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首页> 外文期刊>Journal of molecular medicine: Official organ of the "Gesellschaft Deutscher Naturforscher und Arzte." >Radiation-induced glucocorticoid receptor promotes CD44+prostate cancer stem cell growth through activation of SGK1-Wnt/beta-catenin signaling
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Radiation-induced glucocorticoid receptor promotes CD44+prostate cancer stem cell growth through activation of SGK1-Wnt/beta-catenin signaling

机译:通过激活SGK1-WNT /β-Catenin信号传导,辐射诱导的糖皮质激素受体促进CD44 +前列腺癌干细胞生长

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We observed cancer stem cell (CSC) population increase in radioresistant LNCaP (LNCaPR18) and C4-2 (C4-2R26) prostate cancer (PCa) cells compared with respective parental cells. Since the CD44 level increase was most significant in radioresistant PCa cells compared with parental cells among CSC markers tested, we isolated the CD44+ population from LNCaP/LNCaPR18 and C4-2/C4-2R26 cell sets via the immunomagnetic separation method and used them as CSC sources. We detected lower AR level, but higher glucocorticoid receptor (GR) level in CD44+ CSCs than CD44- non-CSCs. Higher GR level in CD44+ CSCs than CD44- cells was also detected when cells were isolated from mouse tumor tissues of LNCaPR18 cell and C4-2R26 cell-derived human xenografts and grown in culture. We then found blocking the GR signaling by adding the anti-GR agent mifepristone into the cell culture inhibited the CD44+ CSC growth while the addition of the anti-AR agent enzalutamide enhanced the CSC growth. In xenograft mouse studies in which tumors were developed from the injection of CD44+ CSCs of LNCaPR18 or C4-2R26 cell lines, retarded tumor growth in mifepristone-injected mice was observed compared with vehicle-treated mice. We next discovered the GR regulation of Wnt/beta-catenin signaling pathway. We further found that the serum/glucocorticoid regulated kinase 1 (SGK1) is the GR downstream molecule that mediates Wnt/beta-catenin signaling activation. Therefore, inhibition of either SGK1 or Wnt/beta-catenin signaling impaired the in vitro CD44+ CSC growth. From these results, we suggest that blocking GR signaling or its downstream SGK1-Wnt/beta-catenin signaling axis may suppress the radiation-induced CSC increase in PCa.Key MessagesHigher CSC population exists in radioresistant PCa cells than parental cells.Higher GR levels (and lower AR level) in CD44+ CSCs than CD44- non-CSCs.Use of anti-GR agent blocked the growth of CD44+ CSCs in in vitro/in vivo tests.GR downstream SGK1-Wnt/beta-catenin signaling axis mediates the CSC increase.Targeting this signaling axis may enhance the radiotherapy efficacy in treating PCa.
机译:与各自的亲本细胞相比,我们观察到癌症干细胞(LNCAPR18)和C4-2(C4-26)细胞的前列腺癌(C4-26)细胞增加。由于CD44水平增加在辐射的PCA细胞中最显着,与所测试的CSC标记物中的亲本细胞相比,从LNCAP / LNCAPR18和C4-2 / C4-2R26细胞通过免疫磁性分离方法分离CD44 +群体并用作CSC来源。我们检测到较低的AR水平,但在CD44 + CSC中的糖皮质激素受体(GR)水平比CD44-非CSCs更高。当从LNCAPR18细胞的小鼠肿瘤组织和C4-2R26细胞衍生的人异种移植物中分离细胞并在培养中生长时,还检测到CD44 + CSCs中的较高GR水平。然后,我们发现通过将抗GR药剂植物植物添加到细胞培养中抑制CD44 + CSC的增长,同时加入抗AR试剂苯甲丁胺增强CSC生长。在异种移植鼠标研究中,其中从注射LNCAPR18或C4-26细胞中产生肿瘤的肿瘤,与载体处理的小鼠相比,观察到米非司酮注入小鼠中的延迟肿瘤生长。我们接下来发现了WNT /β-Catenin信号传导途径的GR调节。我们进一步发现,血清/糖皮质激素调节激酶1(SGK1)是介导WNT /β-连环蛋白信号传导活化的GR下游分子。因此,抑制SGK1或WNT /β-连环蛋白信号传导的体外CD44 + CSC生长受损。从这些结果来看,我们建议阻断GR信令或其下游SGK1-Wnt /β-连环蛋白信号轴可以抑制PCA的辐射诱导的CSC增加.KEY MessageHigher CSC群体中存在于父母细胞的放射性PCA细胞中。高级(在CD44 + CSC中的下降AR水平比CD44-非CSCs.使用抗GR试剂阻断了体外/体内测试中CD44 + CSCs的生长.GR下游SGK1-WNT /β-连环素信号轴介导CSC增加.Targeting该信号轴可以增强治疗PCA的放射疗法功效。

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