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蛋白激酶 A 与人类乳腺癌细胞中新生 Nav1.5 表达的调控:活动依赖性正反馈和细胞迁移。

Protein kinase A and regulation of neonatal Nav1.5 expression in human breast cancer cells: activity-dependent positive feedback and cellular migration.

机构信息

Neuroscience Solution to Cancer Research Group, Division of Cell and Molecular Biology, Imperial College London, South Kensington Campus, London, UK.

出版信息

Int J Biochem Cell Biol. 2010 Feb;42(2):346-58. doi: 10.1016/j.biocel.2009.11.021. Epub 2009 Dec 3.

Abstract

Voltage-gated Na(+) channels (VGSCs) are expressed in excitable cells (e.g. neurons and muscles), as well as in some classically 'non-excitable' cells (e.g. fibroblasts), and in carcinomas. In general, functional expression of VGSCs in plasma membrane (PM) is hierarchical and dynamic. Previously, we have shown that an activity-dependent positive feedback mechanism involving cAMP-dependent protein kinase A (PKA) plays a significant role in upregulation of VGSCs in strongly metastatic rat prostate cancer Mat-LyLu cells expressing Nav1.7. Here, we investigated the possible role of PKA in VGSC regulation and its functional consequences in strongly metastatic human breast cancer (BCa) MDA-MB-231 cells, where the neonatal splice form of Nav1.5 (nNav1.5) is the predominant VGSC present. Treatment with the PKA activator forskolin for 24h increased mRNA and PM protein levels of nNav1.5, without changing the total VGSC protein level. Opposite effects were obtained by application of the PKA inhibitor KT5720 or the highly specific VGSC blocker tetrodotoxin (TTX), the latter implying activity-dependent upregulation. We tested the possibility, therefore, that the activity dependence of VGSC (nNav1.5) expression involved PKA. Indeed, TTX pretreatment reduced the level of phosphorylated PKA and eliminated basal and PKA-stimulated cellular migration. These data suggested that activity-dependent positive feedback mediated by PKA plays an important role in the functional expression of nNav1.5 in BCa, and in turn, this enhances the cells' metastatic potential.

摘要

电压门控钠离子通道(VGSCs)表达于可兴奋细胞(如神经元和肌肉)以及一些经典的“非兴奋”细胞(如成纤维细胞)和癌中。通常,VGSCs 在质膜(PM)中的功能表达是分层和动态的。先前,我们已经表明,涉及 cAMP 依赖性蛋白激酶 A(PKA)的活性依赖性正反馈机制在高度转移性大鼠前列腺癌细胞 Mat-LyLu 中 Nav1.7 的 VGSCs 的上调中起重要作用。在这里,我们研究了 PKA 在 VGSC 调节中的可能作用及其在高度转移性人乳腺癌(BCa)MDA-MB-231 细胞中的功能后果,其中新生剪接形式的 Nav1.5(nNav1.5)是主要存在的 VGSC。用 PKA 激活剂forskolin 处理 24 小时可增加 nNav1.5 的 mRNA 和 PM 蛋白水平,而不改变总 VGSC 蛋白水平。通过应用 PKA 抑制剂 KT5720 或高度特异性 VGSC 阻断剂河豚毒素(TTX)获得相反的效果,后者暗示了活性依赖性上调。因此,我们测试了 VGSC(nNav1.5)表达的活性依赖性是否涉及 PKA 的可能性。事实上,TTX 预处理降低了磷酸化 PKA 的水平,并消除了基础和 PKA 刺激的细胞迁移。这些数据表明,PKA 介导的活性依赖性正反馈在 BCa 中 nNav1.5 的功能表达中起着重要作用,反过来,这增强了细胞的转移潜力。

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