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大环内酰胺内络合物与基准质子化胺:苯胺和丝氨酸。

Inclusion complexes of the macrocycle nonactin with benchmark protonated amines: aniline and serine.

机构信息

Department of Applied Physical Chemistry, Universidad Autónoma de Madrid, 28049, Madrid, Spain.

Departamento de Química Física, Universidad Complutense, 28040 Madrid, Spain.

出版信息

Phys Chem Chem Phys. 2022 Apr 6;24(14):8422-8431. doi: 10.1039/d2cp00264g.

Abstract

The biological activity of the macrocycle nonactin is intimately related to its ionophore properties and ability to act as a selective cation carrier. While the focus of most investigations on nonactin has been on the binding of metal cations and small molecular ions, this study pursues the characterization of its inclusion complexes with primary amines with bulky structured side groups of different polarity. To this end, the complexes of nonactin with aniline and with the amino acid L-serine, both in protonated form, are considered as case studies and their relevant coordination arrangements are assessed by means of infrared action spectroscopy, quantum chemical density functional theory and Born-Oppenheimer molecular dynamics. The study suggests that the oxygen atoms from the oxolane (tetrahydrofuran) groups of nonactin constitute the preferential docking sites of the ammonium moiety of the guest cation, although conformational constraints promote interactions with the ester carbonyl backbone groups. In the aniline complex, the benzyl side ring is oriented outwards from the cavity, whereas in the case of L-serine, the side carboxylic acid and alcohol groups participate actively in the coordination process. Interestingly, the accommodation of L-serine is favoured when nonactin adopts an enantiomeric-selective folding, that promotes the tripodal coordination of the protonated amine group with oxolane rings from three nonactinic acid blocks with enantiomeric sequence (+)-(-)-(+), which allows for a facile coordination of the serine side groups. This is recognized as a general feature associated with the alternation of chiral domains in globally achiral natural nonactin, yielding mirror-symmetric complexes with the enantiomers of chiral amines.

摘要

大环非亭的生物活性与其离子载体性质和作为选择性阳离子载体的能力密切相关。虽然大多数非亭研究的重点是金属阳离子和小分子离子的结合,但本研究旨在研究其与具有不同极性大结构侧基的伯胺的包合物。为此,考虑了非亭与质子化苯胺和 L-丝氨酸的复合物作为案例研究,并通过红外作用光谱、量子化学密度泛函理论和 Born-Oppenheimer 分子动力学来评估它们的相关配位排列。该研究表明,非亭的氧原子来自 oxolane(四氢呋喃)基团构成了客体阳离子铵部分的优先对接位点,尽管构象约束促进了与酯羰基骨架基团的相互作用。在苯胺复合物中,苄基侧环从腔外向外定向,而在 L-丝氨酸的情况下,侧羧酸和醇基团积极参与配位过程。有趣的是,当非亭采用手性选择性折叠时,有利于 L-丝氨酸的容纳,这促进了质子化胺基团与来自三个非亭酸块的 oxolane 环的三足配位,具有手性序列 (+)-(-)-(+),允许丝氨酸侧基的易于配位。这被认为是与全局非手性天然非亭中手性域的交替相关的一般特征,产生手性胺对映异构体的镜像对称复合物。

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