Department of Biological Chemistry, John Innes Centre, Norwich Research Park, Norwich, NR4 7UH, UK.
Department of Metabolic Biology, John Innes Centre, Norwich Research Park, Norwich, NR4 7UH, UK.
Sci Rep. 2018 Nov 6;8(1):16421. doi: 10.1038/s41598-018-34749-1.
Iminosugars are carbohydrate mimics that are useful as molecular probes to dissect metabolism in plants. To analyse the effects of iminosugar derivatives on germination and seedling growth, we screened a library of 390 N-substituted iminosugar analogues against Arabidopsis and the small cereal Eragrostis tef (Tef). The most potent compound identified in both systems, N-5-(adamantane-1-yl-ethoxy)pentyl- L-ido-deoxynojirimycin (L-ido-AEP-DNJ), inhibited root growth in agar plate assays by 92% and 96% in Arabidopsis and Tef respectively, at 10 µM concentration. Phenocopying the effect of L-ido-AEP-DNJ with the commercial inhibitor (PDMP) implicated glucosylceramide synthase as the target responsible for root growth inhibition. L-ido-AEP-DNJ was twenty-fold more potent than PDMP. Liquid chromatography-mass spectrometry (LC-MS) analysis of ceramide:glucosylceramide ratios in inhibitor-treated Arabidopsis seedlings showed a decrease in the relative quantity of the latter, confirming that glucosylceramide synthesis is perturbed in inhibitor-treated plants. Bioinformatic analysis of glucosylceramide synthase indicates gene conservation across higher plants. Previous T-DNA insertional inactivation of glucosylceramide synthase in Arabidopsis caused seedling lethality, indicating a role in growth and development. The compounds identified herein represent chemical alternatives that can overcome issues caused by genetic intervention. These inhibitors offer the potential to dissect the roles of glucosylceramides in polyploid crop species.
亚氨基糖是碳水化合物的类似物,可用作分子探针来剖析植物代谢。为了分析亚氨基糖衍生物对萌发和幼苗生长的影响,我们对 390 种 N-取代亚氨基糖类似物文库进行了筛选,以对抗拟南芥和小谷物画眉草(Tef)。在这两个系统中最有效的化合物,N-5-(金刚烷-1-基-乙氧基)戊基-L-ido-去氧野尻霉素(L-ido-AEP-DNJ),在琼脂平板测定中,在 10μM 浓度下,分别对拟南芥和画眉草根生长的抑制率为 92%和 96%。用商业抑制剂(PDMP)对 L-ido-AEP-DNJ 的表型复制表明,葡萄糖神经酰胺合酶是导致根生长抑制的靶标。L-ido-AEP-DNJ 的效力比 PDMP 强二十倍。抑制剂处理的拟南芥幼苗中神经酰胺:葡萄糖神经酰胺比率的液相色谱-质谱(LC-MS)分析表明,后者的相对数量减少,证实葡萄糖神经酰胺合成在抑制剂处理的植物中受到干扰。葡萄糖神经酰胺合酶的生物信息学分析表明,其在高等植物中具有基因保守性。以前在拟南芥中 T-DNA 插入失活葡萄糖神经酰胺合酶导致幼苗致死,表明其在生长和发育中具有作用。本文鉴定的化合物代表了可以克服遗传干预引起的问题的化学替代品。这些抑制剂提供了剖析多倍体作物中葡萄糖神经酰胺作用的潜力。