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圆二色性、旋光性和 2-环己烯酮顺二醇型酚代谢物的绝对构型:重新定义取代基和 2-环己烯酮构象在电子圆二色谱中的作用。

Circular dichroism, optical rotation and absolute configuration of 2-cyclohexenone-cis-diol type phenol metabolites: redefining the role of substituents and 2-cyclohexenone conformation in electronic circular dichroism spectra.

机构信息

Department of Chemistry, A. Mickiewicz University, 60 780 Poznan, Poland.

出版信息

Org Biomol Chem. 2010 Dec 21;8(24):5635-45. doi: 10.1039/c0ob00422g. Epub 2010 Oct 12.

Abstract

The absolute configurations of 2-cyclohexenone cis-diol metabolites resulting from the biotransformation of the corresponding phenols have been determined by comparison of their experimental and calculated circular dichroism spectra (TDDFT at the PCM/B2LYP/Aug-cc-pVTZ level), optical rotations (calculated at the PCM/B3LYP/Aug-cc-pVTZ level) and by stereochemical correlation. It is found that circular dichroism spectra and optical rotations of 2-cyclohexenone derivatives are strongly dependent on the ring conformation (M or P sofa S(5) or half-chair), enone non-planarity and the nature and positions of the hydroxy and alkyl substituents. The effect of non-planarity of the enone chromophore, including the distortion of the C=C bond, is determined for the model structures by TDDFT calculations at the PCM/B2LYP/6-311++G(2d,2p) level. Non-planarity of the C=C bond in the enone chromophore is commonly encountered in 2-cyclohexenone derivatives and it is a source of significant rotatory strength contribution to the electronic circular dichroism spectra. It is shown that the two lowest-energy transitions in acrolein and 2-cyclohexenone and its derivatives are n(C=O)-π(C=O)* and π(C=C)-π(C=O), as expected, while the shorter-wavelength (below 200 nm) transitions are of more complex nature. In 2-cyclohexenone and its alkyl derivatives it is predominantly a mixture of π(C=C)-π(C=C) and π(C=C)-σ* transitions, whereas the presence of hydroxy substituent results in a dominant contribution due to the n(OH)-π(C=O)* transition. A generalized model for correlation of the CD spectra of 2-cyclohexenones with their structures is presented.

摘要

通过比较相应酚类生物转化生成的 2-环己烯酮顺二醇代谢物的实验和计算圆二色光谱(PCM/B2LYP/Aug-cc-pVTZ 水平下的 TDDFT)、旋光度(PCM/B3LYP/Aug-cc-pVTZ 水平下的计算)和立体化学相关性,确定了它们的绝对构型。结果表明,2-环己烯酮衍生物的圆二色光谱和旋光性强烈依赖于环构象(M 或 P 型 sofa S(5)或半椅式)、烯酮的非平面性以及羟基和烷基取代基的性质和位置。通过在 PCM/B2LYP/6-311++G(2d,2p)水平下的 TDDFT 计算,确定了模型结构中烯酮发色团的非平面性(包括 C=C 键的扭曲)的影响。在 2-环己烯酮衍生物中,烯酮发色团中 C=C 键的非平面性很常见,是对电子圆二色光谱产生显著旋光强度贡献的来源。结果表明,丙烯醛和 2-环己烯酮及其衍生物中的两个最低能量跃迁分别为 n(C=O)-π(C=O)* 和 π(C=C)-π(C=O)*,如预期的那样,而较短波长(低于 200nm)的跃迁具有更复杂的性质。在 2-环己烯酮及其烷基衍生物中,它主要是π(C=C)-π(C=C)和π(C=C)-σ跃迁的混合物,而羟基取代基的存在导致由于 n(OH)-π(C=O)*跃迁而产生主要贡献。提出了一种用于将 2-环己烯酮的 CD 光谱与其结构相关联的广义模型。

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