Bello Jan E, McElfresh J Steven, Millar Jocelyn G
Departments of Chemistry and.
Entomology, University of California, Riverside, CA 92521.
Proc Natl Acad Sci U S A. 2015 Jan 27;112(4):1077-82. doi: 10.1073/pnas.1417605112. Epub 2015 Jan 12.
Although the effects of stereochemistry have been studied extensively for volatile insect pheromones, little is known about the effects of chirality in the nonvolatile methyl-branched hydrocarbons (MBCHs) used by many insects as contact pheromones. MBCHs generally contain one or more chiral centers and so two or more stereoisomeric forms are possible for each structure. However, it is not known whether insects biosynthesize these molecules in high stereoisomeric purity, nor is it known whether insects can distinguish the different stereoisomeric forms of MBCHs. This knowledge gap is due in part to the lack of methods for isolating individual MBCHs from the complex cuticular hydrocarbon (CHC) blends of insects, as well as the difficulty in determining the absolute configurations of the isolated MBCHs. To address these deficiencies, we report a straightforward method for the isolation of individual cuticular hydrocarbons from the complex CHC blend. The method was used to isolate 36 pure MBCHs from 20 species in nine insect orders. The absolute stereochemistries of the purified MBCHs then were determined by digital polarimetry. The absolute configurations of all of the isolated MBCHs were determined to be (R) by comparison with a library of synthesized, enantiomerically pure standards, suggesting that the biosynthetic pathways used to construct MBCHs are highly conserved within the Insecta. The development of a straightforward method for isolation of specific CHCs will enable determination of their functional roles by providing pure compounds for bioassays.
尽管对于挥发性昆虫信息素的立体化学效应已进行了广泛研究,但对于许多昆虫用作接触信息素的非挥发性甲基支链烃(MBCHs)的手性效应却知之甚少。MBCHs通常含有一个或多个手性中心,因此每种结构可能有两种或更多种立体异构体形式。然而,尚不清楚昆虫是否以高立体异构体纯度生物合成这些分子,也不清楚昆虫是否能够区分MBCHs的不同立体异构体形式。这一知识空白部分归因于缺乏从昆虫复杂的表皮碳氢化合物(CHC)混合物中分离单个MBCHs的方法,以及确定分离出的MBCHs绝对构型的困难。为了解决这些不足,我们报告了一种从复杂的CHC混合物中分离单个表皮碳氢化合物的简便方法。该方法用于从九个昆虫目的20个物种中分离出36种纯MBCHs。然后通过数字旋光测定法确定纯化后的MBCHs的绝对立体化学结构。通过与合成的对映体纯标准品库进行比较,确定所有分离出的MBCHs的绝对构型均为(R),这表明用于构建MBCHs的生物合成途径在昆虫纲内高度保守。开发一种分离特定CHCs的简便方法,将通过为生物测定提供纯化合物来确定它们的功能作用。