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具有稠合苯环的脯氨酸类似物的构象偏好。

Conformational preferences of proline analogues with a fused benzene ring.

机构信息

Departamento de Química Orgánica, Instituto de Ciencia de Materiales de Aragón, Universidad de Zaragoza-CSIC, 50009 Zaragoza, Spain.

出版信息

J Phys Chem B. 2010 Sep 16;114(36):11761-70. doi: 10.1021/jp105456r.

DOI:10.1021/jp105456r
PMID:20722365
Abstract

The intrinsic conformational preferences of indoline-2-carboxylic acid (Inc) and its α-methylated derivative (αMeInc) have been investigated using quantum mechanical calculations. Specifically, the behavior of their N-acetyl-N'-methylamide derivatives, Ac-L-Inc-NHMe and Ac-L-αMeInc-NHMe, has been explored at the B3LYP/6-31+G(d,p) level. Such amino acids are analogues of proline and (α-methyl)proline, respectively, bearing a benzene ring fused to the C(γ)-C(δ) bond of the five-membered pyrrolidine ring. The additional aromatic group has been shown to significantly restrict the conformational space available to these residues by reducing the flexibility of both the five-membered cycle and the peptide backbone. The fused benzene ring also plays a critical role in determining the cis-trans arrangement of the amide bond involving the pyrrolidine nitrogen, which is also modulated by the presence of the α-methyl group in the αMeInc derivative. Furthermore, the influence of the environment on the conformational propensities of these compounds has been evaluated by using both a self-consistent reaction field model and a recently developed interface in a hybrid QM/MM scheme, in which the solvent molecules are treated explicitly with classical mechanics while the solute is described by quantum mechanics at the density functional theory level.

摘要

使用量子力学计算研究了吲哚啉-2-羧酸(Inc)及其α-甲基衍生物(αMeInc)的固有构象偏好。具体来说,在 B3LYP/6-31+G(d,p) 水平上探索了它们的 N-乙酰-N'-甲基酰胺衍生物 Ac-L-Inc-NHMe 和 Ac-L-αMeInc-NHMe 的行为。这些氨基酸分别是脯氨酸和(α-甲基)脯氨酸的类似物,在五元吡咯烷环的 C(γ)-C(δ) 键上融合了一个苯环。额外的芳基基团通过降低五元环和肽骨架的柔韧性,显著限制了这些残基的可用构象空间。融合的苯环还在确定涉及吡咯烷氮的酰胺键的顺反排列方面起着关键作用,αMeInc 衍生物中α-甲基的存在也调节了这种排列。此外,通过使用自洽反应场模型和混合 QM/MM 方案中的最近开发的界面,评估了环境对这些化合物构象倾向的影响,其中溶剂分子用经典力学明确处理,而溶质在密度泛函理论水平上用量子力学描述。

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