首页> 美国卫生研究院文献>other >TLR4 Ligand/H2O2 Enhances TGF-β1 Signaling to Induce Metastatic Potential of Non-Invasive Breast Cancer Cells by Activating Non-Smad Pathways
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TLR4 Ligand/H2O2 Enhances TGF-β1 Signaling to Induce Metastatic Potential of Non-Invasive Breast Cancer Cells by Activating Non-Smad Pathways

机译:TLR4配体/ H2O2通过激活非Smad途径增强TGF-β1信号传导以诱导非侵袭性乳腺癌细胞转移潜力。

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摘要

TGF-β1 has the potential to activate multiple signaling pathways required for inducing metastatic potential of tumor cells. However, TGF-β1 was inefficient in inducing metastatic potential of many non-invasive human tumor cells. Here we report that the enhancement of TGF-β1 signaling is required for inducing metastatic potential of non-invasive breast cancer cells. TGF-β1 alone could not efficiently induce the sustained activation of Smad and non-Smad pathways in non-invasive breast cancer cells. TLR4 ligand (LPS) and H2O2 cooperated with TGF-β1 to enhance the sustained activation of non-Smad pathways, including p38MAPK, ERK, JNK, PI3K, and NF-κB. The activation of MAPK and PI3K pathways resulted in a positive feed-back effect on TGF-β1 signaling by down-regulating Nm23-H1 expression and up-regulating the expression of TβRI and TβRII, favoring further activation of multiple signaling pathways. Moreover, the enhanced TGF-β1 signaling induced higher expression of SNAI2, which also promoted TβRII expression. Therefore, the sustained activation levels of both Smad and non-Smad pathways were gradually increased after prolonged stimulation with TGF-β1/H2O2/LPS. Consistent with the activation pattern of signaling pathways, the invasive capacity and anoikis-resistance of non-invasive breast cancer cells were gradually increased after prolonged stimulation with TGF-β1/H2O2/LPS. The metastatic potential induced by TGF-β1/H2O2/LPS was sufficient for tumor cells to extravasate and form metastatic foci in an experimental metastasis model in nude mice. The findings in this study suggested that the enhanced signaling is required for inducing higher metastatic capacity of tumor cells, and that targeting one of stimuli or signaling pathways might be potential approach in comprehensive strategy for tumor therapy.
机译:TGF-β1具有激活诱导肿瘤细胞转移潜能所需的多种信号通路的潜力。然而,TGF-β1在诱导许多非侵入性人类肿瘤细胞的转移潜能方面效率低下。在这里我们报告说,TGF-β1信号的增强是诱导非侵入性乳腺癌细胞转移潜力所必需的。单独的TGF-β1不能有效地诱导非侵入性乳腺癌细胞中Smad和非Smad途径的持续活化。 TLR4配体(LPS)和H2O2与TGF-β1协同作用以增强非Smad途径的持续激活,包括p38MAPK,ERK,JNK,PI3K和NF-κB。 MAPK和PI3K途径的激活通过下调Nm23-H1表达和上调TβRI和TβRII的表达而对TGF-β1信号产生积极的反馈作用,有利于多种信号途径的进一步激活。此外,增强的TGF-β1信号传导诱导SNAI2的更高表达,这也促进了TβRII表达。因此,在用TGF-β1/ H2O2 / LPS长时间刺激后,Smad和非Smad途径的持续激活水平逐渐增加。 TGF-β1/ H2O2 / LPS长时间刺激后,与信号通路的激活方式一致,非侵袭性乳腺癌细胞的侵袭能力和抗厌食性逐渐升高。在裸鼠的实验转移模型中,TGF-β1/ H2O2 / LPS诱导的转移潜力足以使肿瘤细胞渗出并形成转移灶。这项研究的发现表明,增强信号传导是诱导肿瘤细胞更高转移能力所必需的,而靶向刺激或信号通路之一可能是肿瘤治疗综合策略中的潜在方法。

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