Sepcić K, Guella G, Mancini I, Pietra F, Serra M D, Menestrina G, Tubbs K, Macek P, Turk T
Department of Biology, Biotechnical Faculty, University of Ljubljana, Slovenia.
J Nat Prod. 1997 Oct;60(10):991-6. doi: 10.1021/np970292q.
From the marine sponge Reniera sarai 3-alkylpyridinium oligomers and polymers have been isolated. 3-Alkylpyridinium polymers are potent anticholinesterase agents; in addition, they show hemolytic and cytotoxic activities. Oligomers with a molecular weight lower than 3000 Da do not possess any significant activity. We report structural characterization of 3-alkylpyridinium polymers and their behavior in aqueous solutions. We found that biologically active polymers are composed of head-to-tail 3-alkylpyridinium units. According to MALDI-TOF spectrometry two species of polymers exist, the smaller with a molecular weight of 5520 Da and the larger with a molecular weight of 18,900 Da. Both polymers are soluble only in water, while low molecular oligomers are readily soluble in organic solvents. Polymers form large water-dissolved supramolecular structures with an average hydrodynamic radius of 23 +/- 2 nm and, therefore, cannot be separated with size-exclusion chromatography.
从海洋海绵Reniera sarai中分离出了3-烷基吡啶鎓低聚物和聚合物。3-烷基吡啶鎓聚合物是有效的抗胆碱酯酶剂;此外,它们还表现出溶血和细胞毒性活性。分子量低于3000 Da的低聚物没有任何显著活性。我们报告了3-烷基吡啶鎓聚合物的结构表征及其在水溶液中的行为。我们发现具有生物活性的聚合物由头对尾的3-烷基吡啶鎓单元组成。根据基质辅助激光解吸电离飞行时间质谱法,存在两种聚合物,较小的分子量为5520 Da,较大的分子量为18900 Da。两种聚合物都仅溶于水,而低分子低聚物很容易溶于有机溶剂。聚合物形成平均流体力学半径为23±2 nm的大型水溶性超分子结构,因此不能用尺寸排阻色谱法分离。