Donald Danforth Plant Science Center, 975 North Warson Road, St Louis, Missouri 63132, United States.
J Proteome Res. 2013 Mar 1;12(3):1487-501. doi: 10.1021/pr301159u. Epub 2013 Feb 4.
Abscisic acid (ABA) is proposed to be perceived by multiple receptors in plants. We have previously reported on the role of two GPCR-type G-proteins (GTG proteins) as plasma membrane-localized ABA receptors in Arabidopsis thaliana. However, due to the presence of multiple transmembrane domains, detailed structural and biochemical characterization of GTG proteins remains limited. Since ABA induces substantial changes in the proteome of plants, a labeling LC-based quantitative proteomics approach was applied to elucidate the global effects and possible downstream targets of GTG1/GTG2 proteins. Quantitative differences in protein abundance between wild-type and gtg1gtg2 were analyzed for evaluation of the effect of ABA on the root proteome and its dependence on the presence of functional GTG1/GTG2 proteins. The results presented in this study reveal the most comprehensive ABA-responsive root proteome reported to date in Arabidopsis. Notably, the majority of ABA-responsive proteins required the presence of GTG proteins, supporting their key role in ABA signaling. These observations were further confirmed by additional experiments. Overall, comparison of the ABA-dependent protein abundance changes in wild-type versus gtg1gtg2 provides clues to their possible links with some of the well-established effectors of the ABA signaling pathways and their role in mediating phytohormone cross-talk.
脱落酸(ABA)被认为是植物中多种受体感知的信号分子。我们之前曾报道过两种 G 蛋白偶联受体(GPCR 型 G 蛋白)(GTG 蛋白)作为拟南芥质膜定位的 ABA 受体的作用。然而,由于存在多个跨膜结构域,GTG 蛋白的详细结构和生化特性仍然有限。由于 ABA 诱导植物蛋白质组发生大量变化,因此应用基于标记 LC 的定量蛋白质组学方法来阐明 GTG1/GTG2 蛋白的全局效应及其可能的下游靶标。通过分析野生型和 gtg1gtg2 之间蛋白质丰度的定量差异,评估 ABA 对根蛋白质组的影响及其对功能性 GTG1/GTG2 蛋白存在的依赖性。本研究中呈现的结果揭示了迄今为止在拟南芥中报道的最全面的 ABA 响应性根蛋白质组。值得注意的是,大多数 ABA 响应蛋白都需要 GTG 蛋白的存在,这支持了它们在 ABA 信号转导中的关键作用。这些观察结果通过进一步的实验得到了进一步证实。总体而言,比较野生型与 gtg1gtg2 中 ABA 依赖性蛋白质丰度变化提供了线索,表明它们可能与一些已确立的 ABA 信号通路效应物及其在介导植物激素交叉对话中的作用有关。