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Preparation and biological activity of 6-benzylaminopurine derivatives in plants and human cancer cells.

机译:植物和人癌细胞中6-苄氨基嘌呤衍生物的制备及其生物学活性。

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To study the structure-activity relationships of aromatic cytokinins, the cytokinin activity at both the receptor and cellular levels, as well as CDK inhibitory and anticancer properties of 38 6-benzylaminopurine (BAP) derivatives were compared in various in vitro assays. The compounds were prepared by the condensation of 6-chloropurine with corresponding substituted benzylamines. The majority of synthesised derivatives exhibited high activity in all three of the cytokinin bioassays employed (tobacco callus, wheat senescence and Amaranthus bioassay). The highest activities were obtained in the senescence bioassay. For some compounds tested, significant differences of activity were found in the bioassays used, indicating that diverse recognition systems may operate and suggesting that it may be possible to modulate particular cytokinin-dependent processes with specific compounds. Position-specific steric and hydrophobic effects of different phenyl ring substituents on the variation of biological activity were confirmed. In contrast to their high activity in bioassays, the BAP derivatives were recognised with much lower sensitivity than trans-zeatin in both Arabidopsis thaliana AHK3 and AHK4 receptor assays. The compounds were also investigated for their effects on cyclin-dependent kinase 2 (CDK2) and for antiproliferative properties on cancer and normal cell lines. Several of the tested compounds showed stronger inhibitory activity and cytotoxicity than BAP. There was also a significant positive correlation of the inhibitory effects on human and plant CDKs with cell proliferation of cancer and cytokinin-dependent tobacco cells, respectively. This suggests that at least a part of the antiproliferative effect of the new cytokinins was due to the inhibition of CDK activity.
机译:为了研究芳香族细胞分裂素的构效关系,在各种体外测定中比较了38 6-苄基氨基嘌呤(BAP)衍生物在受体和细胞水平上的细胞分裂素活性以及CDK抑制和抗癌特性。通过将6-氯嘌呤与相应的取代的苄胺缩合来制备化合物。在使用的所有三种细胞分裂素生物测定法(烟草愈伤组织,小麦衰老和A菜生物测定法)中,大多数合成的衍生物均表现出高活性。在衰老生物测定中获得最高的活性。对于所测试的某些化合物,在所用的生物测定法中发现了明显的活性差异,这表明可以使用多种识别系统,这表明可以用特定的化合物调节特定的细胞分裂素依赖性过程。证实了不同苯环取代基对生物活性变化的位置特异性空间和疏水作用。与它们在生物测定中的高活性相反,在拟南芥AHK3和AHK4受体测定中,公认的BAP衍生物的灵敏度比反式玉米蛋白低得多。还研究了这些化合物对细胞周期蛋白依赖性激酶2(CDK2)的作用以及对癌症和正常细胞系的抗增殖特性。几种测试化合物显示出比BAP更强的抑制活性和细胞毒性。抑制人类和植物CDK的作用与癌细胞和依赖细胞分裂素的烟草细胞的增殖也存在显着正相关。这表明,新细胞分裂素的抗增殖作用的至少一部分是由于CDK活性的抑制。

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