与自身肽形成的复合物相比,3A6-TCR/超级激动剂/HLA-DR2a 复合物显示出相似的界面和降低的灵活性。
The 3A6-TCR/superagonist/HLA-DR2a complex shows similar interface and reduced flexibility compared to the complex with self-peptide.
机构信息
Department of Biochemistry, University of Zürich, Zürich, Switzerland.
Department of Neurology, University Hospital Zürich, Zürich, Switzerland.
出版信息
Proteins. 2020 Jan;88(1):31-46. doi: 10.1002/prot.25764. Epub 2019 Jun 25.
T-cell receptor (TCR) recognition of the myelin basic protein (MBP) peptide presented by major histocompatibility complex (MHC) protein HLA-DR2a, one of the MHC class II alleles associated with multiple sclerosis, is highly variable. Interactions in the trimolecular complex between the TCR of the MBP83-99-specific T cell clone 3A6 with the MBP-peptide/HLA-DR2a (abbreviated TCR/pMHC) lead to substantially different proliferative responses when comparing the wild-type decapeptide MBP90-99 and a superagonist peptide, which differs mainly in the residues that point toward the TCR. Here, we investigate the influence of the peptide sequence on the interface and intrinsic plasticity of the TCR/pMHC trimolecular and pMHC bimolecular complexes by molecular dynamics simulations. The intermolecular contacts at the TCR/pMHC interface are similar for the complexes with the superagonist and the MBP self-peptide. The orientation angle between TCR and pMHC fluctuates less in the complex with the superagonist peptide. Thus, the higher structural stability of the TCR/pMHC tripartite complex with the superagonist peptide, rather than a major difference in binding mode with respect to the self-peptide, seems to be responsible for the stronger proliferative response.
T 细胞受体 (TCR) 识别髓鞘碱性蛋白 (MBP) 肽与主要组织相容性复合体 (MHC) 蛋白 HLA-DR2a 的相互作用,HLA-DR2a 是与多发性硬化症相关的 MHC Ⅱ类等位基因之一,其识别具有高度变异性。MBP83-99 特异性 T 细胞克隆 3A6 的 TCR 与 MBP 肽/HLA-DR2a(简称 TCR/pMHC)之间的三聚体复合物中的相互作用,当比较野生型十肽 MBP90-99 和主要在指向 TCR 的残基上不同的超激动肽时,会导致显著不同的增殖反应。在这里,我们通过分子动力学模拟研究了肽序列对 TCR/pMHC 三聚体和 pMHC 二聚体复合物界面和固有可塑性的影响。在与超激动肽和 MBP 自身肽的复合物中,TCR/pMHC 界面的分子间接触相似。在与超激动肽的复合物中,TCR 和 pMHC 之间的取向角度波动较小。因此,与自身肽相比,超激动肽与 TCR/pMHC 三聚体复合物具有更高的结构稳定性,而不是结合模式的主要差异,似乎是导致更强增殖反应的原因。