋白质更新的调节的最新见解,特别关注了磷酸化,泛素化和调节ACS蛋白质更新的新成分的作用。还考虑了乙烯生物合成与其他信号通路之间的串扰,以控制ACS蛋白的更新。

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