Hull W E, Berkessel A, Plaga W
Central Spectroscopy Department, German Cancer Research Center, Im Neuenheimer Feld 280, D-69120 Heidelberg, Germany.
Proc Natl Acad Sci U S A. 1998 Sep 15;95(19):11268-73. doi: 10.1073/pnas.95.19.11268.
Approximately 2 micromol of a novel prokaryotic pheromone, involved in starvation-induced aggregation and formation of fruiting bodies by the myxobacterium Stigmatella aurantiaca, were isolated by a large-scale elution procedure. The pheromone was purified by HPLC, and high-resolution MS, IR, 1H-NMR, and 13C-NMR were used to identify the active substance as the hydroxy ketone 2,5, 8-trimethyl-8-hydroxy-nonan-4-one, which has been named stigmolone. The analysis was complicated by a solvent-dependent equilibrium between stigmolone and the cyclic enol-ether 3,4-dihydro-2,2, 5-trimethyl-6-(2-methylpropyl)-2H-pyran formed by intramolecular nucleophilic attack of the 8-OH group at the ketone C4 followed by loss of H2O. Both compounds were synthesized chemically, and their structures were confirmed by NMR analysis. Natural and synthetic stigmolone have the same biological activity at ca. 1 nM concentration.
通过大规模洗脱程序分离出了约2微摩尔一种新型原核生物信息素,它参与黏细菌橙色标桩菌饥饿诱导的聚集和子实体形成。该信息素通过高效液相色谱法进行纯化,并用高分辨率质谱、红外光谱、1H-核磁共振和13C-核磁共振来鉴定活性物质为羟基酮2,5,8-三甲基-8-羟基壬-4-酮,它被命名为stigmolone。由于stigmolone与由8-OH基团对酮C4进行分子内亲核进攻后再失去H2O而形成的环状烯醇醚3,4-二氢-2,2,5-三甲基-6-(2-甲基丙基)-2H-吡喃之间存在溶剂依赖性平衡,使得分析变得复杂。这两种化合物都通过化学合成得到,其结构通过核磁共振分析得以证实。天然和合成的stigmolone在约1 nM浓度下具有相同的生物活性。