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首页> 外文期刊>Molecular Cancer >Paracrine and epigenetic control of CAF-induced metastasis: the role of HOTAIR stimulated by TGF-?1 secretion
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Paracrine and epigenetic control of CAF-induced metastasis: the role of HOTAIR stimulated by TGF-?1 secretion

机译:CAF诱导转移的旁分泌和表观遗传控制:TGF-β1分泌刺激HOTAIR的作用

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BackgroundThe communication between carcinoma associated fibroblasts (CAFs) and cancer cells facilitate tumor metastasis. In this study, we further underlying the epigenetic mechanisms of CAFs feed the cancer cells and the molecular mediators involved in these processes. MethodsMCF-7 and MDA-MB-231 cells were treated with CAFs culture conditioned medium, respectively. Cytokine antibody array, enzyme-linked immunosorbent assay, western blotting and immunofluorescence were used to identify the key chemokines. Chromatin immunoprecipitation and luciferase reporter assay were performed to explore the transactivation of target LncRNA by CAFs. A series of in vitro assays was performed with RNAi-mediated knockdown to elucidate the function of LncRNA. An orthotopic mouse model of MDA-MB-231 was conducted to confirm the mechanism in vivo. ResultsHere we reported that TGF-β1 was top one highest level of cytokine secreted by CAFs as revealed by cytokine antibody array. Paracrine TGF-β1 was essential for CAFs induced EMT and metastasis in breast cancer cells, which is a crucial mediator of the interaction between stromal and cancer cells. CAF-CM significantly enhanced the HOTAIR expression to promote EMT, whereas treatment with small-molecule inhibitors of TGF-β1 attenuated the activation of HOTAIR. Most importantly, SMAD2/3/4 directly bound the promoter site of HOTAIR, located between nucleotides -386 and -398, -440 and -452, suggesting that HOTAIR was a directly transcriptional target of SMAD2/3/4. Additionally, CAFs mediated EMT by targeting CDK5 signaling through H3K27 tri-methylation. Depletion of HOTAIR inhibited CAFs-induced tumor growth and lung metastasis in MDA-MB-231 orthotopic animal model. ConclusionsOur findings demonstrated that CAFs promoted the metastatic activity of breast cancer cells by activating the transcription of HOTAIR via TGF-β1 secretion, supporting the pursuit of the TGF-β1/HOTAIR axis as a target in breast cancer treatment.
机译:背景癌相关成纤维细胞(CAF)与癌细胞之间的通讯促进了肿瘤转移。在这项研究中,我们进一步揭示了CAF的表观遗传机制为癌细胞和参与这些过程的分子介体提供了营养。方法分别用CAFs培养条件培养基处理MCF-7和MDA-MB-231细胞。使用细胞因子抗体阵列,酶联免疫吸附测定,western印迹和免疫荧光来鉴定关键趋化因子。进行了染色质免疫沉淀和荧光素酶报告基因分析,以探讨CAFs对目标LncRNA的反式激活。使用RNAi介导的敲低进行了一系列体外测定,以阐明LncRNA的功能。进行了MDA-MB-231的原位小鼠模型以证实其体内机制。结果在这里我们报道了TGF-β1是细胞因子抗体阵列所揭示的CAF分泌的最高水平的细胞因子之一。旁分泌TGF-β1对于CAF诱导乳腺癌细胞EMT和转移至关重要,而后者是基质细胞与癌细胞相互作用的关键介质。 CAF-CM显着增强了HOTAIR的表达以促进EMT,而用TGF-β1的小分子抑制剂处理则减弱了HOTAIR的激活。最重要的是,SMAD2 / 3/4直接结合HOTAIR的启动子位点,位于核苷酸-386和-398,-440和-452之间,表明HOTAIR是SMAD2 / 3/4的直接转录靶标。此外,CAF通过H3K27三甲基化靶向CDK5信号传导来介导EMT。在MDA-MB-231原位动物模型中,HOTAIR的耗竭抑制了CAFs诱导的肿瘤生长和肺转移。结论我们的发现表明,CAF通过激活TGF-β1分泌的HOTAIR转录来促进乳腺癌细胞的转移活性,支持追求TGF-β1/ HOTAIR轴作为乳腺癌治疗的目标。

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