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IL6-Mediated Suppression of miR-200c Directs Constitutive Activation of Inflammatory Signaling Circuit Driving Transformation and Tumorigenesis

机译:IL6介导的miR-200c的抑制指导炎症信号电路驱动变换和肿瘤的组成型激活

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摘要

Abnormal inflammatory signaling activation occurs commonly in cancer cells. However, how it is initiated and maintained and its roles in early stages of tumorigensis are largely unknown. Here, we report that the monocyte-derived MCP-1-induced transformation of immortal breast epithelial cells is triggered by transient activation of MEK/ERK and IKK/NF-κB pathways and maintained by constitutive activation of a feed-forward inflammatory signaling circuit composed of miR-200c, p65, JNK2, HSF1, and IL6. Suppression of miR-200c by IL6 constitutively activates p65/RelA and JNK2, and the latter phosphorylates and activates HSF1. In turn, HSF1 triggers demethylation of the IL6 promoter that facilitates the binding of p65 and c-Jun, which together drive constitutive IL6 transcription. Importantly, this signaling circuit is manifest in human cancer cells and in a mouse model of ErbB2-driven breast cancer, where IL6 loss significantly impairs tumorigenesis. Therefore, targeting this signaling circuit represents an effective therapeutic avenue for breast cancer prevention and treatment.
机译:异常的炎症信号激活通常在癌细胞中发生。然而,如何启动和维持,并且其在肿瘤早期阶段的作用主要是未知的。在此,我们报告称,单核细胞衍生的MCP-1诱导的不朽乳腺上皮细胞的转化由MEK / ERK和IKK / NF-κB途径的瞬态激活触发,并通过组成的前馈炎症信号电路的组成型激活而维持miR-200c,p65,JNK2,HSF1和IL6。 IL6抑制miR-200c组成思考P65 / rela和JNK2,后者磷酸化并活化HSF1。反过来,HSF1触发IL6启动子的去甲基化,其促进P65和C-JUM的结合,其一起驱动组成IL6转录。重要的是,该信号电路在人类癌细胞中表现出和ErbB2驱动的乳腺癌的小鼠模型,其中IL6损失显着损害肿瘤瘤。因此,靶向该信号电路代表了乳腺癌预防和治疗的有效治疗途径。

著录项

  • 来源
    《Molecular cell》 |2012年第6期|共13页
  • 作者

    RokavecM.; WuW.; LuoJ.-L.;

  • 作者单位

    Department of Cancer Biology The Scripps Research Institute Jupiter FL 33458 United States;

    Department of Cancer Biology The Scripps Research Institute Jupiter FL 33458 United States;

    Department of Cancer Biology The Scripps Research Institute Jupiter FL 33458 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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