首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >Notch3 in human breast cancer cell lines regulates osteoblast-cancer cell interactions and osteolytic bone metastasis.
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Notch3 in human breast cancer cell lines regulates osteoblast-cancer cell interactions and osteolytic bone metastasis.

机译:人乳腺癌细胞系中的Notch3调节成骨细胞-癌细胞相互作用和溶骨性骨转移。

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摘要

Breast cancer preferentially metastasizes to bone. We therefore addressed the role of Notch signaling in osteoblast-cancer cell interactions and in bone metastasis. Human bone marrow osteoblasts selectively enhanced the expression of Notch3 and its ligand Jagged1 in human breast cancer cell lines. Osteoblasts also stimulated cancer cell colony formation in soft agar, which was reduced by a chemical inhibitor of Notch signaling and anti-transforming growth factor beta1 (TGFbeta1) antibody. TGFbeta1, a major prometastatic product of osteoblasts, also stimulated cancer cell Notch3 expression. Notch3 knockdown in the cancer cells by stable short hairpin RNA interference decreased the osteoblast- and TGFbeta1-stimulated colony formation as well as TGFbeta1-mediated Smad3/Smad2 phosphorylation; Jagged1 level was coordinately reduced. In addition, expression of snail, a regulator of epithelial-mesenchymal transition, and the mesenchymal markers fibronectin and vimentin was attenuated by reducing Notch3 levels. To study the role of Notch3 signaling in bone metastasis, cancer cells were inoculated into athymic mice, either into femoral bone marrow cavities or into the systemic circulation via the left ventricle. Compared with robust osteolysis in mice receiving control cells, osteolytic lesions were significantly reduced following inoculation of cells with constitutively reduced Notch3 expression. Taken together, our results suggest that enhanced Notch3 expression in breast cancer cells, triggered by osteoblasts and their secretion of TGFbeta1 in the bone marrow niche, may stand as a novel mechanism for promoting bone metastasis.
机译:乳腺癌优先转移到骨骼。因此,我们探讨了Notch信号在成骨细胞-癌细胞相互作用和骨转移中的作用。人骨髓成骨细胞在人乳腺癌细胞系中选择性增强Notch3及其配体Jagged1的表达。成骨细胞还刺激了软琼脂中的癌细胞集落形成,而Notch信号传导和抗转化生长因子β1(TGFbeta1)抗体的化学抑制剂减少了成骨细胞的形成。 TGFbeta1,成骨细胞的主要促转移产物,也刺激了癌细胞Notch3的表达。通过稳定的短发夹RNA干扰,癌细胞中的Notch3敲低减少了成骨细胞和TGFbeta1刺激的菌落形成以及TGFbeta1介导的Smad3 / Smad2磷酸化。锯齿状1级被协调降低。此外,蜗牛的表达,上皮-间质转化的调节剂,和间充质标记纤连蛋白和波形蛋白通过降低Notch3水平而减弱。为了研究Notch3信号传导在骨转移中的作用,将癌细胞接种到无胸腺小鼠中,或者接种到股骨髓腔中,或者通过左心室接种到全身循环中。与接受对照细胞的小鼠中强大的溶骨作用相比,接种Notch3表达降低的细胞后,溶骨性损伤明显减少。两者合计,我们的结果表明,由成骨细胞及其在骨髓生境中TGFbeta1的分泌触发的乳腺癌细胞中Notch3表达的增强可能是促进骨转移的新机制。

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