首页> 美国卫生研究院文献>Biochemical Journal >Osmotic swelling-induced activation of the extracellular-signal-regulated protein kinases Erk-1 and Erk-2 in intestine 407 cells involves the Ras/Raf-signalling pathway.
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Osmotic swelling-induced activation of the extracellular-signal-regulated protein kinases Erk-1 and Erk-2 in intestine 407 cells involves the Ras/Raf-signalling pathway.

机译:渗透性溶胀诱导的肠407细胞中细胞外信号调节蛋白激酶Erk-1和Erk-2的激活涉及Ras / Raf信号通路。

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摘要

Human Intestine 407 cells respond to hypo-osmotic stress with a rapid stimulation of compensatory ionic conductances accompanied by a transient increase in the activity of the extracellular-signal-regulated protein kinases Erk-1 and Erk-2. In this study, we examined the upstream regulators of hypotonicity-induced Erk-1/Erk-2 activation and their possible role in cell-volume regulation. The hypotonicity-provoked Erk-1/Erk-2 activation was greatly reduced in cells pretreated with the specific mitogen-activated/Erk-activating kinase inhibitor PD098059 and was preceded by a transient stimulation of Raf-1. Pretreatment of the cells with PMA, GF109203X, wortmannin or Clostridium botulinum C3 exoenzyme did not appreciably affect the hypotonicity-provoked Erk-1/Erk-2 stimulation, suggesting the osmosensitive signalling pathway to be largely independent of protein kinase C and p21(rho). In contrast, expression of dominant negative RasN17 completely abolished the hypotonicity-induced Erk-1/Erk-2 activation. Stimulation of the swelling-induced ion efflux was independent of activation of these mitogen-activated protein kinases, as revealed by hypotonicity-provoked isotope efflux from 125I-- and 86Rb+-loaded cells after pretreatment with PD098059 and after expression of RasN17. In addition, the epidermal-growth-factor-induced potentiation of the hypotonicity-provoked anionic response did not depend on the increase in Erk-1/Erk-2 activity but, instead, was found to depend on Ca2+ influx. Taken together, these results indicate that hypotonic stress induces Erk-1/Erk-2 activation through the Ras/Raf-signalling pathway, and argue against a direct role for this pathway in cell-volume control.
机译:人肠407细胞通过快速刺激代偿性离子电导对低渗应激作出反应,并伴随着细胞外信号调节蛋白激酶Erk-1和Erk-2活性的瞬时增加。在这项研究中,我们检查了低渗诱导的Erk-1 / Erk-2激活的上游调节剂及其在细胞体积调节中的可能作用。在用特异性促细胞分裂剂活化/ Erk活化激酶抑制剂PD098059预处理的细胞中,低渗性引起的Erk-1 / Erk-2活化大大降低,并在瞬时刺激Raf-1之前。用PMA,GF109203X,渥曼青霉素或肉毒梭菌C3胞外酶预处理细胞不会明显影响低渗性诱发的Erk-1 / Erk-2刺激,这表明渗透敏感性信号通路在很大程度上独立于蛋白激酶C和p21(rho) 。相反,显性阴性RasN17的表达完全消除了低渗诱导的Erk-1 / Erk-2激活。溶胀诱导的离子流出的刺激与这些促分裂原活化的蛋白激酶的激活无关,如PD098059预处理后和表达RasN17后低渗性引起的125I-和86Rb +负载细胞的同位素流出所揭示的那样。另外,由低渗性引起的阴离子反应的表皮生长因子诱导的增强作用不依赖于Erk-1 / Erk-2活性的增加,而是依赖于Ca2 +的涌入。两者合计,这些结果表明低渗应激通过Ras / Raf信号通路诱导Erk-1 / Erk-2活化,并反对该通路在细胞体积控制中的直接作用。

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