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首页> 外文期刊>Journal of Medicinal Chemistry >Determination of Ligand Binding Epitope Structures Using Polarization Transfer from Hyperpolarized Ligands
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Determination of Ligand Binding Epitope Structures Using Polarization Transfer from Hyperpolarized Ligands

机译:利用超极化配体的偏振转移测定配体结合表位结构的测定

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Drug discovery processes require the determination of the protein binding site structure, which can be achieved via nuclear magnetic resonance (NMR) spectroscopy. While traditional NMR spectroscopy suffers from low sensitivity, NMR signals can be significantly enhanced through hyperpolarization of nuclear spins. Here, folic acid is hyperpolarized by dissolution dynamic nuclear polarization (D-DNP). Polarization transfer to dihydrofolate reductase is compared to signal evolution predicted for docking-derived structures. The results demonstrate that a scoring function derived from the experimental data improves the ranking of structures. With data from six methyl groups, Spearman's correlation coefficient of the experimental scoring function to the root-mean-square deviation from a reference structure is 0.88 for five individually addressed ligand protons and 0.59 for the entire ligand, while the same correlation coefficient of the energy calculated from docking alone is 0.49. D-DNP NMR-derived ranking, therefore, is capable of determining the ligand structure with a small number of individually addressed source spins.
机译:药物发现过程需要测定蛋白质结合位点结构,其可以通过核磁共振(NMR)光谱来实现。虽然传统的NMR光谱患有低灵敏度,但通过核旋转的超极化可以显着提高NMR信号。这里,叶酸通过溶解动态核极化(D-DNP)是高氧体化的。将偏振转移到二氢脱液还原酶与预测用于对接导出的结构的信号演化。结果表明,来自实验数据的评分函数提高了结构的排名。对于来自六个甲基的数据,Spearman与参考结构的根部平均方形偏差的实验评分函数的相关系数为50.88,用于5个单独寻址的配体质子和整个配体的0.59,而能量的相关系数相同单独从对接计算为0.49。因此,D-DNP NMR衍生的排名能够确定具有少量单独寻址的源旋转的配体结构。

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