Plant Biotechnology Institute, National Research Council of Canada, 110 Gymnasium Place, Saskatoon, SK, Canada S7N 0W9.
Biochem J. 2011 Jul 1;437(1):117-23. doi: 10.1042/BJ20101898.
ABA (abscisic acid) is a plant hormone involved in important processes including development and stress responses. Recent reports have identified a number of plant ABA receptors and transporters, highlighting novel mechanisms of ABA action. In the present paper we describe application of a chemical proteomics approach leading to the identification of mitochondrial ANTs (adenine nucleotide translocators) as ABA-interacting proteins. Initial in vitro studies confirmed inhibition of ANT-dependent ATP translocation by ABA. Further analysis demonstrated ANT-dependent uptake of ABA into both recombinant Arabidopsis thaliana ANT2-containing proteoliposomes and native isolated spinach mitochondria; the latter with a Km of 3.5 μM and a Vmax of 2.5 nmol/min per g of protein. ATP was found to inhibit ANT-dependent ABA translocation. Specificity profiles highlight the possibility of mechanistic differences in translocation of ABA and ATP. Finally, ABA was shown to stimulate ATPase activity in spinach mitochondrial extracts. ABA concentrations in plant cells are estimated to reach the low micromolar range during stress responses, supporting potential physiological relevance of these in vitro findings. Overall, the present in vitro work suggests the possibility of as yet uncharacterized mechanisms of ABA action in planta related to inhibition of mitochondrial ATP translocation and functional localization of ABA in the mitochondrial matrix.
ABA(脱落酸)是一种植物激素,参与包括发育和应激反应在内的重要过程。最近的报告已经确定了一些植物 ABA 受体和转运蛋白,突出了 ABA 作用的新机制。在本文中,我们描述了一种化学蛋白质组学方法的应用,该方法导致鉴定出线粒体 ANTs(腺嘌呤核苷酸转运蛋白)作为 ABA 相互作用蛋白。初步的体外研究证实 ABA 抑制了 ANT 依赖性的 ATP 转运。进一步的分析表明,ANT 依赖性的 ABA 摄取到重组拟南芥 ANT2 包含的类脂蛋白体和天然分离的菠菜线粒体中;后者的 Km 值为 3.5 μM,Vmax 值为 2.5 nmol/min per g 蛋白。发现 ATP 抑制 ANT 依赖性的 ABA 转运。特异性分析突出了 ABA 和 ATP 转运的机制差异的可能性。最后,证明 ABA 刺激菠菜线粒体提取物中的 ATP 酶活性。在应激反应过程中,植物细胞中的 ABA 浓度估计达到低微摩尔范围,支持这些体外发现的潜在生理相关性。总的来说,这项体外研究表明,在植物体内,ABA 作用的可能存在尚未表征的机制,与抑制线粒体 ATP 转运和 ABA 在线粒体基质中的功能定位有关。