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HSQC-1,1-ADEQUATE 和 HSQC-1,n-ADEQUATE:增强的建立相邻和远程 13C-13C 连接网络的方法。

HSQC-1,1-ADEQUATE and HSQC-1,n-ADEQUATE: enhanced methods for establishing adjacent and long-range 13C-13C connectivity networks.

机构信息

Discovery and Preclinical Sciences, Global Chemistry, Structure Elucidation Group, Merck Research Laboratories, Summit, New Jersey 07901, USA.

出版信息

J Nat Prod. 2011 Nov 28;74(11):2400-7. doi: 10.1021/np200540q. Epub 2011 Nov 4.

Abstract

1H-13C GHSQC and GHMBC spectra are irrefutably among the most valuable 2D NMR experiments for the establishment of unknown chemical structures. However, the indeterminate nature of the length of the long-range coupling(s) observed via the (n)J(CH)-optimized delay of the GHMBC experiment can complicate the interpretation of the data when dealing with novel chemical structures. A priori there is no way to differentiate 2J(CH) from (n)J(CH) correlations, where n ≥ 3. Access to high-field spectrometers with cryogenic NMR probes brings 1,1- and 1,n-ADEQUATE experiments into range for modest samples. Subjecting ADEQUATE spectra to covariance processing with high sensitivity experiments such as multiplicity-edited GHSQC affords a diagonally symmetric 13C-13C correlation spectrum in which correlation data are observed with the apparent sensitivity of the GHSQC spectrum. HSQC-1,1-ADEQUATE covariance spectra derived by co-processing of GHSQC and 1,1-ADEQUATE spectra allow the carbon skeleton of molecules to be conveniently traced. HSQC-1,n-ADEQUATE spectra provide enhanced access to correlations equivalent to 4J(CH) correlations in a GHMBC spectrum. When these data are used to supplement GHMBC data, a powerfully synergistic set of heteronuclear correlations are available. The methods discussed are illustrated using retrorsine (1) as a model compound.

摘要

1H-13C GHSQC 和 GHMBC 谱图无疑是建立未知化学结构最有价值的 2D NMR 实验之一。然而,通过 GHMBC 实验的 (n)J(CH)-优化延迟观察到的远程耦合(n)的长度的不确定性质可能会使新颖化学结构的数据解释变得复杂。在处理新颖化学结构时,从 (n)J(CH) 相关性中区分 2J(CH) 是没有办法的,其中 n ≥ 3。使用带有低温 NMR 探头的高场光谱仪可以将 1,1-和 1,n-ADEQUATE 实验应用于中等样品。使 ADEQUATE 谱图经受高灵敏度实验(如多重编辑 GHSQC)的协方差处理,可提供对角对称的 13C-13C 相关谱图,其中以 GHSQC 谱图的明显灵敏度观察到相关数据。通过共处理 GHSQC 和 1,1-ADEQUATE 谱图得出的 HSQC-1,1-ADEQUATE 协方差谱图可方便地追踪分子的碳骨架。HSQC-1,n-ADEQUATE 谱图提供了增强的相关性,相当于 GHMBC 谱图中 4J(CH)相关性。当将这些数据用于补充 GHMBC 数据时,可提供一组强大的协同异核相关。使用 retrorsine (1) 作为模型化合物来说明所讨论的方法。

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