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气相中激素褪黑素及其碱和碱土金属配合物的结构研究。

Structural Investigation of the Hormone Melatonin and Its Alkali and Alkaline Earth Metal Complexes in the Gas Phase.

机构信息

Department of Chemistry, University of California, B-42 Hildebrand Hall, Berkeley, CA, 94720, USA.

Laboratory of Physical Chemistry, Vladimir Prelog Weg 2, 8093, Zurich, Switzerland.

出版信息

J Am Soc Mass Spectrom. 2018 Sep;29(9):1835-1847. doi: 10.1007/s13361-018-2020-0. Epub 2018 Jul 13.

Abstract

Gas phase infrared dissociation spectra of the radical cation, deprotonated and protonated forms of the hormone melatonin, and its complexes with alkali (Li, Na, and K) and alkaline earth metal ions (Mg, Ca, and Sr) are measured in the spectral range 800-1800 cm. Minimum energy geometries calculated at the B3LYP/LACVP++** level are used to assign structural motifs to absorption bands in the experimental spectra. The melatonin anion is deprotonated at the indole-N. The indole-C linking the amide chain is the most favored protonation site. Comparisons between the experimental and calculated spectra for alkali and alkaline earth metal ion complexes reveal that the metal ions interact similarly with the amide and methoxy oxygen atoms. The amide I band undergoes a red shift with increasing charge density of the metal ion and the amide II band shows a concomitant blue shift. Another binding motif in which the metal ions interact with the amide-O and the π-electron cloud of the aromatic group is identified but is higher in energy by at least 18 kJ/mol. Melatonin is deprotonated at the amide-N with Mg and the metal ion coordinates to the amide-N and an indole-C or the methoxy-O. These results provide information about the intrinsic binding of metal ions to melatonin and combined with future studies on solvated melatonin-metal ion complexes may help elucidate the solvent effects on metal ion binding in solution and the biochemistry of melatonin. These results also serve as benchmarks for future theoretical studies on melatonin-metal ion interactions. Graphical Abstract ᅟ.

摘要

气态红外离解光谱的研究激素褪黑素的正离子、负离子和质子化形式,以及它与碱(Li、Na 和 K)和碱土金属离子(Mg、Ca 和 Sr)的配合物,在 800-1800 cm 的光谱范围内进行测量。在 B3LYP/LACVP++**水平下计算的最低能量几何结构用于将实验光谱中的吸收带分配给结构基元。褪黑素阴离子在吲哚-N 处脱质子化。连接酰胺链的吲哚-C 是最有利的质子化部位。实验和计算的碱金属和碱土金属离子配合物的光谱比较表明,金属离子与酰胺和甲氧基氧原子的相互作用相似。随着金属离子电荷密度的增加,酰胺 I 带发生红移,酰胺 II 带发生伴随的蓝移。另一种结合模式,其中金属离子与酰胺-O 和芳环的π电子云相互作用,但至少高出 18 kJ/mol。镁使褪黑素在酰胺-N 处脱质子化,金属离子与酰胺-N 和吲哚-C 或甲氧基-O 配位。这些结果提供了有关金属离子与褪黑素的内在结合的信息,并结合未来对溶剂化褪黑素-金属离子配合物的研究,可能有助于阐明溶剂对金属离子在溶液中结合的影响以及褪黑素的生物化学。这些结果还为未来关于褪黑素-金属离子相互作用的理论研究提供了基准。

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