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通过核磁共振对凝血酶受体激动剂肽SFLLR和SFLLR-NH2进行构象分析:环状生物活性构象的证据。

Conformational analysis of the thrombin receptor agonist peptides SFLLR and SFLLR-NH2 by NMR: evidence for a cyclic bioactive conformation.

作者信息

Matsoukas J, Hollenberg M D, Mavromoustakos T, Panagiotopoulos D, Alexopoulos K, Yamdagni R, Wu Q, Moore G J

机构信息

University of Patras, Department of Chemistry, Greece.

出版信息

J Protein Chem. 1997 Feb;16(2):113-31. doi: 10.1023/a:1026342001226.

Abstract

The conformational properties of the pentapeptide Ser-Phe-Leu-Leu-Arg (P5), a human thrombin receptor-derived sequence forming part of a tethered ligand which activates the thrombin receptor, and its more active amide derivative Ser-Phe-Leu-Leu-Arg-NH2 (P5-NH2), have been studied by proton NMR spectroscopy in dimethylsulfoxide. Measurements of nuclear Overhauser effects, performed using two-dimensional rotating frame nuclear Overhauser (ROESY) and one-dimensional nuclear Overhauser enhancement (NOE) spectroscopy, revealed that P5 exists mainly in an extended conformation. However, proton-proton 1D-NOEs between Phe C alpha H and Ser C alpha H Leu3 C alpha H and Leu3 NH, and Leu4 C alpha H and Leu4 NH, as well as between the Ser and Arg sidechains, also implicated a minor conformer for P5 having a curved backbone and a near-cyclic structure. In contrast to P5, measurements of NOEs and ROEs for P5-NH2 revealed a more stabilized cyclic structure which may account for its higher biological potency. Thus strong interresidue sequential NH (i)-NH (i + 1) interactions, as well as C-terminal carboxamide to N-terminal side-chain interactions, i.e., Arg CONH2 to Phe ring and Arg CONH2 to Ser C alpha/C beta beta', observed at lower levels of the ROESY spectrum, supported a curved backbone structure for SFLLR-NH2. Since the higher potency P5-NH2 analogue adopts predominantly a cyclic structure, a cyclic bioactive conformation for thrombin receptor agonist peptides is suggested.

摘要

五肽Ser-Phe-Leu-Leu-Arg(P5)是一种源自人凝血酶受体的序列,构成了激活凝血酶受体的拴系配体的一部分,其酰胺衍生物Ser-Phe-Leu-Leu-Arg-NH2(P5-NH2)活性更强。我们通过在二甲亚砜中进行的质子核磁共振光谱研究了它们的构象性质。使用二维旋转框架核Overhauser效应(ROESY)和一维核Overhauser增强效应(NOE)光谱进行的核Overhauser效应测量表明,P5主要以伸展构象存在。然而,苯丙氨酸CαH与丝氨酸CαH、亮氨酸3 CαH与亮氨酸3 NH、亮氨酸4 CαH与亮氨酸4 NH之间的质子-质子一维NOE,以及丝氨酸和精氨酸侧链之间的质子-质子一维NOE,也表明P5存在一种次要构象,其主链弯曲且结构接近环状。与P5不同,对P5-NH2的NOE和ROE测量显示出一种更稳定的环状结构,这可能解释了其更高的生物活性。因此,在较低的ROESY光谱水平上观察到的强残基间顺序NH(i)-NH(i + 1)相互作用,以及C端羧酰胺与N端侧链相互作用,即精氨酸CONH2与苯丙氨酸环以及精氨酸CONH2与丝氨酸Cα/Cββ'之间的相互作用,支持了SFLLR-NH2的弯曲主链结构。由于活性更高的P5-NH2类似物主要采用环状结构,因此提出了凝血酶受体激动剂肽的环状生物活性构象。

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