Department of Applied Biological Chemistry, Faculty of Agriculture, Shizuoka University, Shizuoka 422-8529, Japan.
Bioorg Med Chem Lett. 2010 Sep 15;20(18):5506-9. doi: 10.1016/j.bmcl.2010.07.067. Epub 2010 Jul 21.
The plant growth-retardant uniconazole (UNI), a triazole inhibitor of gibberellin biosynthetic enzyme (CYP701A), inhibits multiple P450 enzymes including ABA 8'-hydroxylase (CYP707A), a key enzyme in ABA catabolism. Azole P450 inhibitors bind to a P450 active site by both coordinating to the heme-iron atom via sp2 nitrogen and interacting with surrounding protein residues through a lipophilic region. We hypothesized that poor selectivity of UNI may result from adopting a distinct conformation and orientation for different active sites. Based on this hypothesis, we designed and synthesized novel UNI analogs with a disubstituted azole ring (DSI). These analogs were expected to have higher selectivity than UNI because the added functional group may interact with the active site to restrict orientation of the molecule in the active site. DSI-505ME and DSI-505MZ, which have an imidazolyl group with a methyl 5-acrylate, strongly inhibited recombinant CYP707A3, with no growth-retardant effect.
植物生长延缓剂烯效唑(UNI)是一种赤霉素生物合成酶(CYP701A)的三唑抑制剂,它抑制多种 P450 酶,包括 ABA 8'-羟化酶(CYP707A),这是 ABA 分解代谢中的关键酶。唑类 P450 抑制剂通过 sp2 氮原子与血红素铁原子配位,并通过疏水区与周围蛋白质残基相互作用,结合到 P450 活性位点上。我们假设 UNI 的选择性差可能是由于其采用了不同的构象和取向来适应不同的活性位点。基于这一假设,我们设计并合成了具有取代唑环的新型 UNI 类似物(DSI)。这些类似物预计比 UNI 具有更高的选择性,因为添加的官能团可能与活性位点相互作用,限制分子在活性位点中的取向。具有甲基 5-丙烯酰基的咪唑基取代的 DSI-505ME 和 DSI-505MZ 强烈抑制重组 CYP707A3,同时没有生长延缓作用。