Anthony Richard G, Khan Safina, Costa Joana, Pais Maria S, Bögre László
School of Biological Sciences, Royal Holloway, University of London, Egham Hill, Egham, Surrey TW20 0EX, United Kingdom.
J Biol Chem. 2006 Dec 8;281(49):37536-46. doi: 10.1074/jbc.M607341200. Epub 2006 Oct 13.
Arabidopsis PDK1 activity is regulated by binding to the lipid phosphatidic acid (PA) resulting in activation of the oxidative stress-response protein kinase OXI1/AGC2-1. Thus there is an inferred link between lipid signaling and oxidative stress signaling modules. Among a panel of hormones and stresses tested, we found that, in addition to PA, the fungal elicitor xylanase activated PDK1, suggesting that PDK1 has a role in plant pathogen defense mechanisms. The downstream OXI1 was activated by additional stress factors, including PA, H(2)O(2), and partially by xylanase. We have isolated an interacting partner of OXI1, a Ser/Thr kinase (PTI1-2), which is downstream of OXI1. Its sequence closely resembles the tomato Pti kinase, which has been implicated in the hypersensitive response, a localized programmed cell death that occurs at the site of pathogen infection. PTI1-2 is activated by the same stresses/elicitors as OXI1 and additionally flagellin. We have used RNA interference to knock out the expression of PDK1 and OXI1 and to study the effects on PTI1-2 activity. We show that specific lipid signaling pathways converge on PTI1-2 via the PDK1-OXI1 axis, whereas H(2)O(2) and flagellin signals to OXI1-PTI1-2 via a PDK1-independent pathway. PTI1-2 represents a new downstream component that integrates diverse lipid and reactive oxygen stress signals and functions closely with OXI1.
拟南芥PDK1的活性通过与脂质磷脂酸(PA)结合来调节,从而激活氧化应激反应蛋白激酶OXI1/AGC2-1。因此,脂质信号传导与氧化应激信号传导模块之间存在推断的联系。在一组测试的激素和胁迫中,我们发现,除了PA之外,真菌激发子木聚糖酶也激活了PDK1,这表明PDK1在植物病原体防御机制中起作用。下游的OXI1被包括PA、H₂O₂等其他胁迫因子激活,木聚糖酶也能部分激活它。我们分离出了OXI1的一个相互作用伴侣,一种丝氨酸/苏氨酸激酶(PTI1-2),它位于OXI1的下游。其序列与番茄Pti激酶非常相似,番茄Pti激酶与过敏反应有关,过敏反应是病原体感染部位发生的局部程序性细胞死亡。PTI1-2与OXI1一样被相同的胁迫/激发子激活,此外还被鞭毛蛋白激活。我们利用RNA干扰敲除了PDK1和OXI1的表达,并研究其对PTI1-2活性的影响。我们表明,特定的脂质信号通路通过PDK1-OXI1轴汇聚到PTI1-2,而H₂O₂和鞭毛蛋白通过一条不依赖于PDK1的途径向OXI1-PTI1-2发出信号。PTI1-2代表了一个新的下游组分,它整合了多种脂质和活性氧应激信号,并与OXI1密切合作发挥作用。