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姜黄素的互变异构体和旋转异构体:结合紫外光谱、高效液相色谱、离子淌度质谱和电子结构理论研究。

Tautomers and Rotamers of Curcumin: A Combined UV Spectroscopy, High-Performance Liquid Chromatography, Ion Mobility Mass Spectrometry, and Electronic Structure Theory Study.

机构信息

School of Chemical Sciences, Indian Association for the Cultivation of Science 2A Raja S C Mullick Road, Jadavpur, Kolkata 700032, India.

出版信息

J Phys Chem A. 2022 Mar 17;126(10):1591-1604. doi: 10.1021/acs.jpca.1c08612. Epub 2022 Mar 3.

Abstract

The structures of tautomers and rotameric forms of curcumin, the bioactive compound present in spice plant turmeric, have been investigated using ion mobility mass spectrometry (IMMS) in conjunction with high-performance liquid chromatography (HPLC) and UV-visible spectroscopy. Two tautomeric forms of this β-diketone compound, keto-enol and diketo, have been chromatographically separated, and the electronic absorption spectra for these two tautomeric forms in methanol solution have been recorded separately for the first time. The molecular identity of the HPLC-separated solution fractions is established unambiguously by recording the mass and fragmentation spectra simultaneously. The ion mobility spectrum for the deprotonated curcumin anion, [Cur-H], corresponding to the diketo tautomer, displays only one peak (P), and the collision cross-section (CCS) value is measured to be 185.9 Å. However, the ion mobility spectrum corresponding to the HPLC-separated keto-enol tautomer shows three distinctly separated peaks, P, Q, and R, with CCS values of 185.9, 194.8, and 203.4 Å, respectively, whereby peak R appears to be the most intense one, followed by peaks P and Q. The theoretically calculated CCS values of different isomers of [Cur-H], optimized by electronic structure theory methods, display satisfactory correlation with the experimentally observed values, corroborating our assignments. The spectral attributes also indicate the occurrence of structural rearrangements in the electrospray ionization process. With the aid of the electronic structure calculation, low-energy pathways for the occurrence of the structural isomerization to surpass the energy barrier are suggested, which are consistent with the assignments of the peaks observed in the IM spectra.

摘要

已经使用离子淌度质谱(IMMS)结合高效液相色谱(HPLC)和紫外可见光谱研究了姜黄素(存在于香料植物姜黄中的生物活性化合物)的互变异构体和构象异构体的结构。该β-二酮化合物已经通过色谱法分离出两种互变异构形式,酮-烯醇和二酮,并首次分别记录了这两种互变异构形式在甲醇溶液中的电子吸收光谱。通过同时记录质量和碎片光谱,明确确定了 HPLC 分离溶液馏分的分子身份。与二酮互变异构体相对应的去质子化姜黄素阴离子[Cur-H]的离子淌度谱仅显示一个峰(P),并且测量的碰撞截面(CCS)值为 185.9 Å。然而,与 HPLC 分离的酮-烯醇互变异构体相对应的离子淌度谱显示出三个明显分离的峰 P、Q 和 R,CCS 值分别为 185.9、194.8 和 203.4 Å,其中峰 R 似乎是最强烈的一个,其次是峰 P 和 Q。通过电子结构理论方法优化的不同[Cur-H]异构体的理论计算 CCS 值与实验观察值显示出令人满意的相关性,证实了我们的分配。光谱属性还表明在电喷雾电离过程中发生了结构重排。借助电子结构计算,提出了发生结构异构化以克服能垒的低能途径,这与在 IM 光谱中观察到的峰的分配一致。

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