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首页> 外文期刊>Chemical biology and drug design >Calmodulin as a Potential Target by Which Berberine Induces Cell Cycle Arrest in Human Hepatoma Bel7402 Cells
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Calmodulin as a Potential Target by Which Berberine Induces Cell Cycle Arrest in Human Hepatoma Bel7402 Cells

机译:钙调蛋白作为小Ber碱诱导人肝癌Bel7402细胞细胞周期阻滞的潜在靶点

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Berberine is an isoquinoline alkaloid that has drawn extensive attention because it possesses various biological activities. Several mechanisms have been proposed to interpret the anticancer activity of berberine. However, these explanations are mostly based on its downstream-regulated genes or proteins; information on the direct target proteins that mediate the antiproliferative action of berberine remains unclear. In this study, a computational pipeline based on a ligand-protein inverse docking program and mining of the 'Connectivity MAP' data was adopted to explore the potential target proteins for berberine. The results showed that four proteins, that is calmodulin, cytochrome P450 3A4, sex hormone-binding globulin, and carbonic anhydrase II, were suggested to be the potential targets of berberine. The anticalmodulin property of berberine was demonstrated with an in vitro phosphodiesterase activity assay. Flow cytometric analysis found that G1 cell cycle arrest induced by berberine in Bel7402 cells was enhanced by cotreatment with calmodulin inhibitors. Western blotting results indicated that berberine treatment decreased phosphorylation of calmodulin kinase II and blocked subsequent MEK1 activation as well as p27 protein degradation. These results suggested that calmodulin might play crucial roles in berberineinduced cell cycle arrest in cancer cells.
机译:小ber碱是一种异喹啉生物碱,因其具有多种生物活性而备受关注。已经提出了几种机制来解释小ber碱的抗癌活性。但是,这些解释主要基于其下游调控的基因或蛋白质。关于介导小ber碱抗增殖作用的直接靶蛋白的信息尚不清楚。在这项研究中,采用了基于配体-蛋白质反向对接程序并挖掘“ Connectivity MAP”数据的计算流水线,以探索小碱的潜在靶蛋白。结果表明,四种蛋白,即钙调蛋白,细胞色素P450 3A4,性激素结合球蛋白和碳酸酐酶II被认为是小ber碱的潜在靶标。通过体外磷酸二酯酶活性分析证明了小ber碱的抗调蛋白特性。流式细胞仪分析发现,黄连素在钙调蛋白抑制剂的共同处理下,增强了小ber碱在Bel7402细胞中诱导的G1细胞周期阻滞。蛋白质印迹结果表明,小ber碱处理降低了钙调蛋白激酶II的磷酸化,并阻止了随后的MEK1激活以及p27蛋白降解。这些结果表明钙调蛋白可能在小碱诱导的癌细胞周期阻滞中起关键作用。

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