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L-3,4-脱氢脯氨酸残基的构象偏好和顺反异构化

Conformational preferences and cis-trans isomerization of L-3,4-dehydroproline residue.

作者信息

Kang Young Kee, Park Hae Sook

机构信息

Department of Chemistry, Chungbuk National University, Cheongju, Chungbuk, Republic of Korea.

出版信息

Biopolymers. 2009;92(5):387-98. doi: 10.1002/bip.21203.

Abstract

The conformational study of N-acetyl-N'-methylamide of L-3,4-dehydroproline (Ac-Dhp-NHMe, the Dhp dipeptide) is carried out using hybrid density functional methods with the self-consistent reaction field method in the gas phase and in solution (chloroform and water). The incorporation of a double bond between C(beta) and C(gamma) into the prolyl ring results in the puckering, backbone population, and barriers to prolyl cis-trans isomerization different from those of the Pro dipeptide. For local minima of the Dhp dipeptide in the gas phase and in water, the C(beta)-C(gamma) bonds become shorter by approximately 0.2 A and the bond angles C(alpha)-C(beta)-C(gamma) and C(beta)-C(gamma)-C(delta) are widened by approximately 8 degrees than those of the Pro dipeptide, and the puckering amplitude is computed to be 0.01-0.07 A, indicating that the 3,4-dehydroprolyl ring is quite less puckered. However, polyproline-like conformations become preferred and the relative stability of the conformation tC with a C(7) intramolecular hydrogen bond decreases as the solvent polarity increases, as found for the Pro dipeptide. The barriers to cis-trans isomerization of the Ac-Dhp peptide bond increase with the increase of solvent polarity and the isomerization is likely to proceed through the clockwise rotation in water, as found for the prolyl peptide bond. The hydrogen bond between the prolyl nitrogen and the following amide N-H group seems to contribute in stabilizing the transition state structures.

摘要

采用杂化密度泛函方法结合自洽反应场方法,在气相及溶液(氯仿和水)中对L-3,4-脱氢脯氨酸的N-乙酰基-N'-甲基酰胺(Ac-Dhp-NHMe,即Dhp二肽)进行构象研究。脯氨酰环中C(β)和C(γ)之间引入双键,导致其褶皱、主链构象分布以及脯氨酰顺反异构化的势垒与脯氨酸二肽不同。对于气相和水中Dhp二肽的局部极小值,C(β)-C(γ)键比脯氨酸二肽的键长缩短约0.2 Å,键角C(α)-C(β)-C(γ)和C(β)-C(γ)-C(δ)比脯氨酸二肽的键角增大约8°,计算得到的褶皱幅度为0.01 - 0.07 Å,表明3,4-脱氢脯氨酰环比脯氨酰环的褶皱程度小得多。然而,与脯氨酸二肽情况类似,随着溶剂极性增加,类多聚脯氨酸构象更受青睐,且具有C(7)分子内氢键的tC构象的相对稳定性降低。Ac-Dhp肽键的顺反异构化势垒随溶剂极性增加而增大,且异构化在水中可能通过顺时针旋转进行,这与脯氨酰肽键情况相同。脯氨酰氮与后续酰胺N-H基团之间的氢键似乎有助于稳定过渡态结构。

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