Yousefi O Sascha, Hörner Maximilian, Wess Maximilian, Idstein Vincent, Weber Wilfried, Schamel Wolfgang W A
Signalling Research Centres BIOSS and CIBSS, University of Freiburg, University of Freiburg, 79104 Freiburg, Germany.
Faculty of Biology, University of Freiburg, 79104 Freiburg, Germany.
Bio Protoc. 2020 Mar 5;10(5):e3540. doi: 10.21769/BioProtoc.3540.
T cells are one major cell type of the immune system that use their T cell antigen receptor (TCR) to bind and respond to foreign molecules derived from pathogens. The ligand-TCR interaction half-lives determine stimulation outcome. Until recently, scientists relied on mutating either the TCR or its ligands to investigate how varying TCR-ligand interaction durations impacted on T cell activation. Our newly created opto-ligand-TCR system allowed us to precisely and reversibly control ligand binding to the TCR by light illumination. This system uses phytochrome B (PhyB) tetramers as a light-regulated TCR ligand. PhyB can be photoconverted between a binding (ON) and non-binding (OFF) conformation by 660 nm and 740 nm light illumination, respectively. PhyB ON is able to bind to a synthetic TCR, generated by fusing the PhyB interacting factor (PIF) to the TCRβ chain. Switching PhyB to the OFF conformation disrupts this interaction. Sufficiently long binding of PhyB tetramers to the PIF-TCR led to T cell activation as measured by calcium influx. Here, we describe protocols for how to generate the tetrameric ligand for our opto-ligand-TCR system, how to measure ligand-TCR binding by flow cytometry and how to quantify T cell activation via calcium influx.
T细胞是免疫系统的一种主要细胞类型,它们利用T细胞抗原受体(TCR)结合并响应病原体衍生的外来分子。配体与TCR相互作用的半衰期决定刺激结果。直到最近,科学家们依靠对TCR或其配体进行突变,来研究不同的TCR-配体相互作用持续时间如何影响T细胞激活。我们新创建的光控配体-TCR系统使我们能够通过光照精确且可逆地控制配体与TCR的结合。该系统使用光敏色素B(PhyB)四聚体作为光调节的TCR配体。PhyB可以分别通过660 nm和740 nm光照在结合(开启)和非结合(关闭)构象之间进行光转换。PhyB开启状态能够与通过将PhyB相互作用因子(PIF)融合到TCRβ链而产生的合成TCR结合。将PhyB转换为关闭构象会破坏这种相互作用。通过钙内流测量,PhyB四聚体与PIF-TCR的足够长时间结合会导致T细胞激活。在这里,我们描述了如何为我们的光控配体-TCR系统生成四聚体配体、如何通过流式细胞术测量配体与TCR的结合以及如何通过钙内流量化T细胞激活的实验方案。