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Plant G-Proteins Come of Age: Breaking the Bond with Animal Models

机译:植物G蛋白成熟:打破动物模型的束缚

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摘要

G-proteins are universal signal transducers mediating many cellular responses. Plant G-protein signaling has been modeled on the well-established animal paradigm but accumulated experimental evidence indicates that G-protein-dependent signaling in plants has taken a very different evolutionary path. Here we review the differences between plant and animal G-proteins reported over past two decades. Most importantly, while in animal systems the G-protein signaling cycle is activated by seven transmembrane-spanning G-protein coupled receptors, the existence of these type of receptors in plants is highly controversial. Instead plant G-proteins have been proven to be functionally associated with atypical receptors such as the Arabidopsis RGS1 and a number of receptor-like kinases. We propose that, instead of the GTP/GDP cycle used in animals, plant G-proteins are activated/de-activated by phosphorylation/de-phosphorylation. We discuss the need of a fresh new look at these signaling molecules and provide a hypothetical model that departs from the accepted animal paradigm.
机译:G蛋白是介导许多细胞反应的通用信号转导子。植物G蛋白信号转导已经建立在公认的动物范式上,但是积累的实验证据表明植物中G蛋白依赖性信号转导采取了截然不同的进化路径。在这里,我们回顾了过去二十年中报道的动植物G蛋白之间的差异。最重要的是,尽管在动物系统中,G蛋白信号转导周期是由七个跨膜的G蛋白偶联受体激活的,但在植物中这类受体的存在却引起了极大争议。相反,已证明植物G蛋白与非典型受体(如拟南芥RGS1)和许多受体样激酶在功能上相关。我们建议,代替动物中使用的GTP / GDP循环,植物G蛋白通过磷酸化/去磷酸化被激活/去激活。我们讨论了对这些信号分子进行崭新面貌的需求,并提供了一种与公认的动物范式不同的假设模型。

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