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非脯氨酰和脯氨酰残基的构象偏好

Conformational preferences of non-prolyl and prolyl residues.

作者信息

Kang Young Kee

机构信息

Department of Chemistry and Basic Science Research Institute, Chungbuk National University, Cheongju, Chungbuk 361-763, South Korea.

出版信息

J Phys Chem B. 2006 Oct 26;110(42):21338-48. doi: 10.1021/jp0647481.

Abstract

The conformational study on Ac-Ala-NHMe (the alanine dipeptide) and Ac-Pro-NHMe (the proline dipeptide) is carried out using ab initio HF and density functional methods with the self-consistent reaction field method to explore the differences in the backbone conformational preference and the cis-trans isomerization for the non-prolyl and prolyl residues in the gas phase and in the solutions (chloroform and water). For the alanine and proline dipeptides, with the increase of solvent polarity, the populations of the conformation tC with an intramolecular C(7) hydrogen bond significantly decrease, and those of the polyproline II-like conformation tF and the alpha-helical conformation tA increase, which is in good agreement with the results from circular dichroism and NMR experiments. For both the dipeptides, as the solvent polarity increases, the relative free energy of the cis conformer to the trans conformer decreases and the rotational barrier to the cis-trans isomerization increases. It is found that the cis-trans isomerization proceeds in common through only the clockwise rotation with omega' approximately +120 degrees about the non-prolyl and prolyl peptide bonds in both the gas phase and the solutions. The pertinent distance d(N...H-N(NHMe)) can successfully describe the increase in the rotational barriers for the non-prolyl and prolyl trans-cis isomerization as the solvent polarity increases and the higher barriers for the non-prolyl residue than for the prolyl residue, as seen in experimental and calculated results. By analysis of the contributions to rotational barriers, the cis-trans isomerization for the non-prolyl and prolyl peptide bonds is proven to be entirely enthalpy driven in the gas phase and in the solutions. The calculated cis populations and rotational barriers to the cis-trans isomerization for both the dipeptides in chloroform and/or water accord with the experimental values.

摘要

使用从头算HF和密度泛函方法以及自洽反应场方法,对乙酰丙氨酸甲酯(丙氨酸二肽)和乙酰脯氨酸甲酯(脯氨酸二肽)进行构象研究,以探索气相和溶液(氯仿和水)中,非脯氨酰和脯氨酰残基在主链构象偏好和顺反异构化方面的差异。对于丙氨酸和脯氨酸二肽,随着溶剂极性的增加,具有分子内C(7)氢键的tC构象的比例显著降低,而多聚脯氨酸II样构象tF和α-螺旋构象tA的比例增加,这与圆二色性和核磁共振实验结果高度一致。对于这两种二肽,随着溶剂极性增加,顺式构象相对于反式构象的相对自由能降低,顺反异构化的旋转势垒增加。研究发现,在气相和溶液中,顺反异构化通常仅通过围绕非脯氨酰和脯氨酰肽键以约+120度的顺时针方向旋转ω'进行。相关距离d(N...H-N(NHMe))能够成功描述随着溶剂极性增加,非脯氨酰和脯氨酰反-顺异构化旋转势垒的增加,以及非脯氨酰残基的势垒高于脯氨酰残基的情况,这在实验和计算结果中均有体现。通过对旋转势垒贡献的分析,证明非脯氨酰和脯氨酰肽键的顺反异构化在气相和溶液中完全由焓驱动。计算得到的氯仿和/或水中两种二肽的顺式比例和顺反异构化旋转势垒与实验值相符。

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