Zlotos D P, Gündisch D, Ferraro S, Tilotta M C, Stiefl N, Baumann K
Pharmaceutical Institute, University of Würzburg, Am Hubland, 97074 Würzburg, Germany.
Bioorg Med Chem. 2004 Dec 1;12(23):6277-85. doi: 10.1016/j.bmc.2004.08.053.
The binding constants (K(i) values) of 24 caracurine V and 6 iso-caracurine V analogues for the muscle type of nicotinic ACh receptors (nAChR) from Torpedo californica were determined in a binding assay using (+/-)-[(3)H]epibatidine as a radioligand. The allyl alcohol group present in the iso-caracurine V ring system was found to be essential for high binding affinity. The most potent compounds are the dimethyl and di-(4-nitrobenzyl)-iso-caracurinium V salts 29 (18 nM), and 31 (79 nM), respectively. Compound 29 and the corresponding diallyl analogue 30 (350 nM) exhibited similar binding affinities as the equally substituted neuromuscular-blocking agents toxiferine I (14 nM) and alcuronium (234 nM), respectively. The SAR results were confirmed by QSAR studies, which additionally revealed that the presence of hydrogen-bond acceptor groups close to the quaternary nitrogen, is detrimental for the nicotinic binding affinity. The diallyl- and dimethylcaracurinium V salts 13 and 27, respectively, which are known to be among the most potent allosteric modulators of M(2) receptors (EC(50)=10 and 8nM, respectively), exhibited rather low nicotinic binding affinities for muscle type nAChR (K(i)=1.5 and 5.2 microM, respectively). Such a large difference in affinity suggests that it is possible to develop compounds with high muscarinic allosteric potency and low or negligible affinities for (alpha1)(2)beta1gammadelta nAChR. Additionally, the iso-caracurine V analogues with binding affinities comparable to those of (+)-tubocurarine and alcuronium could become a new class of neuromuscular-blocking agents.
在一项结合试验中,使用(±)-[(3)H]埃博霉素作为放射性配体,测定了24种卡拉库林V和6种异卡拉库林V类似物对加州电鳐肌肉型烟碱型乙酰胆碱受体(nAChR)的结合常数(K(i)值)。发现异卡拉库林V环系统中存在的烯丙醇基团对于高结合亲和力至关重要。最有效的化合物分别是二甲基和二(4-硝基苄基)-异卡拉库林鎓V盐29(18 nM)和31(79 nM)。化合物29和相应的二烯丙基类似物30(350 nM)分别表现出与同等取代的神经肌肉阻滞剂毒马钱子碱I(14 nM)和阿库氯铵(234 nM)相似的结合亲和力。SAR结果通过QSAR研究得到证实,该研究还表明靠近季铵氮的氢键受体基团的存在对烟碱结合亲和力不利。二烯丙基和二甲基卡拉库林鎓V盐13和27分别是已知的M(2)受体最有效的变构调节剂之一(EC(50)分别为10和8 nM),它们对肌肉型nAChR表现出相当低的烟碱结合亲和力(K(i)分别为1.5和5.2 microM)。如此大的亲和力差异表明,有可能开发出对(α1)(2)β1γδ nAChR具有高毒蕈碱变构效力且亲和力低或可忽略不计的化合物。此外,结合亲和力与(+)-筒箭毒碱和阿库氯铵相当的异卡拉库林V类似物可能成为一类新型的神经肌肉阻滞剂。