Department of Biological Sciences, Stanford University, Stanford, CA 94305, USA.
Mol Plant. 2008 Mar;1(2):368-79. doi: 10.1093/mp/ssn005.
We undertook a chemical genetics screen to identify chemical inhibitors of brassinosteroid (BR) action. From a chemical library of 10,000 small molecules, one compound was found to inhibit hypocotyl length and activate the expression of a BR-repressed reporter gene (CPD::GUS) in Arabidopsis, and it was named brassinopride (BRP). These effects of BRP could be reversed by co-treatment with brassinolide, suggesting that BRP either directly or indirectly inhibits BR biosynthesis. Interestingly, the compound causes exaggerated apical hooks, similar to that caused by ethylene treatment. The BRP-induced apical hook phenotype can be blocked by a chemical inhibitor of ethylene perception or an ethylene-insensitive mutant, suggesting that, in addition to inhibiting BR, BRP activates ethylene response. Analysis of BRP analogs provided clues about structural features important for its effects on two separate targets in the BR and ethylene pathways. Analyses of the responses of various BR and ethylene mutants to BRP, ethylene, and BR treatments revealed modes of cross-talk between ethylene and BR in dark-grown seedlings. Our results suggest that active downstream BR signaling, but not BR synthesis or a BR gradient, is required for ethylene-induced apical hook formation. The BRP-related compounds can be useful tools for manipulating plant growth and studying hormone interactions.
我们进行了化学遗传学筛选,以鉴定油菜素内酯(BR)作用的化学抑制剂。从 10000 种小分子的化学文库中,发现一种化合物能抑制下胚轴长度,并激活拟南芥中 BR 抑制报告基因(CPD::GUS)的表达,该化合物被命名为油菜素内酯(BRP)。BRP 的这些作用可以通过与油菜素内酯共同处理来逆转,这表明 BRP 直接或间接地抑制 BR 生物合成。有趣的是,该化合物引起了夸张的顶端钩,类似于乙烯处理引起的顶端钩。BRP 诱导的顶端钩表型可以被乙烯感受化学抑制剂或乙烯不敏感突变体阻断,这表明,除了抑制 BR,BRP 还激活了乙烯反应。BRP 类似物的分析为其对 BR 和乙烯途径中两个独立靶标产生影响的结构特征提供了线索。对各种 BR 和乙烯突变体对 BRP、乙烯和 BR 处理的响应分析揭示了黑暗生长幼苗中乙烯和 BR 之间的交叉对话模式。我们的结果表明,乙烯诱导的顶端钩形成需要活跃的下游 BR 信号,而不是 BR 合成或 BR 梯度。BRP 相关化合物可作为操纵植物生长和研究激素相互作用的有用工具。