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首页> 外文期刊>Chemistry: A European journal >Hydrogen-bond interactions of nicotine and acetylcholine salts: A combined crystallographic, spectroscopic, thermodynamic and theoretical study
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Hydrogen-bond interactions of nicotine and acetylcholine salts: A combined crystallographic, spectroscopic, thermodynamic and theoretical study

机译:尼古丁盐和乙酰胆碱盐的氢键相互作用:晶体学,光谱学,热力学和理论研究的组合

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The hydrogen-bond (HB) interactions of the monocharged active forms of nicotine and acetylcholine (ACh) have been compared theoretically by using density functional theory (DFT) calculations and experimentally on the basis of crystallographic observations and the measurement of equilibrium constants in solution. The 2,4,6-trinitrophenolate (picrate) counterion was used to determine the experimental HB basicity of the cations despite its potential multisite HB acceptor properties. The preferred HB interaction site of the ammonium picrate salts was determined from a survey of crystallographic data found in the Cambridge Structural Database (CSD) and is supported by theoretical calculations. Two distinct classes of ammonium groups were characterised depending on the absence (quaternary ammonium) or presence (tertiary, secondary and primary ammoniums) of an N+ (HO)-O-... hydrogen bond linking the two ions. The crystal structure of nicotinium picrate was determined and compared with that of ACh. This analysis revealed the peculiar behaviour of the ammonium moiety of nicotinic acetylcholine receptor (nAChR) ligands towards the picrate anion. Dedicated methods have been developed to separate the individual contributions of the anion and cation accepting sites to the overall HB basicity of the ion pairs measured in solution. The HB basicities of the picrate anions associated with the two different ammonium classes were determined in dichloromethane solution by using several model ion pairs with non-basic ammonium cations. The experimental and theoretical studies performed on the nicotine and ACh cations consistently show the significant HB ability of the acceptor site of nAChR agonists in their charged form. Both the greater HB basicity of the pyridinic nitrogen over the carbonyl oxygen and the greater HB acidity of the N+H unit relative to N+CH could contribute to the higher affinity for nAChRs of nicotine-like ligands relative to ACh-like ligands.
机译:尼古丁和乙酰胆碱(ACh)的单电荷活性形式的氢键(HB)相互作用已通过使用密度泛函理论(DFT)计算从理论上进行了比较,并在晶体学观察和溶液中平衡常数的测量基础上进行了实验比较。尽管有潜在的多位HB受体特性,但使用2,4,6-三硝基苯酚(苦味酸)抗衡离子来确定阳离子的实验HB碱性。根据在剑桥结构数据库(CSD)中发现的晶体学数据确定了优选的苦味酸铵HB相互作用位点,并得到了理论计算的支持。根据连接两个离子的N +(HO)-O -...氢键的存在(季铵)或存在(叔,仲和伯铵)来表征两类不同的铵基。测定了烟酸烟碱的晶体结构,并与ACh进行了比较。该分析揭示了烟碱乙酰胆碱受体(nAChR)配体的铵部分对苦味酸根阴离子的特殊行为。已经开发出专用方法来分离阴离子和阳离子接受位点对溶液中测量的离子对的整体HB碱度的贡献。通过使用几种带有非碱性铵阳离子的模型离子对,在二氯甲烷溶液中测定了与两种不同铵类相关的苦味酸阴离子的HB碱性。对尼古丁和ACh阳离子进行的实验和理论研究一致表明,nAChR激动剂受体形式的荷电形式具有显着的HB能力。相对于N + CH,吡啶氮上的羰基氧的更大的HB碱性和相对于N + CH的N + H单元的更大的HB酸度都可能有助于烟碱样配体对nAChR的亲和力相对于ACh类配体。

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