Wilhelm Kiera B, Morita Shumpei, McAffee Darren B, Kim Sungi, O'Dair Mark K, Groves Jay T
Department of Chemistry, University of California, Berkeley, California.
Department of Chemistry, University of California, Berkeley, California.
Biophys J. 2021 Sep 21;120(18):3869-3880. doi: 10.1016/j.bpj.2021.08.027. Epub 2021 Aug 26.
Under physiological conditions, peptide-major histocompatibility complex (pMHC) molecules can trigger T cell receptors (TCRs) as monovalent ligands that are sparsely distributed on the plasma membrane of an antigen-presenting cell. TCRs can also be triggered by artificial clustering, such as with pMHC tetramers or antibodies; however, these strategies circumvent many of the natural ligand discrimination mechanisms of the T cell and can elicit nonphysiological signaling activity. We have recently introduced a synthetic TCR agonist composed of an anti-TCRβ Fab' antibody fragment covalently bound to a DNA oligonucleotide, which serves as a membrane anchor. This Fab'-DNA ligand efficiently triggers TCR as a monomer when membrane associated and exhibits a potency and activation profile resembling agonist pMHC. In this report, we explore the geometric requirements for efficient TCR triggering and cellular activation by Fab'-DNA ligands. We find that T cells are insensitive to the ligand binding epitope on the TCR complex but that length of the DNA tether is important. Increasing, the intermembrane distance spanned by Fab'-DNA:TCR complexes decreases TCR triggering efficiency and T cell activation potency, consistent with the kinetic-segregation model of TCR triggering. These results establish design parameters for constructing synthetic TCR agonists that are able to activate polyclonal T cell populations, such as T cells from a human patient, in a similar manner as the native pMHC ligand.
在生理条件下,肽 - 主要组织相容性复合体(pMHC)分子可作为单价配体触发T细胞受体(TCR),这些单价配体稀疏地分布在抗原呈递细胞的质膜上。TCR也可通过人工聚集触发,如使用pMHC四聚体或抗体;然而,这些策略规避了T细胞许多天然的配体识别机制,并且可引发非生理性信号传导活性。我们最近引入了一种合成TCR激动剂,其由共价结合到DNA寡核苷酸的抗TCRβ Fab'抗体片段组成,该DNA寡核苷酸用作膜锚定物。当与膜结合时,这种Fab'-DNA配体作为单体有效触发TCR,并表现出类似于激动剂pMHC的效力和激活谱。在本报告中,我们探讨了Fab'-DNA配体有效触发TCR和细胞激活的几何要求。我们发现T细胞对TCR复合体上的配体结合表位不敏感,但DNA连接链的长度很重要。Fab'-DNA:TCR复合体跨越的膜间距离增加会降低TCR触发效率和T细胞激活效力,这与TCR触发的动力学分离模型一致。这些结果为构建能够以与天然pMHC配体类似的方式激活多克隆T细胞群体(如来自人类患者的T细胞)的合成TCR激动剂建立了设计参数。