Crooks James E, Boughter Christopher T, Scott L Ridgway, Adams Erin J
Graduate Program in Biophysical Sciences, University of Chicago, Chicago, IL, United States.
Department of Computer Science, University of Chicago, Chicago, IL, United States.
Front Mol Biosci. 2018 Nov 13;5:95. doi: 10.3389/fmolb.2018.00095. eCollection 2018.
CD4 and CD8 αβ T cell antigen recognition is determined by the interaction between the TCR Complementarity Determining Region (CDR) loops and the peptide-presenting MHC complex. These T cells are known for their ability to recognize multiple pMHC complexes, and for a necessary promiscuity that is required for their selection and function in the periphery. Crystallographic studies have previously elucidated the role of structural interactions in TCR engagement, but our understanding of the dynamic process that occurs during TCR binding is limited. To better understand the dynamic states that exist for TCR CDR loops in solution, and how this relates to their states when in complex with pMHC, we simulated the 2C T cell receptor in solution using all-atom molecular dynamics in explicit water and constructed a Markov State Model for each of the CDR3α and CDR3β loops. These models reveal multiple metastable states for the CDR3 loops in solution. Simulation data and metastable states reproduce known CDR3β crystal conformations, and reveal several novel conformations suggesting that CDR3β bound states are the result of search processes from nearby pre-existing equilibrium conformational states. Similar simulations of the invariant, Type I Natural Killer T cell receptor NKT15, which engages the monomorphic, MHC-like CD1d ligand, demonstrate that iNKT TCRs also have distinct states, but comparatively restricted degrees of motion.
CD4和CD8 αβ T细胞抗原识别取决于T细胞受体互补决定区(CDR)环与呈递肽的MHC复合物之间的相互作用。这些T细胞以其识别多种pMHC复合物的能力以及在外周选择和功能所需的必要混杂性而闻名。晶体学研究先前已阐明结构相互作用在TCR结合中的作用,但我们对TCR结合过程中发生的动态过程的理解有限。为了更好地了解溶液中TCR CDR环存在的动态状态,以及这与它们与pMHC复合时的状态有何关系,我们在明确的水中使用全原子分子动力学模拟了溶液中的2C T细胞受体,并为每个CDR3α和CDR3β环构建了马尔可夫状态模型。这些模型揭示了溶液中CDR3环的多个亚稳态。模拟数据和亚稳态再现了已知的CDR3β晶体构象,并揭示了几种新的构象,表明CDR3β结合状态是来自附近预先存在的平衡构象状态的搜索过程的结果。对与单态、MHC样CD1d配体结合的不变的I型自然杀伤T细胞受体NKT15进行的类似模拟表明,iNKT TCR也有不同的状态,但运动程度相对受限。