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Geminivirus AL2 and L2 Proteins Interact with and Inactivate SNF1 Kinase

机译:Geminivirus AL2和L2蛋白与SNF1激酶相互作用并使其失活

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摘要

Geminivirus AL2 and L2 proteins cause enhanced susceptibility, characterized primarily by an increase in viral infectivity, when expressed in transgenic plants. Here, we present genetic and biochemical evidence that enhanced susceptibility is attributable to the interaction of AL2 and L2 with SNF1 kinase, a global regulator of metabolism. Specifically, we show that AL2 and L2 inactivate SNF1 in vitro and in vivo. We further demonstrate that expression of an antisense SNF1 transgene in Nicotiana benthamiana plants causes enhanced susceptibility similar to that conditioned by the AL2 and L2 transgenes, whereas SNF1 overexpression leads to enhanced resistance. Transgenic plants expressing an AL2 protein that lacks a significant portion of the SNF1 interaction domain do not display enhanced susceptibility. Together, these observations suggest that the metabolic alterations mediated by SNF1 are a component of innate antiviral defenses and that SNF1 inactivation by AL2 and L2 is a counterdefensive measure. They also indicate that geminiviruses are able to modify host metabolism to their own advantage, and they provide a molecular link between metabolic status and inherent susceptibility to viral pathogens.
机译:当在转基因植物中表达时,双子病毒AL2和L2蛋白会导致易感性增强,其主要特征是病毒感染性增加。在这里,我们提供了遗传和生化证据,表明易感性增强归因于AL2和L2与SNF1激酶(一种新陈代谢的全球调节剂)的相互作用。具体来说,我们显示AL2和L2在体外和体内都能灭活SNF1。我们进一步证明,在本氏烟草植物中反义SNF1转基因的表达引起的敏感性增加,类似于由AL2和L2转基因调节的敏感性,而SNF1过表达导致抗性增强。表达缺少SNF1相互作用域显着部分的AL2蛋白的转基因植物未显示出较高的敏感性。总之,这些观察结果表明,由SNF1介导的代谢改变是先天抗病毒防御的一个组成部分,AL2和L2使SNF1失活是一种防御措施。它们还表明双生病毒能够改变宿主的代谢以发挥自身优势,并且它们在代谢状态和对病毒病原体的固有易感性之间提供了分子联系。

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