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四芳基卟啉镁镊子:用于α-手性羧酸绝对构型归属的对圆二色性敏感的主体。

Magnesium tetraarylporphyrin tweezer: a CD-sensitive host for absolute configurational assignments of alpha-chiral carboxylic acids.

作者信息

Proni Gloria, Pescitelli Gennaro, Huang Xuefei, Nakanishi Koji, Berova Nina

机构信息

Department of Chemistry, Columbia University, New York, New York 10027, USA.

出版信息

J Am Chem Soc. 2003 Oct 22;125(42):12914-27. doi: 10.1021/ja036294g.

Abstract

A protocol to determine the absolute configuration of alpha-chiral carboxylic acids based on a modified circular dichroic (CD) exciton chirality method has been developed. The protocol relies on a host-guest complexation mechanism: the chiral substrates are derivatized to give bifunctional amide conjugates ("guests") that form complexes with a dimeric magnesium porphyrin host, Mg-T (T stands for "tweezer") that acts as a "receptor". The two porphyrins in the complex adopt a preferred helicity dictated by the substituents at the chiral center in accordance with their steric sizes (assigned on the basis of conformational energy A-values) and, consequently, with the absolute configuration of the substrates under investigation. This chiroptical method, verified with a variety of chiral substrates, has been demonstrated to be reliable and generally applicable, including natural products with complex structures. Molecular modeling, NMR, and FTIR experiments of selected host-guest complexes revealed the mode of ligation of the substrates to the magnesium porphyrin species and led to clarification of the structure of the complex. When oxygen functionalities were directly attached to the chiral center, the signs of the CD couplets were opposite to those predicted on the basis of steric size. NMR and molecular modeling experiments indicated that this apparent inconsistency was due to conformational characteristics of the guest molecules. The stereochemical analysis is shown to be a sensitive technique, not only for the determination of absolute configurations of substrates but also for elucidation of their solution conformations.

摘要

基于改进的圆二色性(CD)激子手性方法,开发了一种确定α-手性羧酸绝对构型的方案。该方案依赖于主客体络合机制:手性底物经衍生化得到双功能酰胺共轭物(“客体”),其与作为“受体”的二聚体镁卟啉主体Mg-T(T代表“镊子”)形成络合物。络合物中的两个卟啉根据手性中心的取代基的空间大小(根据构象能量A值确定)采用优先螺旋度,因此与所研究底物的绝对构型相关。这种旋光方法已通过多种手性底物得到验证,被证明是可靠且普遍适用的,包括具有复杂结构的天然产物。对选定的主客体络合物进行的分子建模、核磁共振和傅里叶变换红外光谱实验揭示了底物与镁卟啉物种的连接方式,并有助于阐明络合物的结构。当氧官能团直接连接到手性中心时,CD偶合峰的符号与基于空间大小预测的符号相反。核磁共振和分子建模实验表明,这种明显的不一致是由于客体分子的构象特征所致。立体化学分析不仅是确定底物绝对构型的灵敏技术,也是阐明其溶液构象的灵敏技术。

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