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首页> 外文期刊>Cancer biology & therapy >EGF activates intracellular and intercellular calcium signaling by distinct pathways in tumor cells.
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EGF activates intracellular and intercellular calcium signaling by distinct pathways in tumor cells.

机译:EGF通过肿瘤细胞中不同的途径激活细胞内和细胞间钙信号传导。

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摘要

Epidermal growth factor (EGF)-mediated Ca2+ signaling in multiple cell lines derived from human gliomas and in the A431 epidermoid carcinoma cell line was observed using fluorescence videomicroscopy. Bath application of EGF evoked an oscillatory increase in [Ca2+]i in 4 different human glioma cell lines as well as the A431 cell line. This effect was blocked by the EGF receptor tyrosine kinase inhibitors gefitinib and erlotinib, as well as by the EGFR antibody cetuximab. In addition to this acute Ca2+ signaling response, transient exposure to EGF also potentiated subsequent Ca2+ signaling responses to other stimuli. Tumor cells transiently exposed to EGF (5 minutes), showed a sustained increase in propagation of intercellular Ca2+ waves, which have been previously shown to involve release of ATP and activation of purinergic receptors. Cells transiently exposed to EGF also showed a sustained potentiation of the Ca2+ signaling response to ATP. In contrast to the acute Ca2+ signaling response to EGF, this sustained potentiation of purinergic intercellular signaling was not blocked by gefitinib or erlotinib, while it was blocked by cetuximab. These results indicate that while the acute Ca2+ signaling response requires tyrosine kinase activation, the sustained potentiation of intercellular signaling occurs via a distinct pathway. Distinct intra- and intercellular Ca2+ signaling pathways may be mechanisms by which EGF modulates the growth and migration of tumor cells.
机译:使用荧光视频显微镜观察到在源自人神经胶质瘤的多个细胞系中和在A431表皮样癌细胞系中表皮生长因子(EGF)介导的Ca2 +信号传导。 EGF的沐浴应用在4种不同的人类神经胶质瘤细胞系以及A431细胞系中引起[Ca2 +] i振荡增加。这种作用被EGF受体酪氨酸激酶抑制剂吉非替尼和厄洛替尼,以及EGFR抗体西妥昔单抗所阻断。除了这种急性的Ca2 +信号反应外,短暂暴露于EGF还可以增强随后的Ca2 +信号对其他刺激的反应。短暂暴露于EGF(5分钟)的肿瘤细胞显示细胞间Ca2 +波的传播持续增加,以前已证明这涉及ATP的释放和嘌呤能受体的激活。短暂暴露于EGF的细胞还表现出对ATP的Ca2 +信号传导反应的持续增强。与对EGF的急性Ca2 +信号转导反应相反,嘌呤能细胞间信号转导的这种持续增强作用不会被吉非替尼或厄洛替尼所阻断,而被西妥昔单抗所阻断。这些结果表明,尽管急性Ca2 +信号传导反应需要酪氨酸激酶激活,但细胞间信号传导的持续增强是通过独特的途径发生的。不同的细胞内和细胞间Ca2 +信号通路可能是EGF调节肿瘤细胞生长和迁移的机制。

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