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首页> 外文期刊>Angewandte Chemie >Uncovering Key Structural Features of an Enantioselective Peptide-Catalyzed Acylation Utilizing Advanced NMR Techniques
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Uncovering Key Structural Features of an Enantioselective Peptide-Catalyzed Acylation Utilizing Advanced NMR Techniques

机译:利用先进的NMR技术揭示对映选择性肽催化酰化的关键结构特征

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We report on a detailed NMR spectroscopic study of the catalyst-substrate interaction of a highly enantioselective oligopeptide catalyst that is used for the kinetic resolution of trans-cycloalkane-1,2-diols via monoacylation. The extraordinary selectivity has been rationalized by molecular dynamics as well as density functional theory (DFT) computations. Herein we describe the conformational analysis of the organocatalyst studied by a combination of nuclear Overhauser effect (NOE) and residual dipolar coupling (RDC)-based methods that resulted in an ensemble of four final conformers. To corroborate the proposed mechanism, we also investigated the catalyst in mixtures with both trans-cyclohexane-1,2-diol enantiomers separately, using advanced NMR methods such as T-1 relaxation time and diffusion-ordered spectroscopy (DOSY) measurements to probe molecular aggregation. We determined intramolecular distance changes within the catalyst after diol addition from quantitative NOE data. Finally, we developed a pure shift EASY ROESY experiment using PSYCHE homodecoupling to directly observe intermolecular NOE contacts between the trans-1,2-diol and the cyclohexyl moiety of the catalyst hidden by spectral overlap in conventional spectra. All experimental NMR data support the results proposed by earlier computations including the proposed key role of dispersion interaction.
机译:我们报告了一个高对映选择性寡肽催化剂的催化剂-底物相互作用的详细NMR光谱研究,该催化剂用于通过单酰化反应反式环烷烃-1,2-二醇的动力学拆分。非凡的选择性已经通过分子动力学以及密度泛函理论(DFT)计算得到了合理化。本文中,我们描述了通过核Overhauser效应(NOE)和基于残留偶极偶合(RDC)的方法相结合研究的有机催化剂的构象分析,该方法导致了四个最终构象体的集合。为了证实所提出的机制,我们还使用先进的NMR方法(例如T-1弛豫时间和扩散有序光谱(DOSY)测量)来研究催化剂与反式环己烷-1,2-二醇对映异构体混合物的催化剂聚合。我们从定量NOE数据确定了在添加二醇后催化剂内的分子内距离变化。最后,我们开发了使用PSYCHE均解耦的纯移位EASY ROESY实验,以直接观察常规光谱中光谱重叠所掩盖的反式1,2-二醇与催化剂的环己基部分之间的分子间NOE接触。所有实验NMR数据均支持早期计算所提出的结果,包括所提出的色散相互作用的关键作用。

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