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The Arabidopsis ATP-binding Cassette Protein AtMRP5/AtABCC5 Is a High Affinity Inositol Hexakisphosphate Transporter Involved in Guard Cell Signaling and Phytate Storage*

机译:拟南芥ATP结合盒式蛋白AtMRP5 / AtABCC5是一种高亲和力的肌醇六磷酸磷酸转运蛋白,参与保卫细胞信号传递和植酸盐的存储*

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摘要

Arabidopsis possesses a superfamily of ATP-binding cassette (ABC) transporters. Among these, the multidrug resistance-associated protein AtMRP5/AtABCC5 regulates stomatal aperture and controls plasma membrane anion channels of guard cells. Remarkably, despite the prominent role of AtMRP5 in conferring partial drought insensitivity upon Arabidopsis, we know little of the biochemical function of AtMRP5. Our phylogenetic analysis showed that AtMRP5 is closely related to maize MRP4, mutation of which confers a low inositol hexakisphosphate kernel phenotype. We now show that insertion mutants of AtMRP5 display a low inositol hexakisphosphate phenotype in seed tissue and that this phenotype is associated with alterations of mineral cation and phosphate status. By heterologous expression in yeast, we demonstrate that AtMRP5 encodes a specific and high affinity ATP-dependent inositol hexakisphosphate transporter that is sensitive to inhibitors of ABC transporters. Moreover, complementation of the mrp5-1 insertion mutants of Arabidopsis with the AtMRP5 cDNA driven from a guard cell-specific promoter restores the sensitivity of the mutant to abscisic acid-mediated inhibition of stomatal opening. Additionally, we show that mutation of residues of the Walker B motif prevents restoring the multiple phenotypes associated with mrp5-1. Our findings highlight a novel function of plant ABC transporters that may be relevant to other kingdoms. They also extend the signaling repertoire of this ubiquitous inositol polyphosphate signaling molecule.
机译:拟南芥拥有ATP结合盒(ABC)转运蛋白的超家族。其中,多药耐药相关蛋白AtMRP5 / AtABCC5调节气孔孔径并控制保卫细胞的质膜阴离子通道。值得注意的是,尽管AtMRP5在赋予拟南芥部分干旱不敏感性方面发挥了重要作用,但我们对AtMRP5的生化功能知之甚少。我们的系统发育分析表明,AtMRP5与玉米MRP4密切相关,玉米MRP4的突变赋予较低的肌醇六磷酸核仁表型。我们现在显示,AtMRP5的插入突变体在种子组织中显示出低肌醇六磷酸表型,并且该表型与矿物质阳离子和磷酸盐状态的变化有关。通过酵母中的异源表达,我们证明AtMRP5编码对ABC转运蛋白抑制剂敏感的高亲和力的ATP依赖性肌醇六磷酸磷酸酯转运蛋白。此外,拟南芥的mrp5-1插入突变体与由保卫细胞特异性启动子驱动的AtMRP5 cDNA互补,恢复了该突变体对脱落酸介导的气孔开放抑制的敏感性。此外,我们表明,Walker B基序残基的突变阻止了与mrp5-1相关的多种表型的恢复。我们的发现突出了植物ABC转运蛋白的新功能,该功能可能与其他王国有关。它们还扩展了这种普遍存在的肌醇多磷酸信号分子的信号范围。

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