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基于金刚烷或脯氨酸骨架构建的多末端胰岛素类似物。

Multipodal insulin mimetics built on adamantane or proline scaffolds.

机构信息

The Institute of Organic Chemistry and Biochemistry, Czech Academy of Sciences, Flemingovo n. 2, 16610 Praha 6, Czech Republic.

The Institute of Organic Chemistry and Biochemistry, Czech Academy of Sciences, Flemingovo n. 2, 16610 Praha 6, Czech Republic; Regional Centre of Advanced Technologies and Materials, Department of Physical Chemistry, Palacký University, 77146 Olomouc, Czech Republic.

出版信息

Bioorg Chem. 2021 Feb;107:104548. doi: 10.1016/j.bioorg.2020.104548. Epub 2020 Dec 10.

Abstract

Multi-orthogonal molecular scaffolds can be applied as core structures of bioactive compounds. Here, we prepared four tri-orthogonal scaffolds based on adamantane or proline skeletons. The scaffolds were used for the solid-phase synthesis of model insulin mimetics bearing two different peptides on the scaffolds. We found that adamantane-derived compounds bind to the insulin receptor more effectively (K value of 0.5 μM) than proline-derived compounds (K values of 15-38 μM) bearing the same peptides. Molecular dynamics simulations suggest that spacers between peptides and central scaffolds can provide greater flexibility that can contribute to increased binding affinity. Molecular modeling showed possible binding modes of mimetics to the insulin receptor. Our data show that the structure of the central scaffold and flexibility of attached peptides in this type of compound are important and that different scaffolds should be considered when designing peptide hormone mimetics.

摘要

多正交分子支架可用作生物活性化合物的核心结构。在这里,我们基于金刚烷或脯氨酸骨架制备了四个三正交支架。支架用于在支架上固相合成具有两种不同肽的模型胰岛素类似物。我们发现,具有相同肽的金刚烷衍生化合物比脯氨酸衍生化合物(结合常数 K 值为 15-38 μM)更有效地与胰岛素受体结合(结合常数 K 值为 0.5 μM)。分子动力学模拟表明,肽和中心支架之间的间隔物可以提供更大的灵活性,从而有助于提高结合亲和力。分子建模显示了类似物与胰岛素受体的可能结合模式。我们的数据表明,此类化合物中中心支架的结构和连接肽的灵活性很重要,在设计肽激素类似物时应考虑使用不同的支架。

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