Department of Biological Regulation, The Weizmann Institute of Science, Rehovot, Israel.
Oncogene. 2012 Feb 16;31(7):907-17. doi: 10.1038/onc.2011.279. Epub 2011 Jul 11.
A large fraction of ductal carcinoma in situ (DCIS), a non-invasive precursor lesion of invasive breast cancer, overexpresses the HER2/neu oncogene. The ducts of DCIS are abnormally filled with cells that evade apoptosis, but the underlying mechanisms remain incompletely understood. We overexpressed HER2 in mammary epithelial cells and observed growth factor-independent proliferation. When grown in extracellular matrix as three-dimensional spheroids, control cells developed a hollow lumen, but HER2-overexpressing cells populated the lumen by evading apoptosis. We demonstrate that HER2 overexpression in this cellular model of DCIS drives transcriptional upregulation of multiple components of the Notch survival pathway. Importantly, luminal filling required upregulation of a signaling pathway comprising Notch3, its cleaved intracellular domain and the transcriptional regulator HES1, resulting in elevated levels of c-MYC and cyclin D1. In line with HER2-Notch3 collaboration, drugs intercepting either arm reverted the DCIS-like phenotype. In addition, we report upregulation of Notch3 in hyperplastic lesions of HER2 transgenic animals, as well as an association between HER2 levels and expression levels of components of the Notch pathway in tumor specimens of breast cancer patients. Therefore, it is conceivable that the integration of the Notch and HER2 signaling pathways contributes to the pathophysiology of DCIS.
大量的导管原位癌(DCIS),一种浸润性乳腺癌的非浸润性前体病变,过度表达 HER2/neu 癌基因。DCIS 的导管内异常充满了逃避细胞凋亡的细胞,但潜在的机制仍不完全清楚。我们在乳腺上皮细胞中过表达 HER2,并观察到生长因子非依赖性增殖。当在细胞外基质中作为三维球体生长时,对照细胞会形成中空的腔,但过表达 HER2 的细胞通过逃避细胞凋亡来填充腔。我们证明,在这个 DCIS 的细胞模型中,HER2 的过度表达驱动了 Notch 存活途径的多个组成部分的转录上调。重要的是,管腔填充需要包括 Notch3、其切割的细胞内结构域和转录调节因子 HES1 的信号通路的上调,导致 c-MYC 和细胞周期蛋白 D1 的水平升高。与 HER2-Notch3 合作一致,阻断任一通路的药物均可使 DCIS 样表型逆转。此外,我们还报告了 HER2 转基因动物增生性病变中 Notch3 的上调,以及乳腺癌患者肿瘤标本中 HER2 水平与 Notch 通路组成部分表达水平之间的关联。因此,可以想象 Notch 和 HER2 信号通路的整合有助于 DCIS 的病理生理学。