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通过 N-BOC-甲硫基吡咯烷的锂化合成 5-氟-和 5-羟甲基甲硫基吡咯烷。约束 Cγ-外消旋和 Cγ-内消旋 Flp 和 Hyp 构象模拟物。

Synthesis of 5-fluoro- and 5-hydroxymethanoprolines via lithiation of N-BOC-methanopyrrolidines. Constrained Cγ-exo and Cγ-endo Flp and Hyp conformer mimics.

机构信息

Department of Chemistry, Temple University, Philadelphia, Pennsylvania 19122, USA.

出版信息

J Org Chem. 2012 Jun 15;77(12):5331-44. doi: 10.1021/jo300700a. Epub 2012 May 25.

DOI:10.1021/jo300700a
PMID:22607128
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3381989/
Abstract

Proline derivatives with a C(γ)-exo pucker typically display a high amide bond trans/cis (K(T/C)) ratio. This pucker enhances n→π* overlap of the amide oxygen and ester carbonyl carbon, which favors a trans amide bond. If there were no difference in n→π* interaction between the ring puckers, then the correlation between ring pucker and K(T/C) might be broken. To explore this possibility, proline conformations were constrained using a methylene bridge. We synthesized discrete gauche and anti 5-fluoro- and 5-hydroxy-N-acetylmethanoproline methyl esters from 3-syn and 3-anti fluoro- and hydroxymethanopyrrolidines using directed α-metalation to introduce the α-ester group. NBO calculations reveal minimal n→π* orbital interactions, so contributions from other forces might be of greater importance in determining K(T/C) for the methanoprolines. Consistent with this hypothesis, greater trans amide preferences were found in CDCl(3) for anti isomers en-MetFlp and en-MetHyp (72-78% trans) than for the syn stereoisomers ex-MetFlp and ex-MetHyp (54-67% trans). These, and other, K(T/C) results that we report here indicate how substituents on proline analogues can affect amide preferences by pathways other than ring puckering and n→π* overlap and suggest that caution should be exercised in assigning enhanced pyrrolidine C(γ)-exo ring puckering based solely on enhanced trans amide preference.

摘要

具有 C(γ)-反式外式构象的脯氨酸衍生物通常具有较高的酰胺键反式/顺式(K(T/C))比例。这种构象增强了酰胺氧和酯羰基碳之间的 n→π* 重叠,有利于形成反式酰胺键。如果环构象的 n→π* 相互作用没有差异,那么环构象与 K(T/C)之间的相关性可能会被打破。为了探索这种可能性,我们使用亚甲基桥对脯氨酸构象进行了限制。我们通过定向α-金属化从 3-顺式和 3-反式氟代和羟甲基吡咯烷合成了离散的 gauche 和 anti 5-氟代和 5-羟基-N-乙酰甲氨脯氨酸甲酯。NBO 计算表明,n→π轨道相互作用最小,因此其他力的贡献可能在确定甲氨脯氨酸的 K(T/C)方面更为重要。与这一假设一致,反式异构体 en-MetFlp 和 en-MetHyp(72-78%反式)在 CDCl3 中的反式酰胺偏好大于顺式异构体 ex-MetFlp 和 ex-MetHyp(54-67%反式)。我们在这里报告的这些和其他 K(T/C)结果表明,脯氨酸类似物上的取代基如何通过除环构象和 n→π重叠之外的途径影响酰胺偏好,并表明在仅基于增强的反式酰胺偏好来分配增强的吡咯烷 C(γ)-反式环构象时应谨慎行事。

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本文引用的文献

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