Department of Pharmacology and Therapeutics, College of Medicine, University of Florida, Gainesville, FL 32610, USA.
Mar Drugs. 2020 Feb 11;18(2):106. doi: 10.3390/md18020106.
Many organisms possess "secondary" compounds to avoid consumption or to immobilize prey. While the most abundant or active compounds are initially investigated, more extensive analyses reveal other "minor" compounds with distinctive properties that may also be of biomedical and pharmaceutical significance. Here, we present an initial in vitro investigation of the actions of two isomeric tetrahydropyridyl ring-containing anabasine analogs: isoanatabine, an alkaloid isolated from a marine worm, and anatabine, a relatively abundant minor alkaloid in commercial tobacco plants. Both compounds have a double bond that is distal to the piperidine ring nitrogen of anabasine. Racemic isoanatabine and anatabine were synthesized and their S- and R-enantiomers were isolated by chiral high pressure liquid chromatography (HPLC). Both isoanatabines displayed higher efficacies at α4β2 nicotinic acetylcholine receptors (nAChRs) relative to the anatabines; R-isoanatabine was most potent. Radioligand binding experiments revealed similar α4β2 nAChR binding affinities for the isoanatabines, but R-anatabine affinity was twice that of S-anatabine. While the two anatabines and S-isoanatabine were highly efficacious agonists at α7 nAChRs, R-isoanatabine was only a weak partial agonist. The four compounds share an ability to stimulate both α4β2 and α7 nAChRs, a property that may be useful in developing more efficacious drugs to treat neurodegenerative and other medical disorders.
许多生物体拥有“次级”化合物来避免被消耗或固定猎物。虽然最初研究的是最丰富或最活跃的化合物,但更广泛的分析揭示了其他具有独特性质的“次要”化合物,它们也可能具有生物医学和药物学意义。在这里,我们首次对两种含有四氢吡啶环的异茄呢碱类似物的体外作用进行了研究:异石蒜碱,一种从海洋蠕虫中分离出来的生物碱,以及烟碱,一种在商业烟草植物中相对丰富的次要生物碱。这两种化合物都有一个双键,位于石蒜碱的哌啶环氮的远端。外消旋异石蒜碱和烟碱被合成,它们的 S-和 R-对映体通过手性高压液相色谱(HPLC)分离。与烟碱相比,异石蒜碱显示出对α4β2 烟碱型乙酰胆碱受体(nAChR)更高的效力;R-异石蒜碱的效力最高。放射配体结合实验表明,异石蒜碱对α4β2 nAChR 的结合亲和力相似,但 R-烟碱的亲和力是 S-烟碱的两倍。虽然这两种烟碱和 S-异石蒜碱都是α7 nAChR 的高效激动剂,但 R-异石蒜碱只是一种弱部分激动剂。这四种化合物都具有刺激α4β2 和α7 nAChR 的能力,这一特性可能有助于开发更有效的药物来治疗神经退行性疾病和其他医学疾病。