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Investigation of protein-protein interactions and hot spot region between PD-1 and PD-L1 by fragment molecular orbital method

机译:碎片分子轨道法测定PD-1和PD-L1之间的蛋白质 - 蛋白质相互作用和热点区域

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Inhibitors to interfere protein-protein interactions (PPI) between programmed cell death 1 (PD-1) and programmed death ligand-1 (PD-L1) block evasion of cancers from immune surveillance. Analyzing hot spot residues in PPI is important for small-molecule drug development. In order to find out hot spots on PPI interface in PD-1/PD-L1 complex, we analyzed PPI in PD-1/PD-L1 with a new analysis method, 3-dimensional scattered pair interactions energies (3D-SPIEs), which assorts significant interactions with fragment molecular orbital (FMO) method. By additionally analyzing PPI in PD-1/antibody and PD-L1/antibody complexes, and small-ligand interactions in PD-L1/peptide and PD-L1/small-molecule complexes, we narrowed down the hot spot region with 3D-SPIEs-based interaction map, which integrates PPI and small-ligand interactions. Based on the map, there are two hot spot regions in PPI of PD-1/PD-L1 and the first hot spot region is important for inhibitors. In particular, subL/subY56, subL/subE58, and subL/subN66 in the first hot spot of PD-L1 are important for PD-L1-antibodies and small-inhibitors in common, while subL/subM115 is important for small-inhibitors. Therefore, the 3D-SPIEs-based map would provide valuable information for designing new small-molecule inhibitors to inhibit PPI of PD-1/PD-L1 and the FMO/3D-SPIEs method provides an effectual tool to understand PPI and integrate PPI and small-ligand interactions at a quantum mechanical level.
机译:抑制剂在编程的细胞死亡1(PD-1)和编程死亡配体-1(PD-L1)之间的蛋白质 - 蛋白质相互作用(PPI)与免疫监测中的癌症的抑制。分析PPI中的热点残留对于小分子药物发育是重要的。为了在PD-1 / PD-L1复合物中找到PPI接口上的热点,我们用新的分析方法分析了PD-1 / PD-L1中的PPI,三维散射对交互能量(3D间谍),其中分配与片段分子轨道(FMO)方法的显着相互作用。通过另外分析PD-1 /抗体和PD-L1 /抗体复合物中的PPI,以及PD-L1 /肽和PD-L1 /小分子复合物中的小型配体相互作用,我们用3D间谍缩小了热点区域基于相互作用的相互作用图,它集成了PPI和小型配体相互作用。基于地图,PD-1 / PD-L1的PPI存在两个热点区域,第一个热点区域对于抑制剂很重要。特别地,PD-L1的第一个热点中的<亚> L y56, l e58和 l n66对Pd-l1抗体很重要和常见的小抑制剂,而 l m115对小抑制剂很重要。因此,基于3D间谍的地图将提供用于设计新的小分子抑制剂的有价值的信息,以抑制PD-1 / PD-L1的PPI,并且FMO / 3D-间谍方法提供了理解PPI和集成PPI的有效工具和量子机械水平的小型配体相互作用。

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