首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Intermediate Conductance Calcium-activated Potassium Channel KCa3.1 Regulates Vascular Smooth Muscle Cell Proliferation via Controlling Calcium-dependent Signaling
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The Intermediate Conductance Calcium-activated Potassium Channel KCa3.1 Regulates Vascular Smooth Muscle Cell Proliferation via Controlling Calcium-dependent Signaling

机译:中间电导钙激活钾通道KCa3.1通过控制钙依赖信号调节血管平滑肌细胞增殖。

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摘要

The intermediate conductance calcium-activated potassium channel KCa3.1 contributes to a variety of cell activation processes in pathologies such as inflammation, carcinogenesis, and vascular remodeling. We examined the electrophysiological and transcriptional mechanisms by which KCa3.1 regulates vascular smooth muscle cell (VSMC) proliferation. Platelet-derived growth factor-BB (PDGF)-induced proliferation of human coronary artery VSMCs was attenuated by lowering intracellular Ca2+ concentration ([Ca2+]i) and was enhanced by elevating [Ca2+]i. KCa3.1 blockade or knockdown inhibited proliferation by suppressing the rise in [Ca2+]i and attenuating the expression of phosphorylated cAMP-response element-binding protein (CREB), c-Fos, and neuron-derived orphan receptor-1 (NOR-1). This antiproliferative effect was abolished by elevating [Ca2+]i. KCa3.1 overexpression induced VSMC proliferation, and potentiated PDGF-induced proliferation, by inducing CREB phosphorylation, c-Fos, and NOR-1. Pharmacological stimulation of KCa3.1 unexpectedly suppressed proliferation by abolishing the expression and activity of KCa3.1 and PDGF β-receptors and inhibiting the rise in [Ca2+]i. The stimulation also attenuated the levels of phosphorylated CREB, c-Fos, and cyclin expression. After KCa3.1 blockade, the characteristic round shape of VSMCs expressing high l-caldesmon and low calponin-1 (dedifferentiation state) was maintained, whereas KCa3.1 stimulation induced a spindle-shaped cellular appearance, with low l-caldesmon and high calponin-1. In conclusion, KCa3.1 plays an important role in VSMC proliferation via controlling Ca2+-dependent signaling pathways, and its modulation may therefore constitute a new therapeutic target for cell proliferative diseases such as atherosclerosis.
机译:中间电导钙激活钾通道KCa3.1有助于病理学中各种细胞激活过程,例如炎症,致癌作用和血管重塑。我们检查了KCa3.1调节血管平滑肌细胞(VSMC)增殖的电生理和转录机制。降低细胞内Ca 2 + 的浓度([Ca 2 + ] i)可降低血小板源性生长因子-BB(PDGF)诱导的人冠状动脉血管平滑肌细胞的增殖。通过提高[Ca 2 + ] i来增强。通过抑制[Ca 2 + ] i的升高并减弱磷酸化的cAMP反应元件结合蛋白(CREB),c-Fos和神经元-n的表达,KCa3.1阻断或敲低抑制了增殖。衍生的孤儿受体1(NOR-1)。通过提高[Ca 2 + ] i,可以消除这种抗增殖作用。 KCa3.1过表达通过诱导CREB磷酸化,c-Fos和NOR-1诱导VSMC增殖,并增强PDGF诱导的增殖。通过取消KCa3.1和PDGFβ受体的表达和活性并抑制[Ca 2 + ] i的升高,药理刺激KCa3.1会意外抑制增殖。刺激还减弱了磷酸化的CREB,c-Fos和细胞周期蛋白的表达。在KCa3.1阻断后,表达高l-卡尔德蒙和低钙白蛋白-1(去分化状态)的VSMC的特征圆形得以保持,而KCa3.1刺激诱导了纺锤状的细胞外观,低l-卡尔德蒙和高钙蛋白-1。综上所述,KCa3.1通过控制Ca 2 + 依赖性信号通路在VSMC增殖中起重要作用,因此其调节可能构成细胞增殖性疾病如动脉粥样硬化的新治疗靶点。

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