Randall Centre for Cell & Molecular Biophysics, New Hunt's House, School of Basic & Medical Sciences, Faculty of Life Sciences & Medicine, King's College London, SE1 1UL London, UK.
School of Cancer & Pharmaceutical Sciences, Faculty of Life Sciences & Medicine, King's College London, SE1 1UL London, UK.
Sci Adv. 2023 Sep 29;9(39):eadi1328. doi: 10.1126/sciadv.adi1328. Epub 2023 Sep 27.
EGFR-ERK signaling controls cell cycle progression during development, homeostasis, and disease. While EGF ligand and mechanical inputs can activate EGFR-ERK signaling, the molecules linking mechanical force to this axis have remained mysterious. We previously found that stretch promotes mitosis via the stretch-activated ion channel Piezo1 and ERK signaling. Here, we show that Piezo1 provides the missing link between mechanical signals and EGFR-ERK activation. While both EGF- and Piezo1-dependent activation trigger clathrin-mediated EGFR endocytosis and ERK activation, EGF relies on canonical tyrosine autophosphorylation, whereas Piezo1 involves Src-p38 kinase-dependent serine phosphorylation. In addition, unlike EGF, ex vivo lung slices treated with Piezo1 agonist promoted cell cycle re-entry via nuclear ERK, AP-1 (FOS and JUN), and YAP accumulation, typical of regenerative and malignant signaling. Our results suggest that mechanical activation via Piezo1, Src, and p38 may be more relevant to controlling repair, regeneration, and cancer growth than tyrosine kinase signaling via canonical EGF signaling, suggesting an alternative therapeutic approach.
EGFR-ERK 信号通路在发育、稳态和疾病过程中控制细胞周期进程。虽然 EGF 配体和机械输入可以激活 EGFR-ERK 信号通路,但将机械力与该轴联系起来的分子仍然是个谜。我们之前发现,拉伸通过拉伸激活离子通道 Piezo1 和 ERK 信号促进有丝分裂。在这里,我们表明 Piezo1 提供了机械信号和 EGFR-ERK 激活之间缺失的联系。虽然 EGF 和 Piezo1 依赖性激活都触发网格蛋白介导的 EGFR 内吞作用和 ERK 激活,但 EGF 依赖于经典的酪氨酸自身磷酸化,而 Piezo1 涉及 Src-p38 激酶依赖性丝氨酸磷酸化。此外,与 EGF 不同的是,用 Piezo1 激动剂处理的离体肺切片通过核 ERK、AP-1(FOS 和 JUN)和 YAP 积累促进细胞周期再进入,这是再生和恶性信号的典型特征。我们的研究结果表明,通过 Piezo1、Src 和 p38 的机械激活可能比通过经典 EGF 信号的酪氨酸激酶信号更能控制修复、再生和癌症生长,这表明了一种替代的治疗方法。