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在溶液和胶束相关状态下,对 EX-4 的一种活性类似物的结构研究。

Structural study of an active analog of EX-4 in solution and micelle associated states.

机构信息

State Key Laboratory of Supramolecular Structure and Materials, Jilin University, Changchun 130012, People's Republic of China.

出版信息

Biopolymers. 2011;96(3):348-57. doi: 10.1002/bip.21566.

Abstract

Of many drug candidates designed for treatment of type II diabetes, an exendin-4 (EX-4) analog from the substitutions of both beta-Asp for Glu3 and Tyrfor Glnl3 of EX-4 was found to have a prolongation in biological half life, an increase in cell proliferation and a remarkable improvement in reducing blood glucose with respect to EX-4. In this study, we applied CD and NMR approaches to characterize the structures of this active EX-4 analog in water, trifluoroethanol (TFE) aqueous solution, and dodecylphosphocholine (DPC) micelles and compared the results of the EX-4 analog with those of EX-4. Both EX-4 peptides adopt alpha-helix structures with the N-termini disordered and the C-terminal parts folded as hydrophobic clusters in these media. However, the analog has a longer helical extension in the N-terminal part than EX-4. The increasing helical turns may favor affinity for extracellular domain of glucagon-like peptide-1 receptor and accurate positioning of the crucial N-terminal residues in the transmembrane domains of the receptor. The analog has a stronger propensity to aggregate than the native EX-4, which is attributed to more coiled-coil interaction in the analog than in its native type. We also probed the association of EX-4 and its analog to DPC micelles and observed micelle-induced insertion of both peptides with their N- and C-termini as well as the central parts embedded in micelles and the residues near Asp9 and the residues around Trp25-Ser32 more water exposed. A single-step ligand-receptor binding model was suggested based on the analysis of these results.

摘要

在许多设计用于治疗 II 型糖尿病的药物候选物中,一种来自 EX-4 的外显肽(EX-4)类似物,其取代了 EX-4 中的β-Asp3 和 Tyr13 的 Glu3 和 Gln13,被发现具有延长的生物半衰期、增加的细胞增殖能力,以及显著降低血糖的作用。在这项研究中,我们应用 CD 和 NMR 方法来表征这种活性 EX-4 类似物在水中、三氟乙醇(TFE)水溶液和十二烷基磷酸胆碱(DPC)胶束中的结构,并将 EX-4 类似物的结果与 EX-4 的结果进行比较。在这些介质中,两种 EX-4 肽都采用α-螺旋结构,N 端无序,C 端部分折叠为疏水区团。然而,类似物在 N 端部分具有更长的螺旋延伸。增加的螺旋匝数可能有利于与胰高血糖素样肽-1 受体的细胞外结构域结合,并使受体跨膜结构域中关键的 N 端残基准确定位。类似物比天然 EX-4 更容易聚集,这归因于类似物中比天然类型更多的卷曲螺旋相互作用。我们还研究了 EX-4 和其类似物与 DPC 胶束的缔合,并观察到两种肽都与胶束结合,其 N 端和 C 端以及中央部分嵌入胶束中,而 Asp9 附近的残基和 Trp25-Ser32 周围的残基更多地暴露在水中。基于这些结果的分析,提出了一种单步配体-受体结合模型。

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