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N9-取代的激动素衍生物:有效的抗衰老剂。

N9-substituted derivatives of kinetin: effective anti-senescence agents.

机构信息

Centre of the Region Haná for Biotechnological and Agricultural Research, Faculty of Science, Palacký University, Olomouc, Czech Republic.

出版信息

Phytochemistry. 2011 Jun;72(8):821-31. doi: 10.1016/j.phytochem.2011.02.002. Epub 2011 Feb 25.

DOI:10.1016/j.phytochem.2011.02.002
PMID:21354583
Abstract

The first isolated cytokinin, 6-furfurylaminopurine (kinetin or Kin), was identified almost 55years ago. Its biological effects on plant cells and tissues include influences on such processes as gene expression, cell cycle, chloroplast development, chlorophyll biosynthesis, stimulation of vascular development, delay of senescence, and mobilization of nutrients. In the present study we prepared a series of eight N9-substituted Kin derivatives, and characterized them with available physicochemical methods such as CI+ mass spectrometry and (1)H NMR spectroscopy. All compounds were tested in three classical cytokinin bioassays: a tobacco callus assay, an Amaranthus assay, and a senescence assay with excised wheat leaves. The ability of the compounds to interact with Arabidopsis cytokinin receptors CRE1/AHK4 and AHK3 was tested in a bacterial receptor assay. Prepared derivatives with certain substitutions of the N9-atom of the purine moiety enhanced the cytokinin activity of the parent compound in the bioassays to a remarkable degree but negatively affected its perception by CRE1/AHK4 and AHK3. The ability of compounds to delay the senescence of excised wheat leaves in both dark and light conditions, was highly correlated with their ability to influence membrane lipid peroxidation, which is a typical symptom of senescence. Our results were corroborated by gene expression profiling of those genes involved in cytokinin metabolism and perception, plant senescence, and the stress response, and suggest that prepared kinetin derivatives might be used as potent anti-senescence agents.

摘要

第一个分离的细胞分裂素,6-糠基氨基嘌呤(激动素或 Kin),几乎在 55 年前被鉴定出来。它对植物细胞和组织的生物学效应包括影响基因表达、细胞周期、叶绿体发育、叶绿素生物合成、刺激血管发育、延缓衰老和营养物质动员等过程。在本研究中,我们制备了一系列八种 N9-取代的 Kin 衍生物,并通过 CI+质谱和(1)H NMR 光谱等现有物理化学方法对其进行了表征。所有化合物都在三个经典的细胞分裂素生物测定中进行了测试:烟草愈伤组织测定、苋菜测定和离体小麦叶片衰老测定。化合物与拟南芥细胞分裂素受体 CRE1/AHK4 和 AHK3 相互作用的能力在细菌受体测定中进行了测试。在生物测定中,嘌呤部分的 N9-原子具有某些取代的制备衍生物极大地增强了母体化合物的细胞分裂素活性,但对其与 CRE1/AHK4 和 AHK3 的感知产生了负面影响。化合物在黑暗和光照条件下延迟离体小麦叶片衰老的能力与它们影响膜脂过氧化的能力高度相关,膜脂过氧化是衰老的典型症状。我们的结果通过涉及细胞分裂素代谢和感知、植物衰老和应激反应的基因表达谱得到了证实,并表明制备的激动素衍生物可能被用作有效的抗衰老剂。

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