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SPR and NMR characterization of the molecular interaction between A9 peptide and a model system of HER2 receptor: A fragment approach for selecting peptide structures specific for their target

机译:SPR和NMR表征A9肽与HER2受体模型系统之间的分子相互作用:一种用于选择靶标的肽结构的片段方法

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摘要

The binding process of A9 peptide toward HER2-DIVMP, a synthetic model of the receptor domain IV, was studied by using the surface plasmon resonance (SPR) technique, with the aim of validating it as a fast and reliable screening method for selecting peptide ligands specifically targeting a domain of their target. To investigate the structural basis of A9 binding to the model of HER2-DIVMP, multiple ligand-based nuclear magnetic resonance (NMR) methods were applied. The use of saturation transfer difference (STD) and WaterLOGSY NMR experiments identified key residues in the peptide for the receptor binding. Moreover, the bound conformation of the A9 peptide was obtained using transferred nuclear Overhauser effect spectroscopy (trNOESY) experiments. The NMR data revealed an extended binding surface that confirms an in silico model previously reported. These structural findings could provide good starting points for future lead structures optimization specific for the receptor target.
机译:通过使用表面等离子体共振(SPR)技术研究A9肽对HER2-DIVMP的结合方法,是受体结构域IV的合成模型,目的是将其验证为选择肽配体的快速可靠的筛选方法 专门针对其目标的领域。 为了研究与HER2-DIVMP模型的A9结合的结构基础,施加多个基于配体的核磁共振(NMR)方法。 使用饱和转移差(STD)和WaterLogsy NMR实验鉴定了受体结合的肽中的关键残留物。 此外,使用转移的核掺杂器效应光谱(TRNOOSY)实验获得A9肽的结合构象。 NMR数据显示了在先前报道的硅模型中证实的延长的粘合表面。 这些结构调查结果可以为未来对受体靶标的优化提供良好的起点。

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