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Akt 激活核因子κB上调Snail表达并诱导上皮间质转化。

Activation of NF-kappaB by Akt upregulates Snail expression and induces epithelium mesenchyme transition.

作者信息

Julien S, Puig I, Caretti E, Bonaventure J, Nelles L, van Roy F, Dargemont C, de Herreros A Garcia, Bellacosa A, Larue L

机构信息

1Developmental Genetics of Melanocytes, UMR 146 CNRS-Institut Curie, Bat. 110, Orsay Cedex, France.

出版信息

Oncogene. 2007 Nov 22;26(53):7445-56. doi: 10.1038/sj.onc.1210546. Epub 2007 Jun 11.

Abstract

Carcinoma progression is associated with the loss of epithelial features, and the acquisition of mesenchymal characteristics and invasive properties by tumour cells. The loss of cell-cell contacts may be the first step of the epithelium mesenchyme transition (EMT) and involves the functional inactivation of the cell-cell adhesion molecule E-cadherin. Repression of E-cadherin expression by the transcription factor Snail is a central event during the loss of epithelial phenotype. Akt kinase activation is frequent in human carcinomas, and Akt regulates various cellular mechanisms including EMT. Here, we show that Snail activation and consequent repression of E-cadherin may depend on AKT-mediated nuclear factor-kappaB (NF-kappaB) activation, and that NF-kappaB induces Snail expression. Expression of the NF-kappaB subunit p65 is sufficient for EMT induction, validating this signalling module during EMT. NF-kappaB pathway activation is associated with tumour progression and metastasis of several human tumour types; E-cadherin acts as a metastasis suppressor protein. Thus, this signalling and transcriptional network linking AKT, NF-kappaB, Snail and E-cadherin during EMT is a potential target for antimetastatic therapeutics.

摘要

癌进展与上皮特征丧失以及肿瘤细胞获得间充质特性和侵袭性相关。细胞间接触的丧失可能是上皮-间充质转化(EMT)的第一步,涉及细胞间黏附分子E-钙黏蛋白的功能失活。转录因子Snail对E-钙黏蛋白表达的抑制是上皮表型丧失过程中的核心事件。Akt激酶激活在人类癌症中很常见,且Akt调节包括EMT在内的各种细胞机制。在此,我们表明Snail激活以及随之而来的E-钙黏蛋白抑制可能依赖于AKT介导的核因子-κB(NF-κB)激活,并且NF-κB诱导Snail表达。NF-κB亚基p65的表达足以诱导EMT,证实了EMT过程中的这一信号模块。NF-κB通路激活与几种人类肿瘤类型的肿瘤进展和转移相关;E-钙黏蛋白作为一种转移抑制蛋白。因此,在EMT过程中连接AKT、NF-κB、Snail和E-钙黏蛋白的这一信号和转录网络是抗转移治疗的潜在靶点。

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