Gray Freshwater Biological Institute, University of Minnesota, 55392, Navarre, Minnesota.
J Chem Ecol. 1983 May;9(5):615-43. doi: 10.1007/BF00990413.
A number of analogs of the title compound (1), with several different functional groups in place of the 3-OH and with a variety of substituents, were tested for biological acitivity by a laboratory walking-beetle assay. The electroantennogram (EAG) response was determined for many of these, as well. Field tests with baited sticky traps were carried out on compounds with activity in the walking-beetle assay and/or that gave a high EAG response. Structure-activity correlations with parameters reflecting hydrophobic, steric, electronic, and van der Waals interactions with olfactory receptors were examined primarily on the basis of the behavioral tests. Electronic substituent effects on the 3-position functional group and steric effects were found to correlate best. It is suggested that the strength of a hydrogen bond to the 3-oxygen or 3-nitrogen (as proton acceptor) is important in chemoreception by receptors that are involved in the behavioral response.
标题化合物(1)的许多类似物都经过了实验室步行甲虫测定法的生物活性测试,这些类似物在 3-OH 位置用多种不同的官能团取代,并带有各种取代基。其中许多类似物还测定了触角电位图(EAG)反应。对具有步行甲虫测定法活性的化合物以及具有高 EAG 反应的化合物进行了田间诱捕粘性陷阱测试。用反映与嗅觉受体的疏水性、立体性、电性和范德华相互作用的参数对结构-活性相关性进行了检查,主要基于行为测试。发现 3-位官能团的电子取代基效应和立体效应与结果相关性最好。据推测,与 3-氧或 3-氮(作为质子受体)形成氢键的强度对于参与行为反应的受体的化学感受很重要。