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人生长激素释放因子hGRF(1 - 29)-NH2的两种新型聚乙二醇缀合物的核磁共振结构

NMR structure of two novel polyethylene glycol conjugates of the human growth hormone-releasing factor, hGRF(1-29)-NH2.

作者信息

Digilio Giuseppe, Barbero Luca, Bracco Chiara, Corpillo Davide, Esposito Pierandrea, Piquet Gilles, Traversa Silvio, Aime Silvio

机构信息

Bioindustry Park del Canavese, Via Ribes 5, I-10010 Colleretto Giacosa (TO), Italy.

出版信息

J Am Chem Soc. 2003 Mar 26;125(12):3458-70. doi: 10.1021/ja021264j.

Abstract

Two novel mono-PEGylated derivatives of hGRF(1-29)-NH(2) [human growth hormone-releasing factor, fragment 1-29] have been synthesized by regio-specific conjugation of Lys(12) or Lys(21) to a monomethoxy-PEG(5000) chain (compounds Lys(12)PEG-GRF and Lys(21)PEG-GRF). The PEG moiety has been covalently linked at the amino group of a norleucine residue via a carbamate bond. The Lys(12)PEG-GRF regioisomer was found to be slightly less active in vitro than both the unmodified peptide and Lys(21)PEG-GRF. To assess whether the differences in the biological activity of the PEGylated analogues could be related to conformational rearrangements induced by the PEG moiety, the structure of these PEGylated derivatives has been worked out (TFE solution) by means of NMR spectroscopy and molecular dynamics. Secondary structure shifts, hydrogen/deuterium exchange kinetics, temperature coefficients of amide protons, and NOE-based molecular models point out that hGRF(1-29)-NH(2), Lys(21)PEG-GRF and Lys(12)PEG-GRF share a remarkably similar pattern of secondary structure. All three compounds adopt an alpha-helix conformation which spans the whole length of the molecule, and which becomes increasingly rigid on going from the N-terminus to the C-terminus. Residues Lys(12) and Lys(21) are enclosed in all the compounds considered into well-defined alpha-helical domains, indicating that PEGylation either at Lys(12) or Lys(21) does not alter the tendency of the peptide to adopt a stable alpha-helix conformation, nor does it induce appreciable conformational mobility in the proximity of the PEGylation sites. No significant variation of the amphiphilic organization of the alpha-helix is observed among the three peptides. Therefore, the different biological activities observed for the PEGylated analogues are not due to conformational effects, but are rather due to sterical hindrance effects. The relationship between the biological activitiy of the mono-PEGylated derivatives and sterical hindrance is discussed in terms of the topology of interaction between hGRF(1-29)-NH(2) and its receptor.

摘要

已通过将赖氨酸(Lys)12或赖氨酸21区域特异性缀合至单甲氧基聚乙二醇(PEG,分子量5000)链(化合物赖氨酸12 - PEG - GRF和赖氨酸21 - PEG - GRF),合成了两种新型的hGRF(1 - 29)-NH₂[人生长激素释放因子,片段1 - 29]单聚乙二醇化衍生物。PEG部分通过氨基甲酸酯键共价连接至正亮氨酸残基的氨基上。发现赖氨酸12 - PEG - GRF区域异构体在体外的活性略低于未修饰的肽和赖氨酸21 - PEG - GRF。为了评估聚乙二醇化类似物生物活性的差异是否可能与PEG部分诱导的构象重排有关,已通过核磁共振光谱和分子动力学方法确定了这些聚乙二醇化衍生物的结构(TFE溶液)。二级结构变化、氢/氘交换动力学、酰胺质子的温度系数以及基于核Overhauser效应(NOE)的分子模型指出,hGRF(1 - 29)-NH₂、赖氨酸21 - PEG - GRF和赖氨酸12 - PEG - GRF具有非常相似的二级结构模式。所有三种化合物均采用跨越分子全长的α - 螺旋构象,并且从N端到C端其刚性逐渐增加。在所有考虑的化合物中,赖氨酸12和赖氨酸21残基都包含在明确的α - 螺旋结构域中,这表明在赖氨酸12或赖氨酸21处进行聚乙二醇化既不会改变肽形成稳定α - 螺旋构象的倾向,也不会在聚乙二醇化位点附近诱导明显的构象灵活性。在这三种肽之间未观察到α - 螺旋两亲性组织的显著变化。因此,观察到的聚乙二醇化类似物不同的生物活性并非由于构象效应,而是由于空间位阻效应。根据hGRF(1 - 29)-NH₂与其受体之间相互作用的拓扑结构,讨论了单聚乙二醇化衍生物的生物活性与空间位阻之间的关系。

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