Rodriguez Lesia, Gonzalez-Guzman Miguel, Diaz Maira, Rodrigues Americo, Izquierdo-Garcia Ana C, Peirats-Llobet Marta, Fernandez Maria A, Antoni Regina, Fernandez Daniel, Marquez Jose A, Mulet Jose M, Albert Armando, Rodriguez Pedro L
Instituto de Biología Molecular y Celular de Plantas, Consejo Superior de Investigaciones Cientificas-Universidad Politecnica de Valencia, ES-46022 Valencia, Spain.
Instituto de Química Física Rocasolano, Consejo Superior de Investigaciones Científicas, ES-28006 Madrid, Spain.
Plant Cell. 2014 Dec;26(12):4802-20. doi: 10.1105/tpc.114.129973. Epub 2014 Dec 2.
Membrane-delimited abscisic acid (ABA) signal transduction plays a critical role in early ABA signaling, but the molecular mechanisms linking core signaling components to the plasma membrane are unclear. We show that transient calcium-dependent interactions of PYR/PYL ABA receptors with membranes are mediated through a 10-member family of C2-domain ABA-related (CAR) proteins in Arabidopsis thaliana. Specifically, we found that PYL4 interacted in an ABA-independent manner with CAR1 in both the plasma membrane and nucleus of plant cells. CAR1 belongs to a plant-specific gene family encoding CAR1 to CAR10 proteins, and bimolecular fluorescence complementation and coimmunoprecipitation assays showed that PYL4-CAR1 as well as other PYR/PYL-CAR pairs interacted in plant cells. The crystal structure of CAR4 was solved, which revealed that, in addition to a classical calcium-dependent lipid binding C2 domain, a specific CAR signature is likely responsible for the interaction with PYR/PYL receptors and their recruitment to phospholipid vesicles. This interaction is relevant for PYR/PYL function and ABA signaling, since different car triple mutants affected in CAR1, CAR4, CAR5, and CAR9 genes showed reduced sensitivity to ABA in seedling establishment and root growth assays. In summary, we identified PYR/PYL-interacting partners that mediate a transient Ca(2+)-dependent interaction with phospholipid vesicles, which affects PYR/PYL subcellular localization and positively regulates ABA signaling.
膜限定的脱落酸(ABA)信号转导在早期ABA信号传导中起关键作用,但将核心信号成分与质膜联系起来的分子机制尚不清楚。我们发现,拟南芥中PYR/PYL ABA受体与膜的瞬时钙依赖性相互作用是由一个包含10个成员的C2结构域ABA相关(CAR)蛋白家族介导的。具体而言,我们发现PYL4在植物细胞质膜和细胞核中均以不依赖ABA的方式与CAR1相互作用。CAR1属于一个植物特异性基因家族,编码CAR1至CAR10蛋白,双分子荧光互补和免疫共沉淀分析表明,PYL4-CAR1以及其他PYR/PYL-CAR对在植物细胞中相互作用。解析了CAR4的晶体结构,结果显示,除了经典的钙依赖性脂质结合C2结构域之外,一个特定的CAR特征可能负责与PYR/PYL受体的相互作用以及它们被募集到磷脂囊泡上。这种相互作用与PYR/PYL功能和ABA信号传导相关,因为在CAR1、CAR4、CAR5和CAR9基因中受影响的不同car三突变体在幼苗建立和根生长试验中对ABA的敏感性降低。总之,我们鉴定出了与PYR/PYL相互作用的伙伴,它们介导与磷脂囊泡的瞬时Ca(2+)依赖性相互作用,这会影响PYR/PYL的亚细胞定位并正向调节ABA信号传导。