Zhorov B S, Brovtsyna N B
Pavlov Institute of Physiology, Russian Academy of Sciences, St. Petersburg.
J Membr Biol. 1993 Jul;135(1):19-26. doi: 10.1007/BF00234648.
All the minimum-energy conformations of d-tubocurarine were calculated by the method of molecular mechanics. The energy was minimized from 413 closed forms of the 18-member ring. The set of minimum-energy conformations includes 10 forms with energies less than 6 kcal/mol from the most stable one. Among the four lowest minimum-energy conformations, two forms correspond to those known from X-ray studies, whereas two conformations were not detected experimentally earlier. The flexibility of d-tubocurarine was estimated by calculating six paths of interconversion between the four lowest minimum-energy conformations. Using a molecular graphics technique, it was found that the most extended minimum-energy conformation of d-tubocurarine may fit in an ion channel of a rectangular profile of 8.7 x 11.2 A, while one tetrahydroisoquinoline head may fit a profile as small as 6.9 x 11.0 A. A possible model of d-tubocurarine location within the ion channel of the neuronal nicotinic acetylcholine receptor is suggested.
通过分子力学方法计算了d-筒箭毒碱的所有最低能量构象。能量从18元环的413种封闭形式开始最小化。最低能量构象集包括能量比最稳定构象低6千卡/摩尔以内的10种形式。在四个最低能量构象中,有两种形式与X射线研究已知的形式相对应,而另外两种构象此前未通过实验检测到。通过计算四个最低能量构象之间六种相互转化途径,评估了d-筒箭毒碱的柔韧性。利用分子图形技术发现,d-筒箭毒碱最伸展的最低能量构象可能适合8.7×11.2埃矩形轮廓的离子通道,而一个四氢异喹啉头部可能适合小至6.9×11.0埃的轮廓。提出了d-筒箭毒碱在神经元烟碱型乙酰胆碱受体离子通道内定位的可能模型。