Department of Chemistry, Louisiana State University, Baton Rouge, 70803, United States.
Bioorg Med Chem. 2013 Sep 15;21(18):5754-69. doi: 10.1016/j.bmc.2013.07.018. Epub 2013 Jul 18.
The nematode Caenorhabditis elegans secretes ascarosides, structurally diverse derivatives of the 3,6-dideoxysugar ascarylose, and uses them in chemical communication. At high population densities, specific ascarosides, which are together known as the dauer pheromone, trigger entry into the stress-resistant dauer larval stage. In order to study the structure-activity relationships for the ascarosides, we synthesized a panel of ascarosides and tested them for dauer-inducing activity. This panel includes a number of natural ascarosides that were detected in crude pheromone extract, but as yet have no assigned function, as well as many unnatural ascaroside derivatives. Most of these ascarosides, some of which have significant structural similarity to the natural dauer pheromone components, have very little dauer-inducing activity. Our results provide a primer to ascaroside structure-activity relationships and suggest that slight modifications to ascaroside structure dramatically influence binding to the relevant G protein-coupled receptors that control dauer formation.
秀丽隐杆线虫分泌结构多样的 3,6-二去氧糖 ascarylose 的衍生物ascarosides,并将其用于化学通讯。在高密度种群中,特定的 ascarosides(统称为 dauer 信息素)会引发进入具有抗逆性 dauer 幼虫阶段。为了研究 ascarosides 的结构-活性关系,我们合成了一组 ascarosides,并测试了它们诱导 dauer 的活性。该组包括一些在粗信息素提取物中检测到的天然 ascarosides,但尚未确定其功能,以及许多非天然的 ascaroside 衍生物。这些 ascarosides 中的大多数,其中一些与天然 dauer 信息素成分具有显著的结构相似性,几乎没有 dauer 诱导活性。我们的结果提供了 ascaroside 结构-活性关系的基础,并表明 ascaroside 结构的微小改变会显著影响与控制 dauer 形成的相关 G 蛋白偶联受体的结合。