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溶液中X-Pro叔酰胺基序处控制顺式/反式异构体平衡的空间和电子相互作用。

Steric and electronic interactions controlling the cis/trans isomer equilibrium at X-Pro tertiary amide motifs in solution.

作者信息

Reddy Damodara N, Prabhakaran Erode N

机构信息

Department of Organic Chemistry, Indian Institute of Science, Bangalore, 560012, Karnataka, India.

出版信息

Biopolymers. 2014 Jan;101(1):66-77. doi: 10.1002/bip.22278.

Abstract

A systematic understanding of the noncovalent interactions that influence the structures of the cis conformers and the equilibrium between the cis and the trans conformers, of the X-Pro tertiary amide motifs, is presented based on analyses of (1)H-, (13)C-NMR and FTIR absorption spectra of two sets of homologous peptides, X-Pro-Aib-OMe and X-Pro-NH-Me (where X is acetyl, propionyl, isobutyryl and pivaloyl), in solvents of varying polarities. First, this work shows that the cis conformers of any X-Pro tertiary amide motif, including Piv-Pro, are accessible in the new motifs X-Pro-Aib-OMe, in solution. These conformers are uniquely observable by FTIR spectroscopy at ambient temperatures and by NMR spectroscopy from temperatures as high as 273 K. This is made possible by the persistent presence of n(i-1) →π(i)* interactions at Aib, which also influence the disappearance of steric effects at these cis X-Pro rotamers. Second, contrary to conventional understanding, the energy contribution of steric effects to the cis/trans equilibrium at the X-Pro motifs is found to be nonvariant (0.54 ± 0.02 kcal/mol) with increase in steric bulk on the X group. Third, the current studies provide direct evidence for the weak intramolecular interactions namely the n(i-1) →π(i)*, the N(Pro) •••H(i+1) (C5a), and the C7 hydrogen bond that operate and influence the structures, stabilities, and dynamics between different conformational states of X-Pro tertiary amide motifs. NMR and IR spectral data suggest that the cis conformers of X-Pro motifs are ensembles of short-lived rotamers about the C'(X)-N(Pro) bond.

摘要

基于对两组同源肽X-Pro-Aib-OMe和X-Pro-NH-Me(其中X为乙酰基、丙酰基、异丁酰基和新戊酰基)在不同极性溶剂中的(1)H-、(13)C-NMR和FTIR吸收光谱的分析,本文对影响X-Pro叔酰胺基序顺式构象体结构以及顺式和反式构象体之间平衡的非共价相互作用进行了系统的理解。首先,这项工作表明,在溶液中,包括Piv-Pro在内的任何X-Pro叔酰胺基序的顺式构象体在新基序X-Pro-Aib-OMe中都是可以获得的。这些构象体在环境温度下可通过FTIR光谱独特地观察到,在高达273 K的温度下可通过NMR光谱观察到。这是由于Aib处n(i-1)→π(i)相互作用的持续存在,这也影响了这些顺式X-Pro旋转异构体处空间效应的消失。其次,与传统认识相反,发现空间效应在X-Pro基序的顺/反平衡中的能量贡献不随X基团上空间体积的增加而变化(0.54±0.02 kcal/mol)。第三,当前的研究为弱分子内相互作用,即n(i-1)→π(i)、N(Pro)•••H(i+1)(C5a)和C7氢键提供了直接证据,这些相互作用作用并影响X-Pro叔酰胺基序不同构象状态之间的结构、稳定性和动力学。NMR和IR光谱数据表明,X-Pro基序的顺式构象体是围绕C'(X)-N(Pro)键的短寿命旋转异构体的集合。

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