Spíchal Lukás, Werner Tomás, Popa Igor, Riefler Michael, Schmülling Thomas, Strnad Miroslav
Laboratory of Growth Regulators, Institute of Experimental Botany, AS CR & Palacký University, Olomouc, Czech Republic.
FEBS J. 2009 Jan;276(1):244-53. doi: 10.1111/j.1742-4658.2008.06777.x. Epub 2008 Nov 20.
One of several potential approaches to study mechanisms of action of biologically active compounds is to develop their agonists and antagonists. In the present study, we report the identification of the first known molecule antagonizing the activity of the plant hormone cytokinin at the receptor level. This compound, 6-(2-hydroxy-3-methylbenzylamino)purine, designated PI-55 in the present study, is structurally closely related to cytokinin 6-benzylaminopurine, but substitutions at specific positions of the aromatic side chain strongly diminished its cytokinin activity and conferred antagonistic properties. PI-55 competitively inhibited the binding of the natural ligand trans-zeatin to the Arabidopsis cytokinin receptors cytokinin response 1 (CRE1)/Arabidopsis histidine kinase (AHK) 4 and AHK3 and repressed induction of the cytokinin response gene ARR5:GUS. Genetic analysis revealed that CRE1/AHK4 is the primary target of PI-55. Cytokinin bioassays also demonstrated the anticytokinin effect of PI-55 in several other species. Furthermore, we show that PI-55 accelerated the germination of Arabidopsis seeds and promoted the root growth and formation of lateral roots, thus phenocopying the known consequences of a lowered cytokinin status and demonstrating its potential to inhibit cytokinin perception in planta. PI-55 is the first example for the targeted development of a cytokinin antagonist and represents an initial step for the preparation of cytokinin antagonists with broad activity and reduced agonistic properties.
研究生物活性化合物作用机制的几种潜在方法之一是开发其激动剂和拮抗剂。在本研究中,我们报告了首个在受体水平拮抗植物激素细胞分裂素活性的已知分子的鉴定。该化合物6-(2-羟基-3-甲基苄基氨基)嘌呤,在本研究中命名为PI-55,其结构与细胞分裂素6-苄基氨基嘌呤密切相关,但芳香侧链特定位置的取代显著降低了其细胞分裂素活性并赋予了拮抗特性。PI-55竞争性抑制天然配体反式玉米素与拟南芥细胞分裂素受体细胞分裂素反应1(CRE1)/拟南芥组氨酸激酶(AHK)4和AHK3的结合,并抑制细胞分裂素反应基因ARR5:GUS的诱导。遗传分析表明,CRE1/AHK4是PI-55的主要作用靶点。细胞分裂素生物测定还证明了PI-55在其他几个物种中的抗细胞分裂素作用。此外,我们表明PI-55加速了拟南芥种子的萌发,促进了根的生长和侧根的形成,从而模拟了细胞分裂素水平降低的已知后果,并证明了其在植物中抑制细胞分裂素感知的潜力。PI-55是靶向开发细胞分裂素拮抗剂的首个实例,代表了制备具有广泛活性和降低激动特性的细胞分裂素拮抗剂的第一步。