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β-脯氨酸低聚物的构象行为。

Conformational behavior of beta-proline oligomers.

作者信息

Sandvoss Leah M, Carlson Heather A

机构信息

Department of Medicinal Chemistry, College of Pharmacy, 428 Church St., Ann Arbor, Michigan 48109-1065, USA.

出版信息

J Am Chem Soc. 2003 Dec 24;125(51):15855-62. doi: 10.1021/ja036471d.

Abstract

Conformations of the monomer, dimer, and hexamer of beta-proline ((S) pyrrolidine-3-carboxylic acid) were determined using ab initio molecular orbital calculations at the RHF/6-31G level of theory. The calculated minima are in good agreement with experimental data for the system and imply that the conformations could be controlled through chemical modification at Calpha, Cgamma, or Cdelta. The monomer and dimer are small and flexible with many low-energy minima. In the hexamer, two forms of regular secondary structure are preferred: left-handed helices with cis-peptide bonds and right-handed helices with trans-peptide bonds. This is similar to the behavior of alpha-proline helices, except that the relationship between the peptide rotamer and the handedness of the helix is reversed. Therefore, helices of the enantiomer of beta-proline ((R)-pyrrolidine-3-carboxylic acid) should exhibit the same behavior as alpha-proline helices. Through understanding the conformational behavior of beta-proline in various environments, it may be possible to use these protein mimics to inhibit various protein-protein recognition events. To estimate these effects, SCRF energies for the conformers were determined in dielectrics corresponding to water, methanol, and chloroform. It appears that the cis helices are more favorably solvated than the trans helices, but the cause is not clear.

摘要

使用RHF/6 - 31G理论水平的从头算分子轨道计算,确定了β - 脯氨酸((S) - 吡咯烷 - 3 - 羧酸)单体、二聚体和六聚体的构象。计算得到的极小值与该体系的实验数据吻合良好,这表明可以通过对α碳原子、γ碳原子或δ碳原子进行化学修饰来控制构象。单体和二聚体体积小且具有柔性,存在许多低能量极小值。在六聚体中,两种形式的规则二级结构较为常见:具有顺式肽键的左手螺旋和具有反式肽键的右手螺旋。这与α - 脯氨酸螺旋的行为相似,只是肽旋转异构体与螺旋手性之间的关系相反。因此,β - 脯氨酸((R) - 吡咯烷 - 3 - 羧酸)对映体的螺旋应表现出与α - 脯氨酸螺旋相同的行为。通过了解β - 脯氨酸在各种环境中的构象行为,有可能利用这些蛋白质模拟物来抑制各种蛋白质 - 蛋白质识别事件。为了评估这些影响,在对应于水、甲醇和氯仿的介质中确定了构象异构体的自洽反应场(SCRF)能量。似乎顺式螺旋比反式螺旋更易于溶剂化,但其原因尚不清楚。

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