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首页> 外文期刊>Molecular and Cellular Biology >RANK Overexpression in Transgenic Mice with Mouse Mammary Tumor Virus Promoter-Controlled RANK Increases Proliferation and Impairs Alveolar Differentiation in the Mammary Epithelia and Disrupts Lumen Formation in Cultured Epithelial Acini
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RANK Overexpression in Transgenic Mice with Mouse Mammary Tumor Virus Promoter-Controlled RANK Increases Proliferation and Impairs Alveolar Differentiation in the Mammary Epithelia and Disrupts Lumen Formation in Cultured Epithelial Acini

机译:小鼠乳腺肿瘤病毒启动子控制的RANK在转基因小鼠中的RANK过表达增加增殖并损害乳腺上皮细胞的肺泡分化并破坏培养的上皮Acini的管腔形成

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RANK and RANKL, the key regulators of osteoclast differentiation and activation, also play an important role in the control of proliferation and differentiation of mammary epithelial cells during pregnancy. Here, we show that RANK protein expression is strictly regulated in a spatial and temporal manner during mammary gland development. RANK overexpression under the control of the mouse mammary tumor virus (MMTV) promoter in a transgenic mouse model results in increased mammary epithelial cell proliferation during pregnancy, impaired differentiation of lobulo-alveolar structures, decreased expression of the milk proteins β-casein and whey acidic protein, and deficient lactation. We also show that treatment of three-dimensional in vitro cultures of primary mammary cells from MMTV-RANK mice with RANKL results in increased proliferation and decreased apoptosis in the luminal area, resulting in bigger acini with filled lumens. Taken together, these results suggest that signaling through RANK not only promotes proliferation but also inhibits the terminal differentiation of mammary epithelial cells. Moreover, the increased proliferation and survival observed in a three-dimensional culture system suggests a role for aberrant RANK signaling during breast tumorigenesis.
机译:破骨细胞分化和激活的关键调节因子RANK和RANKL在怀孕期间对乳腺上皮细胞增殖和分化的控制中也起着重要作用。在这里,我们显示在乳腺发育过程中,RANK蛋白表达受到时空严格调控。在转基因小鼠模型中,在小鼠乳腺肿瘤病毒(MMTV)启动子的控制下RANK过表达导致妊娠期间乳腺上皮细胞增殖增加,肺泡结构分化受损,乳蛋白β-酪蛋白表达降低和乳清酸性蛋白质,哺乳不足。我们还显示,用RANKL处理来自MMTV-RANK小鼠的原代乳腺细胞的三维体外培养,可导致内腔区域增殖增加和凋亡减少,从而导致腔内充满充满的腺泡。综上所述,这些结果表明通过RANK的信号传导不仅促进增殖,而且抑制乳腺上皮细胞的终末分化。此外,在三维培养系统中观察到的增加的增殖和存活表明在乳腺肿瘤发生期间异常RANK信号传导的作用。

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