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首页> 外文期刊>Breast Cancer: Basic and Clinical Research >G-Protein Inwardly Rectifying Potassium Channel 1 (GIRK1) Knockdown Decreases Beta-Adrenergic, MAP Kinase and Akt Signaling in the MDA-MB-453 Breast Cancer Cell Line
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G-Protein Inwardly Rectifying Potassium Channel 1 (GIRK1) Knockdown Decreases Beta-Adrenergic, MAP Kinase and Akt Signaling in the MDA-MB-453 Breast Cancer Cell Line

机译:G蛋白内向整流钾通道1(GIRK1)组合式降低MDA-MB-453乳腺癌细胞系中的β-肾上腺素能,MAP激酶和Akt信号传导

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Previous data from our laboratory have indicated that there is a functional link between the beta-adrenergic receptor signaling pathway and the G-protein inwardly rectifying potassium channel (GIRK1) in breast cancer cell lines and that these pathways are involved in growth regulation of these cells. To determine functionality, MDA-MB-453 breast cancer cells were stimulated with ethanol, known to open GIRK channels. Decreased GIRK1 protein levels were seen after treatment with 0.12% ethanol. In addition, serum-free media completely inhibited GIRK1 protein expression. This data indicates that there are functional GIRK channels in breast cancer cells and that these channels are involved in cellular signaling. In the present research, to further define the signaling pathways involved, we performed RNA interference (siRNA) studies. Three stealth siRNA constructs were made starting at bases 1104, 1315, and 1490 of the GIRK1 sequence. These constructs were transfected into MDA-MB-453 cells, and both RNA and protein were isolated. GIRK1, β2-adrenergic and 18S control levels were determined using real-time PCR 24 hours after transfection. All three constructs decreased GIRK1 mRNA levels. However, β2 mRNA levels were unchanged by the GIRK1 knockdown. GIRK1 protein levels were also reduced by the knockdown, and this knockdown led to decreases in beta-adrenergic, MAP kinase and Akt signaling.
机译:我们实验室的先前数据表明,乳腺癌细胞系中β-肾上腺素能受体信号传导途径与G蛋白内向整流钾通道(GIRK1)之间存在功能联系,并且这些途径参与了这些细胞的生长调节。为了确定功能,用已知可打开GIRK通道的乙醇刺激MDA-MB-453乳腺癌细胞。用0.12%的乙醇处理后,发现GIRK1蛋白水平降低。此外,无血清培养基完全抑制GIRK1蛋白表达。该数据表明乳腺癌细胞中存在功能性GIRK通道,并且这些通道参与细胞信号传导。在本研究中,为了进一步定义涉及的信号传导途径,我们进行了RNA干扰(siRNA)研究。从GIRK1序列的碱基1104、1315和1490开始,制备了三个隐形siRNA构建体。将这些构建体转染到MDA-MB-453细胞中,并分离出RNA和蛋白质。转染后24小时使用实时PCR测定GIRK1,β2-肾上腺素能和18S对照水平。所有三种构建体均降低了GIRK1 mRNA水平。然而,通过GIRK1敲低,β2mRNA水平没有变化。 GIRK1蛋白水平也因敲低而降低,这种敲低导致β-肾上腺素,MAP激酶和Akt信号转导减少。

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