HIT Center for Life Sciences, School of Life Science and Technology, Harbin Institute of Technology, Harbin, China.
State Key Laboratory of Membrane Biology, Peking-Tsinghua Center for Life Sciences, School of Life Sciences, Peking University, Beijing, China.
Nature. 2019 Sep;573(7775):546-552. doi: 10.1038/s41586-019-1537-0. Epub 2019 Aug 28.
The αβ T cell receptor (TCR), in association with the CD3γε-CD3δε-CD3ζζ signalling hexamer, is the primary determinant of T cell development and activation, and of immune responses to foreign antigens. The mechanism of assembly of the TCR-CD3 complex remains unknown. Here we report a cryo-electron microscopy structure of human TCRαβ in complex with the CD3 hexamer at 3.7 Å resolution. The structure contains the complete extracellular domains and all the transmembrane helices of TCR-CD3. The octameric TCR-CD3 complex is assembled with 1:1:1:1 stoichiometry of TCRαβ:CD3γε:CD3δε:CD3ζζ. Assembly of the extracellular domains of TCR-CD3 is mediated by the constant domains and connecting peptides of TCRαβ that pack against CD3γε-CD3δε, forming a trimer-like structure proximal to the plasma membrane. The transmembrane segment of the CD3 complex adopts a barrel-like structure formed by interaction of the two transmembrane helices of CD3ζζ with those of CD3γε and CD3δε. Insertion of the transmembrane helices of TCRαβ into the barrel-like structure via both hydrophobic and ionic interactions results in transmembrane assembly of the TCR-CD3 complex. Together, our data reveal the structural basis for TCR-CD3 complex assembly, providing clues to TCR triggering and a foundation for rational design of immunotherapies that target the complex.
αβ T 细胞受体 (TCR) 与 CD3γε-CD3δε-CD3ζζ 信号六聚体相关联,是 T 细胞发育和激活以及对外来抗原免疫反应的主要决定因素。TCR-CD3 复合物的组装机制尚不清楚。在这里,我们报道了人类 TCRαβ 与 CD3 六聚体在 3.7Å 分辨率下的冷冻电镜结构。该结构包含 TCR-CD3 的完整细胞外结构域和所有跨膜螺旋。八聚体 TCR-CD3 复合物以 TCRαβ:CD3γε:CD3δε:CD3ζζ 的 1:1:1:1 化学计量比组装。TCR-CD3 的细胞外结构域的组装由 TCRαβ 的恒定结构域和连接肽介导,这些结构域和连接肽与 CD3γε-CD3δε 结合,在靠近质膜的位置形成三聚体样结构。CD3 复合物的跨膜段采用桶状结构,由 CD3ζζ 的两个跨膜螺旋与 CD3γε 和 CD3δε 的跨膜螺旋相互作用形成。TCRαβ 的跨膜螺旋通过疏水相互作用和离子相互作用插入桶状结构中,导致 TCR-CD3 复合物的跨膜组装。总之,我们的数据揭示了 TCR-CD3 复合物组装的结构基础,为 TCR 触发提供了线索,并为靶向该复合物的免疫疗法的合理设计提供了基础。