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首页> 外文期刊>The Biochemical Journal >Snf1-related protein kinases (SnRKs) act within an intricate network that links metabolic and stress signalling in plants
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Snf1-related protein kinases (SnRKs) act within an intricate network that links metabolic and stress signalling in plants

机译:Snf1相关蛋白激酶(SnRKs)在复杂的网络中起作用,该网络将植物中的代谢和胁迫信号传导联系起来

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摘要

The phosphorylation and dephosphorylation of proteins, catalysed by protein kinases and phosphatases, is the major mechanism for the transduction of intracellular signals in eukaryotic organisms. Signalling pathways often comprise multiple phosphorylation/dephosphorylation steps and a long-standing hypothesis to explain this phenomenon is that of the protein kinase cascade, in which a signal is amplified as it is passed from one step in a pathway to the next. This review represents a re-evaluation of this hypothesis, using the signalling network in which the SnRKs [Snf1 (sucrose non-fermenting-1)-related protein kinases] function as an example, but drawing also on the related signalling systems involving Snf1 itself in fungi and AMPK (AMP-activated protein kinase) in animals. In plants, the SnRK family comprises not only SnRK1, but also two other subfamilies, SnRK2 and SnRK3, with a total of 38 members in the model plant Arabidopsis. This may have occurred to enable linking of metabolic and stress signalling. It is concluded that signalling pathways comprise multiple levels not to allow for signal amplification, but to enable linking between pathways to form networks in which key protein kinases, phosphatases and target transcription factors represent hubs on/from which multiple pathways converge and emerge.
机译:蛋白激酶和磷酸酶催化的蛋白质的磷酸化和去磷酸化是在真核生物中转导细胞内信号的主要机制。信号传导途径通常包含多个磷酸化/去磷酸化步骤,长期存在的解释这一现象的假设是蛋白激酶级联反应,即信号从途径中的一个步骤传递到下一步骤时被放大。本文以SnRKs [Snf1(非发酵糖-1)相关的蛋白激酶)发挥作用的信号传导网络为例,对该代表的假设进行了重新评估,但也借鉴了涉及Snf1本身的相关信号传导系统。真菌和动物中的AMPK(AMP激活的蛋白激酶)。在植物中,SnRK家族不仅包含SnRK1,还包括其他两个亚家族SnRK2和SnRK3,在拟南芥模型植物中共有38个成员。这可能是为了使代谢信号和应激信号的链接发生。结论是,信号传导途径包括多个水平,不允许信号放大,而是允许途径之间的连接以形成网络,其中关键蛋白激酶,磷酸酶和靶转录因子代表枢纽,多个途径在该枢纽上汇合并出现。

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