The mitotic kinase Aurora-A promotes distant metastases by inducing epithelial-to-mesenchymal transition in ERα+ breast cancer cells

被引:0
|
作者
A B D'Assoro
T liu
C Quatraro
A Amato
M Opyrchal
A Leontovich
Y Ikeda
S Ohmine
W Lingle
V Suman
J Ecsedy
I Iankov
A Di Leonardo
J Ayers-Inglers
A Degnim
D Billadeau
J McCubrey
J Ingle
J L Salisbury
E Galanis
机构
[1] Mayo Clinic College of Medicine,Department of Biochemistry and Molecular Biology
[2] Mayo Clinic College of Medicine,Department of Medical Oncology
[3] Department of Cellular and Developmental Biology,Department of Molecular Medicine
[4] Mayo Clinic College of Medicine,Department of Biomedical Statistics and Informatics
[5] Mayo Clinic College of Medicine,Department of Experimental Pathology
[6] Mayo Clinic College of Medicine,Department of Oncology
[7] Millennium Pharmaceuticals Inc.,Department of General Surgery
[8] Mayo Clinic College of Medicine,Department of Microbiology and Immunology
[9] Brody School of Medicine at East Carolina University,undefined
来源
Oncogene | 2014年 / 33卷
关键词
breast cancer; stemness; metastases;
D O I
暂无
中图分类号
学科分类号
摘要
In this study, we demonstrate that constitutive activation of Raf-1 oncogenic signaling induces stabilization and accumulation of Aurora-A mitotic kinase that ultimately drives the transition from an epithelial to a highly invasive mesenchymal phenotype in estrogen receptor α-positive (ERα+) breast cancer cells. The transition from an epithelial- to a mesenchymal-like phenotype was characterized by reduced expression of ERα, HER-2/Neu overexpression and loss of CD24 surface receptor (CD24−/low). Importantly, expression of key epithelial-to-mesenchymal transition (EMT) markers and upregulation of the stemness gene SOX2 was linked to acquisition of stem cell-like properties such as the ability to form mammospheres in vitro and tumor self-renewal in vivo. Moreover, aberrant Aurora-A kinase activity induced phosphorylation and nuclear translocation of SMAD5, indicating a novel interplay between Aurora-A and SMAD5 signaling pathways in the development of EMT, stemness and ultimately tumor progression. Importantly, pharmacological and molecular inhibition of Aurora-A kinase activity restored a CD24+ epithelial phenotype that was coupled to ERα expression, downregulation of HER-2/Neu, inhibition of EMT and impaired self-renewal ability, resulting in the suppression of distant metastases. Taken together, our findings show for the first time the causal role of Aurora-A kinase in the activation of EMT pathway responsible for the development of distant metastases in ERα+ breast cancer cells. Moreover, this study has important translational implications because it highlights the mitotic kinase Aurora-A as a novel promising therapeutic target to selectively eliminate highly invasive cancer cells and improve the disease-free and overall survival of ERα+ breast cancer patients resistant to conventional endocrine therapy.
引用
收藏
页码:599 / 610
页数:11
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