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N端残基立体化学对脯氨酰胺几何结构及5-叔丁基脯氨酸VI型β-转角模拟物构象的影响

Influence of N-terminal residue stereochemistry on the prolyl amide geometry and the conformation of 5-tert-butylproline type VI beta-turn mimics.

作者信息

Halab L, Lubell W D

机构信息

Département de chimie, Université de Montréal, Québec, Canada.

出版信息

J Pept Sci. 2001 Feb;7(2):92-104. doi: 10.1002/psc.297.

Abstract

The effects of N-terminal amino acid stereochemistry on prolyl amide geometry and peptide turn conformation were investigated by coupling both L- and D-amino acids to (2S, 5R)-5-tert-butylproline and L-proline to generate, respectively, N-(acetyl)dipeptide N'-methylamides 1 and 2. Prolyl amide cis- and trans-isomers were, respectively, favored for peptides 1 and 2 as observed by proton NMR spectroscopy in water, DMSO and chloroform. The influence of solvent composition on amide proton chemical shift indicated an intramolecular hydrogen bond between the N'-methylamide proton and the acetamide carbonyl for the major conformer of dipeptides (S)-1, that became less favorable in (R)-1 and 2. The coupling constant (3J(NH,alpha)) values for the cis-isomer of (R)-1 indicated a phi2 dihedral angle value characteristic of a type VIb beta-turn conformation in solution. X-ray crystallographic analysis of N-acetyl-D-leucyl-5-tert-butylproline N'-methylamide (R)-lb showed the prolyl residue in a type VIb beta-turn geometry possessing an amide cis-isomer and psi3-dihedral angle having a value of 157 degrees, which precluded an intramolecular hydrogen bond. Intermolecular hydrogen bonding between the leucyl residues of two turn structures within the unit cell positioned the N-terminal residue in a geometry where their phi2 and psi2 dihedral angle values were not characteristic of an ideal type VIb turn. The circular dichroism spectra of tert-butylprolyl peptides (S)- and (R)-1b were found not to be influenced by changes in solvent composition from water to acetonitrile. The type B spectrum exhibited by (S)-1b has been previously assigned to a type VIa beta-turn conformation [Halab L, Lubell WD. J. Org. Chem. 1999; 64: 3312-3321]. The type C spectrum exhibited by the (R)-lb has previously been associated with type II' beta-turn and alpha-helical conformations in solution and appears now to be also characteristic for a type VIb geometry.

摘要

通过将L-和D-氨基酸分别与(2S, 5R)-5-叔丁基脯氨酸偶联以及将L-脯氨酸偶联,生成N-(乙酰基)二肽N'-甲基酰胺1和2,研究了N-末端氨基酸立体化学对脯氨酰胺几何结构和肽链转角构象的影响。在水、二甲亚砜和氯仿中通过质子核磁共振光谱观察到,脯氨酰胺顺式和反式异构体分别有利于肽1和肽2。溶剂组成对酰胺质子化学位移的影响表明,对于二肽(S)-1的主要构象体,N'-甲基酰胺质子与乙酰胺羰基之间存在分子内氢键,而在(R)-1和2中这种氢键则不太有利。(R)-1顺式异构体的耦合常数(3J(NH,α))值表明,溶液中其具有VIb型β转角构象特征的φ2二面角值。N-乙酰-D-亮氨酰-5-叔丁基脯氨酸N'-甲基酰胺(R)-1b的X射线晶体学分析表明,脯氨酰残基具有VIb型β转角几何结构,其酰胺为顺式异构体,ψ3二面角值为157°,这排除了分子内氢键的存在。晶胞内两个转角结构的亮氨酰残基之间的分子间氢键将N-末端残基定位在其φ2和ψ2二面角值不具有理想VIb型转角特征的几何结构中。发现叔丁基脯氨酰肽(S)-和(R)-1b的圆二色光谱不受溶剂组成从水到乙腈变化的影响。(S)-1b呈现的B型光谱先前已被指定为VIa型β转角构象[哈勒布L,卢贝尔WD。《有机化学杂志》。1999年;64:3312 - 3321]。(R)-1b呈现的C型光谱先前已与溶液中的II'型β转角和α螺旋构象相关联,现在看来也是VIb型几何结构的特征。

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