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Abscisic acid analogs as chemical probes for dissection of abscisic acid responses in Arabidopsis thaliana

机译:脱落酸类似物作为解剖拟南芥中脱落酸反应的化学探针

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Abscisic acid (ABA) is a phytohormone known to mediate numerous plant developmental processes and responses to environmental stress. In Arabidopsis thaliana, ABA acts, through a genetically redundant family of ABA receptors entitled Regulatory Component of ABA Receptor (RCAR)/Pyrabactin Resistant 1 (PYR1)/Pyrabactin Resistant-Like (PYL) receptors comprised of thirteen homologues acting in concert with a seven-member set of phosphatases. The individual contributions of A. thaliana RCARs and their binding partners with respect to specific physiological functions are as yet poorly understood. Towards developing efficacious plant growth regulators selective for specific ABA functions and tools for elucidating ABA perception, a panel of ABA analogs altered specifically on positions around the ABA ring was assembled. These analogs have been used to probe thirteen RCARs and four type 2C protein phosphatases (PP2C5) and were also screened against representative physiological assays in the model plant Arabidopsis. The 1'-O methyl ether of (S)-ABA was identified as selective in that, at physiologically relevant levels, it regulates stomatal aperture and improves drought tolerance, but does not inhibit germination or root growth. Analogs with the 7'- and 8'-methyl groups of the ABA ring replaced with bulkier groups generally retained the activity and stereoselectivity of (S)- and (R)-ABA, while alteration of the 9'-methyl group afforded an analog that substituted for ABA in inhibiting germination but neither root growth nor stomatal closure. Further in vitro testing indicated differences in binding of analogs to individual RCARs, as well as differences in the enzyme activity resulting from specific PP2Cs bound to RCAR-analog complexes. Ultimately, these findings highlight the potential of a broader chemical genetics approach for dissection of the complex network mediating ABA-perception, signaling and functionality within a given species and modifications in the future design of ABA agonists. Crown Copyright (C) 2014 Published by Elsevier Ltd. All rights reserved.
机译:脱落酸(ABA)是一种植物激素,已知能介导许多植物的发育过程和对环境胁迫的响应。在拟南芥中,ABA通过遗传上过量的ABA受体家族发挥作用,该家族称为ABA受体(RCAR)/耐PyR耐Pact /抗PyR受体的调节成分,由13个同系物与七个同系物共同作用-磷酸酶成员集。关于特定生理功能,拟南芥RCAR及其结合伴侣的个体贡献还知之甚少。为了开发对特定ABA功能具有选择性的有效植物生长调节剂和阐明ABA知觉的工具,组装了一组专门在ABA环周围位置改变的ABA类似物。这些类似物已被用于探查13种RCAR和4种2C型蛋白磷酸酶(PP2C5),并且还针对模型植物拟南芥中的代表性生理分析进行了筛选。 (S)-ABA的1'-O甲基醚经鉴定为具有选择性,因为在生理上相关的水平上,它调节气孔孔径并提高耐旱性,但不抑制发芽或根系生长。 ABA环的7'-和8'-甲基被更大的基团取代的类似物通常保留(S)-和(R)-ABA的活性和立体选择性,而9'-甲基的改变提供了类似物在抑制发芽中代替了ABA,但既没有根系生长也没有气孔关闭。进一步的体外测试表明,类似物与单个RCAR的结合不同,以及与RCAR-模拟复合物结合的特定PP2C产生的酶活性也不同。最终,这些发现突显了一种更广泛的化学遗传学方法用于介导复杂网络的潜力,该复杂网络介导了给定物种内的ABA感知,信号传导和功能,以及在ABA激动剂的未来设计中的改进。 Crown版权所有(C)2014,由Elsevier Ltd.发行。保留所有权利。

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