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溶液中吲哚里西啶(-)-235B'分子构象的第一性原理测定

First-Principles Determination of Molecular Conformations of Indolizidine (-)-235B' in Solution.

作者信息

Zheng Fang, Dwoskin Linda P, Crooks Peter A, Zhan Chang-Guo

机构信息

Department of Pharmaceutical Sciences, College of Pharmacy, University of Kentucky, 725 Rose Street, Lexington, Kentucky 40536.

出版信息

Theor Chem Acc. 2009 Oct 1;124(3-4):269-278. doi: 10.1007/s00214-009-0607-z.

Abstract

Indolizidine (-)-235B' is a particularly interesting natural product, as it is the currently known, most potent and subtype-selective open-channel blocker of the alpha4beta2 nicotinic acetylcholine receptor (nAChR). In the current study, extensive first-principles electronic structure calculations have been carried out in order to determine the stable molecular conformations and their relative free energies of the protonated and deprotonated states of (-)-235B' in the gas phase, in chloroform, and in aqueous solution. The (1)H and (13)C NMR chemical shifts calculated using the computationally determined dominant molecular conformation of the deprotonated state are all consistent with available experimental NMR spectra of (-)-235B' in chloroform, which suggests that the computationally determined molecular conformations are reasonable. Our computational results reveal for the first time that two geminal H atoms on carbon-3 (C3) of (-)-235B' have remarkably different chemical shifts (i.e. 3.24 and 2.03 ppm). The computational results help one to better understand and analyze the experimental (1)H NMR spectra of (-)-235B'. The finding of remarkably different chemical shifts of two C3 geminal H atoms in a certain molecular conformation of (-)-235B' may also be valuable in analysis of NMR spectra of other related ring-containing compounds. In addition, the pK(a) of (-)-235B' in aqueous solution is predicted to be ~9.7. All of the computational results provide a solid basis for future studies of the microscopic and phenomenological binding of various receptor proteins with the protonated and deprotonated structures of this unique open-channel blocker of alpha4beta2 nAChRs. This computational study also demonstrates how one can appropriately use computational modeling and spectroscopic analysis to address the structural and spectroscopic problems that cannot be addressed by experiments alone.

摘要

吲哚里西定(-)-235B'是一种特别有趣的天然产物,因为它是目前已知的最有效且亚型选择性的α4β2烟碱型乙酰胆碱受体(nAChR)开放通道阻滞剂。在本研究中,进行了广泛的第一性原理电子结构计算,以确定(-)-235B'在气相、氯仿和水溶液中质子化和去质子化状态的稳定分子构象及其相对自由能。使用计算确定的去质子化状态的主要分子构象计算得到的(1)H和(13)C NMR化学位移与(-)-235B'在氯仿中的现有实验NMR光谱均一致,这表明计算确定的分子构象是合理的。我们的计算结果首次揭示,(-)-235B'碳-3(C3)上的两个偕氢原子具有明显不同的化学位移(即3.24和2.03 ppm)。计算结果有助于人们更好地理解和分析(-)-235B'的实验(1)H NMR光谱。在(-)-235B'的特定分子构象中两个C3偕氢原子化学位移明显不同这一发现,对于分析其他相关含环化合物的NMR光谱也可能具有价值。此外,预计(-)-235B'在水溶液中的pK(a)约为9.7。所有这些计算结果为未来研究各种受体蛋白与这种独特的α4β2 nAChRs开放通道阻滞剂的质子化和去质子化结构的微观和现象学结合提供了坚实的基础。这项计算研究还展示了如何适当地使用计算建模和光谱分析来解决仅靠实验无法解决的结构和光谱问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d88e/2796847/7827380ff6bb/nihms151639f1.jpg

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