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首页> 外文期刊>American Journal of Physiology >Src and focal adhesion kinase mediate mechanical strain-induced proliferation and ERK1/2 phosphorylation in human H441 pulmonary epithelial cells.
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Src and focal adhesion kinase mediate mechanical strain-induced proliferation and ERK1/2 phosphorylation in human H441 pulmonary epithelial cells.

机译:Src和粘着斑激酶介导机械应变诱导的人H441肺上皮细胞增殖和ERK1 / 2磷酸化。

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Pulmonary epithelial cells are exposed to repetitive deformation during physiological breathing and mechanical ventilation. Such deformation may influence pulmonary growth, development, and barotrauma. Although deformation stimulates proliferation and activates extracellular signal-regulated kinases (ERK1/2) in human pulmonary epithelial H441 cells, the upstream mechanosensors that induce ERK activation are poorly understood. We investigated whether c-Src or focal adhesion kinase (FAK) mediates cyclic mechanical strain-induced ERK1/2 activation and proliferation in human pulmonary epithelial (NCI-H441) cells. The H441 and A549 cells were grown on collagen I-precoated membranes and were subjected to an average 10% cyclic mechanical strain at 20 cycles/min. Cyclic strain activated Src within 2 min by increasing phosphorylation at Tyr(418), followed by rapid phosphorylation of FAK at Tyr(397) and Tyr(576) and ERK1/2 at Thr(202)/Tyr(204) (n = 5, P < 0.05). Twenty-four (A549 cells) and 24-72 h (H441 cells) of cyclic mechanical strain increased cell numbers compared with static culture. Twenty-four hours of cyclic strain also increased H441 FAK, Src, and ERK phosphorylation without affecting total FAK, Src, or ERK protein. The mitogenic effect was blocked by Src (10 micromol/l PP2 or short interfering RNA targeted to Src) or MEK (50 micromol/l PD-98059) inhibition. PP2 also blocked strain-induced phosphorylation of FAK-Tyr(576) and ERK-Thr(202)/Tyr(204) but not FAK-Tyr(397). Reducing FAK by FAK-targeted short interfering RNA blocked mechanical strain-induced mitogenicity and significantly attenuated strain-induced ERK activation but not strain-induced Src phosphorylation. Together, these results suggest that repetitive mechanical deformation induced by ventilation supports pulmonary epithelial proliferation by a pathway involving Src, FAK, and then ERK signaling.
机译:在生理呼吸和机械通气期间,肺上皮细胞会反复变形。这种变形可能会影响肺部的生长,发育和气压伤。尽管变形刺激人肺上皮H441细胞中的增殖并激活细胞外信号调节激酶(ERK1 / 2),但引起ERK激活的上游机械传感器知之甚少。我们调查了c-Src或粘着斑激酶(FAK)是否在人类肺上皮(NCI-H441)细胞中介导循环机械应变诱导的ERK1 / 2激活和增殖。 H441和A549细胞在胶原I包被的膜上生长,并以20个循环/分钟的速度经受平均10%的循环机械应变。通过增加Tyr(418)的磷酸化,然后在Tyr(397)和Tyr(576)上的FAK和Thr(202)/ Tyr(204)上的ERK1 / 2迅速磷酸化,环状菌株在2分钟内激活了Src(n = 5 ,P <0.05)。与静态培养相比,二十四小时(A549细胞)和24-72小时(H441细胞)的循环机械应变增加了细胞数量。 24小时的循环应变还增加了H441 FAK,Src和ERK的磷酸化,而不会影响FAK,Src或ERK的总蛋白。有丝分裂作用被Src(10 micromol / l PP2或靶向Src的短干扰RNA)或MEK(50 micromol / l PD-98059)抑制所阻断。 PP2还阻止了应变诱导的FAK-Tyr(576)和ERK-Thr(202)/ Tyr(204)的磷酸化,但不阻断FAK-Tyr(397)。通过靶向FAK的短干扰RNA降低FAK可以阻断机械菌株诱导的有丝分裂性,并显着减弱菌株诱导的ERK活化,但不能减弱菌株诱导的Src磷酸化。总之,这些结果表明通气引起的重复性机械变形通过涉及Src,FAK和ERK信号传导的途径支持肺上皮增殖。

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