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利用二维核磁共振技术和分子动力学模拟对两种缓激肽拮抗剂进行构象研究。

Conformational studies of two bradykinin antagonists by using two-dimensional NMR techniques and molecular dynamics simulations.

作者信息

Sikorska Trzepałka E, Slusarz R, Lammek B

机构信息

Department of Chemistry, University of Gdańsk, Sobieskiego 18, 80-952 Gdańsk, Poland.

出版信息

J Biomol Struct Dyn. 2005 Oct;23(2):125-34. doi: 10.1080/07391102.2005.10507053.

Abstract

The solution conformations of two potent antagonists of bradykinin (Arg1-Pro2-Pro3-Gly4-Phe5-Ser6-Pro7-Phe8-Arg9), [Aca(-1),DArg0,Hyp3,Thi5,DPhe7,(N-Bzl)Gly8]BK (1) and [Aaa(-1),DArg0,Hyp3,Thi5,(2-DNal)7,Thi8]BK (2), were studied by using 2D NMR spectroscopy in DMSO-d6 and molecular dynamics simulations. The NMR spectra of peptide 1 reveals the existence of at least two isomers arising from isomerization across the DPhe7-(N-Bzl)Gly8 peptide bond. The more populated isomer possesses the cis peptide bond at this position. The ratio of cis/trans isomers amounted to 7:3. With both antagonists, the NMR data indicate a beta-turn structure for the Hyp3-Gly4 residues. In addition, for peptide 2, position 2,3 is likely to be occupied by turn-like structures. The cis peptide bond between DPhe7 and (N-Bzl)Gly8 in analogue 1 suggests type VI beta-turn at position 7,8. The molecular dynamics runs were performed on both peptides in DMSO solution. The results indicate that the structure of peptide 1 is characterized by type VIb beta-turn comprising residues Ser6-Arg9 and the betaI or betaII-turn involving the Pro2-Thi5 fragment, whereas peptide 2 shows the tendency towards the formation of type I beta-turn at position 2,3. The structures of both antagonists are stabilized by a salt bridge between the guanidine moiety of Arg1 and the carboxyl group of Arg9. Moreover, the side chain of DArg0 is apart of the rest of molecule and is not involved in structural elements except for a few calculated structures.

摘要

通过在氘代二甲亚砜(DMSO-d6)中使用二维核磁共振(2D NMR)光谱和分子动力学模拟,研究了缓激肽(精氨酸1-脯氨酸2-脯氨酸3-甘氨酸4-苯丙氨酸5-丝氨酸6-脯氨酸7-苯丙氨酸8-精氨酸9)的两种强效拮抗剂[Aca(-1),DArg0,Hyp3,Thi5,DPhe7,(N-苄基)甘氨酸8]缓激肽(1)和[Aaa(-1),DArg0,Hyp3,Thi5,(2-二硝基苯丙氨酸)7,硫代异亮氨酸8]缓激肽(2)的溶液构象。肽1的核磁共振光谱显示,至少存在两种异构体,它们是由DPhe7-(N-苄基)甘氨酸8肽键的异构化产生的。在该位置,占比更多的异构体具有顺式肽键。顺式/反式异构体的比例为7:3。对于这两种拮抗剂,核磁共振数据表明Hyp3-甘氨酸4残基具有β-转角结构。此外,对于肽2,2,3位可能被类似转角的结构占据。类似物1中DPhe7和(N-苄基)甘氨酸8之间的顺式肽键表明7,8位存在VI型β-转角。在DMSO溶液中对这两种肽进行了分子动力学模拟。结果表明,肽1的结构特征是由Ser6-Arg9残基组成的VIb型β-转角以及涉及Pro2-Thi5片段的βI或βII-转角,而肽2在2,3位显示出形成I型β-转角的趋势。两种拮抗剂的结构都通过精氨酸1的胍基部分与精氨酸9的羧基之间的盐桥得以稳定。此外,DArg0的侧链与分子的其余部分分开,除了少数计算结构外,不参与结构元件。

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