首页> 美国卫生研究院文献>Molecules >The Synthesis of 3H-Labelled 8-Azido-N6-Benzyladenine and Related Compounds for Photoaffinity Labelling of Cytokinin-Binding Proteins
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The Synthesis of 3H-Labelled 8-Azido-N6-Benzyladenine and Related Compounds for Photoaffinity Labelling of Cytokinin-Binding Proteins

机译:3H缩合的8-叠氮基-N6-苄基腺嘌呤及其相关化合物的细胞分裂素结合蛋白的光亲和标记的合成。

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摘要

The biology of the group of plant hormones termed cytokinins is reviewed to reveal areas where further studies of cytokinin-binding proteins could be significant. Such areas include: inhibition of human tumour cell growth by cytokinin ribosides, the role of cytokinins in the development of diverse micro-organisms including the cyanobacteria and Mycobacterium tuberculosis, the very rapid responses of plant cells to exogenous cytokinins, and other aspects of cytokinin plant biology. Photoaffinity labelling (PAL) coupled to the recent advances in HPLC of proteins and mass spectral analysis and sequencing of proteins, may have relevance to these areas. To facilitate PAL, we present experimental details for two methods for synthesis of 8-azido-N6-benzyladenine, which has the azido affinity group in the preferred position of the purine ring. Synthesis from [2-3H]adenosine yielded the above-mentioned PAL reagent with 3H in the purine ring and also gave labelled 9-riboside and 8-azido-N6,9-dibenzyladenine. 8-Azido-N6-benzyladenine was also prepared from 6,8-dichloropurine by a facile synthesis, which would allow a label to be sited in the benzyl group where substituents can also be introduced to vary cytokinin activity. The use of inactive cytokinin analogues in assessing the significance of PAL is discussed.
机译:对被称为细胞分裂素的植物激素的生物学进行了综述,以揭示对细胞分裂素结合蛋白进行进一步研究的重要领域。这些领域包括:细胞分裂素核苷抑制人类肿瘤细胞的生长,细胞分裂素在包括蓝细菌和结核分枝杆菌在内的多种微生物的发展中的作用,植物细胞对外源细胞分裂素的快速反应,以及细胞分裂素植物的其他方面生物学。光亲和标记(PAL)与蛋白质HPLC和蛋白质的质谱分析和测序的最新进展相结合,可能与这些领域有关。为了促进PAL,我们提供了两种合成8-叠氮基-N 6 -苄基腺嘌呤的方法的实验细节,该方法在嘌呤环的首选位置具有叠氮基亲和基团。由[2- 3 H]腺苷合成得到上述PAL试剂,嘌呤环中具有 3 H,还得到标记的9-核糖苷和8-叠氮基-N 6 ,9-二苄基腺嘌呤。还可以通过简便的合成方法由6,8-二氯嘌呤制备8-叠氮基-N 6 -苄基腺嘌呤,这将使标记位于苄基中,在该基团中还可引入取代基以改变细胞分裂素活动。讨论了使用非活性细胞分裂素类似物评估PAL的意义。

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