Lanyon-Hogg Thomas, Ritzefeld Markus, Masumoto Naoko, Magee Anthony I, Rzepa Henry S, Tate Edward W
†Department of Chemistry, Imperial College London, London SW7 2AZ, U.K.
‡National Heart and Lung Institute, Imperial College London, London SW7 2AZ, U.K.
J Org Chem. 2015 May 1;80(9):4370-7. doi: 10.1021/acs.joc.5b00205. Epub 2015 Apr 9.
2-Substituted N-acyl-piperidine is a widespread and important structural motif, found in approximately 500 currently available structures, and present in nearly 30 pharmaceutically active compounds. Restricted rotation of the acyl substituent in such molecules can give rise to two distinct chemical environments. Here we demonstrate, using NMR studies and density functional theory modeling of the lowest energy structures of 5-acyl-6,7-dihydrothieno[3,2-c]pyridine derivatives, that the amide E:Z equilibrium is affected by non-covalent interactions between the amide oxygen and adjacent aromatic protons. Structural predictions were used to design molecules that promote either the E- or Z-amide conformation, enabling preparation of compounds with a tailored conformational ratio, as proven by NMR studies. Analysis of the available X-ray data of a variety of published N-acyl-piperidine-containing compounds further indicates that these molecules are also clustered in the two observed conformations. This finding emphasizes that directed conformational isomerism has significant implications for the design of both small molecules and larger amide-containing molecular architectures.
2-取代的N-酰基哌啶是一种广泛且重要的结构基序,在大约500个目前已知的结构中存在,并且存在于近30种具有药物活性的化合物中。此类分子中酰基取代基的受限旋转可产生两种不同的化学环境。在此,我们通过对5-酰基-6,7-二氢噻吩并[3,2-c]吡啶衍生物最低能量结构的核磁共振研究和密度泛函理论建模表明,酰胺的E:Z平衡受酰胺氧与相邻芳族质子之间非共价相互作用的影响。结构预测用于设计促进E-或Z-酰胺构象的分子,从而能够制备具有定制构象比例的化合物,核磁共振研究已证实这一点。对各种已发表的含N-酰基哌啶化合物的现有X射线数据的分析进一步表明,这些分子也聚集在两种观察到的构象中。这一发现强调了定向构象异构对小分子和更大的含酰胺分子结构设计具有重要意义。