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Enzymatic study on AtCCD4 and AtCCD7 and their potential to form acyclic regulatory metabolites

机译:AtCCD4和AtCCD7的酶学研究及其形成无环调节代谢物的潜力

摘要

The Arabidopsis carotenoid cleavage dioxygenase 4 (AtCCD4) is a negative regulator of the carotenoid content of seeds and has recently been suggested as a candidate for the generation of retrograde signals that are thought to derive from the cleavage of poly-cis-configured carotene desaturation intermediates. In this work, we investigated the activity of AtCCD4 in vitro and used dynamic modeling to determine its substrate preference. Our results document strict regional specificity for cleavage at the C9–C10 double bond in carotenoids and apocarotenoids, with preference for carotenoid substrates and an obstructing effect on hydroxyl functions, and demonstrate the specificity for all-trans-configured carotenes and xanthophylls. AtCCD4 cleaved substrates with at least one ionone ring and did not convert acyclic carotene desaturation intermediates, independent of their isomeric states. These results do not support a direct involvement of AtCCD4 in generating the supposed regulatory metabolites. In contrast, the strigolactone biosynthetic enzyme AtCCD7 converted 9-cis-configured acyclic carotenes, such as 9-cis-ζ-carotene, 9'-cis-neurosporene, and 9-cis-lycopene, yielding 9-cis-configured products and indicating that AtCCD7, rather than AtCCD4, is the candidate for forming acyclic retrograde signals.
机译:拟南芥类胡萝卜素裂解双加氧酶4(AtCCD4)是种子中类胡萝卜素含量的负调节剂,最近被建议作为逆行信号产生的候选者,该信号被认为是由多顺式构型的胡萝卜素去饱和中间体裂解产生的。在这项工作中,我们调查了AtCCD4的体外活性,并使用动态建模来确定其底物偏好。我们的结果记录了在类胡萝卜素和类胡萝卜素中C9–C10双键裂解的严格区域特异性,偏爱类胡萝卜素底物和对羟基功能的阻碍作用,并证明了对所有反式构型的胡萝卜素和叶黄素的特异性。 AtCCD4裂解具有至少一个紫罗兰酮环的底物,并且不转化无环胡萝卜素去饱和中间体,而与它们的异构状态无关。这些结果不支持AtCCD4直接参与产生假定的调节代谢产物。相比之下,异硬脂酸内酯生物合成酶AtCCD7转化了9-顺式构型的无环胡萝卜素,例如9-顺式-ζ-胡萝卜素,9'-顺式-新戊烯和9-顺式番茄红素,产生了9-顺式构型的产物并表明AtCCD7而不是AtCCD4是形成非循环逆行信号的候选者。

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