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4-氟脯氨酸和4-(三氟甲基)脯氨酸中的极性效应。

Polarity effects in 4-fluoro- and 4-(trifluoromethyl)prolines.

作者信息

Kubyshkin Vladimir

机构信息

University of Manitoba, Dysart Rd. 144, Winnipeg, R3T 2N2, Canada.

出版信息

Beilstein J Org Chem. 2020 Jul 23;16:1837-1852. doi: 10.3762/bjoc.16.151. eCollection 2020.

Abstract

Fluorine-containing analogues of proline are valuable tools in engineering and NMR spectroscopic studies of peptides and proteins. Their use relies on the fundamental understanding of the interplay between the substituents and the main chain groups of the amino acid residue. This study aims to showcase the polarity-related effects that arise from the interaction between the functional groups in molecular models. Properties such as conformation, acid-base transition, and amide-bond isomerism were examined for diastereomeric 4-fluoroprolines, 4-(trifluoromethyl)prolines, and 1,1-difluoro-5-azaspiro[2.4]heptane-6-carboxylates. The preferred conformation on the proline ring originated from a preferential axial positioning for a single fluorine atom, and an equatorial positioning for a trifluoromethyl- or a difluoromethylene group. This orientation of the substituents explains the observed trends in the p values, lipophilicity, and the kinetics of the amide bond rotation. The study also provides a set of evidences that the transition state of the amide-bond rotation in peptidyl-prolyl favors C- conformation of the pyrrolidine ring.

摘要

脯氨酸的含氟类似物是肽和蛋白质工程及核磁共振光谱研究中的重要工具。它们的应用依赖于对氨基酸残基取代基与主链基团之间相互作用的基本理解。本研究旨在展示分子模型中官能团相互作用产生的极性相关效应。对非对映体4-氟脯氨酸、4-(三氟甲基)脯氨酸和1,1-二氟-5-氮杂螺[2.4]庚烷-6-羧酸盐的构象、酸碱转变和酰胺键异构等性质进行了研究。脯氨酸环上的优势构象源于单个氟原子的优先轴向定位以及三氟甲基或二氟亚甲基的赤道定位。取代基的这种取向解释了观察到的pKa值、亲脂性和酰胺键旋转动力学趋势。该研究还提供了一系列证据表明肽基脯氨酰中酰胺键旋转的过渡态有利于吡咯烷环的C-构象。

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