Lehrstuhl für Botanik, Technische Universität München, Am Hochanger 4, D-85354 Freising, Germany.
Plant J. 2010 Jan;61(1):25-35. doi: 10.1111/j.1365-313X.2009.04025.x. Epub 2009 Sep 21.
The recent discovery of a variety of receptors has led to new models for hormone perception in plants. In the case of the hormone abscisic acid (ABA), which regulates plant responses to abiotic stress, perception seems to occur both at the plasma membrane and in the cytosol. The cytosolic receptors for ABA have recently been identified as complexes between protein phosphatases 2C (PP2C) and regulatory components (RCAR/PYR/PYL) that bind ABA. Binding of ABA to the receptor complexes inactivates the PP2Cs, thereby activating the large variety of physiological processes regulated by ABA. The Arabidopsis genome encodes 13 homologues of RCAR1 and approximately 80 PP2Cs, of which six in clade A have been identified as negative regulators of ABA responses. In this study we characterize a novel member of the RCAR family, RCAR3. RCAR3 was identified in a screen for interactors of the PP2Cs ABI1 and ABI2, which are key regulators of ABA responses. RCAR3 was shown to repress ABI1 and ABI2 in vitro, and to stimulate ABA signalling in protoplast cells. RCAR3 conferred greater ABA sensitivity to the PP2C regulation than RCAR1, whereas stereo-selectivity for (S)-ABA was less stringent with RCAR3 as compared with RCAR1. In addition, regulation of the protein phosphatase activity by RCAR1 and RCAR3 was more sensitive to ABA for ABI1 than for ABI2. Based on the differences we have observed in transcriptional regulation and biochemical properties, we propose a model whereby differential expression of the co-receptors and combinatorial assembly of the receptor complexes act in concert to modulate and fine-tune ABA responses.
最近发现了多种受体,为植物激素感知提出了新的模型。以调节植物对非生物胁迫反应的激素脱落酸(ABA)为例,其感知似乎既发生在质膜上,也发生在细胞质中。ABA 的细胞质受体最近被鉴定为蛋白磷酸酶 2C(PP2C)与调节元件(RCAR/PYR/PYL)之间的复合物,该复合物能与 ABA 结合。ABA 与受体复合物的结合使 PP2C 失活,从而激活 ABA 调节的各种生理过程。拟南芥基因组编码 13 种 RCAR1 同源物和约 80 种 PP2C,其中 A 族中的 6 种被鉴定为 ABA 反应的负调节剂。在这项研究中,我们对 RCAR 家族的一个新成员 RCAR3 进行了表征。RCAR3 是在筛选 PP2C ABI1 和 ABI2 的相互作用因子时发现的,ABI1 和 ABI2 是 ABA 反应的关键调节剂。RCAR3 被证明在体外抑制 ABI1 和 ABI2,并且在原生质体细胞中刺激 ABA 信号转导。RCAR3 赋予 PP2C 调节更高的 ABA 敏感性,而 RCAR3 比 RCAR1 对(S)-ABA 的立体选择性更不严格。此外,RCAR1 和 RCAR3 对蛋白磷酸酶活性的调节对 ABI1 比对 ABI2 更敏感。基于我们在转录调节和生化特性方面观察到的差异,我们提出了一个模型,即共受体的差异表达和受体复合物的组合装配协同作用,以调节和微调 ABA 反应。