Goetze Tom Alexander, Patil Manali, Jeshen Ingrid, Bölter Bettina, Grahl Sabine, Soll Jürgen
BMC Plant Biol. 2015 Feb 12;15:47. doi: 10.1186/s12870-015-0445-1.
Metabolite, ion and protein translocation into chloroplasts occurs across two membranes, the inner and the outer envelope. Solute and metabolite channels fulfill very important functions in integrating the organelles into the metabolic network of the cell. However so far only a few have been identified. Here we describe the identification and the characterization of the outer envelope protein of 23 kDa, Oep23 from garden pea.
Oep23 is found in the entire plant lineage from green algae to flowering plants. It is expressed in all organs and developmental states tested so far. The reconstituted recombinant protein Oep23 from pea forms a high conductance ion channel with a maximal conductance in the fully open state of 466 ± 14pS at a holding potential of +100 mV (in 250 mM KCl). The Oep23 channel is cation selective (PK+ : PCl- = 15 : 1) with a voltage dependent open probability of maximal Vmem = 0 mV.
The data indicate that the Oep23 activity represents a single channel unit and does not assemble into a multiple pore complex like bacterial type porins or mitochondrial voltage dependent anion channel. Thus, Oep23 represents a new member of ion channels in the outer envelope of chloroplasts involved in solute exchange.
代谢物、离子和蛋白质通过内膜和外膜两层膜转运进入叶绿体。溶质和代谢物通道在将细胞器整合到细胞代谢网络中发挥着非常重要的作用。然而,到目前为止,仅鉴定出少数几种。在此,我们描述了来自豌豆的23 kDa外膜蛋白Oep23的鉴定和特征。
在从绿藻到开花植物的整个植物谱系中都发现了Oep23。到目前为止,它在所有测试的器官和发育阶段均有表达。从豌豆中重组的重组蛋白Oep23形成了一个高电导离子通道,在+100 mV的保持电位下(在250 mM KCl中),完全开放状态下的最大电导为466±14 pS。Oep23通道具有阳离子选择性(PK+ : PCl- = 15 : 1),最大膜电位Vmem = 0 mV时具有电压依赖性开放概率。
数据表明,Oep23活性代表一个单通道单位,不会组装成像细菌型孔蛋白或线粒体电压依赖性阴离子通道那样的多孔复合体。因此,Oep23代表参与溶质交换的叶绿体外膜离子通道的一个新成员。