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Sesquiterpene-like inhibitors of a 9-cis-epoxycarotenoid dioxygenase regulating abscisic acid biosynthesis in higher plants

机译:9-顺式-环氧类胡萝卜素双加氧酶的倍半萜样抑制剂调节高等植物中脱落酸的生物合成

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摘要

Abscisic acid (ABA) is a carotenoid-derived plant hormone known to regulate critical functions in growth, development and responses to environmental stress. The key enzyme which carries out the first committed step in ABA biosynthesis is the carotenoid cleavage 9-cis-epoxycarotenoid dioxygenase (NCED). We have developed a series of sulfur and nitrogen-containing compounds as potential ABA biosynthesis inhibitors of the NCED, based on modification of the sesquiterpenoid segment of the 9-cis-xanthophyll substrates and product. In in vitro assays, three sesquiterpene-like carotenoid cleavage dioxygenase (SLCCD) inhibitor compounds 13, 17 and 18 were found to act as inhibitors of Arabidopsis thaliana NCED 3 (AtNCED3) with Ki\u2019s of 93, 57 and 87 M respectively. Computational docking to a model of AtNCED3 supports a mechanism of inhibition through coordination of the heteroatom with the non-heme iron in the enzyme active site. Pretreatment of osmotically stressed Arabidopsis plants with compound 13 resulted lower levels of ABA and catabolite accumulation compared to levels in mannitol-stressed plant controls. This same inhibitor moderated known ABA-induced gene regulation effects and was only weakly active in inhibition of seed germination. Interestingly, all three inhibitors led to moderation of the stress-induced transcription of AtNCED3 itself, which could further contribute to lowering ABA biosynthesis in planta. Overall, these sesquiterpenoid-like inhibitors present new tools for controlling and investigating ABA biosynthesis and regulation.
机译:脱落酸(ABA)是类胡萝卜素衍生的植物激素,已知能调节生长,发育和对环境胁迫的反应中的关键功能。在ABA生物合成中执行第一步的关键酶是类胡萝卜素裂解9-顺式-环氧类胡萝卜素双加氧酶(NCED)。我们基于9-顺式叶黄素底物和产物的倍半萜段的修饰,开发了一系列含硫和氮的化合物,作为NCED的潜在ABA生物合成抑制剂。在体外测定中,发现三种倍半萜样类胡萝卜素裂解双加氧酶(SLCCD)抑制剂化合物13、17和18用作拟南芥NCED 3(AtNCED3)的抑制剂,Ki \ u2019s分别为93、57和87 M. AtNCED3模型的计算对接通过酶活性位点中杂原子与非血红素铁的配位支持了一种抑制机制。与甘露醇胁迫的植物对照相比,用化合物13预处理渗透胁迫的拟南芥植物可导致较低水平的ABA和分解代谢物积累。该抑制剂抑制了已知的ABA诱导的基因调控作用,并且在抑制种子发芽方面仅具有弱活性。有趣的是,所有这三种抑制剂均导致应激诱导的AtNCED3自身转录的调节,这可能进一步有助于降低植物中ABA的生物合成。总体而言,这些倍半萜样抑制剂为控制和研究ABA生物合成和调节提供了新的工具。

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