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上皮-间充质转化重塑了 PI3K 依赖性增殖的分子途径。

Epithelial-to-mesenchymal transition rewires the molecular path to PI3K-dependent proliferation.

机构信息

1Helen Diller Family Comprehensive Cancer Center; 2Biomedical Sciences Graduate Program, University of California San Francisco; and 3California Institute for Quantitative Biosciences, San Francisco, California.

出版信息

Cancer Discov. 2014 Feb;4(2):186-99. doi: 10.1158/2159-8290.CD-13-0520. Epub 2013 Dec 3.

Abstract

UNLABELLED

Tumors showing evidence of epithelial-to-mesenchymal transition (EMT) have been associated with metastasis, drug resistance, and poor prognosis. Heterogeneity along the EMT spectrum is observed between and within tumors. To develop effective therapeutics, a mechanistic understanding of how EMT affects the molecular requirements for proliferation is needed. We found that although cells use phosphoinositide 3-kinase (PI3K) for proliferation in both the epithelial and mesenchymal states, EMT rewires the mechanism of PI3K pathway activation. In epithelial cells, autocrine ERBB3 activation maintains PI3K signaling, whereas after EMT, downregulation of ERBB3 disrupts autocrine signaling to PI3K. Loss of ERBB3 leads to reduced serum-independent proliferation after EMT that can be rescued through reactivation of PI3K by enhanced signaling from p110α, ERBB3 reexpression, or growth factor stimulation. In vivo, we demonstrate that PIK3CA expression is upregulated in mesenchymal tumors with low levels of ERBB3. This study defines how ERBB3 downregulation after EMT affects PI3K-dependent proliferation.

SIGNIFICANCE

This study describes a mechanism through which EMT transition alters the proliferative potential of cells by modulating ERBB3 expression. Furthermore, it demonstrates the potential for multiple molecular routes to drive proliferation in different cell states, illustrating how changes in EMT status can rewire signaling upstream of cell proliferation.

摘要

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表现出上皮-间充质转化 (EMT) 证据的肿瘤与转移、耐药性和预后不良有关。肿瘤内和肿瘤间观察到 EMT 谱沿异质性。为了开发有效的治疗方法,需要对 EMT 如何影响增殖的分子要求有一个机械的理解。我们发现,尽管细胞在上皮和间充质状态下都使用磷酸肌醇 3-激酶 (PI3K) 进行增殖,但 EMT 重新配置了 PI3K 途径激活的机制。在上皮细胞中,自分泌 ERBB3 激活维持 PI3K 信号,而 EMT 后,ERBB3 的下调破坏了对 PI3K 的自分泌信号。ERBB3 的缺失导致 EMT 后血清独立增殖减少,通过增强 p110α 的信号、ERBB3 再表达或生长因子刺激重新激活 PI3K 可以挽救这种减少。在体内,我们证明了在 ERBB3 水平低的间质肿瘤中 PIK3CA 的表达上调。这项研究定义了 EMT 后 ERBB3 下调如何影响 PI3K 依赖性增殖。

意义

这项研究描述了 EMT 转换通过调节 ERBB3 表达如何改变细胞的增殖潜力。此外,它还证明了多种分子途径在不同的细胞状态下驱动增殖的潜力,说明了 EMT 状态的变化如何重新配置细胞增殖上游的信号。

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