Laboratoire de Chimie et Biologie des Métaux, UMR5249, CNRS, F-38054 Grenoble, France.
J Biol Chem. 2011 Oct 21;286(42):36188-97. doi: 10.1074/jbc.M111.241034. Epub 2011 Aug 30.
Copper is an essential plant micronutrient playing key roles in cellular processes, among them photosynthesis. In Arabidopsis thaliana, copper delivery to chloroplasts, mainly studied by genetic approaches, is thought to involve two P(IB)-type ATPases: AtHMA1 and AtHMA6/PAA1. The lack of biochemical characterization of AtHMA1 and PAA1, and more generally of plant P(IB)-type ATPases, is due to the difficulty of getting high amounts of these membrane proteins in an active form, either from their native environment or after expression in heterologous systems. In this study, we report the first biochemical characterization of PAA1, a plant copper-transporting ATPase. PAA1 produced in Lactococcus lactis is active, forming an aspartyl phosphate intermediate in the presence of ATP and the adequate metal ion. PAA1 can also be phosphorylated using inorganic phosphate in the absence of transition metal. Both phosphorylation types allowed us to demonstrate that PAA1 is activated by monovalent copper ions (and to a lower extent by silver ions) with an apparent affinity in the micromolar range. In agreement with these biochemical data, we also demonstrate that when expressed in yeast, PAA1 induces increased sensitivities to copper and silver. These data provide the first enzymatic characterization of a P(IB-1)-type plant ATPase and clearly identify PAA1 as a high affinity Cu(I) transporter of the chloroplast envelope.
铜是一种必需的植物微量营养素,在细胞过程中发挥着关键作用,其中包括光合作用。在拟南芥中,叶绿体中的铜输送主要通过遗传方法研究,被认为涉及两种 P(IB)-型 ATP 酶:AtHMA1 和 AtHMA6/PAA1。由于难以从其天然环境或在异源系统中表达后获得大量这些膜蛋白的活性形式,因此缺乏对 AtHMA1 和 PAA1(更普遍的是植物 P(IB)-型 ATP 酶)的生化特征分析。在这项研究中,我们首次对植物铜转运 ATP 酶 PAA1 进行了生化表征。在乳球菌中生产的 PAA1 是活跃的,在存在 ATP 和适当金属离子的情况下形成天冬氨酸磷酸中间产物。PAA1 也可以在没有过渡金属的情况下使用无机磷酸盐进行磷酸化。这两种磷酸化类型都使我们能够证明 PAA1 被单价铜离子(以及较低程度的银离子)激活,其表观亲和力在微摩尔范围内。与这些生化数据一致,我们还证明了当在酵母中表达时,PAA1 诱导对铜和银的敏感性增加。这些数据提供了对 P(IB-1)-型植物 ATP 酶的首次酶学特征分析,并清楚地将 PAA1 鉴定为叶绿体包膜的高亲和力 Cu(I)转运蛋白。