决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:T-cell protrusions enable fast, localised initiation of chimeric antigen receptor signalling.
T-cell protrusions enable fast, localised initiation of chimeric antigen receptor signalling.
我们的数据重新定义了突起,将其视为通过排斥和聚集动力学而非信号机制预富集来增强受体激活的位点。
富含肌动蛋白的突起密集覆盖T细胞表面,其在迁移中的作用已被充分表征。近期研究揭示了它们对抗原监视和免疫信号的贡献。为进一步探索突起如何启动介导T细胞活化的信号通路,我们对靶向HER2乳腺癌细胞的HER2特异性嵌合抗原受体(CAR)T细胞中内源性标记蛋白进行了活细胞成像。定量STED显微镜使我们能够监测蛋白重排,并将其与膜拓扑结构随时间的变化相关联。在活化前,关键信号蛋白(包括Lck、CD45、LAT和CAR)并未在突起中富集。与靶细胞接触后,快速的蛋白重组优先发生在突起内,从而启动信号传导。HER2-CAR聚集,伴随ZAP-70和LAT的招募,在突起中增强。虽然Lck分布保持不变,但磷酸酶CD45的排除在突起-细胞接触处增强,且不依赖于CAR信号结构域。总体而言,信号机器在突起接触处的重排比在主质膜区域更快、更有效。总之,我们的数据重新将突起定义为通过排除和聚集动力学而非信号机器的预先富集来增强受体活化的位点。
Actin-rich protrusions densely cover the surface of T cells and are well characterised for their role in migration. Recent studies have uncovered their contribution to antigen surveillance and immune signalling. To further explore how protrusions initiate signalling pathways mediating T-cell activation, we performed live-cell imaging of endogenously tagged proteins in HER2-specific chimeric antigen receptor (CAR) T cells targeting HER2 breast-cancer cells. Quantitative STED microscopy allowed us to monitor protein rearrangement and to correlate it with membrane topology over time. Before activation, key signalling proteins (including Lck, CD45, LAT, and the CAR) were not enriched in protrusions. Upon contact with target cells, rapid protein reorganisation occurred preferentially within protrusions, initiating signalling. HER2-CAR clustering, accompanied by ZAP-70 and LAT recruitment, was enhanced in protrusions. While Lck distribution remained unchanged, exclusion of the phosphatase CD45 was enhanced at protrusion-cell contacts, independently of the CAR signalling domain. Overall, signalling machinery rearranged faster and more effectively at protrusive contacts than at main plasma membrane regions. Together, our data re-frame protrusions as sites of enhanced receptor activation by exclusion and clustering dynamics rather than by pre-enrichment of the signalling machinery.
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