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人胰岛素样生长因子-I二硫键异构体的三维溶液结构

Three-dimensional solution structure of a disulfide bond isomer of the human insulin-like growth factor-I.

作者信息

Sato A, Koyama S, Yamada H, Suzuki S, Tamura K, Kobayashi M, Niwa M, Yasuda T, Kyogoku Y, Kobayashi Y

机构信息

Research Laboratories, Fujisawa Pharmaceutical Co., Ltd, Osaka, Japan.

出版信息

J Pept Res. 2000 Oct;56(4):218-30. doi: 10.1034/j.1399-3011.2000.00769.x.

Abstract

The solution structure of a disulfide bond isomer of human insulin-like growth factor-I (IGF-I) was determined using homonuclear NMR methods. A total of 292 interatomic distance constraints, including 12 related to the disulfide bridges, was used in the distance geometry calculations. The determined structures contain two helical rods corresponding to the sequence regions, Ala8-Cys18 and Leu54-Cys61. Comparison with the previously determined structure of native human IGF-I revealed partial correspondence of the secondary structure (helices I: Ala8-Cys18 and helices III: Leu54-Cys61) and internal packing. Helix II in native human IGF-I (residues Gly42-Cys48) is disrupted in the isomer. A similar relationship has been described between the structure of native insulin and a homologous disulfide isomer, suggesting that these alternative folds represent general features of insulin-like sequences. In each case the precision of the distance geometry ensemble is low due in part to resonance broadening and a paucity of NOEs relative to other globular proteins of this size. These observations suggest that tertiary structure of the isomer is not highly ordered. Comparison of the biological activities of native and the disulfide bond isomer of human IGF-I highlight the importance of Tyr24, Phe25, Phe49-Cys52 and Phe16 in binding to the IGF-I receptor or specific IGFBPs. The relationship of this proposed receptor-binding surface of human IGF-I to those of insulin is discussed.

摘要

利用同核核磁共振方法确定了人胰岛素样生长因子-I(IGF-I)二硫键异构体的溶液结构。在距离几何计算中总共使用了292个原子间距离约束条件,其中包括12个与二硫键相关的约束条件。所确定的结构包含对应于序列区域Ala8 - Cys18和Leu54 - Cys61的两个螺旋杆。与先前确定的天然人IGF-I结构相比,发现二级结构(螺旋I:Ala8 - Cys18和螺旋III:Leu54 - Cys61)和内部堆积存在部分对应关系。天然人IGF-I中的螺旋II(残基Gly42 - Cys48)在异构体中被破坏。在天然胰岛素和同源二硫键异构体的结构之间也描述了类似的关系,这表明这些替代折叠代表了胰岛素样序列的一般特征。在每种情况下,距离几何集合的精度都较低,部分原因是共振展宽以及相对于这种大小的其他球状蛋白质,NOE数量较少。这些观察结果表明该异构体的三级结构不是高度有序的。天然人IGF-I与二硫键异构体的生物活性比较突出了Tyr24(酪氨酸24)、Phe25(苯丙氨酸25)、Phe49 - Cys52(苯丙氨酸49 - 半胱氨酸52)和Phe16(苯丙氨酸16)在与IGF-I受体或特定IGFBP结合中的重要性。讨论了人IGF-I这种提议的受体结合表面与胰岛素的受体结合表面之间的关系。

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