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氮杂脯氨酸对酰胺顺反异构化的影响:包括促甲状腺激素释放激素类似物在内的模型肽的构象分析和核磁共振研究。

Impact of azaproline on amide cis-trans isomerism: conformational analyses and NMR studies of model peptides including TRH analogues.

作者信息

Zhang Wei-Jun, Berglund Anders, Kao Jeff L-F, Couty Jean-Pierre, Gershengorn Marvin C, Marshall Garland R

机构信息

Department of Biochemistry, Washington University, St. Louis, Missouri 63110, USA.

出版信息

J Am Chem Soc. 2003 Feb 5;125(5):1221-35. doi: 10.1021/ja020994o.

Abstract

The beta-turn is a well-studied motif in both proteins and peptides. Four residues, making almost a complete 180 degree-turn in the direction of the peptide chain, define the beta-turn. Several types of the beta-turn are defined according to Phi and Psi torsional angles of the backbone for residues i + 1 and i + 2. One special type of beta-turn, the type VI-turn, usually contains a proline with a cis-amide bond at residue i + 2. In an aza-amino acid, the alpha-carbon of the amino acid is changed to nitrogen. Peptides containing azaproline (azPro) have been shown to prefer the type VI beta-turn both in crystals and in organic solvents by NMR studies. MC/MD simulations using the GB/SA solvation model for water explored the conformational preferences of azPro-containing peptides in aqueous systems. An increase in the conformational preference for the cis-amide conformer of azPro was clearly seen, but the increased stability was relatively minor with respect to the trans-conformer as compared to previous suggestions. To test the validity of the calculations in view of the experimental data from crystal structures and NMR in organic solvents, [azPro(3)]-TRH and [Phe(2), azPro(3)]-TRH were synthesized, and their conformational preferences were determined by NMR in polar solvents as well as the impact of the azPro substitution on their biological activities.

摘要

β-转角是蛋白质和肽中一种经过充分研究的基序。四个残基在肽链方向上形成几乎完整的180度转角,从而定义了β-转角。根据残基i + 1和i + 2主链的Phi和Psi扭转角,定义了几种类型的β-转角。一种特殊类型的β-转角,即VI型转角,通常在残基i + 2处含有一个具有顺式酰胺键的脯氨酸。在氮杂氨基酸中,氨基酸的α-碳被换成氮。核磁共振研究表明,含氮杂脯氨酸(azPro)的肽在晶体和有机溶剂中都倾向于VI型β-转角。使用GB/SA水溶剂化模型的分子动力学/蒙特卡罗模拟探索了含azPro的肽在水性体系中的构象偏好。azPro顺式酰胺构象体的构象偏好明显增加,但与之前的推测相比,相对于反式构象体,增加的稳定性相对较小。为了根据晶体结构和有机溶剂中核磁共振的实验数据检验计算的有效性,合成了[azPro(3)]-TRH和[Phe(2), azPro(3)]-TRH,并通过核磁共振在极性溶剂中确定了它们的构象偏好以及azPro取代对其生物活性的影响。

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