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Large Scale Characterization of the LC13 TCR and HLA-B8 Structural Landscape in Reaction to 172 Altered Peptide Ligands: A Molecular Dynamics Simulation Study

机译:LC13 TCR和HLA-B8结构景观与172个肽键配体反应的大规模表征:分子动力学模拟研究

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The interplay between T cell receptors (TCRs) and peptides bound by major histocompatibility complexes (MHCs) is one of the most important interactions in the adaptive immune system. Several previous studies have computationally investigated their structural dynamics. On the basis of these simulations several structural and dynamical properties have been proposed as effectors of the immunogenicity. Here we present the results of a large scale Molecular Dynamics simulation study consisting of 100 ns simulations of 172 different complexes. These complexes consisted of all possible point mutations of the Epstein Barr Virus peptide FLRGRAYGL bound by HLA-B*08:01 and presented to the LC13 TCR. We compare the results of these 172 structural simulations with experimental immunogenicity data. We found that simulations with more immunogenic peptides and those with less immunogenic peptides are in fact highly similar and on average only minor differences in the hydrogen binding footprints, interface distances, and the relative orientation between the TCR chains are present. Thus our large scale data analysis shows that many previously suggested dynamical and structural properties of the TCR/peptide/MHC interface are unlikely to be conserved causal factors for peptide immunogenicity.
机译:T细胞受体(TCR)与主要组织相容性复合物(MHCs)结合的肽之间的相互作用是适应性免疫系统中最重要的相互作用之一。先前的一些研究已经通过计算研究了其结构动力学。在这些模拟的基础上,已经提出了几种结构和动力学性质作为免疫原性的效应子。在这里,我们介绍了大规模分子动力学模拟研究的结果,该研究由172种不同配合物的100 ns模拟组成。这些复合物由HLA-B * 08:01结合并呈递给LC13 TCR的爱泼斯坦巴尔病毒肽FLRGRAYGL的所有可能的点突变组成。我们将这172个结构模拟的结果与实验免疫原性数据进行比较。我们发现,具有较高免疫原性肽的模拟和具有较低免疫原性肽的模拟实际上高度相似,并且平均而言,在氢结合足迹,界面距离和TCR链之间的相对方向上只有很小的差异。因此,我们的大规模数据分析表明,TCR /肽/ MHC界面的许多先前提出的动力学和结构性质不太可能是肽免疫原性的保守因素。

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