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[赖氨酸(-2)-精氨酸(-1)-去(17-21)] - 内皮素-1肽保留了特定的精氨酸(-1)-天冬氨酸8盐桥,但揭示了核磁共振数据与分子动力学模拟之间的差异。

The [Lys(-2)-Arg(-1)-des(17-21)]-endothelin-1 peptide retains the specific Arg(-1)-Asp8 salt bridge but reveals discrepancies between NMR data and molecular dynamics simulations.

作者信息

Kaas Quentin, Aumelas André, Kubo Shigeru, Chino Naoyoshi, Kobayashi Yuji, Chiche Laurent

机构信息

Centre de Biochimie Structurale, UMR5048 CNRS-Université Montpellier I, UMR554 INSERM-Université Montpellier I, Faculté de Pharmacie, 15 avenue Charles Flahault, BP 14491, 34093 Montpellier-Cedex 5, France.

出版信息

Biochemistry. 2002 Sep 17;41(37):11099-108. doi: 10.1021/bi025744z.

DOI:10.1021/bi025744z
PMID:12220174
Abstract

The [des(17-21)]-endothelin-1 (CSH-ET) and [Lys(-)(2)-Arg(-)(1)-des(17-21)]-endothelin-1 (KR-CSH-ET) peptides, designed by removing the five-residue hydrophobic tail from the endothelin-1 (ET-1) and [Lys(-)(2)-Arg(-)(1)]-endothelin-1 (KR-ET-1) peptides, respectively, were synthesized. Previous studies on KR-ET-1 showed that, in contrast to ET-1, this engineered compound displays a pH-dependent conformational change related to the formation of a stabilizing salt bridge between the Arg(-)(1) and Asp(8) side chains. CD and NMR spectra indicate that CSH-ET and KR-CSH-ET display conformational behavior similar to those of ET-1 and KR-ET-1, respectively. The short salt bridge-stabilized KR-CSH-ET peptide therefore appears to be an attractive elementary scaffold for drug design. The solution structure of the salt-bridged form of KR-CSH-ET was determined by NMR at pH 4.5 and is very similar to the corresponding form of the parent KR-ET-1 peptide. Molecular dynamics simulations of the salt-bridged form of KR-CSH-ET were performed using both the GB/SA implicit solvation scheme or an explicit solvation and the particle-mesh Ewald method for long-range electrostatic calculation. Unexpectedly, the Arg(-)(1)-Asp(8) salt bridge does not display in the simulation the stability that could be expected from the experimental data. The cooperative involvement of a cation-pi interaction in formation of the salt bridge has been hypothesized. Difficulties in accurately simulating cation-pi interactions might be responsible for the lack of stability in the simulation. At this time, however, no definitive explanation for the observed discrepancy between experiments and simulations is available, and further experimental studies appear to be necessary to fully understand in atomic detail the pH-dependent conformational change observed in the KR-ET-1 series.

摘要

通过分别从内皮素 -1(ET -1)和[赖氨酸(-)(2) - 精氨酸(-)(1)] - 内皮素 -1(KR - ET -1)肽中去除五个残基的疏水尾部而设计的[去(17 - 21)] - 内皮素 -1(CSH - ET)和[赖氨酸(-)(2) - 精氨酸(-)(1) - 去(17 - 21)] - 内皮素 -1(KR - CSH - ET)肽被合成出来。先前对KR - ET -1的研究表明,与ET -1不同,这种工程化化合物表现出与精氨酸(-)(1)和天冬氨酸8侧链之间形成稳定盐桥相关的pH依赖性构象变化。圆二色光谱(CD)和核磁共振光谱(NMR)表明,CSH - ET和KR - CSH - ET分别表现出与ET -1和KR - ET -1相似的构象行为。因此,短盐桥稳定的KR - CSH - ET肽似乎是药物设计中一个有吸引力的基本支架。KR - CSH - ET盐桥形式的溶液结构在pH 4.5下通过核磁共振确定,并且与母体KR - ET -1肽的相应形式非常相似。使用GB/SA隐式溶剂化方案或显式溶剂化以及用于长程静电计算的粒子网格埃瓦尔德方法对KR - CSH - ET的盐桥形式进行了分子动力学模拟。出乎意料的是,精氨酸(-)(1) - 天冬氨酸8盐桥在模拟中并未表现出从实验数据中预期的稳定性。有人推测阳离子 - π相互作用在盐桥形成过程中协同参与。准确模拟阳离子 - π相互作用的困难可能是模拟中缺乏稳定性的原因。然而,目前对于实验和模拟中观察到的差异尚无明确解释,似乎需要进一步的实验研究来全面了解KR - ET -1系列中观察到的pH依赖性构象变化的原子细节。

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