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线性和环状肽中二酰胺肽键顺/反异构化的动力学和平衡。

Kinetics and equilibria of cis/trans isomerization of secondary amide peptide bonds in linear and cyclic peptides.

机构信息

Department of Chemistry, University of California, Riverside, California 92521, USA.

出版信息

J Phys Chem B. 2010 Mar 11;114(9):3387-92. doi: 10.1021/jp1000286.

Abstract

The secondary amide peptide bonds that comprise up to one-third of the bonds of peptide or protein backbones can exist as cis and trans isomers, with the trans isomer being highly favored. However, there is little quantitative data on the kinetics and equilibria of cis-trans isomerization of secondary amide peptide bonds due to the difficulty of detecting the very small population of cis isomers. Knowledge of factors that influence the kinetics and equilibria of cis-trans isomerization of secondary amide peptide bonds will contribute to a more complete understanding of the structural and dynamic behavior of the backbones of peptides and unfolded proteins and of complex protein folding kinetics. We have characterized the kinetics and equilibria of cis-trans isomerization of the Xaa-Yaa secondary amide peptide bonds of the linear dithiol and cyclic disulfide forms of the peptides Ac-Cys-Xaa-Yaa-Cys-His-NH(2), where Xaa-Yaa is Ala-Phe, Phe-Ala, Ala-Tyr, and Tyr-Ala, by (1)H NMR. Resolved resonances were observed for the Ala-methyl protons of the trans and the much less abundant cis isomers due to differential shielding of the Ala-methyl protons of the trans and cis isomers by ring current effects from the Phe and Tyr side chains. The population of the cis isomers was determined from the relative intensities of the Ala-methyl resonances for the trans and cis isomers, and rate constants for cis-to-trans and trans-to-cis isomerization were determined by the magnetization transfer NMR method. The population of the cis isomers ranges from 0.07 to 0.12%, and the rate constants indicate that, when there is a trans-to-cis interchange, it is rapidly followed by a cis-to-trans interchange back to the more stable trans conformation. Although cyclization by disulfide bond formation imposes conformational constraints on the peptide backbones, cyclization is found to have relatively small affects on the dynamics of cis-trans isomerization.

摘要

构成肽或蛋白质主链三分之一的二级酰胺肽键可以存在顺式和反式异构体,反式异构体高度有利。然而,由于检测顺式异构体的非常小的群体存在困难,因此关于二级酰胺肽键顺反异构化的动力学和平衡的定量数据很少。了解影响二级酰胺肽键顺反异构化动力学和平衡的因素,将有助于更全面地了解肽和展开蛋白质的骨架的结构和动态行为,以及复杂的蛋白质折叠动力学。我们通过(1)H NMR 对线性二硫醇和环二硫键形式的肽 Ac-Cys-Xaa-Yaa-Cys-His-NH(2)中 Xaa-Yaa 为 Ala-Phe、Phe-Ala、Ala-Tyr 和 Tyr-Ala 的 Xaa-Yaa 二级酰胺肽键的顺反异构化的动力学和平衡进行了表征。由于苯丙氨酸和色氨酸侧链的环电流效应对反式和顺式异构体的 Ala-甲基质子产生不同的屏蔽作用,因此观察到顺式和反式异构体的 Ala-甲基质子的分辨共振。顺式异构体的比例通过 Ala-甲基共振的相对强度来确定,并且通过磁化转移 NMR 方法确定顺式到反式和反式到顺式异构化的速率常数。顺式异构体的比例范围为 0.07 至 0.12%,速率常数表明,当存在反式到顺式交换时,它会迅速被顺式到反式交换回更稳定的反式构象。尽管二硫键形成的环化对肽主链施加了构象约束,但环化对顺反异构化的动力学影响相对较小。

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