Load-based divergence in the dynamic allostery of two TCRs recognizing the same pMHC.

Ana C Chang-Gonzalez, Aoi Akitsu, Robert J Mallis, Matthew J Lang, Ellis L Reinherz, Wonmuk Hwang
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Abstract

Increasing evidence suggests that mechanical load on the αβ T cell receptor (TCR) is crucial for recognizing the antigenic peptide-loaded major histocompatibility complex (pMHC) molecule. Our recent all-atom molecular dynamics (MD) simulations revealed that the inter-domain motion of the TCR is responsible for the load-induced catch bond behavior of the TCR-pMHC complex and peptide discrimination. To further examine the generality of the mechanism, we perform all-atom MD simulations of the B7 TCR under different conditions for comparison with our previous simulations of the A6 TCR. The two TCRs recognize the same pMHC and have similar interfaces with pMHC in crystal structures. We find that the B7 TCR-pMHC interface stabilizes under ~15-pN load using a conserved dynamic allostery mechanism that involves the asymmetric motion of the TCR chassis. However, despite forming comparable contacts with pMHC as A6 in the crystal structure, B7 has fewer high-occupancy contacts with pMHC and exhibits higher mechanical compliance during the simulation. These results indicate that the dynamic allostery common to the TCRαβ chassis can amplify slight differences in interfacial contacts into distinctive mechanical responses and nuanced biological outcomes.

两种识别相同 pMHC 的 TCR 在动态异构过程中基于负荷的差异。
越来越多的证据表明,αβ T 细胞受体(TCR)上的机械负荷对于识别抗原肽负载的主要组织相容性复合体(pMHC)分子至关重要。我们最近进行的全原子分子动力学(MD)模拟发现,TCR的域间运动是TCR-pMHC复合物负载诱导的捕捉键行为和肽识别的原因。为了进一步检验该机制的普遍性,我们在不同条件下对 B7 TCR 进行了全原子 MD 模拟,并与之前对 A6 TCR 的模拟进行了比较。这两种 TCR 识别相同的 pMHC,并且在晶体结构中与 pMHC 有相似的界面。我们发现,B7 TCR-pMHC 界面在 15-pN 负荷下保持稳定,使用的是一种保守的动态异位机制,其中涉及 TCR 底盘的不对称运动。然而,尽管在晶体结构中 B7 与 pMHC 形成了与 A6 类似的接触,但在模拟过程中,B7 与 pMHC 的高占位接触较少。这些结果表明,TCR αβ 底盘常见的动态异位可将界面接触的细微差别放大为独特的机械反应和潜在的细微生物学结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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