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Single-Molecule Super-Resolution Microscopy Reveals Heteromeric Complexes of MET and EGFR upon Ligand Activation

机译:单分子超高分辨率显微镜显示配体激活后MET和EGFR的异聚复合物

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摘要

Receptor tyrosine kinases (RTKs) orchestrate cell motility and differentiation. Deregulated RTKs may promote cancer and are prime targets for specific inhibitors. Increasing evidence indicates that resistance to inhibitor treatment involves receptor cross-interactions circumventing inhibition of one RTK by activating alternative signaling pathways. Here, we used single-molecule super-resolution microscopy to simultaneously visualize single MET and epidermal growth factor receptor (EGFR) clusters in two cancer cell lines, HeLa and BT-20, in fixed and living cells. We found heteromeric receptor clusters of EGFR and MET in both cell types, promoted by ligand activation. Single-protein tracking experiments in living cells revealed that both MET and EGFR respond to their cognate as well as non-cognate ligands by slower diffusion. In summary, for the first time, we present static as well as dynamic evidence of the presence of heteromeric clusters of MET and EGFR on the cell membrane that correlates with the relative surface expression levels of the two receptors.
机译:受体酪氨酸激酶(RTK)协调细胞运动和分化。失控的RTK可能促进癌症,是特定抑制剂的主要靶标。越来越多的证据表明,对抑制剂治疗的抗性涉及受体交叉相互作用,通过激活其他信号传导途径来规避对一种RTK的抑制。在这里,我们使用单分子超分辨率显微镜同时观察了固定细胞和活细胞中两种癌细胞系HeLa和BT-20中的单个MET和表皮生长因子受体(EGFR)簇。我们发现,在两种细胞类型中,EGFR和MET的异聚受体簇均由配体激活促进。在活细胞中的单蛋白跟踪实验表明,MET和EGFR均通过较慢的扩散对它们的同源和非同源配体作出反应。总而言之,我们首次展示了静态和动态的证据,证明细胞膜上存在MET和EGFR异聚簇,该簇与两种受体的相对表面表达水平相关。

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