TCR-CD3复合物跨膜区自组装的分子机制
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北京化工大学生命科学与技术学院,北京软物质科学与工程高精尖创新中心,北京 100029

作者简介:

何程智 Tel: 13370154991, E-mail: czhe@mail.buct.edu.cn罗施中 Tel: 13683546821, E-mail: luosz@mail.buct.edu.cnHE Cheng-Zhi. Tel: 86-13370154991, E-mail: czhe@mail.buct.edu.cnLUO Shi-Zhong. Tel: 86-13683546821, E-mail: luosz@mail.buct.edu.cn

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基金项目:

国家自然科学基金(22077010,11902023)和天津大学精密测试技术及仪器国家重点实验室开放课题(pilab1902)资助项目。


The Molecular Mechanism of TCR-CD3 Complex Self-assembly
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Affiliation:

Beijing Advanced Innovation Center for Soft Matter Science and Engineering, College of Life Science and Technology, Beijing University of Chemical Technology, Beijing 100029, China

Fund Project:

This work was supported by grants from The National Natural Science Foundation of China (22077010, 11902023) and Open Project Fund of the State Key Laboratory of Precision Measuring Technology and Instruments (Tianjin University) (pilab1902).

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    摘要:

    目的 T细胞受体-共受体复合物(TCR-CD3)在适应性免疫应答中起着重要作用,其亚基间的相互作用一直是研究热点。由于传统实验的局限性,对于跨膜蛋白TCR-CD3复合物的研究不能深入到微观层面。方法 利用分子动力学模拟方法(包括粗粒化模拟、拉伸动力学、全原子模拟)分析TCR-CD3复合物的自组装机制。结果 通过粗粒化模拟(CGMD)发现,TCR-CD3复合物在组装过程中存在着αβ依次结合δε"、γε、ζζ"的组装顺序,并阐述了αR253突变会降低αK258与δε"的相互作用。结论 本文论证了仅存在TCR-CD3复合物的跨膜区不足以介导TCR-CD3复合物亚基间的特异性相互作用。拉伸动力学(SMD)和全原子模拟(AAMD)的结果说明,ζζ"与TCR-CD3其余部分之间的胞外区相互作用强于跨膜区,同时ζζ"的缺失对αβδε"γε的稳定性影响最小,而δε"的缺失对αβγεζζ"的稳定性影响最大。

    Abstract:

    Objective The T cell receptor-co-receptor complex (TCR-CD3) plays an important role in the adaptive immune response, and the interaction between its subunits has always been a research hotspot. Due to the limitations of traditional experiments, the study of transmembrane protein TCR-CD3 complexes cannot go deep into the microscopic level.Methods Therefore, we used molecular dynamics simulation methods to analyze the self-assembly mechanism of TCR-CD3 complexes.Results Through coarse-grained simulation (CGMD), we found that the TCR-CD3 complex has an assembly sequence in which αβ sequentially binds δε", γε, and ζζ" during the assembly process, and explained that the αR253 mutation reduces the interaction between αK258 and δε".Conclusion We demonstrated that only the transmembrane region of the TCR-CD3 complex is not sufficient to mediate the specific interaction between the subunits of the TCR-CD3 complex. The results of steered dynamics (SMD) and all-atom simulation (AAMD) indicate that the extracellular interaction between ζζ" and the rest of TCR-CD3 is stronger than the transmembrane region. The absence of ζζ" makes the stability of αβδε"γε little change, while the absence of δε" greatly reduces the stability of αβγεζζ".

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王凤丽,陈佳林,何程智,罗施中. TCR-CD3复合物跨膜区自组装的分子机制[J].生物化学与生物物理进展,2022,49(6):1094-1102

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历史
  • 收稿日期:2021-05-11
  • 最后修改日期:2021-08-03
  • 接受日期:2021-09-28
  • 在线发布日期: 2022-06-21
  • 出版日期: 2022-06-20