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ZEB1 转录因子与 Ras 和 Rb1 下游的 miR200 形成负反馈回路,调节 Bmi1 表达。

The ZEB1 transcription factor acts in a negative feedback loop with miR200 downstream of Ras and Rb1 to regulate Bmi1 expression.

机构信息

From the Molecular Targets Program, James Brown Cancer Center.

出版信息

J Biol Chem. 2014 Feb 14;289(7):4116-25. doi: 10.1074/jbc.M113.533505. Epub 2013 Dec 26.

Abstract

Ras mutations are frequent in cancer cells where they drive proliferation and resistance to apoptosis. However in primary cells, mutant Ras instead can cause oncogene-induced senescence, a tumor suppressor function linked to repression of the polycomb factor Bmi1, which normally regulates cell cycle inhibitory cyclin-dependent kinase inhibitors (cdki). It is unclear how Ras causes repression of Bmi1 in primary cells to suppress tumor formation while inducing the gene in cancer cells to drive tumor progression. Ras also induces the EMT transcription factor ZEB1 to trigger tumor invasion and metastasis. Beyond its well-documented role in EMT, ZEB1 is important for maintaining repression of cdki. Indeed, heterozygous mutation of ZEB1 is sufficient for elevated cdki expression, leading to premature senescence of primary cells. A similar phenotype is evident with Bmi1 mutation. We show that activation of Rb1 in response to mutant Ras causes dominant repression of ZEB1 in primary cells, but loss of the Rb1 pathway is a hallmark of cancer cells and in the absence of such Rb1 repression Ras induces ZEB1 in cancer cells. ZEB1 represses miR-200 in the context of a mutual repression loop. Because miR-200 represses Bmi1, induction of ZEB1 leads to induction of Bmi1. Rb1 pathway status then dictates the opposing effects of mutant Ras on the ZEB1-miR-200 loop in primary versus cancer cells. This loop not only triggers EMT, surprisingly we show it acts downstream of Ras to regulate Bmi1 expression and thus the critical decision between oncogene-induced senescence and tumor initiation.

摘要

Ras 突变在癌细胞中很常见,它们促进增殖并抵抗细胞凋亡。然而,在原代细胞中,突变 Ras 反而可以引起癌基因诱导的衰老,这是一种与多梳抑制因子 Bmi1 抑制相关的肿瘤抑制功能,Bmi1 通常调节细胞周期抑制细胞周期蛋白依赖性激酶抑制剂 (cdki)。目前尚不清楚 Ras 如何在原代细胞中抑制 Bmi1 的表达以抑制肿瘤形成,同时在癌细胞中诱导该基因驱动肿瘤进展。Ras 还诱导 EMT 转录因子 ZEB1 触发肿瘤侵袭和转移。除了在 EMT 中众所周知的作用外,ZEB1 对于维持 cdki 的抑制作用也很重要。事实上,ZEB1 的杂合突变足以导致 cdki 表达升高,导致原代细胞过早衰老。Bmi1 突变也存在类似的表型。我们表明,突变 Ras 激活 Rb1 会导致原代细胞中 ZEB1 的显性抑制,但 Rb1 通路的缺失是癌细胞的标志,在没有这种 Rb1 抑制的情况下,Ras 在癌细胞中诱导 ZEB1。ZEB1 在相互抑制环中抑制 miR-200。因为 miR-200 抑制 Bmi1,所以 ZEB1 的诱导导致 Bmi1 的诱导。Rb1 通路状态然后决定了突变 Ras 对原代细胞与癌细胞中 ZEB1-miR-200 环的相反影响。这个环路不仅触发 EMT,令人惊讶的是,我们表明它在 Ras 下游作用于调节 Bmi1 表达,从而在癌基因诱导的衰老和肿瘤起始之间做出关键决策。

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