首页> 外文期刊>The Journal of biological chemistry >In situ and in silico kinetic analyses of programmed cell death-1 (PD-1) receptor, programmed cell death ligands, and B7-1 protein interaction network
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In situ and in silico kinetic analyses of programmed cell death-1 (PD-1) receptor, programmed cell death ligands, and B7-1 protein interaction network

机译:程序性细胞死亡-1(PD-1)受体,程序性细胞死亡配体和B7-1蛋白相互作用网络的原位和计算机动力学分析

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Programmed cell death-1 (PD-1) is an inhibitory receptor with an essential role in maintaining peripheral tolerance and is among the most promising immunotherapeutic targets for treating cancer, autoimmunity, and infectious diseases. A complete understanding of the consequences of PD-1 engagement by its ligands, PD-L1 and PD-L2, and of PD-L1 binding to B7-1 requires quantitative analysis of their interactions at the cell surface. We present here the first complete in situ kinetic analysis of the PD-1/PD-ligands/B7-1 system. Consistent with previous solution measurements, we observed higher in situ affinities for human (h) than murine (m) PD-1 interactions, stronger binding of hPD-1 to hPD-L2 than hPD-L1, and comparable binding of mPD-1 to both ligands. However, in contrast to the relatively weak solution affinities, the in situ affinities of PD-1 are as high as those of the T cell receptor for agonist pMHC and of LFA-1 (lymphocyte function-associated antigen 1) for ICAM-1 (intercellular adhesion molecule 1) but significantly lower than that of the B7-1/CTLA-4 interaction, suggesting a distinct basis for PD-1- versus CTLA-4-mediated inhibition. Notably, the in situ interactions of PD-1 are much stronger than that of B7-1 with PD-L1. Overall, the in situ affinity ranking greatly depends on the on-rate instead of the off-rate. In silico simulations predict that PD-1/PD-L1 interactions dominate at interfaces between activated T cells and mature dendritic cells and that these interactions will be highly sensitive to the dynamics of PD-L1 and PD-L2 expression. Our results provide a kinetic framework for better understanding inhibitory PD-1 activity in health and disease.
机译:程序性细胞死亡1(PD-1)是一种抑制性受体,在维持外周耐受中起着至关重要的作用,并且是治疗癌症,自身免疫性和感染性疾病的最有希望的免疫治疗靶标之一。要完全了解PD-1与其配体PD-L1和PD-L2的结合以及PD-L1与B7-1结合的后果,需要对其在细胞表面的相互作用进行定量分析。我们在这里介绍了PD-1 / PD-配体/ B7-1系统的第一个完整的原位动力学分析。与以前的溶液测量结果一致,我们观察到人(h)的原位亲和力高于鼠(m)PD-1的相互作用,hPD-1与hPD-L2的结合力强于hPD-L1,并且mPD-1与hPD-L1的结合力相当两个配体。然而,与相对较弱的溶液亲和力相反,PD-1的原位亲和力与激动剂pMHC的T细胞受体和针对ICAM-1的LFA-1(淋巴细胞功能相关抗原1)的亲和力一样高(细胞间粘附分子1),但显着低于B7-1 / CTLA-4相互作用,提示PD-1与CTLA-4介导的抑制作用有明显的基础。值得注意的是,PD-1的原位相互作用比B7-1与PD-L1的原位相互作用强得多。总的来说,原位亲和力排名很大程度上取决于开启率,而不是关闭率。计算机模拟预测PD-1 / PD-L1相互作用在活化的T细胞和成熟树突状细胞之间的界面处占主导地位,并且这些相互作用将对PD-L1和PD-L2表达的动力学高度敏感。我们的结果提供了一个动力学框架,可以更好地了解健康和疾病中的抑制性PD-1活性。

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